1f1d2b4d3SLarry Finger /****************************************************************************** 2f1d2b4d3SLarry Finger * 3f1d2b4d3SLarry Finger * Copyright(c) 2009-2012 Realtek Corporation. 4f1d2b4d3SLarry Finger * 5f1d2b4d3SLarry Finger * This program is free software; you can redistribute it and/or modify it 6f1d2b4d3SLarry Finger * under the terms of version 2 of the GNU General Public License as 7f1d2b4d3SLarry Finger * published by the Free Software Foundation. 8f1d2b4d3SLarry Finger * 9f1d2b4d3SLarry Finger * This program is distributed in the hope that it will be useful, but WITHOUT 10f1d2b4d3SLarry Finger * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 11f1d2b4d3SLarry Finger * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for 12f1d2b4d3SLarry Finger * more details. 13f1d2b4d3SLarry Finger * 14f1d2b4d3SLarry Finger * The full GNU General Public License is included in this distribution in the 15f1d2b4d3SLarry Finger * file called LICENSE. 16f1d2b4d3SLarry Finger * 17f1d2b4d3SLarry Finger * Contact Information: 18f1d2b4d3SLarry Finger * wlanfae <wlanfae@realtek.com> 19f1d2b4d3SLarry Finger * Realtek Corporation, No. 2, Innovation Road II, Hsinchu Science Park, 20f1d2b4d3SLarry Finger * Hsinchu 300, Taiwan. 21f1d2b4d3SLarry Finger * 22f1d2b4d3SLarry Finger * Larry Finger <Larry.Finger@lwfinger.net> 23f1d2b4d3SLarry Finger * 24f1d2b4d3SLarry Finger *****************************************************************************/ 25f1d2b4d3SLarry Finger 26f1d2b4d3SLarry Finger #include "../wifi.h" 27f1d2b4d3SLarry Finger #include "../efuse.h" 28f1d2b4d3SLarry Finger #include "../base.h" 29f1d2b4d3SLarry Finger #include "../regd.h" 30f1d2b4d3SLarry Finger #include "../cam.h" 31f1d2b4d3SLarry Finger #include "../ps.h" 32f1d2b4d3SLarry Finger #include "../pci.h" 33f1d2b4d3SLarry Finger #include "reg.h" 34f1d2b4d3SLarry Finger #include "def.h" 35f1d2b4d3SLarry Finger #include "phy.h" 36f1d2b4d3SLarry Finger #include "../rtl8192c/dm_common.h" 37f1d2b4d3SLarry Finger #include "../rtl8192c/fw_common.h" 38f1d2b4d3SLarry Finger #include "../rtl8192c/phy_common.h" 39f1d2b4d3SLarry Finger #include "dm.h" 40f1d2b4d3SLarry Finger #include "led.h" 41f1d2b4d3SLarry Finger #include "hw.h" 42f1d2b4d3SLarry Finger 43f1d2b4d3SLarry Finger #define LLT_CONFIG 5 44f1d2b4d3SLarry Finger 45f1d2b4d3SLarry Finger static void _rtl92ce_set_bcn_ctrl_reg(struct ieee80211_hw *hw, 46f1d2b4d3SLarry Finger u8 set_bits, u8 clear_bits) 47f1d2b4d3SLarry Finger { 48f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 49f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 50f1d2b4d3SLarry Finger 51f1d2b4d3SLarry Finger rtlpci->reg_bcn_ctrl_val |= set_bits; 52f1d2b4d3SLarry Finger rtlpci->reg_bcn_ctrl_val &= ~clear_bits; 53f1d2b4d3SLarry Finger 54f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_BCN_CTRL, (u8)rtlpci->reg_bcn_ctrl_val); 55f1d2b4d3SLarry Finger } 56f1d2b4d3SLarry Finger 57f1d2b4d3SLarry Finger static void _rtl92ce_stop_tx_beacon(struct ieee80211_hw *hw) 58f1d2b4d3SLarry Finger { 59f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 60f1d2b4d3SLarry Finger u8 tmp1byte; 61f1d2b4d3SLarry Finger 62f1d2b4d3SLarry Finger tmp1byte = rtl_read_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2); 63f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2, tmp1byte & (~BIT(6))); 64f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 1, 0x64); 65f1d2b4d3SLarry Finger tmp1byte = rtl_read_byte(rtlpriv, REG_TBTT_PROHIBIT + 2); 66f1d2b4d3SLarry Finger tmp1byte &= ~(BIT(0)); 67f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 2, tmp1byte); 68f1d2b4d3SLarry Finger } 69f1d2b4d3SLarry Finger 70f1d2b4d3SLarry Finger static void _rtl92ce_resume_tx_beacon(struct ieee80211_hw *hw) 71f1d2b4d3SLarry Finger { 72f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 73f1d2b4d3SLarry Finger u8 tmp1byte; 74f1d2b4d3SLarry Finger 75f1d2b4d3SLarry Finger tmp1byte = rtl_read_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2); 76f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2, tmp1byte | BIT(6)); 77f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 1, 0xff); 78f1d2b4d3SLarry Finger tmp1byte = rtl_read_byte(rtlpriv, REG_TBTT_PROHIBIT + 2); 79f1d2b4d3SLarry Finger tmp1byte |= BIT(0); 80f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 2, tmp1byte); 81f1d2b4d3SLarry Finger } 82f1d2b4d3SLarry Finger 83f1d2b4d3SLarry Finger static void _rtl92ce_enable_bcn_sub_func(struct ieee80211_hw *hw) 84f1d2b4d3SLarry Finger { 85f1d2b4d3SLarry Finger _rtl92ce_set_bcn_ctrl_reg(hw, 0, BIT(1)); 86f1d2b4d3SLarry Finger } 87f1d2b4d3SLarry Finger 88f1d2b4d3SLarry Finger static void _rtl92ce_disable_bcn_sub_func(struct ieee80211_hw *hw) 89f1d2b4d3SLarry Finger { 90f1d2b4d3SLarry Finger _rtl92ce_set_bcn_ctrl_reg(hw, BIT(1), 0); 91f1d2b4d3SLarry Finger } 92f1d2b4d3SLarry Finger 93f1d2b4d3SLarry Finger void rtl92ce_get_hw_reg(struct ieee80211_hw *hw, u8 variable, u8 *val) 94f1d2b4d3SLarry Finger { 95f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 96f1d2b4d3SLarry Finger struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw)); 97f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 98f1d2b4d3SLarry Finger 99f1d2b4d3SLarry Finger switch (variable) { 100f1d2b4d3SLarry Finger case HW_VAR_RCR: 101f1d2b4d3SLarry Finger *((u32 *) (val)) = rtlpci->receive_config; 102f1d2b4d3SLarry Finger break; 103f1d2b4d3SLarry Finger case HW_VAR_RF_STATE: 104f1d2b4d3SLarry Finger *((enum rf_pwrstate *)(val)) = ppsc->rfpwr_state; 105f1d2b4d3SLarry Finger break; 106f1d2b4d3SLarry Finger case HW_VAR_FWLPS_RF_ON:{ 107f1d2b4d3SLarry Finger enum rf_pwrstate rfState; 108f1d2b4d3SLarry Finger u32 val_rcr; 109f1d2b4d3SLarry Finger 110f1d2b4d3SLarry Finger rtlpriv->cfg->ops->get_hw_reg(hw, 111f1d2b4d3SLarry Finger HW_VAR_RF_STATE, 112f1d2b4d3SLarry Finger (u8 *) (&rfState)); 113f1d2b4d3SLarry Finger if (rfState == ERFOFF) { 114f1d2b4d3SLarry Finger *((bool *) (val)) = true; 115f1d2b4d3SLarry Finger } else { 116f1d2b4d3SLarry Finger val_rcr = rtl_read_dword(rtlpriv, REG_RCR); 117f1d2b4d3SLarry Finger val_rcr &= 0x00070000; 118f1d2b4d3SLarry Finger if (val_rcr) 119f1d2b4d3SLarry Finger *((bool *) (val)) = false; 120f1d2b4d3SLarry Finger else 121f1d2b4d3SLarry Finger *((bool *) (val)) = true; 122f1d2b4d3SLarry Finger } 123f1d2b4d3SLarry Finger break; 124f1d2b4d3SLarry Finger } 125f1d2b4d3SLarry Finger case HW_VAR_FW_PSMODE_STATUS: 126f1d2b4d3SLarry Finger *((bool *) (val)) = ppsc->fw_current_inpsmode; 127f1d2b4d3SLarry Finger break; 128f1d2b4d3SLarry Finger case HW_VAR_CORRECT_TSF:{ 129f1d2b4d3SLarry Finger u64 tsf; 130f1d2b4d3SLarry Finger u32 *ptsf_low = (u32 *)&tsf; 131f1d2b4d3SLarry Finger u32 *ptsf_high = ((u32 *)&tsf) + 1; 132f1d2b4d3SLarry Finger 133f1d2b4d3SLarry Finger *ptsf_high = rtl_read_dword(rtlpriv, (REG_TSFTR + 4)); 134f1d2b4d3SLarry Finger *ptsf_low = rtl_read_dword(rtlpriv, REG_TSFTR); 135f1d2b4d3SLarry Finger 136f1d2b4d3SLarry Finger *((u64 *) (val)) = tsf; 137f1d2b4d3SLarry Finger 138f1d2b4d3SLarry Finger break; 139f1d2b4d3SLarry Finger } 1401cc49a5bSLarry Finger case HAL_DEF_WOWLAN: 1411cc49a5bSLarry Finger break; 142f1d2b4d3SLarry Finger default: 143*e40a0056SLarry Finger pr_err("switch case %#x not processed\n", variable); 144f1d2b4d3SLarry Finger break; 145f1d2b4d3SLarry Finger } 146f1d2b4d3SLarry Finger } 147f1d2b4d3SLarry Finger 148f1d2b4d3SLarry Finger void rtl92ce_set_hw_reg(struct ieee80211_hw *hw, u8 variable, u8 *val) 149f1d2b4d3SLarry Finger { 150f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 151f1d2b4d3SLarry Finger struct rtl_pci_priv *rtlpcipriv = rtl_pcipriv(hw); 152f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 153f1d2b4d3SLarry Finger struct rtl_mac *mac = rtl_mac(rtl_priv(hw)); 154f1d2b4d3SLarry Finger struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw)); 155f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw)); 156f1d2b4d3SLarry Finger struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw)); 157f1d2b4d3SLarry Finger u8 idx; 158f1d2b4d3SLarry Finger 159f1d2b4d3SLarry Finger switch (variable) { 160f1d2b4d3SLarry Finger case HW_VAR_ETHER_ADDR:{ 161f1d2b4d3SLarry Finger for (idx = 0; idx < ETH_ALEN; idx++) { 162f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, (REG_MACID + idx), 163f1d2b4d3SLarry Finger val[idx]); 164f1d2b4d3SLarry Finger } 165f1d2b4d3SLarry Finger break; 166f1d2b4d3SLarry Finger } 167f1d2b4d3SLarry Finger case HW_VAR_BASIC_RATE:{ 168f1d2b4d3SLarry Finger u16 rate_cfg = ((u16 *) val)[0]; 169f1d2b4d3SLarry Finger u8 rate_index = 0; 170f1d2b4d3SLarry Finger rate_cfg &= 0x15f; 171f1d2b4d3SLarry Finger rate_cfg |= 0x01; 172f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_RRSR, rate_cfg & 0xff); 173f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_RRSR + 1, 174f1d2b4d3SLarry Finger (rate_cfg >> 8) & 0xff); 175f1d2b4d3SLarry Finger while (rate_cfg > 0x1) { 176f1d2b4d3SLarry Finger rate_cfg = (rate_cfg >> 1); 177f1d2b4d3SLarry Finger rate_index++; 178f1d2b4d3SLarry Finger } 179f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_INIRTS_RATE_SEL, 180f1d2b4d3SLarry Finger rate_index); 181f1d2b4d3SLarry Finger break; 182f1d2b4d3SLarry Finger } 183f1d2b4d3SLarry Finger case HW_VAR_BSSID:{ 184f1d2b4d3SLarry Finger for (idx = 0; idx < ETH_ALEN; idx++) { 185f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, (REG_BSSID + idx), 186f1d2b4d3SLarry Finger val[idx]); 187f1d2b4d3SLarry Finger } 188f1d2b4d3SLarry Finger break; 189f1d2b4d3SLarry Finger } 190f1d2b4d3SLarry Finger case HW_VAR_SIFS:{ 191f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SIFS_CTX + 1, val[0]); 192f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SIFS_TRX + 1, val[1]); 193f1d2b4d3SLarry Finger 194f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SPEC_SIFS + 1, val[0]); 195f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_MAC_SPEC_SIFS + 1, val[0]); 196f1d2b4d3SLarry Finger 197f1d2b4d3SLarry Finger if (!mac->ht_enable) 198f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_RESP_SIFS_OFDM, 199f1d2b4d3SLarry Finger 0x0e0e); 200f1d2b4d3SLarry Finger else 201f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_RESP_SIFS_OFDM, 202f1d2b4d3SLarry Finger *((u16 *) val)); 203f1d2b4d3SLarry Finger break; 204f1d2b4d3SLarry Finger } 205f1d2b4d3SLarry Finger case HW_VAR_SLOT_TIME:{ 206f1d2b4d3SLarry Finger u8 e_aci; 207f1d2b4d3SLarry Finger 208f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_MLME, DBG_LOUD, 209f1d2b4d3SLarry Finger "HW_VAR_SLOT_TIME %x\n", val[0]); 210f1d2b4d3SLarry Finger 211f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SLOT, val[0]); 212f1d2b4d3SLarry Finger 213f1d2b4d3SLarry Finger for (e_aci = 0; e_aci < AC_MAX; e_aci++) { 214f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, 215f1d2b4d3SLarry Finger HW_VAR_AC_PARAM, 216f1d2b4d3SLarry Finger &e_aci); 217f1d2b4d3SLarry Finger } 218f1d2b4d3SLarry Finger break; 219f1d2b4d3SLarry Finger } 220f1d2b4d3SLarry Finger case HW_VAR_ACK_PREAMBLE:{ 221f1d2b4d3SLarry Finger u8 reg_tmp; 222f1d2b4d3SLarry Finger u8 short_preamble = (bool)*val; 223f1d2b4d3SLarry Finger reg_tmp = (mac->cur_40_prime_sc) << 5; 224f1d2b4d3SLarry Finger if (short_preamble) 225f1d2b4d3SLarry Finger reg_tmp |= 0x80; 226f1d2b4d3SLarry Finger 227f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_RRSR + 2, reg_tmp); 228f1d2b4d3SLarry Finger break; 229f1d2b4d3SLarry Finger } 230f1d2b4d3SLarry Finger case HW_VAR_AMPDU_MIN_SPACE:{ 231f1d2b4d3SLarry Finger u8 min_spacing_to_set; 232f1d2b4d3SLarry Finger u8 sec_min_space; 233f1d2b4d3SLarry Finger 234f1d2b4d3SLarry Finger min_spacing_to_set = *val; 235f1d2b4d3SLarry Finger if (min_spacing_to_set <= 7) { 236f1d2b4d3SLarry Finger sec_min_space = 0; 237f1d2b4d3SLarry Finger 238f1d2b4d3SLarry Finger if (min_spacing_to_set < sec_min_space) 239f1d2b4d3SLarry Finger min_spacing_to_set = sec_min_space; 240f1d2b4d3SLarry Finger 241f1d2b4d3SLarry Finger mac->min_space_cfg = ((mac->min_space_cfg & 242f1d2b4d3SLarry Finger 0xf8) | 243f1d2b4d3SLarry Finger min_spacing_to_set); 244f1d2b4d3SLarry Finger 245f1d2b4d3SLarry Finger *val = min_spacing_to_set; 246f1d2b4d3SLarry Finger 247f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_MLME, DBG_LOUD, 248f1d2b4d3SLarry Finger "Set HW_VAR_AMPDU_MIN_SPACE: %#x\n", 249f1d2b4d3SLarry Finger mac->min_space_cfg); 250f1d2b4d3SLarry Finger 251f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_AMPDU_MIN_SPACE, 252f1d2b4d3SLarry Finger mac->min_space_cfg); 253f1d2b4d3SLarry Finger } 254f1d2b4d3SLarry Finger break; 255f1d2b4d3SLarry Finger } 256f1d2b4d3SLarry Finger case HW_VAR_SHORTGI_DENSITY:{ 257f1d2b4d3SLarry Finger u8 density_to_set; 258f1d2b4d3SLarry Finger 259f1d2b4d3SLarry Finger density_to_set = *val; 260f1d2b4d3SLarry Finger mac->min_space_cfg |= (density_to_set << 3); 261f1d2b4d3SLarry Finger 262f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_MLME, DBG_LOUD, 263f1d2b4d3SLarry Finger "Set HW_VAR_SHORTGI_DENSITY: %#x\n", 264f1d2b4d3SLarry Finger mac->min_space_cfg); 265f1d2b4d3SLarry Finger 266f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_AMPDU_MIN_SPACE, 267f1d2b4d3SLarry Finger mac->min_space_cfg); 268f1d2b4d3SLarry Finger 269f1d2b4d3SLarry Finger break; 270f1d2b4d3SLarry Finger } 271f1d2b4d3SLarry Finger case HW_VAR_AMPDU_FACTOR:{ 272f1d2b4d3SLarry Finger u8 regtoset_normal[4] = {0x41, 0xa8, 0x72, 0xb9}; 273f1d2b4d3SLarry Finger u8 regtoset_bt[4] = {0x31, 0x74, 0x42, 0x97}; 274f1d2b4d3SLarry Finger 275f1d2b4d3SLarry Finger u8 factor_toset; 276f1d2b4d3SLarry Finger u8 *p_regtoset = NULL; 277f1d2b4d3SLarry Finger u8 index = 0; 278f1d2b4d3SLarry Finger 279f1d2b4d3SLarry Finger if ((rtlpcipriv->bt_coexist.bt_coexistence) && 280f1d2b4d3SLarry Finger (rtlpcipriv->bt_coexist.bt_coexist_type == 281f1d2b4d3SLarry Finger BT_CSR_BC4)) 282f1d2b4d3SLarry Finger p_regtoset = regtoset_bt; 283f1d2b4d3SLarry Finger else 284f1d2b4d3SLarry Finger p_regtoset = regtoset_normal; 285f1d2b4d3SLarry Finger 286f1d2b4d3SLarry Finger factor_toset = *(val); 287f1d2b4d3SLarry Finger if (factor_toset <= 3) { 288f1d2b4d3SLarry Finger factor_toset = (1 << (factor_toset + 2)); 289f1d2b4d3SLarry Finger if (factor_toset > 0xf) 290f1d2b4d3SLarry Finger factor_toset = 0xf; 291f1d2b4d3SLarry Finger 292f1d2b4d3SLarry Finger for (index = 0; index < 4; index++) { 293f1d2b4d3SLarry Finger if ((p_regtoset[index] & 0xf0) > 294f1d2b4d3SLarry Finger (factor_toset << 4)) 295f1d2b4d3SLarry Finger p_regtoset[index] = 296f1d2b4d3SLarry Finger (p_regtoset[index] & 0x0f) | 297f1d2b4d3SLarry Finger (factor_toset << 4); 298f1d2b4d3SLarry Finger 299f1d2b4d3SLarry Finger if ((p_regtoset[index] & 0x0f) > 300f1d2b4d3SLarry Finger factor_toset) 301f1d2b4d3SLarry Finger p_regtoset[index] = 302f1d2b4d3SLarry Finger (p_regtoset[index] & 0xf0) | 303f1d2b4d3SLarry Finger (factor_toset); 304f1d2b4d3SLarry Finger 305f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 306f1d2b4d3SLarry Finger (REG_AGGLEN_LMT + index), 307f1d2b4d3SLarry Finger p_regtoset[index]); 308f1d2b4d3SLarry Finger 309f1d2b4d3SLarry Finger } 310f1d2b4d3SLarry Finger 311f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_MLME, DBG_LOUD, 312f1d2b4d3SLarry Finger "Set HW_VAR_AMPDU_FACTOR: %#x\n", 313f1d2b4d3SLarry Finger factor_toset); 314f1d2b4d3SLarry Finger } 315f1d2b4d3SLarry Finger break; 316f1d2b4d3SLarry Finger } 317f1d2b4d3SLarry Finger case HW_VAR_AC_PARAM:{ 318f1d2b4d3SLarry Finger u8 e_aci = *(val); 319f1d2b4d3SLarry Finger rtl92c_dm_init_edca_turbo(hw); 320f1d2b4d3SLarry Finger 321f1d2b4d3SLarry Finger if (rtlpci->acm_method != EACMWAY2_SW) 322f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, 323f1d2b4d3SLarry Finger HW_VAR_ACM_CTRL, 324f1d2b4d3SLarry Finger (&e_aci)); 325f1d2b4d3SLarry Finger break; 326f1d2b4d3SLarry Finger } 327f1d2b4d3SLarry Finger case HW_VAR_ACM_CTRL:{ 328f1d2b4d3SLarry Finger u8 e_aci = *(val); 329f1d2b4d3SLarry Finger union aci_aifsn *p_aci_aifsn = 330f1d2b4d3SLarry Finger (union aci_aifsn *)(&(mac->ac[0].aifs)); 331f1d2b4d3SLarry Finger u8 acm = p_aci_aifsn->f.acm; 332f1d2b4d3SLarry Finger u8 acm_ctrl = rtl_read_byte(rtlpriv, REG_ACMHWCTRL); 333f1d2b4d3SLarry Finger 334f1d2b4d3SLarry Finger acm_ctrl = 335f1d2b4d3SLarry Finger acm_ctrl | ((rtlpci->acm_method == 2) ? 0x0 : 0x1); 336f1d2b4d3SLarry Finger 337f1d2b4d3SLarry Finger if (acm) { 338f1d2b4d3SLarry Finger switch (e_aci) { 339f1d2b4d3SLarry Finger case AC0_BE: 340f1d2b4d3SLarry Finger acm_ctrl |= AcmHw_BeqEn; 341f1d2b4d3SLarry Finger break; 342f1d2b4d3SLarry Finger case AC2_VI: 343f1d2b4d3SLarry Finger acm_ctrl |= AcmHw_ViqEn; 344f1d2b4d3SLarry Finger break; 345f1d2b4d3SLarry Finger case AC3_VO: 346f1d2b4d3SLarry Finger acm_ctrl |= AcmHw_VoqEn; 347f1d2b4d3SLarry Finger break; 348f1d2b4d3SLarry Finger default: 349f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING, 350f1d2b4d3SLarry Finger "HW_VAR_ACM_CTRL acm set failed: eACI is %d\n", 351f1d2b4d3SLarry Finger acm); 352f1d2b4d3SLarry Finger break; 353f1d2b4d3SLarry Finger } 354f1d2b4d3SLarry Finger } else { 355f1d2b4d3SLarry Finger switch (e_aci) { 356f1d2b4d3SLarry Finger case AC0_BE: 357f1d2b4d3SLarry Finger acm_ctrl &= (~AcmHw_BeqEn); 358f1d2b4d3SLarry Finger break; 359f1d2b4d3SLarry Finger case AC2_VI: 360f1d2b4d3SLarry Finger acm_ctrl &= (~AcmHw_ViqEn); 361f1d2b4d3SLarry Finger break; 362f1d2b4d3SLarry Finger case AC3_VO: 363f1d2b4d3SLarry Finger acm_ctrl &= (~AcmHw_VoqEn); 364f1d2b4d3SLarry Finger break; 365f1d2b4d3SLarry Finger default: 366*e40a0056SLarry Finger pr_err("switch case %#x not processed\n", 367ad574889SJoe Perches e_aci); 368f1d2b4d3SLarry Finger break; 369f1d2b4d3SLarry Finger } 370f1d2b4d3SLarry Finger } 371f1d2b4d3SLarry Finger 372f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_QOS, DBG_TRACE, 373f1d2b4d3SLarry Finger "SetHwReg8190pci(): [HW_VAR_ACM_CTRL] Write 0x%X\n", 374f1d2b4d3SLarry Finger acm_ctrl); 375f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_ACMHWCTRL, acm_ctrl); 376f1d2b4d3SLarry Finger break; 377f1d2b4d3SLarry Finger } 378f1d2b4d3SLarry Finger case HW_VAR_RCR:{ 379f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RCR, ((u32 *) (val))[0]); 380f1d2b4d3SLarry Finger rtlpci->receive_config = ((u32 *) (val))[0]; 381f1d2b4d3SLarry Finger break; 382f1d2b4d3SLarry Finger } 383f1d2b4d3SLarry Finger case HW_VAR_RETRY_LIMIT:{ 384f1d2b4d3SLarry Finger u8 retry_limit = val[0]; 385f1d2b4d3SLarry Finger 386f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_RL, 387f1d2b4d3SLarry Finger retry_limit << RETRY_LIMIT_SHORT_SHIFT | 388f1d2b4d3SLarry Finger retry_limit << RETRY_LIMIT_LONG_SHIFT); 389f1d2b4d3SLarry Finger break; 390f1d2b4d3SLarry Finger } 391f1d2b4d3SLarry Finger case HW_VAR_DUAL_TSF_RST: 392f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_DUAL_TSF_RST, (BIT(0) | BIT(1))); 393f1d2b4d3SLarry Finger break; 394f1d2b4d3SLarry Finger case HW_VAR_EFUSE_BYTES: 395f1d2b4d3SLarry Finger rtlefuse->efuse_usedbytes = *((u16 *) val); 396f1d2b4d3SLarry Finger break; 397f1d2b4d3SLarry Finger case HW_VAR_EFUSE_USAGE: 398f1d2b4d3SLarry Finger rtlefuse->efuse_usedpercentage = *val; 399f1d2b4d3SLarry Finger break; 400f1d2b4d3SLarry Finger case HW_VAR_IO_CMD: 401f1d2b4d3SLarry Finger rtl92c_phy_set_io_cmd(hw, (*(enum io_type *)val)); 402f1d2b4d3SLarry Finger break; 403f1d2b4d3SLarry Finger case HW_VAR_WPA_CONFIG: 404f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SECCFG, *val); 405f1d2b4d3SLarry Finger break; 406f1d2b4d3SLarry Finger case HW_VAR_SET_RPWM:{ 407f1d2b4d3SLarry Finger u8 rpwm_val; 408f1d2b4d3SLarry Finger 409f1d2b4d3SLarry Finger rpwm_val = rtl_read_byte(rtlpriv, REG_PCIE_HRPWM); 410f1d2b4d3SLarry Finger udelay(1); 411f1d2b4d3SLarry Finger 412f1d2b4d3SLarry Finger if (rpwm_val & BIT(7)) { 413f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_PCIE_HRPWM, *val); 414f1d2b4d3SLarry Finger } else { 415f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_PCIE_HRPWM, 416f1d2b4d3SLarry Finger *val | BIT(7)); 417f1d2b4d3SLarry Finger } 418f1d2b4d3SLarry Finger 419f1d2b4d3SLarry Finger break; 420f1d2b4d3SLarry Finger } 421f1d2b4d3SLarry Finger case HW_VAR_H2C_FW_PWRMODE:{ 422f1d2b4d3SLarry Finger u8 psmode = *val; 423f1d2b4d3SLarry Finger 424f1d2b4d3SLarry Finger if ((psmode != FW_PS_ACTIVE_MODE) && 425f1d2b4d3SLarry Finger (!IS_92C_SERIAL(rtlhal->version))) { 426f1d2b4d3SLarry Finger rtl92c_dm_rf_saving(hw, true); 427f1d2b4d3SLarry Finger } 428f1d2b4d3SLarry Finger 429f1d2b4d3SLarry Finger rtl92c_set_fw_pwrmode_cmd(hw, *val); 430f1d2b4d3SLarry Finger break; 431f1d2b4d3SLarry Finger } 432f1d2b4d3SLarry Finger case HW_VAR_FW_PSMODE_STATUS: 433f1d2b4d3SLarry Finger ppsc->fw_current_inpsmode = *((bool *) val); 434f1d2b4d3SLarry Finger break; 435f1d2b4d3SLarry Finger case HW_VAR_H2C_FW_JOINBSSRPT:{ 436f1d2b4d3SLarry Finger u8 mstatus = *val; 437f1d2b4d3SLarry Finger u8 tmp_regcr, tmp_reg422; 438f1d2b4d3SLarry Finger bool recover = false; 439f1d2b4d3SLarry Finger 440f1d2b4d3SLarry Finger if (mstatus == RT_MEDIA_CONNECT) { 441f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_AID, 442f1d2b4d3SLarry Finger NULL); 443f1d2b4d3SLarry Finger 444f1d2b4d3SLarry Finger tmp_regcr = rtl_read_byte(rtlpriv, REG_CR + 1); 445f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_CR + 1, 446f1d2b4d3SLarry Finger (tmp_regcr | BIT(0))); 447f1d2b4d3SLarry Finger 448f1d2b4d3SLarry Finger _rtl92ce_set_bcn_ctrl_reg(hw, 0, BIT(3)); 449f1d2b4d3SLarry Finger _rtl92ce_set_bcn_ctrl_reg(hw, BIT(4), 0); 450f1d2b4d3SLarry Finger 451f1d2b4d3SLarry Finger tmp_reg422 = 452f1d2b4d3SLarry Finger rtl_read_byte(rtlpriv, 453f1d2b4d3SLarry Finger REG_FWHW_TXQ_CTRL + 2); 454f1d2b4d3SLarry Finger if (tmp_reg422 & BIT(6)) 455f1d2b4d3SLarry Finger recover = true; 456f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 2, 457f1d2b4d3SLarry Finger tmp_reg422 & (~BIT(6))); 458f1d2b4d3SLarry Finger 459f1d2b4d3SLarry Finger rtl92c_set_fw_rsvdpagepkt(hw, NULL); 460f1d2b4d3SLarry Finger 461f1d2b4d3SLarry Finger _rtl92ce_set_bcn_ctrl_reg(hw, BIT(3), 0); 462f1d2b4d3SLarry Finger _rtl92ce_set_bcn_ctrl_reg(hw, 0, BIT(4)); 463f1d2b4d3SLarry Finger 464f1d2b4d3SLarry Finger if (recover) { 465f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 466f1d2b4d3SLarry Finger REG_FWHW_TXQ_CTRL + 2, 467f1d2b4d3SLarry Finger tmp_reg422); 468f1d2b4d3SLarry Finger } 469f1d2b4d3SLarry Finger 470f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_CR + 1, 471f1d2b4d3SLarry Finger (tmp_regcr & ~(BIT(0)))); 472f1d2b4d3SLarry Finger } 473f1d2b4d3SLarry Finger rtl92c_set_fw_joinbss_report_cmd(hw, *val); 474f1d2b4d3SLarry Finger 475f1d2b4d3SLarry Finger break; 476f1d2b4d3SLarry Finger } 477f1d2b4d3SLarry Finger case HW_VAR_H2C_FW_P2P_PS_OFFLOAD: 478f1d2b4d3SLarry Finger rtl92c_set_p2p_ps_offload_cmd(hw, *val); 479f1d2b4d3SLarry Finger break; 480f1d2b4d3SLarry Finger case HW_VAR_AID:{ 481f1d2b4d3SLarry Finger u16 u2btmp; 482f1d2b4d3SLarry Finger u2btmp = rtl_read_word(rtlpriv, REG_BCN_PSR_RPT); 483f1d2b4d3SLarry Finger u2btmp &= 0xC000; 484f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_BCN_PSR_RPT, (u2btmp | 485f1d2b4d3SLarry Finger mac->assoc_id)); 486f1d2b4d3SLarry Finger 487f1d2b4d3SLarry Finger break; 488f1d2b4d3SLarry Finger } 489f1d2b4d3SLarry Finger case HW_VAR_CORRECT_TSF:{ 490f1d2b4d3SLarry Finger u8 btype_ibss = val[0]; 491f1d2b4d3SLarry Finger 492f1d2b4d3SLarry Finger if (btype_ibss) 493f1d2b4d3SLarry Finger _rtl92ce_stop_tx_beacon(hw); 494f1d2b4d3SLarry Finger 495f1d2b4d3SLarry Finger _rtl92ce_set_bcn_ctrl_reg(hw, 0, BIT(3)); 496f1d2b4d3SLarry Finger 497f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_TSFTR, 498f1d2b4d3SLarry Finger (u32) (mac->tsf & 0xffffffff)); 499f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_TSFTR + 4, 500f1d2b4d3SLarry Finger (u32) ((mac->tsf >> 32) & 0xffffffff)); 501f1d2b4d3SLarry Finger 502f1d2b4d3SLarry Finger _rtl92ce_set_bcn_ctrl_reg(hw, BIT(3), 0); 503f1d2b4d3SLarry Finger 504f1d2b4d3SLarry Finger if (btype_ibss) 505f1d2b4d3SLarry Finger _rtl92ce_resume_tx_beacon(hw); 506f1d2b4d3SLarry Finger 507f1d2b4d3SLarry Finger break; 508f1d2b4d3SLarry Finger 509f1d2b4d3SLarry Finger } 510f1d2b4d3SLarry Finger case HW_VAR_FW_LPS_ACTION: { 511f1d2b4d3SLarry Finger bool enter_fwlps = *((bool *)val); 512f1d2b4d3SLarry Finger u8 rpwm_val, fw_pwrmode; 513f1d2b4d3SLarry Finger bool fw_current_inps; 514f1d2b4d3SLarry Finger 515f1d2b4d3SLarry Finger if (enter_fwlps) { 516f1d2b4d3SLarry Finger rpwm_val = 0x02; /* RF off */ 517f1d2b4d3SLarry Finger fw_current_inps = true; 518f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, 519f1d2b4d3SLarry Finger HW_VAR_FW_PSMODE_STATUS, 520f1d2b4d3SLarry Finger (u8 *)(&fw_current_inps)); 521f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, 522f1d2b4d3SLarry Finger HW_VAR_H2C_FW_PWRMODE, 523f1d2b4d3SLarry Finger &ppsc->fwctrl_psmode); 524f1d2b4d3SLarry Finger 525f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, 526f1d2b4d3SLarry Finger HW_VAR_SET_RPWM, 527f1d2b4d3SLarry Finger &rpwm_val); 528f1d2b4d3SLarry Finger } else { 529f1d2b4d3SLarry Finger rpwm_val = 0x0C; /* RF on */ 530f1d2b4d3SLarry Finger fw_pwrmode = FW_PS_ACTIVE_MODE; 531f1d2b4d3SLarry Finger fw_current_inps = false; 532f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, 533f1d2b4d3SLarry Finger HW_VAR_SET_RPWM, 534f1d2b4d3SLarry Finger &rpwm_val); 535f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, 536f1d2b4d3SLarry Finger HW_VAR_H2C_FW_PWRMODE, 537f1d2b4d3SLarry Finger &fw_pwrmode); 538f1d2b4d3SLarry Finger 539f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, 540f1d2b4d3SLarry Finger HW_VAR_FW_PSMODE_STATUS, 541f1d2b4d3SLarry Finger (u8 *)(&fw_current_inps)); 542f1d2b4d3SLarry Finger } 543f1d2b4d3SLarry Finger break; } 544f1d2b4d3SLarry Finger case HW_VAR_KEEP_ALIVE: { 545f1d2b4d3SLarry Finger u8 array[2]; 546f1d2b4d3SLarry Finger 547f1d2b4d3SLarry Finger array[0] = 0xff; 548f1d2b4d3SLarry Finger array[1] = *((u8 *)val); 549f1d2b4d3SLarry Finger rtl92c_fill_h2c_cmd(hw, H2C_92C_KEEP_ALIVE_CTRL, 2, array); 550f1d2b4d3SLarry Finger break; } 551f1d2b4d3SLarry Finger default: 552*e40a0056SLarry Finger pr_err("switch case %d not processed\n", variable); 553f1d2b4d3SLarry Finger break; 554f1d2b4d3SLarry Finger } 555f1d2b4d3SLarry Finger } 556f1d2b4d3SLarry Finger 557f1d2b4d3SLarry Finger static bool _rtl92ce_llt_write(struct ieee80211_hw *hw, u32 address, u32 data) 558f1d2b4d3SLarry Finger { 559f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 560f1d2b4d3SLarry Finger bool status = true; 561f1d2b4d3SLarry Finger long count = 0; 562f1d2b4d3SLarry Finger u32 value = _LLT_INIT_ADDR(address) | 563f1d2b4d3SLarry Finger _LLT_INIT_DATA(data) | _LLT_OP(_LLT_WRITE_ACCESS); 564f1d2b4d3SLarry Finger 565f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_LLT_INIT, value); 566f1d2b4d3SLarry Finger 567f1d2b4d3SLarry Finger do { 568f1d2b4d3SLarry Finger value = rtl_read_dword(rtlpriv, REG_LLT_INIT); 569f1d2b4d3SLarry Finger if (_LLT_NO_ACTIVE == _LLT_OP_VALUE(value)) 570f1d2b4d3SLarry Finger break; 571f1d2b4d3SLarry Finger 572f1d2b4d3SLarry Finger if (count > POLLING_LLT_THRESHOLD) { 573*e40a0056SLarry Finger pr_err("Failed to polling write LLT done at address %d!\n", 574f1d2b4d3SLarry Finger address); 575f1d2b4d3SLarry Finger status = false; 576f1d2b4d3SLarry Finger break; 577f1d2b4d3SLarry Finger } 578f1d2b4d3SLarry Finger } while (++count); 579f1d2b4d3SLarry Finger 580f1d2b4d3SLarry Finger return status; 581f1d2b4d3SLarry Finger } 582f1d2b4d3SLarry Finger 583f1d2b4d3SLarry Finger static bool _rtl92ce_llt_table_init(struct ieee80211_hw *hw) 584f1d2b4d3SLarry Finger { 585f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 586f1d2b4d3SLarry Finger unsigned short i; 587f1d2b4d3SLarry Finger u8 txpktbuf_bndy; 588f1d2b4d3SLarry Finger u8 maxPage; 589f1d2b4d3SLarry Finger bool status; 590f1d2b4d3SLarry Finger 591f1d2b4d3SLarry Finger #if LLT_CONFIG == 1 592f1d2b4d3SLarry Finger maxPage = 255; 593f1d2b4d3SLarry Finger txpktbuf_bndy = 252; 594f1d2b4d3SLarry Finger #elif LLT_CONFIG == 2 595f1d2b4d3SLarry Finger maxPage = 127; 596f1d2b4d3SLarry Finger txpktbuf_bndy = 124; 597f1d2b4d3SLarry Finger #elif LLT_CONFIG == 3 598f1d2b4d3SLarry Finger maxPage = 255; 599f1d2b4d3SLarry Finger txpktbuf_bndy = 174; 600f1d2b4d3SLarry Finger #elif LLT_CONFIG == 4 601f1d2b4d3SLarry Finger maxPage = 255; 602f1d2b4d3SLarry Finger txpktbuf_bndy = 246; 603f1d2b4d3SLarry Finger #elif LLT_CONFIG == 5 604f1d2b4d3SLarry Finger maxPage = 255; 605f1d2b4d3SLarry Finger txpktbuf_bndy = 246; 606f1d2b4d3SLarry Finger #endif 607f1d2b4d3SLarry Finger 608f1d2b4d3SLarry Finger #if LLT_CONFIG == 1 609f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_RQPN_NPQ, 0x1c); 610f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RQPN, 0x80a71c1c); 611f1d2b4d3SLarry Finger #elif LLT_CONFIG == 2 612f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RQPN, 0x845B1010); 613f1d2b4d3SLarry Finger #elif LLT_CONFIG == 3 614f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RQPN, 0x84838484); 615f1d2b4d3SLarry Finger #elif LLT_CONFIG == 4 616f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RQPN, 0x80bd1c1c); 617f1d2b4d3SLarry Finger #elif LLT_CONFIG == 5 618f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_RQPN_NPQ, 0x0000); 619f1d2b4d3SLarry Finger 620f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RQPN, 0x80b01c29); 621f1d2b4d3SLarry Finger #endif 622f1d2b4d3SLarry Finger 623f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_TRXFF_BNDY, (0x27FF0000 | txpktbuf_bndy)); 624f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_TDECTRL + 1, txpktbuf_bndy); 625f1d2b4d3SLarry Finger 626f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_TXPKTBUF_BCNQ_BDNY, txpktbuf_bndy); 627f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_TXPKTBUF_MGQ_BDNY, txpktbuf_bndy); 628f1d2b4d3SLarry Finger 629f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x45D, txpktbuf_bndy); 630f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_PBP, 0x11); 631f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_RX_DRVINFO_SZ, 0x4); 632f1d2b4d3SLarry Finger 633f1d2b4d3SLarry Finger for (i = 0; i < (txpktbuf_bndy - 1); i++) { 634f1d2b4d3SLarry Finger status = _rtl92ce_llt_write(hw, i, i + 1); 635f1d2b4d3SLarry Finger if (true != status) 636f1d2b4d3SLarry Finger return status; 637f1d2b4d3SLarry Finger } 638f1d2b4d3SLarry Finger 639f1d2b4d3SLarry Finger status = _rtl92ce_llt_write(hw, (txpktbuf_bndy - 1), 0xFF); 640f1d2b4d3SLarry Finger if (true != status) 641f1d2b4d3SLarry Finger return status; 642f1d2b4d3SLarry Finger 643f1d2b4d3SLarry Finger for (i = txpktbuf_bndy; i < maxPage; i++) { 644f1d2b4d3SLarry Finger status = _rtl92ce_llt_write(hw, i, (i + 1)); 645f1d2b4d3SLarry Finger if (true != status) 646f1d2b4d3SLarry Finger return status; 647f1d2b4d3SLarry Finger } 648f1d2b4d3SLarry Finger 649f1d2b4d3SLarry Finger status = _rtl92ce_llt_write(hw, maxPage, txpktbuf_bndy); 650f1d2b4d3SLarry Finger if (true != status) 651f1d2b4d3SLarry Finger return status; 652f1d2b4d3SLarry Finger 653f1d2b4d3SLarry Finger return true; 654f1d2b4d3SLarry Finger } 655f1d2b4d3SLarry Finger 656f1d2b4d3SLarry Finger static void _rtl92ce_gen_refresh_led_state(struct ieee80211_hw *hw) 657f1d2b4d3SLarry Finger { 658f1d2b4d3SLarry Finger struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw); 659f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 660f1d2b4d3SLarry Finger struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw)); 661f1d2b4d3SLarry Finger struct rtl_led *pLed0 = &(pcipriv->ledctl.sw_led0); 662f1d2b4d3SLarry Finger 663f1d2b4d3SLarry Finger if (rtlpci->up_first_time) 664f1d2b4d3SLarry Finger return; 665f1d2b4d3SLarry Finger 666f1d2b4d3SLarry Finger if (ppsc->rfoff_reason == RF_CHANGE_BY_IPS) 667f1d2b4d3SLarry Finger rtl92ce_sw_led_on(hw, pLed0); 668f1d2b4d3SLarry Finger else if (ppsc->rfoff_reason == RF_CHANGE_BY_INIT) 669f1d2b4d3SLarry Finger rtl92ce_sw_led_on(hw, pLed0); 670f1d2b4d3SLarry Finger else 671f1d2b4d3SLarry Finger rtl92ce_sw_led_off(hw, pLed0); 672f1d2b4d3SLarry Finger } 673f1d2b4d3SLarry Finger 674f1d2b4d3SLarry Finger static bool _rtl92ce_init_mac(struct ieee80211_hw *hw) 675f1d2b4d3SLarry Finger { 676f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 677f1d2b4d3SLarry Finger struct rtl_pci_priv *rtlpcipriv = rtl_pcipriv(hw); 678f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 679f1d2b4d3SLarry Finger struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw)); 680f1d2b4d3SLarry Finger 681f1d2b4d3SLarry Finger unsigned char bytetmp; 682f1d2b4d3SLarry Finger unsigned short wordtmp; 683f1d2b4d3SLarry Finger u16 retry; 684f1d2b4d3SLarry Finger 685f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_RSV_CTRL, 0x00); 686f1d2b4d3SLarry Finger if (rtlpcipriv->bt_coexist.bt_coexistence) { 687f1d2b4d3SLarry Finger u32 value32; 688f1d2b4d3SLarry Finger value32 = rtl_read_dword(rtlpriv, REG_APS_FSMCO); 689f1d2b4d3SLarry Finger value32 |= (SOP_ABG | SOP_AMB | XOP_BTCK); 690f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_APS_FSMCO, value32); 691f1d2b4d3SLarry Finger } 692f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SPS0_CTRL, 0x2b); 693f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_AFE_XTAL_CTRL, 0x0F); 694f1d2b4d3SLarry Finger 695f1d2b4d3SLarry Finger if (rtlpcipriv->bt_coexist.bt_coexistence) { 696f1d2b4d3SLarry Finger u32 u4b_tmp = rtl_read_dword(rtlpriv, REG_AFE_XTAL_CTRL); 697f1d2b4d3SLarry Finger 698f1d2b4d3SLarry Finger u4b_tmp &= (~0x00024800); 699f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_AFE_XTAL_CTRL, u4b_tmp); 700f1d2b4d3SLarry Finger } 701f1d2b4d3SLarry Finger 702f1d2b4d3SLarry Finger bytetmp = rtl_read_byte(rtlpriv, REG_APS_FSMCO + 1) | BIT(0); 703f1d2b4d3SLarry Finger udelay(2); 704f1d2b4d3SLarry Finger 705f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_APS_FSMCO + 1, bytetmp); 706f1d2b4d3SLarry Finger udelay(2); 707f1d2b4d3SLarry Finger 708f1d2b4d3SLarry Finger bytetmp = rtl_read_byte(rtlpriv, REG_APS_FSMCO + 1); 709f1d2b4d3SLarry Finger udelay(2); 710f1d2b4d3SLarry Finger 711f1d2b4d3SLarry Finger retry = 0; 712f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD, "reg0xec:%x:%x\n", 713f1d2b4d3SLarry Finger rtl_read_dword(rtlpriv, 0xEC), bytetmp); 714f1d2b4d3SLarry Finger 715f1d2b4d3SLarry Finger while ((bytetmp & BIT(0)) && retry < 1000) { 716f1d2b4d3SLarry Finger retry++; 717f1d2b4d3SLarry Finger udelay(50); 718f1d2b4d3SLarry Finger bytetmp = rtl_read_byte(rtlpriv, REG_APS_FSMCO + 1); 719f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD, "reg0xec:%x:%x\n", 720f1d2b4d3SLarry Finger rtl_read_dword(rtlpriv, 0xEC), bytetmp); 721f1d2b4d3SLarry Finger udelay(50); 722f1d2b4d3SLarry Finger } 723f1d2b4d3SLarry Finger 724f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_APS_FSMCO, 0x1012); 725f1d2b4d3SLarry Finger 726f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SYS_ISO_CTRL + 1, 0x82); 727f1d2b4d3SLarry Finger udelay(2); 728f1d2b4d3SLarry Finger 729f1d2b4d3SLarry Finger if (rtlpcipriv->bt_coexist.bt_coexistence) { 730f1d2b4d3SLarry Finger bytetmp = rtl_read_byte(rtlpriv, REG_AFE_XTAL_CTRL+2) & 0xfd; 731f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_AFE_XTAL_CTRL+2, bytetmp); 732f1d2b4d3SLarry Finger } 733f1d2b4d3SLarry Finger 734f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_CR, 0x2ff); 735f1d2b4d3SLarry Finger 736f1d2b4d3SLarry Finger if (!_rtl92ce_llt_table_init(hw)) 737f1d2b4d3SLarry Finger return false; 738f1d2b4d3SLarry Finger 739f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_HISR, 0xffffffff); 740f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_HISRE, 0xff); 741f1d2b4d3SLarry Finger 742f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_TRXFF_BNDY + 2, 0x27ff); 743f1d2b4d3SLarry Finger 744f1d2b4d3SLarry Finger wordtmp = rtl_read_word(rtlpriv, REG_TRXDMA_CTRL); 745f1d2b4d3SLarry Finger wordtmp &= 0xf; 746f1d2b4d3SLarry Finger wordtmp |= 0xF771; 747f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_TRXDMA_CTRL, wordtmp); 748f1d2b4d3SLarry Finger 749f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_FWHW_TXQ_CTRL + 1, 0x1F); 750f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RCR, rtlpci->receive_config); 751f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_TCR, rtlpci->transmit_config); 752f1d2b4d3SLarry Finger 753f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x4d0, 0x0); 754f1d2b4d3SLarry Finger 755f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_BCNQ_DESA, 756f1d2b4d3SLarry Finger ((u64) rtlpci->tx_ring[BEACON_QUEUE].dma) & 757f1d2b4d3SLarry Finger DMA_BIT_MASK(32)); 758f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_MGQ_DESA, 759f1d2b4d3SLarry Finger (u64) rtlpci->tx_ring[MGNT_QUEUE].dma & 760f1d2b4d3SLarry Finger DMA_BIT_MASK(32)); 761f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_VOQ_DESA, 762f1d2b4d3SLarry Finger (u64) rtlpci->tx_ring[VO_QUEUE].dma & DMA_BIT_MASK(32)); 763f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_VIQ_DESA, 764f1d2b4d3SLarry Finger (u64) rtlpci->tx_ring[VI_QUEUE].dma & DMA_BIT_MASK(32)); 765f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_BEQ_DESA, 766f1d2b4d3SLarry Finger (u64) rtlpci->tx_ring[BE_QUEUE].dma & DMA_BIT_MASK(32)); 767f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_BKQ_DESA, 768f1d2b4d3SLarry Finger (u64) rtlpci->tx_ring[BK_QUEUE].dma & DMA_BIT_MASK(32)); 769f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_HQ_DESA, 770f1d2b4d3SLarry Finger (u64) rtlpci->tx_ring[HIGH_QUEUE].dma & 771f1d2b4d3SLarry Finger DMA_BIT_MASK(32)); 772f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RX_DESA, 773f1d2b4d3SLarry Finger (u64) rtlpci->rx_ring[RX_MPDU_QUEUE].dma & 774f1d2b4d3SLarry Finger DMA_BIT_MASK(32)); 775f1d2b4d3SLarry Finger 776f1d2b4d3SLarry Finger if (IS_92C_SERIAL(rtlhal->version)) 777f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 3, 0x77); 778f1d2b4d3SLarry Finger else 779f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_PCIE_CTRL_REG + 3, 0x22); 780f1d2b4d3SLarry Finger 781f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_INT_MIG, 0); 782f1d2b4d3SLarry Finger 783f1d2b4d3SLarry Finger bytetmp = rtl_read_byte(rtlpriv, REG_APSD_CTRL); 784f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_APSD_CTRL, bytetmp & ~BIT(6)); 785f1d2b4d3SLarry Finger do { 786f1d2b4d3SLarry Finger retry++; 787f1d2b4d3SLarry Finger bytetmp = rtl_read_byte(rtlpriv, REG_APSD_CTRL); 788f1d2b4d3SLarry Finger } while ((retry < 200) && (bytetmp & BIT(7))); 789f1d2b4d3SLarry Finger 790f1d2b4d3SLarry Finger _rtl92ce_gen_refresh_led_state(hw); 791f1d2b4d3SLarry Finger 792f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_MCUTST_1, 0x0); 793f1d2b4d3SLarry Finger 794f1d2b4d3SLarry Finger return true; 795f1d2b4d3SLarry Finger } 796f1d2b4d3SLarry Finger 797f1d2b4d3SLarry Finger static void _rtl92ce_hw_configure(struct ieee80211_hw *hw) 798f1d2b4d3SLarry Finger { 799f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 800f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 801f1d2b4d3SLarry Finger struct rtl_pci_priv *rtlpcipriv = rtl_pcipriv(hw); 802f1d2b4d3SLarry Finger u8 reg_bw_opmode; 803f1d2b4d3SLarry Finger u32 reg_prsr; 804f1d2b4d3SLarry Finger 805f1d2b4d3SLarry Finger reg_bw_opmode = BW_OPMODE_20MHZ; 806f1d2b4d3SLarry Finger reg_prsr = RATE_ALL_CCK | RATE_ALL_OFDM_AG; 807f1d2b4d3SLarry Finger 808f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_INIRTS_RATE_SEL, 0x8); 809f1d2b4d3SLarry Finger 810f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_BWOPMODE, reg_bw_opmode); 811f1d2b4d3SLarry Finger 812f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RRSR, reg_prsr); 813f1d2b4d3SLarry Finger 814f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SLOT, 0x09); 815f1d2b4d3SLarry Finger 816f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_AMPDU_MIN_SPACE, 0x0); 817f1d2b4d3SLarry Finger 818f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_FWHW_TXQ_CTRL, 0x1F80); 819f1d2b4d3SLarry Finger 820f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_RL, 0x0707); 821f1d2b4d3SLarry Finger 822f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_BAR_MODE_CTRL, 0x02012802); 823f1d2b4d3SLarry Finger 824f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_HWSEQ_CTRL, 0xFF); 825f1d2b4d3SLarry Finger 826f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_DARFRC, 0x01000000); 827f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_DARFRC + 4, 0x07060504); 828f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RARFRC, 0x01000000); 829f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RARFRC + 4, 0x07060504); 830f1d2b4d3SLarry Finger 831f1d2b4d3SLarry Finger if ((rtlpcipriv->bt_coexist.bt_coexistence) && 832f1d2b4d3SLarry Finger (rtlpcipriv->bt_coexist.bt_coexist_type == BT_CSR_BC4)) 833f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_AGGLEN_LMT, 0x97427431); 834f1d2b4d3SLarry Finger else 835f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_AGGLEN_LMT, 0xb972a841); 836f1d2b4d3SLarry Finger 837f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_ATIMWND, 0x2); 838f1d2b4d3SLarry Finger 839f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_BCN_MAX_ERR, 0xff); 840f1d2b4d3SLarry Finger 841f1d2b4d3SLarry Finger rtlpci->reg_bcn_ctrl_val = 0x1f; 842f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_BCN_CTRL, rtlpci->reg_bcn_ctrl_val); 843f1d2b4d3SLarry Finger 844f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 1, 0xff); 845f1d2b4d3SLarry Finger 846f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_TBTT_PROHIBIT + 1, 0xff); 847f1d2b4d3SLarry Finger 848f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_PIFS, 0x1C); 849f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_AGGR_BREAK_TIME, 0x16); 850f1d2b4d3SLarry Finger 851f1d2b4d3SLarry Finger if ((rtlpcipriv->bt_coexist.bt_coexistence) && 852f1d2b4d3SLarry Finger (rtlpcipriv->bt_coexist.bt_coexist_type == BT_CSR_BC4)) { 853f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_NAV_PROT_LEN, 0x0020); 854f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_PROT_MODE_CTRL, 0x0402); 855f1d2b4d3SLarry Finger } else { 856f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_NAV_PROT_LEN, 0x0020); 857f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_NAV_PROT_LEN, 0x0020); 858f1d2b4d3SLarry Finger } 859f1d2b4d3SLarry Finger 860f1d2b4d3SLarry Finger if ((rtlpcipriv->bt_coexist.bt_coexistence) && 861f1d2b4d3SLarry Finger (rtlpcipriv->bt_coexist.bt_coexist_type == BT_CSR_BC4)) 862f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_FAST_EDCA_CTRL, 0x03086666); 863f1d2b4d3SLarry Finger else 864f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_FAST_EDCA_CTRL, 0x086666); 865f1d2b4d3SLarry Finger 866f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_ACKTO, 0x40); 867f1d2b4d3SLarry Finger 868f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_SPEC_SIFS, 0x1010); 869f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_MAC_SPEC_SIFS, 0x1010); 870f1d2b4d3SLarry Finger 871f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_SIFS_CTX, 0x1010); 872f1d2b4d3SLarry Finger 873f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_SIFS_TRX, 0x1010); 874f1d2b4d3SLarry Finger 875f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_MAR, 0xffffffff); 876f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_MAR + 4, 0xffffffff); 877f1d2b4d3SLarry Finger 878f1d2b4d3SLarry Finger } 879f1d2b4d3SLarry Finger 880f1d2b4d3SLarry Finger static void _rtl92ce_enable_aspm_back_door(struct ieee80211_hw *hw) 881f1d2b4d3SLarry Finger { 882f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 883f1d2b4d3SLarry Finger struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw)); 884f1d2b4d3SLarry Finger 885f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x34b, 0x93); 886f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, 0x350, 0x870c); 887f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x352, 0x1); 888f1d2b4d3SLarry Finger 889f1d2b4d3SLarry Finger if (ppsc->support_backdoor) 890f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x349, 0x1b); 891f1d2b4d3SLarry Finger else 892f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x349, 0x03); 893f1d2b4d3SLarry Finger 894f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, 0x350, 0x2718); 895f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x352, 0x1); 896f1d2b4d3SLarry Finger } 897f1d2b4d3SLarry Finger 898f1d2b4d3SLarry Finger void rtl92ce_enable_hw_security_config(struct ieee80211_hw *hw) 899f1d2b4d3SLarry Finger { 900f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 901f1d2b4d3SLarry Finger u8 sec_reg_value; 902f1d2b4d3SLarry Finger 903f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD, 904f1d2b4d3SLarry Finger "PairwiseEncAlgorithm = %d GroupEncAlgorithm = %d\n", 905f1d2b4d3SLarry Finger rtlpriv->sec.pairwise_enc_algorithm, 906f1d2b4d3SLarry Finger rtlpriv->sec.group_enc_algorithm); 907f1d2b4d3SLarry Finger 908f1d2b4d3SLarry Finger if (rtlpriv->cfg->mod_params->sw_crypto || rtlpriv->sec.use_sw_sec) { 909f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_SEC, DBG_DMESG, 910f1d2b4d3SLarry Finger "not open hw encryption\n"); 911f1d2b4d3SLarry Finger return; 912f1d2b4d3SLarry Finger } 913f1d2b4d3SLarry Finger 914f1d2b4d3SLarry Finger sec_reg_value = SCR_TxEncEnable | SCR_RxDecEnable; 915f1d2b4d3SLarry Finger 916f1d2b4d3SLarry Finger if (rtlpriv->sec.use_defaultkey) { 917f1d2b4d3SLarry Finger sec_reg_value |= SCR_TxUseDK; 918f1d2b4d3SLarry Finger sec_reg_value |= SCR_RxUseDK; 919f1d2b4d3SLarry Finger } 920f1d2b4d3SLarry Finger 921f1d2b4d3SLarry Finger sec_reg_value |= (SCR_RXBCUSEDK | SCR_TXBCUSEDK); 922f1d2b4d3SLarry Finger 923f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_CR + 1, 0x02); 924f1d2b4d3SLarry Finger 925f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_SEC, DBG_LOUD, 926f1d2b4d3SLarry Finger "The SECR-value %x\n", sec_reg_value); 927f1d2b4d3SLarry Finger 928f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_WPA_CONFIG, &sec_reg_value); 929f1d2b4d3SLarry Finger 930f1d2b4d3SLarry Finger } 931f1d2b4d3SLarry Finger 932f1d2b4d3SLarry Finger int rtl92ce_hw_init(struct ieee80211_hw *hw) 933f1d2b4d3SLarry Finger { 934f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 935f1d2b4d3SLarry Finger struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw)); 936f1d2b4d3SLarry Finger struct rtl_mac *mac = rtl_mac(rtl_priv(hw)); 937f1d2b4d3SLarry Finger struct rtl_phy *rtlphy = &(rtlpriv->phy); 938f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 939f1d2b4d3SLarry Finger struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw)); 940f1d2b4d3SLarry Finger bool rtstatus = true; 941f1d2b4d3SLarry Finger bool is92c; 942f1d2b4d3SLarry Finger int err; 943f1d2b4d3SLarry Finger u8 tmp_u1b; 944f1d2b4d3SLarry Finger unsigned long flags; 945f1d2b4d3SLarry Finger 946f1d2b4d3SLarry Finger rtlpci->being_init_adapter = true; 947f1d2b4d3SLarry Finger 948f1d2b4d3SLarry Finger /* Since this function can take a very long time (up to 350 ms) 949f1d2b4d3SLarry Finger * and can be called with irqs disabled, reenable the irqs 950f1d2b4d3SLarry Finger * to let the other devices continue being serviced. 951f1d2b4d3SLarry Finger * 952f1d2b4d3SLarry Finger * It is safe doing so since our own interrupts will only be enabled 953f1d2b4d3SLarry Finger * in a subsequent step. 954f1d2b4d3SLarry Finger */ 955f1d2b4d3SLarry Finger local_save_flags(flags); 956f1d2b4d3SLarry Finger local_irq_enable(); 957f1d2b4d3SLarry Finger 958f1d2b4d3SLarry Finger rtlhal->fw_ready = false; 959f1d2b4d3SLarry Finger rtlpriv->intf_ops->disable_aspm(hw); 960f1d2b4d3SLarry Finger rtstatus = _rtl92ce_init_mac(hw); 961f1d2b4d3SLarry Finger if (!rtstatus) { 962*e40a0056SLarry Finger pr_err("Init MAC failed\n"); 963f1d2b4d3SLarry Finger err = 1; 964f1d2b4d3SLarry Finger goto exit; 965f1d2b4d3SLarry Finger } 966f1d2b4d3SLarry Finger 967f1d2b4d3SLarry Finger err = rtl92c_download_fw(hw); 968f1d2b4d3SLarry Finger if (err) { 969f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING, 970f1d2b4d3SLarry Finger "Failed to download FW. Init HW without FW now..\n"); 971f1d2b4d3SLarry Finger err = 1; 972f1d2b4d3SLarry Finger goto exit; 973f1d2b4d3SLarry Finger } 974f1d2b4d3SLarry Finger 975f1d2b4d3SLarry Finger rtlhal->fw_ready = true; 976f1d2b4d3SLarry Finger rtlhal->last_hmeboxnum = 0; 977f1d2b4d3SLarry Finger rtl92c_phy_mac_config(hw); 978f1d2b4d3SLarry Finger /* because last function modify RCR, so we update 979f1d2b4d3SLarry Finger * rcr var here, or TP will unstable for receive_config 980f1d2b4d3SLarry Finger * is wrong, RX RCR_ACRC32 will cause TP unstabel & Rx 981f1d2b4d3SLarry Finger * RCR_APP_ICV will cause mac80211 unassoc for cisco 1252*/ 982f1d2b4d3SLarry Finger rtlpci->receive_config = rtl_read_dword(rtlpriv, REG_RCR); 983f1d2b4d3SLarry Finger rtlpci->receive_config &= ~(RCR_ACRC32 | RCR_AICV); 984f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_RCR, rtlpci->receive_config); 985f1d2b4d3SLarry Finger rtl92c_phy_bb_config(hw); 986f1d2b4d3SLarry Finger rtlphy->rf_mode = RF_OP_BY_SW_3WIRE; 987f1d2b4d3SLarry Finger rtl92c_phy_rf_config(hw); 988f1d2b4d3SLarry Finger if (IS_VENDOR_UMC_A_CUT(rtlhal->version) && 989f1d2b4d3SLarry Finger !IS_92C_SERIAL(rtlhal->version)) { 990f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_A, RF_RX_G1, MASKDWORD, 0x30255); 991f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_A, RF_RX_G2, MASKDWORD, 0x50a00); 992f1d2b4d3SLarry Finger } else if (IS_81XXC_VENDOR_UMC_B_CUT(rtlhal->version)) { 993f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_A, 0x0C, MASKDWORD, 0x894AE); 994f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_A, 0x0A, MASKDWORD, 0x1AF31); 995f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_A, RF_IPA, MASKDWORD, 0x8F425); 996f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_A, RF_SYN_G2, MASKDWORD, 0x4F200); 997f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_A, RF_RCK1, MASKDWORD, 0x44053); 998f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_A, RF_RCK2, MASKDWORD, 0x80201); 999f1d2b4d3SLarry Finger } 1000f1d2b4d3SLarry Finger rtlphy->rfreg_chnlval[0] = rtl_get_rfreg(hw, (enum radio_path)0, 1001f1d2b4d3SLarry Finger RF_CHNLBW, RFREG_OFFSET_MASK); 1002f1d2b4d3SLarry Finger rtlphy->rfreg_chnlval[1] = rtl_get_rfreg(hw, (enum radio_path)1, 1003f1d2b4d3SLarry Finger RF_CHNLBW, RFREG_OFFSET_MASK); 1004f1d2b4d3SLarry Finger rtl_set_bbreg(hw, RFPGA0_RFMOD, BCCKEN, 0x1); 1005f1d2b4d3SLarry Finger rtl_set_bbreg(hw, RFPGA0_RFMOD, BOFDMEN, 0x1); 1006f1d2b4d3SLarry Finger rtl_set_bbreg(hw, RFPGA0_ANALOGPARAMETER2, BIT(10), 1); 1007f1d2b4d3SLarry Finger _rtl92ce_hw_configure(hw); 1008f1d2b4d3SLarry Finger rtl_cam_reset_all_entry(hw); 1009f1d2b4d3SLarry Finger rtl92ce_enable_hw_security_config(hw); 1010f1d2b4d3SLarry Finger 1011f1d2b4d3SLarry Finger ppsc->rfpwr_state = ERFON; 1012f1d2b4d3SLarry Finger 1013f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_ETHER_ADDR, mac->mac_addr); 1014f1d2b4d3SLarry Finger _rtl92ce_enable_aspm_back_door(hw); 1015f1d2b4d3SLarry Finger rtlpriv->intf_ops->enable_aspm(hw); 1016f1d2b4d3SLarry Finger 1017f1d2b4d3SLarry Finger rtl8192ce_bt_hw_init(hw); 1018f1d2b4d3SLarry Finger 1019f1d2b4d3SLarry Finger if (ppsc->rfpwr_state == ERFON) { 1020f1d2b4d3SLarry Finger rtl92c_phy_set_rfpath_switch(hw, 1); 1021f1d2b4d3SLarry Finger if (rtlphy->iqk_initialized) { 1022f1d2b4d3SLarry Finger rtl92c_phy_iq_calibrate(hw, true); 1023f1d2b4d3SLarry Finger } else { 1024f1d2b4d3SLarry Finger rtl92c_phy_iq_calibrate(hw, false); 1025f1d2b4d3SLarry Finger rtlphy->iqk_initialized = true; 1026f1d2b4d3SLarry Finger } 1027f1d2b4d3SLarry Finger 1028f1d2b4d3SLarry Finger rtl92c_dm_check_txpower_tracking(hw); 1029f1d2b4d3SLarry Finger rtl92c_phy_lc_calibrate(hw); 1030f1d2b4d3SLarry Finger } 1031f1d2b4d3SLarry Finger 1032f1d2b4d3SLarry Finger is92c = IS_92C_SERIAL(rtlhal->version); 1033f1d2b4d3SLarry Finger tmp_u1b = efuse_read_1byte(hw, 0x1FA); 1034f1d2b4d3SLarry Finger if (!(tmp_u1b & BIT(0))) { 1035f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_A, 0x15, 0x0F, 0x05); 1036f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_TRACE, "PA BIAS path A\n"); 1037f1d2b4d3SLarry Finger } 1038f1d2b4d3SLarry Finger 1039f1d2b4d3SLarry Finger if (!(tmp_u1b & BIT(1)) && is92c) { 1040f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_B, 0x15, 0x0F, 0x05); 1041f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_TRACE, "PA BIAS path B\n"); 1042f1d2b4d3SLarry Finger } 1043f1d2b4d3SLarry Finger 1044f1d2b4d3SLarry Finger if (!(tmp_u1b & BIT(4))) { 1045f1d2b4d3SLarry Finger tmp_u1b = rtl_read_byte(rtlpriv, 0x16); 1046f1d2b4d3SLarry Finger tmp_u1b &= 0x0F; 1047f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x16, tmp_u1b | 0x80); 1048f1d2b4d3SLarry Finger udelay(10); 1049f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x16, tmp_u1b | 0x90); 1050f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_TRACE, "under 1.5V\n"); 1051f1d2b4d3SLarry Finger } 1052f1d2b4d3SLarry Finger rtl92c_dm_init(hw); 1053f1d2b4d3SLarry Finger exit: 1054f1d2b4d3SLarry Finger local_irq_restore(flags); 1055f1d2b4d3SLarry Finger rtlpci->being_init_adapter = false; 1056f1d2b4d3SLarry Finger return err; 1057f1d2b4d3SLarry Finger } 1058f1d2b4d3SLarry Finger 1059f1d2b4d3SLarry Finger static enum version_8192c _rtl92ce_read_chip_version(struct ieee80211_hw *hw) 1060f1d2b4d3SLarry Finger { 1061f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1062f1d2b4d3SLarry Finger struct rtl_phy *rtlphy = &(rtlpriv->phy); 1063f1d2b4d3SLarry Finger enum version_8192c version = VERSION_UNKNOWN; 1064f1d2b4d3SLarry Finger u32 value32; 1065f1d2b4d3SLarry Finger const char *versionid; 1066f1d2b4d3SLarry Finger 1067f1d2b4d3SLarry Finger value32 = rtl_read_dword(rtlpriv, REG_SYS_CFG); 1068f1d2b4d3SLarry Finger if (value32 & TRP_VAUX_EN) { 1069f1d2b4d3SLarry Finger version = (value32 & TYPE_ID) ? VERSION_A_CHIP_92C : 1070f1d2b4d3SLarry Finger VERSION_A_CHIP_88C; 1071f1d2b4d3SLarry Finger } else { 1072f1d2b4d3SLarry Finger version = (enum version_8192c) (CHIP_VER_B | 1073f1d2b4d3SLarry Finger ((value32 & TYPE_ID) ? CHIP_92C_BITMASK : 0) | 1074f1d2b4d3SLarry Finger ((value32 & VENDOR_ID) ? CHIP_VENDOR_UMC : 0)); 1075f1d2b4d3SLarry Finger if ((!IS_CHIP_VENDOR_UMC(version)) && (value32 & 1076f1d2b4d3SLarry Finger CHIP_VER_RTL_MASK)) { 1077f1d2b4d3SLarry Finger version = (enum version_8192c)(version | 1078f1d2b4d3SLarry Finger ((((value32 & CHIP_VER_RTL_MASK) == BIT(12)) 1079f1d2b4d3SLarry Finger ? CHIP_VENDOR_UMC_B_CUT : CHIP_UNKNOWN) | 1080f1d2b4d3SLarry Finger CHIP_VENDOR_UMC)); 1081f1d2b4d3SLarry Finger } 1082f1d2b4d3SLarry Finger if (IS_92C_SERIAL(version)) { 1083f1d2b4d3SLarry Finger value32 = rtl_read_dword(rtlpriv, REG_HPON_FSM); 1084f1d2b4d3SLarry Finger version = (enum version_8192c)(version | 1085f1d2b4d3SLarry Finger ((CHIP_BONDING_IDENTIFIER(value32) 1086f1d2b4d3SLarry Finger == CHIP_BONDING_92C_1T2R) ? 1087f1d2b4d3SLarry Finger RF_TYPE_1T2R : 0)); 1088f1d2b4d3SLarry Finger } 1089f1d2b4d3SLarry Finger } 1090f1d2b4d3SLarry Finger 1091f1d2b4d3SLarry Finger switch (version) { 1092f1d2b4d3SLarry Finger case VERSION_B_CHIP_92C: 1093f1d2b4d3SLarry Finger versionid = "B_CHIP_92C"; 1094f1d2b4d3SLarry Finger break; 1095f1d2b4d3SLarry Finger case VERSION_B_CHIP_88C: 1096f1d2b4d3SLarry Finger versionid = "B_CHIP_88C"; 1097f1d2b4d3SLarry Finger break; 1098f1d2b4d3SLarry Finger case VERSION_A_CHIP_92C: 1099f1d2b4d3SLarry Finger versionid = "A_CHIP_92C"; 1100f1d2b4d3SLarry Finger break; 1101f1d2b4d3SLarry Finger case VERSION_A_CHIP_88C: 1102f1d2b4d3SLarry Finger versionid = "A_CHIP_88C"; 1103f1d2b4d3SLarry Finger break; 1104f1d2b4d3SLarry Finger case VERSION_NORMAL_UMC_CHIP_92C_1T2R_A_CUT: 1105f1d2b4d3SLarry Finger versionid = "A_CUT_92C_1T2R"; 1106f1d2b4d3SLarry Finger break; 1107f1d2b4d3SLarry Finger case VERSION_NORMAL_UMC_CHIP_92C_A_CUT: 1108f1d2b4d3SLarry Finger versionid = "A_CUT_92C"; 1109f1d2b4d3SLarry Finger break; 1110f1d2b4d3SLarry Finger case VERSION_NORMAL_UMC_CHIP_88C_A_CUT: 1111f1d2b4d3SLarry Finger versionid = "A_CUT_88C"; 1112f1d2b4d3SLarry Finger break; 1113f1d2b4d3SLarry Finger case VERSION_NORMAL_UMC_CHIP_92C_1T2R_B_CUT: 1114f1d2b4d3SLarry Finger versionid = "B_CUT_92C_1T2R"; 1115f1d2b4d3SLarry Finger break; 1116f1d2b4d3SLarry Finger case VERSION_NORMAL_UMC_CHIP_92C_B_CUT: 1117f1d2b4d3SLarry Finger versionid = "B_CUT_92C"; 1118f1d2b4d3SLarry Finger break; 1119f1d2b4d3SLarry Finger case VERSION_NORMAL_UMC_CHIP_88C_B_CUT: 1120f1d2b4d3SLarry Finger versionid = "B_CUT_88C"; 1121f1d2b4d3SLarry Finger break; 1122f1d2b4d3SLarry Finger default: 1123f1d2b4d3SLarry Finger versionid = "Unknown. Bug?"; 1124f1d2b4d3SLarry Finger break; 1125f1d2b4d3SLarry Finger } 1126f1d2b4d3SLarry Finger 1127*e40a0056SLarry Finger pr_info("Chip Version ID: %s\n", versionid); 1128f1d2b4d3SLarry Finger 1129f1d2b4d3SLarry Finger switch (version & 0x3) { 1130f1d2b4d3SLarry Finger case CHIP_88C: 1131f1d2b4d3SLarry Finger rtlphy->rf_type = RF_1T1R; 1132f1d2b4d3SLarry Finger break; 1133f1d2b4d3SLarry Finger case CHIP_92C: 1134f1d2b4d3SLarry Finger rtlphy->rf_type = RF_2T2R; 1135f1d2b4d3SLarry Finger break; 1136f1d2b4d3SLarry Finger case CHIP_92C_1T2R: 1137f1d2b4d3SLarry Finger rtlphy->rf_type = RF_1T2R; 1138f1d2b4d3SLarry Finger break; 1139f1d2b4d3SLarry Finger default: 1140f1d2b4d3SLarry Finger rtlphy->rf_type = RF_1T1R; 1141*e40a0056SLarry Finger pr_err("ERROR RF_Type is set!!\n"); 1142f1d2b4d3SLarry Finger break; 1143f1d2b4d3SLarry Finger } 1144f1d2b4d3SLarry Finger 1145f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD, "Chip RF Type: %s\n", 1146f1d2b4d3SLarry Finger rtlphy->rf_type == RF_2T2R ? "RF_2T2R" : "RF_1T1R"); 1147f1d2b4d3SLarry Finger 1148f1d2b4d3SLarry Finger return version; 1149f1d2b4d3SLarry Finger } 1150f1d2b4d3SLarry Finger 1151f1d2b4d3SLarry Finger static int _rtl92ce_set_media_status(struct ieee80211_hw *hw, 1152f1d2b4d3SLarry Finger enum nl80211_iftype type) 1153f1d2b4d3SLarry Finger { 1154f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1155f1d2b4d3SLarry Finger u8 bt_msr = rtl_read_byte(rtlpriv, MSR); 1156f1d2b4d3SLarry Finger enum led_ctl_mode ledaction = LED_CTL_NO_LINK; 1157f1d2b4d3SLarry Finger u8 mode = MSR_NOLINK; 1158f1d2b4d3SLarry Finger 1159f1d2b4d3SLarry Finger bt_msr &= 0xfc; 1160f1d2b4d3SLarry Finger 1161f1d2b4d3SLarry Finger switch (type) { 1162f1d2b4d3SLarry Finger case NL80211_IFTYPE_UNSPECIFIED: 1163f1d2b4d3SLarry Finger mode = MSR_NOLINK; 1164f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_TRACE, 1165f1d2b4d3SLarry Finger "Set Network type to NO LINK!\n"); 1166f1d2b4d3SLarry Finger break; 1167f1d2b4d3SLarry Finger case NL80211_IFTYPE_ADHOC: 1168f1d2b4d3SLarry Finger mode = MSR_ADHOC; 1169f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_TRACE, 1170f1d2b4d3SLarry Finger "Set Network type to Ad Hoc!\n"); 1171f1d2b4d3SLarry Finger break; 1172f1d2b4d3SLarry Finger case NL80211_IFTYPE_STATION: 1173f1d2b4d3SLarry Finger mode = MSR_INFRA; 1174f1d2b4d3SLarry Finger ledaction = LED_CTL_LINK; 1175f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_TRACE, 1176f1d2b4d3SLarry Finger "Set Network type to STA!\n"); 1177f1d2b4d3SLarry Finger break; 1178f1d2b4d3SLarry Finger case NL80211_IFTYPE_AP: 1179f1d2b4d3SLarry Finger mode = MSR_AP; 1180f1d2b4d3SLarry Finger ledaction = LED_CTL_LINK; 1181f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_TRACE, 1182f1d2b4d3SLarry Finger "Set Network type to AP!\n"); 1183f1d2b4d3SLarry Finger break; 1184f1d2b4d3SLarry Finger case NL80211_IFTYPE_MESH_POINT: 1185f1d2b4d3SLarry Finger mode = MSR_ADHOC; 1186f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_TRACE, 1187f1d2b4d3SLarry Finger "Set Network type to Mesh Point!\n"); 1188f1d2b4d3SLarry Finger break; 1189f1d2b4d3SLarry Finger default: 1190*e40a0056SLarry Finger pr_err("Network type %d not supported!\n", type); 1191f1d2b4d3SLarry Finger return 1; 1192f1d2b4d3SLarry Finger 1193f1d2b4d3SLarry Finger } 1194f1d2b4d3SLarry Finger 1195f1d2b4d3SLarry Finger /* MSR_INFRA == Link in infrastructure network; 1196f1d2b4d3SLarry Finger * MSR_ADHOC == Link in ad hoc network; 1197f1d2b4d3SLarry Finger * Therefore, check link state is necessary. 1198f1d2b4d3SLarry Finger * 1199f1d2b4d3SLarry Finger * MSR_AP == AP mode; link state does not matter here. 1200f1d2b4d3SLarry Finger */ 1201f1d2b4d3SLarry Finger if (mode != MSR_AP && 1202f1d2b4d3SLarry Finger rtlpriv->mac80211.link_state < MAC80211_LINKED) { 1203f1d2b4d3SLarry Finger mode = MSR_NOLINK; 1204f1d2b4d3SLarry Finger ledaction = LED_CTL_NO_LINK; 1205f1d2b4d3SLarry Finger } 1206f1d2b4d3SLarry Finger if (mode == MSR_NOLINK || mode == MSR_INFRA) { 1207f1d2b4d3SLarry Finger _rtl92ce_stop_tx_beacon(hw); 1208f1d2b4d3SLarry Finger _rtl92ce_enable_bcn_sub_func(hw); 1209f1d2b4d3SLarry Finger } else if (mode == MSR_ADHOC || mode == MSR_AP) { 1210f1d2b4d3SLarry Finger _rtl92ce_resume_tx_beacon(hw); 1211f1d2b4d3SLarry Finger _rtl92ce_disable_bcn_sub_func(hw); 1212f1d2b4d3SLarry Finger } else { 1213f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING, 1214f1d2b4d3SLarry Finger "Set HW_VAR_MEDIA_STATUS: No such media status(%x).\n", 1215f1d2b4d3SLarry Finger mode); 1216f1d2b4d3SLarry Finger } 1217f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, MSR, bt_msr | mode); 1218f1d2b4d3SLarry Finger 1219f1d2b4d3SLarry Finger rtlpriv->cfg->ops->led_control(hw, ledaction); 1220f1d2b4d3SLarry Finger if (mode == MSR_AP) 1221f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_BCNTCFG + 1, 0x00); 1222f1d2b4d3SLarry Finger else 1223f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_BCNTCFG + 1, 0x66); 1224f1d2b4d3SLarry Finger return 0; 1225f1d2b4d3SLarry Finger } 1226f1d2b4d3SLarry Finger 1227f1d2b4d3SLarry Finger void rtl92ce_set_check_bssid(struct ieee80211_hw *hw, bool check_bssid) 1228f1d2b4d3SLarry Finger { 1229f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1230f1d2b4d3SLarry Finger u32 reg_rcr; 1231f1d2b4d3SLarry Finger 1232f1d2b4d3SLarry Finger if (rtlpriv->psc.rfpwr_state != ERFON) 1233f1d2b4d3SLarry Finger return; 1234f1d2b4d3SLarry Finger 1235f1d2b4d3SLarry Finger rtlpriv->cfg->ops->get_hw_reg(hw, HW_VAR_RCR, (u8 *)(®_rcr)); 1236f1d2b4d3SLarry Finger 1237f1d2b4d3SLarry Finger if (check_bssid) { 1238f1d2b4d3SLarry Finger reg_rcr |= (RCR_CBSSID_DATA | RCR_CBSSID_BCN); 1239f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_RCR, 1240f1d2b4d3SLarry Finger (u8 *) (®_rcr)); 1241f1d2b4d3SLarry Finger _rtl92ce_set_bcn_ctrl_reg(hw, 0, BIT(4)); 1242f1d2b4d3SLarry Finger } else if (!check_bssid) { 1243f1d2b4d3SLarry Finger reg_rcr &= (~(RCR_CBSSID_DATA | RCR_CBSSID_BCN)); 1244f1d2b4d3SLarry Finger _rtl92ce_set_bcn_ctrl_reg(hw, BIT(4), 0); 1245f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, 1246f1d2b4d3SLarry Finger HW_VAR_RCR, (u8 *) (®_rcr)); 1247f1d2b4d3SLarry Finger } 1248f1d2b4d3SLarry Finger 1249f1d2b4d3SLarry Finger } 1250f1d2b4d3SLarry Finger 1251f1d2b4d3SLarry Finger int rtl92ce_set_network_type(struct ieee80211_hw *hw, enum nl80211_iftype type) 1252f1d2b4d3SLarry Finger { 1253f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1254f1d2b4d3SLarry Finger 1255f1d2b4d3SLarry Finger if (_rtl92ce_set_media_status(hw, type)) 1256f1d2b4d3SLarry Finger return -EOPNOTSUPP; 1257f1d2b4d3SLarry Finger 1258f1d2b4d3SLarry Finger if (rtlpriv->mac80211.link_state == MAC80211_LINKED) { 1259f1d2b4d3SLarry Finger if (type != NL80211_IFTYPE_AP && 1260f1d2b4d3SLarry Finger type != NL80211_IFTYPE_MESH_POINT) 1261f1d2b4d3SLarry Finger rtl92ce_set_check_bssid(hw, true); 1262f1d2b4d3SLarry Finger } else { 1263f1d2b4d3SLarry Finger rtl92ce_set_check_bssid(hw, false); 1264f1d2b4d3SLarry Finger } 1265f1d2b4d3SLarry Finger 1266f1d2b4d3SLarry Finger return 0; 1267f1d2b4d3SLarry Finger } 1268f1d2b4d3SLarry Finger 1269f1d2b4d3SLarry Finger /* don't set REG_EDCA_BE_PARAM here because mac80211 will send pkt when scan */ 1270f1d2b4d3SLarry Finger void rtl92ce_set_qos(struct ieee80211_hw *hw, int aci) 1271f1d2b4d3SLarry Finger { 1272f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1273f1d2b4d3SLarry Finger rtl92c_dm_init_edca_turbo(hw); 1274f1d2b4d3SLarry Finger switch (aci) { 1275f1d2b4d3SLarry Finger case AC1_BK: 1276f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_EDCA_BK_PARAM, 0xa44f); 1277f1d2b4d3SLarry Finger break; 1278f1d2b4d3SLarry Finger case AC0_BE: 1279f1d2b4d3SLarry Finger /* rtl_write_dword(rtlpriv, REG_EDCA_BE_PARAM, u4b_ac_param); */ 1280f1d2b4d3SLarry Finger break; 1281f1d2b4d3SLarry Finger case AC2_VI: 1282f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_EDCA_VI_PARAM, 0x5e4322); 1283f1d2b4d3SLarry Finger break; 1284f1d2b4d3SLarry Finger case AC3_VO: 1285f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_EDCA_VO_PARAM, 0x2f3222); 1286f1d2b4d3SLarry Finger break; 1287f1d2b4d3SLarry Finger default: 1288531940f9SLarry Finger WARN_ONCE(true, "rtl8192ce: invalid aci: %d !\n", aci); 1289f1d2b4d3SLarry Finger break; 1290f1d2b4d3SLarry Finger } 1291f1d2b4d3SLarry Finger } 1292f1d2b4d3SLarry Finger 1293f1d2b4d3SLarry Finger void rtl92ce_enable_interrupt(struct ieee80211_hw *hw) 1294f1d2b4d3SLarry Finger { 1295f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1296f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 1297f1d2b4d3SLarry Finger 1298f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_HIMR, rtlpci->irq_mask[0] & 0xFFFFFFFF); 1299f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_HIMRE, rtlpci->irq_mask[1] & 0xFFFFFFFF); 1300f1d2b4d3SLarry Finger rtlpci->irq_enabled = true; 1301f1d2b4d3SLarry Finger } 1302f1d2b4d3SLarry Finger 1303f1d2b4d3SLarry Finger void rtl92ce_disable_interrupt(struct ieee80211_hw *hw) 1304f1d2b4d3SLarry Finger { 1305f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1306f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 1307f1d2b4d3SLarry Finger 1308f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_HIMR, IMR8190_DISABLED); 1309f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_HIMRE, IMR8190_DISABLED); 1310f1d2b4d3SLarry Finger rtlpci->irq_enabled = false; 1311f1d2b4d3SLarry Finger } 1312f1d2b4d3SLarry Finger 1313f1d2b4d3SLarry Finger static void _rtl92ce_poweroff_adapter(struct ieee80211_hw *hw) 1314f1d2b4d3SLarry Finger { 1315f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1316f1d2b4d3SLarry Finger struct rtl_pci_priv *rtlpcipriv = rtl_pcipriv(hw); 1317f1d2b4d3SLarry Finger struct rtl_hal *rtlhal = rtl_hal(rtlpriv); 1318f1d2b4d3SLarry Finger u8 u1b_tmp; 1319f1d2b4d3SLarry Finger u32 u4b_tmp; 1320f1d2b4d3SLarry Finger 1321f1d2b4d3SLarry Finger rtlpriv->intf_ops->enable_aspm(hw); 1322f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_TXPAUSE, 0xFF); 1323f1d2b4d3SLarry Finger rtl_set_rfreg(hw, RF90_PATH_A, 0x00, RFREG_OFFSET_MASK, 0x00); 1324f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_RF_CTRL, 0x00); 1325f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_APSD_CTRL, 0x40); 1326f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN, 0xE2); 1327f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN, 0xE0); 1328f1d2b4d3SLarry Finger if (rtl_read_byte(rtlpriv, REG_MCUFWDL) & BIT(7)) 1329f1d2b4d3SLarry Finger rtl92c_firmware_selfreset(hw); 1330f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN + 1, 0x51); 1331f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_MCUFWDL, 0x00); 1332f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_GPIO_PIN_CTRL, 0x00000000); 1333f1d2b4d3SLarry Finger u1b_tmp = rtl_read_byte(rtlpriv, REG_GPIO_PIN_CTRL); 1334f1d2b4d3SLarry Finger if ((rtlpcipriv->bt_coexist.bt_coexistence) && 1335f1d2b4d3SLarry Finger ((rtlpcipriv->bt_coexist.bt_coexist_type == BT_CSR_BC4) || 1336f1d2b4d3SLarry Finger (rtlpcipriv->bt_coexist.bt_coexist_type == BT_CSR_BC8))) { 1337f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_GPIO_PIN_CTRL, 0x00F30000 | 1338f1d2b4d3SLarry Finger (u1b_tmp << 8)); 1339f1d2b4d3SLarry Finger } else { 1340f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_GPIO_PIN_CTRL, 0x00FF0000 | 1341f1d2b4d3SLarry Finger (u1b_tmp << 8)); 1342f1d2b4d3SLarry Finger } 1343f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_GPIO_IO_SEL, 0x0790); 1344f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_LEDCFG0, 0x8080); 1345f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_AFE_PLL_CTRL, 0x80); 1346f1d2b4d3SLarry Finger if (!IS_81XXC_VENDOR_UMC_B_CUT(rtlhal->version)) 1347f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_SPS0_CTRL, 0x23); 1348f1d2b4d3SLarry Finger if (rtlpcipriv->bt_coexist.bt_coexistence) { 1349f1d2b4d3SLarry Finger u4b_tmp = rtl_read_dword(rtlpriv, REG_AFE_XTAL_CTRL); 1350f1d2b4d3SLarry Finger u4b_tmp |= 0x03824800; 1351f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_AFE_XTAL_CTRL, u4b_tmp); 1352f1d2b4d3SLarry Finger } else { 1353f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_AFE_XTAL_CTRL, 0x0e); 1354f1d2b4d3SLarry Finger } 1355f1d2b4d3SLarry Finger 1356f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_RSV_CTRL, 0x0e); 1357f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_APS_FSMCO + 1, 0x10); 1358f1d2b4d3SLarry Finger } 1359f1d2b4d3SLarry Finger 1360f1d2b4d3SLarry Finger void rtl92ce_card_disable(struct ieee80211_hw *hw) 1361f1d2b4d3SLarry Finger { 1362f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1363f1d2b4d3SLarry Finger struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw)); 1364f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 1365f1d2b4d3SLarry Finger struct rtl_mac *mac = rtl_mac(rtl_priv(hw)); 1366f1d2b4d3SLarry Finger enum nl80211_iftype opmode; 1367f1d2b4d3SLarry Finger 1368f1d2b4d3SLarry Finger mac->link_state = MAC80211_NOLINK; 1369f1d2b4d3SLarry Finger opmode = NL80211_IFTYPE_UNSPECIFIED; 1370f1d2b4d3SLarry Finger _rtl92ce_set_media_status(hw, opmode); 1371f1d2b4d3SLarry Finger if (rtlpci->driver_is_goingto_unload || 1372f1d2b4d3SLarry Finger ppsc->rfoff_reason > RF_CHANGE_BY_PS) 1373f1d2b4d3SLarry Finger rtlpriv->cfg->ops->led_control(hw, LED_CTL_POWER_OFF); 1374f1d2b4d3SLarry Finger RT_SET_PS_LEVEL(ppsc, RT_RF_OFF_LEVL_HALT_NIC); 1375f1d2b4d3SLarry Finger _rtl92ce_poweroff_adapter(hw); 1376f1d2b4d3SLarry Finger 1377f1d2b4d3SLarry Finger /* after power off we should do iqk again */ 1378f1d2b4d3SLarry Finger rtlpriv->phy.iqk_initialized = false; 1379f1d2b4d3SLarry Finger } 1380f1d2b4d3SLarry Finger 1381f1d2b4d3SLarry Finger void rtl92ce_interrupt_recognized(struct ieee80211_hw *hw, 1382f1d2b4d3SLarry Finger u32 *p_inta, u32 *p_intb) 1383f1d2b4d3SLarry Finger { 1384f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1385f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 1386f1d2b4d3SLarry Finger 1387f1d2b4d3SLarry Finger *p_inta = rtl_read_dword(rtlpriv, ISR) & rtlpci->irq_mask[0]; 1388f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, ISR, *p_inta); 1389f1d2b4d3SLarry Finger 1390f1d2b4d3SLarry Finger /* 1391f1d2b4d3SLarry Finger * *p_intb = rtl_read_dword(rtlpriv, REG_HISRE) & rtlpci->irq_mask[1]; 1392f1d2b4d3SLarry Finger * rtl_write_dword(rtlpriv, ISR + 4, *p_intb); 1393f1d2b4d3SLarry Finger */ 1394f1d2b4d3SLarry Finger } 1395f1d2b4d3SLarry Finger 1396f1d2b4d3SLarry Finger void rtl92ce_set_beacon_related_registers(struct ieee80211_hw *hw) 1397f1d2b4d3SLarry Finger { 1398f1d2b4d3SLarry Finger 1399f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1400f1d2b4d3SLarry Finger struct rtl_mac *mac = rtl_mac(rtl_priv(hw)); 1401f1d2b4d3SLarry Finger u16 bcn_interval, atim_window; 1402f1d2b4d3SLarry Finger 1403f1d2b4d3SLarry Finger bcn_interval = mac->beacon_interval; 1404f1d2b4d3SLarry Finger atim_window = 2; /*FIX MERGE */ 1405f1d2b4d3SLarry Finger rtl92ce_disable_interrupt(hw); 1406f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_ATIMWND, atim_window); 1407f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_BCN_INTERVAL, bcn_interval); 1408f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_BCNTCFG, 0x660f); 1409f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_RXTSF_OFFSET_CCK, 0x18); 1410f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_RXTSF_OFFSET_OFDM, 0x18); 1411f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x606, 0x30); 1412f1d2b4d3SLarry Finger rtl92ce_enable_interrupt(hw); 1413f1d2b4d3SLarry Finger } 1414f1d2b4d3SLarry Finger 1415f1d2b4d3SLarry Finger void rtl92ce_set_beacon_interval(struct ieee80211_hw *hw) 1416f1d2b4d3SLarry Finger { 1417f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1418f1d2b4d3SLarry Finger struct rtl_mac *mac = rtl_mac(rtl_priv(hw)); 1419f1d2b4d3SLarry Finger u16 bcn_interval = mac->beacon_interval; 1420f1d2b4d3SLarry Finger 1421f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_BEACON, DBG_DMESG, 1422f1d2b4d3SLarry Finger "beacon_interval:%d\n", bcn_interval); 1423f1d2b4d3SLarry Finger rtl92ce_disable_interrupt(hw); 1424f1d2b4d3SLarry Finger rtl_write_word(rtlpriv, REG_BCN_INTERVAL, bcn_interval); 1425f1d2b4d3SLarry Finger rtl92ce_enable_interrupt(hw); 1426f1d2b4d3SLarry Finger } 1427f1d2b4d3SLarry Finger 1428f1d2b4d3SLarry Finger void rtl92ce_update_interrupt_mask(struct ieee80211_hw *hw, 1429f1d2b4d3SLarry Finger u32 add_msr, u32 rm_msr) 1430f1d2b4d3SLarry Finger { 1431f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1432f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 1433f1d2b4d3SLarry Finger 1434f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INTR, DBG_LOUD, "add_msr:%x, rm_msr:%x\n", 1435f1d2b4d3SLarry Finger add_msr, rm_msr); 1436f1d2b4d3SLarry Finger 1437f1d2b4d3SLarry Finger if (add_msr) 1438f1d2b4d3SLarry Finger rtlpci->irq_mask[0] |= add_msr; 1439f1d2b4d3SLarry Finger if (rm_msr) 1440f1d2b4d3SLarry Finger rtlpci->irq_mask[0] &= (~rm_msr); 1441f1d2b4d3SLarry Finger rtl92ce_disable_interrupt(hw); 1442f1d2b4d3SLarry Finger rtl92ce_enable_interrupt(hw); 1443f1d2b4d3SLarry Finger } 1444f1d2b4d3SLarry Finger 1445f1d2b4d3SLarry Finger static void _rtl92ce_read_txpower_info_from_hwpg(struct ieee80211_hw *hw, 1446f1d2b4d3SLarry Finger bool autoload_fail, 1447f1d2b4d3SLarry Finger u8 *hwinfo) 1448f1d2b4d3SLarry Finger { 1449f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1450f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw)); 1451f1d2b4d3SLarry Finger u8 rf_path, index, tempval; 1452f1d2b4d3SLarry Finger u16 i; 1453f1d2b4d3SLarry Finger 1454f1d2b4d3SLarry Finger for (rf_path = 0; rf_path < 2; rf_path++) { 1455f1d2b4d3SLarry Finger for (i = 0; i < 3; i++) { 1456f1d2b4d3SLarry Finger if (!autoload_fail) { 1457f1d2b4d3SLarry Finger rtlefuse-> 1458f1d2b4d3SLarry Finger eeprom_chnlarea_txpwr_cck[rf_path][i] = 1459f1d2b4d3SLarry Finger hwinfo[EEPROM_TXPOWERCCK + rf_path * 3 + i]; 1460f1d2b4d3SLarry Finger rtlefuse-> 1461f1d2b4d3SLarry Finger eeprom_chnlarea_txpwr_ht40_1s[rf_path][i] = 1462f1d2b4d3SLarry Finger hwinfo[EEPROM_TXPOWERHT40_1S + rf_path * 3 + 1463f1d2b4d3SLarry Finger i]; 1464f1d2b4d3SLarry Finger } else { 1465f1d2b4d3SLarry Finger rtlefuse-> 1466f1d2b4d3SLarry Finger eeprom_chnlarea_txpwr_cck[rf_path][i] = 1467f1d2b4d3SLarry Finger EEPROM_DEFAULT_TXPOWERLEVEL; 1468f1d2b4d3SLarry Finger rtlefuse-> 1469f1d2b4d3SLarry Finger eeprom_chnlarea_txpwr_ht40_1s[rf_path][i] = 1470f1d2b4d3SLarry Finger EEPROM_DEFAULT_TXPOWERLEVEL; 1471f1d2b4d3SLarry Finger } 1472f1d2b4d3SLarry Finger } 1473f1d2b4d3SLarry Finger } 1474f1d2b4d3SLarry Finger 1475f1d2b4d3SLarry Finger for (i = 0; i < 3; i++) { 1476f1d2b4d3SLarry Finger if (!autoload_fail) 1477f1d2b4d3SLarry Finger tempval = hwinfo[EEPROM_TXPOWERHT40_2SDIFF + i]; 1478f1d2b4d3SLarry Finger else 1479f1d2b4d3SLarry Finger tempval = EEPROM_DEFAULT_HT40_2SDIFF; 1480f1d2b4d3SLarry Finger rtlefuse->eprom_chnl_txpwr_ht40_2sdf[RF90_PATH_A][i] = 1481f1d2b4d3SLarry Finger (tempval & 0xf); 1482f1d2b4d3SLarry Finger rtlefuse->eprom_chnl_txpwr_ht40_2sdf[RF90_PATH_B][i] = 1483f1d2b4d3SLarry Finger ((tempval & 0xf0) >> 4); 1484f1d2b4d3SLarry Finger } 1485f1d2b4d3SLarry Finger 1486f1d2b4d3SLarry Finger for (rf_path = 0; rf_path < 2; rf_path++) 1487f1d2b4d3SLarry Finger for (i = 0; i < 3; i++) 1488f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_EEPROM, 1489f1d2b4d3SLarry Finger "RF(%d) EEPROM CCK Area(%d) = 0x%x\n", 1490f1d2b4d3SLarry Finger rf_path, i, 1491f1d2b4d3SLarry Finger rtlefuse-> 1492f1d2b4d3SLarry Finger eeprom_chnlarea_txpwr_cck[rf_path][i]); 1493f1d2b4d3SLarry Finger for (rf_path = 0; rf_path < 2; rf_path++) 1494f1d2b4d3SLarry Finger for (i = 0; i < 3; i++) 1495f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_EEPROM, 1496f1d2b4d3SLarry Finger "RF(%d) EEPROM HT40 1S Area(%d) = 0x%x\n", 1497f1d2b4d3SLarry Finger rf_path, i, 1498f1d2b4d3SLarry Finger rtlefuse-> 1499f1d2b4d3SLarry Finger eeprom_chnlarea_txpwr_ht40_1s[rf_path][i]); 1500f1d2b4d3SLarry Finger for (rf_path = 0; rf_path < 2; rf_path++) 1501f1d2b4d3SLarry Finger for (i = 0; i < 3; i++) 1502f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_EEPROM, 1503f1d2b4d3SLarry Finger "RF(%d) EEPROM HT40 2S Diff Area(%d) = 0x%x\n", 1504f1d2b4d3SLarry Finger rf_path, i, 1505f1d2b4d3SLarry Finger rtlefuse-> 1506f1d2b4d3SLarry Finger eprom_chnl_txpwr_ht40_2sdf[rf_path][i]); 1507f1d2b4d3SLarry Finger 1508f1d2b4d3SLarry Finger for (rf_path = 0; rf_path < 2; rf_path++) { 1509f1d2b4d3SLarry Finger for (i = 0; i < 14; i++) { 1510f1d2b4d3SLarry Finger index = rtl92c_get_chnl_group((u8)i); 1511f1d2b4d3SLarry Finger 1512f1d2b4d3SLarry Finger rtlefuse->txpwrlevel_cck[rf_path][i] = 1513f1d2b4d3SLarry Finger rtlefuse->eeprom_chnlarea_txpwr_cck[rf_path][index]; 1514f1d2b4d3SLarry Finger rtlefuse->txpwrlevel_ht40_1s[rf_path][i] = 1515f1d2b4d3SLarry Finger rtlefuse-> 1516f1d2b4d3SLarry Finger eeprom_chnlarea_txpwr_ht40_1s[rf_path][index]; 1517f1d2b4d3SLarry Finger 1518f1d2b4d3SLarry Finger if ((rtlefuse-> 1519f1d2b4d3SLarry Finger eeprom_chnlarea_txpwr_ht40_1s[rf_path][index] - 1520f1d2b4d3SLarry Finger rtlefuse-> 1521f1d2b4d3SLarry Finger eprom_chnl_txpwr_ht40_2sdf[rf_path][index]) 1522f1d2b4d3SLarry Finger > 0) { 1523f1d2b4d3SLarry Finger rtlefuse->txpwrlevel_ht40_2s[rf_path][i] = 1524f1d2b4d3SLarry Finger rtlefuse-> 1525f1d2b4d3SLarry Finger eeprom_chnlarea_txpwr_ht40_1s[rf_path] 1526f1d2b4d3SLarry Finger [index] - 1527f1d2b4d3SLarry Finger rtlefuse-> 1528f1d2b4d3SLarry Finger eprom_chnl_txpwr_ht40_2sdf[rf_path] 1529f1d2b4d3SLarry Finger [index]; 1530f1d2b4d3SLarry Finger } else { 1531f1d2b4d3SLarry Finger rtlefuse->txpwrlevel_ht40_2s[rf_path][i] = 0; 1532f1d2b4d3SLarry Finger } 1533f1d2b4d3SLarry Finger } 1534f1d2b4d3SLarry Finger 1535f1d2b4d3SLarry Finger for (i = 0; i < 14; i++) { 1536f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_TXPOWER, 1537f1d2b4d3SLarry Finger "RF(%d)-Ch(%d) [CCK / HT40_1S / HT40_2S] = [0x%x / 0x%x / 0x%x]\n", 1538f1d2b4d3SLarry Finger rf_path, i, 1539f1d2b4d3SLarry Finger rtlefuse->txpwrlevel_cck[rf_path][i], 1540f1d2b4d3SLarry Finger rtlefuse->txpwrlevel_ht40_1s[rf_path][i], 1541f1d2b4d3SLarry Finger rtlefuse->txpwrlevel_ht40_2s[rf_path][i]); 1542f1d2b4d3SLarry Finger } 1543f1d2b4d3SLarry Finger } 1544f1d2b4d3SLarry Finger 1545f1d2b4d3SLarry Finger for (i = 0; i < 3; i++) { 1546f1d2b4d3SLarry Finger if (!autoload_fail) { 1547f1d2b4d3SLarry Finger rtlefuse->eeprom_pwrlimit_ht40[i] = 1548f1d2b4d3SLarry Finger hwinfo[EEPROM_TXPWR_GROUP + i]; 1549f1d2b4d3SLarry Finger rtlefuse->eeprom_pwrlimit_ht20[i] = 1550f1d2b4d3SLarry Finger hwinfo[EEPROM_TXPWR_GROUP + 3 + i]; 1551f1d2b4d3SLarry Finger } else { 1552f1d2b4d3SLarry Finger rtlefuse->eeprom_pwrlimit_ht40[i] = 0; 1553f1d2b4d3SLarry Finger rtlefuse->eeprom_pwrlimit_ht20[i] = 0; 1554f1d2b4d3SLarry Finger } 1555f1d2b4d3SLarry Finger } 1556f1d2b4d3SLarry Finger 1557f1d2b4d3SLarry Finger for (rf_path = 0; rf_path < 2; rf_path++) { 1558f1d2b4d3SLarry Finger for (i = 0; i < 14; i++) { 1559f1d2b4d3SLarry Finger index = rtl92c_get_chnl_group((u8)i); 1560f1d2b4d3SLarry Finger 1561f1d2b4d3SLarry Finger if (rf_path == RF90_PATH_A) { 1562f1d2b4d3SLarry Finger rtlefuse->pwrgroup_ht20[rf_path][i] = 1563f1d2b4d3SLarry Finger (rtlefuse->eeprom_pwrlimit_ht20[index] 1564f1d2b4d3SLarry Finger & 0xf); 1565f1d2b4d3SLarry Finger rtlefuse->pwrgroup_ht40[rf_path][i] = 1566f1d2b4d3SLarry Finger (rtlefuse->eeprom_pwrlimit_ht40[index] 1567f1d2b4d3SLarry Finger & 0xf); 1568f1d2b4d3SLarry Finger } else if (rf_path == RF90_PATH_B) { 1569f1d2b4d3SLarry Finger rtlefuse->pwrgroup_ht20[rf_path][i] = 1570f1d2b4d3SLarry Finger ((rtlefuse->eeprom_pwrlimit_ht20[index] 1571f1d2b4d3SLarry Finger & 0xf0) >> 4); 1572f1d2b4d3SLarry Finger rtlefuse->pwrgroup_ht40[rf_path][i] = 1573f1d2b4d3SLarry Finger ((rtlefuse->eeprom_pwrlimit_ht40[index] 1574f1d2b4d3SLarry Finger & 0xf0) >> 4); 1575f1d2b4d3SLarry Finger } 1576f1d2b4d3SLarry Finger 1577f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_TXPOWER, 1578f1d2b4d3SLarry Finger "RF-%d pwrgroup_ht20[%d] = 0x%x\n", 1579f1d2b4d3SLarry Finger rf_path, i, 1580f1d2b4d3SLarry Finger rtlefuse->pwrgroup_ht20[rf_path][i]); 1581f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_TXPOWER, 1582f1d2b4d3SLarry Finger "RF-%d pwrgroup_ht40[%d] = 0x%x\n", 1583f1d2b4d3SLarry Finger rf_path, i, 1584f1d2b4d3SLarry Finger rtlefuse->pwrgroup_ht40[rf_path][i]); 1585f1d2b4d3SLarry Finger } 1586f1d2b4d3SLarry Finger } 1587f1d2b4d3SLarry Finger 1588f1d2b4d3SLarry Finger for (i = 0; i < 14; i++) { 1589f1d2b4d3SLarry Finger index = rtl92c_get_chnl_group((u8)i); 1590f1d2b4d3SLarry Finger 1591f1d2b4d3SLarry Finger if (!autoload_fail) 1592f1d2b4d3SLarry Finger tempval = hwinfo[EEPROM_TXPOWERHT20DIFF + index]; 1593f1d2b4d3SLarry Finger else 1594f1d2b4d3SLarry Finger tempval = EEPROM_DEFAULT_HT20_DIFF; 1595f1d2b4d3SLarry Finger 1596f1d2b4d3SLarry Finger rtlefuse->txpwr_ht20diff[RF90_PATH_A][i] = (tempval & 0xF); 1597f1d2b4d3SLarry Finger rtlefuse->txpwr_ht20diff[RF90_PATH_B][i] = 1598f1d2b4d3SLarry Finger ((tempval >> 4) & 0xF); 1599f1d2b4d3SLarry Finger 1600f1d2b4d3SLarry Finger if (rtlefuse->txpwr_ht20diff[RF90_PATH_A][i] & BIT(3)) 1601f1d2b4d3SLarry Finger rtlefuse->txpwr_ht20diff[RF90_PATH_A][i] |= 0xF0; 1602f1d2b4d3SLarry Finger 1603f1d2b4d3SLarry Finger if (rtlefuse->txpwr_ht20diff[RF90_PATH_B][i] & BIT(3)) 1604f1d2b4d3SLarry Finger rtlefuse->txpwr_ht20diff[RF90_PATH_B][i] |= 0xF0; 1605f1d2b4d3SLarry Finger 1606f1d2b4d3SLarry Finger index = rtl92c_get_chnl_group((u8)i); 1607f1d2b4d3SLarry Finger 1608f1d2b4d3SLarry Finger if (!autoload_fail) 1609f1d2b4d3SLarry Finger tempval = hwinfo[EEPROM_TXPOWER_OFDMDIFF + index]; 1610f1d2b4d3SLarry Finger else 1611f1d2b4d3SLarry Finger tempval = EEPROM_DEFAULT_LEGACYHTTXPOWERDIFF; 1612f1d2b4d3SLarry Finger 1613f1d2b4d3SLarry Finger rtlefuse->txpwr_legacyhtdiff[RF90_PATH_A][i] = (tempval & 0xF); 1614f1d2b4d3SLarry Finger rtlefuse->txpwr_legacyhtdiff[RF90_PATH_B][i] = 1615f1d2b4d3SLarry Finger ((tempval >> 4) & 0xF); 1616f1d2b4d3SLarry Finger } 1617f1d2b4d3SLarry Finger 1618f1d2b4d3SLarry Finger rtlefuse->legacy_ht_txpowerdiff = 1619f1d2b4d3SLarry Finger rtlefuse->txpwr_legacyhtdiff[RF90_PATH_A][7]; 1620f1d2b4d3SLarry Finger 1621f1d2b4d3SLarry Finger for (i = 0; i < 14; i++) 1622f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_TXPOWER, 1623f1d2b4d3SLarry Finger "RF-A Ht20 to HT40 Diff[%d] = 0x%x\n", 1624f1d2b4d3SLarry Finger i, rtlefuse->txpwr_ht20diff[RF90_PATH_A][i]); 1625f1d2b4d3SLarry Finger for (i = 0; i < 14; i++) 1626f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_TXPOWER, 1627f1d2b4d3SLarry Finger "RF-A Legacy to Ht40 Diff[%d] = 0x%x\n", 1628f1d2b4d3SLarry Finger i, rtlefuse->txpwr_legacyhtdiff[RF90_PATH_A][i]); 1629f1d2b4d3SLarry Finger for (i = 0; i < 14; i++) 1630f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_TXPOWER, 1631f1d2b4d3SLarry Finger "RF-B Ht20 to HT40 Diff[%d] = 0x%x\n", 1632f1d2b4d3SLarry Finger i, rtlefuse->txpwr_ht20diff[RF90_PATH_B][i]); 1633f1d2b4d3SLarry Finger for (i = 0; i < 14; i++) 1634f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_TXPOWER, 1635f1d2b4d3SLarry Finger "RF-B Legacy to HT40 Diff[%d] = 0x%x\n", 1636f1d2b4d3SLarry Finger i, rtlefuse->txpwr_legacyhtdiff[RF90_PATH_B][i]); 1637f1d2b4d3SLarry Finger 1638f1d2b4d3SLarry Finger if (!autoload_fail) 1639f1d2b4d3SLarry Finger rtlefuse->eeprom_regulatory = (hwinfo[RF_OPTION1] & 0x7); 1640f1d2b4d3SLarry Finger else 1641f1d2b4d3SLarry Finger rtlefuse->eeprom_regulatory = 0; 1642f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_TXPOWER, 1643f1d2b4d3SLarry Finger "eeprom_regulatory = 0x%x\n", rtlefuse->eeprom_regulatory); 1644f1d2b4d3SLarry Finger 1645f1d2b4d3SLarry Finger if (!autoload_fail) { 1646f1d2b4d3SLarry Finger rtlefuse->eeprom_tssi[RF90_PATH_A] = hwinfo[EEPROM_TSSI_A]; 1647f1d2b4d3SLarry Finger rtlefuse->eeprom_tssi[RF90_PATH_B] = hwinfo[EEPROM_TSSI_B]; 1648f1d2b4d3SLarry Finger } else { 1649f1d2b4d3SLarry Finger rtlefuse->eeprom_tssi[RF90_PATH_A] = EEPROM_DEFAULT_TSSI; 1650f1d2b4d3SLarry Finger rtlefuse->eeprom_tssi[RF90_PATH_B] = EEPROM_DEFAULT_TSSI; 1651f1d2b4d3SLarry Finger } 1652f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_TXPOWER, "TSSI_A = 0x%x, TSSI_B = 0x%x\n", 1653f1d2b4d3SLarry Finger rtlefuse->eeprom_tssi[RF90_PATH_A], 1654f1d2b4d3SLarry Finger rtlefuse->eeprom_tssi[RF90_PATH_B]); 1655f1d2b4d3SLarry Finger 1656f1d2b4d3SLarry Finger if (!autoload_fail) 1657f1d2b4d3SLarry Finger tempval = hwinfo[EEPROM_THERMAL_METER]; 1658f1d2b4d3SLarry Finger else 1659f1d2b4d3SLarry Finger tempval = EEPROM_DEFAULT_THERMALMETER; 1660f1d2b4d3SLarry Finger rtlefuse->eeprom_thermalmeter = (tempval & 0x1f); 1661f1d2b4d3SLarry Finger 1662f1d2b4d3SLarry Finger if (rtlefuse->eeprom_thermalmeter == 0x1f || autoload_fail) 1663f1d2b4d3SLarry Finger rtlefuse->apk_thermalmeterignore = true; 1664f1d2b4d3SLarry Finger 1665f1d2b4d3SLarry Finger rtlefuse->thermalmeter[0] = rtlefuse->eeprom_thermalmeter; 1666f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FINIT, INIT_TXPOWER, 1667f1d2b4d3SLarry Finger "thermalmeter = 0x%x\n", rtlefuse->eeprom_thermalmeter); 1668f1d2b4d3SLarry Finger } 1669f1d2b4d3SLarry Finger 1670f1d2b4d3SLarry Finger static void _rtl92ce_read_adapter_info(struct ieee80211_hw *hw) 1671f1d2b4d3SLarry Finger { 1672f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1673f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw)); 1674f1d2b4d3SLarry Finger struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw)); 1675df5cbc69SLarry Finger int params[] = {RTL8190_EEPROM_ID, EEPROM_VID, EEPROM_DID, 1676df5cbc69SLarry Finger EEPROM_SVID, EEPROM_SMID, EEPROM_MAC_ADDR, 1677df5cbc69SLarry Finger EEPROM_CHANNELPLAN, EEPROM_VERSION, EEPROM_CUSTOMER_ID, 1678df5cbc69SLarry Finger COUNTRY_CODE_WORLD_WIDE_13}; 1679df5cbc69SLarry Finger u8 *hwinfo; 1680f1d2b4d3SLarry Finger 1681df5cbc69SLarry Finger hwinfo = kzalloc(HWSET_MAX_SIZE, GFP_KERNEL); 1682df5cbc69SLarry Finger if (!hwinfo) 16835345ea6aSArnd Bergmann return; 16845345ea6aSArnd Bergmann 1685df5cbc69SLarry Finger if (rtl_get_hwinfo(hw, rtlpriv, HWSET_MAX_SIZE, hwinfo, params)) 1686df5cbc69SLarry Finger goto exit; 1687f1d2b4d3SLarry Finger 1688f1d2b4d3SLarry Finger _rtl92ce_read_txpower_info_from_hwpg(hw, 1689f1d2b4d3SLarry Finger rtlefuse->autoload_failflag, 1690f1d2b4d3SLarry Finger hwinfo); 1691f1d2b4d3SLarry Finger 1692f1d2b4d3SLarry Finger rtl8192ce_read_bt_coexist_info_from_hwpg(hw, 1693f1d2b4d3SLarry Finger rtlefuse->autoload_failflag, 1694f1d2b4d3SLarry Finger hwinfo); 1695f1d2b4d3SLarry Finger if (rtlhal->oem_id == RT_CID_DEFAULT) { 1696f1d2b4d3SLarry Finger switch (rtlefuse->eeprom_oemid) { 1697f1d2b4d3SLarry Finger case EEPROM_CID_DEFAULT: 1698f1d2b4d3SLarry Finger if (rtlefuse->eeprom_did == 0x8176) { 1699f1d2b4d3SLarry Finger if ((rtlefuse->eeprom_svid == 0x103C && 1700f1d2b4d3SLarry Finger rtlefuse->eeprom_smid == 0x1629)) 1701f1d2b4d3SLarry Finger rtlhal->oem_id = RT_CID_819X_HP; 1702f1d2b4d3SLarry Finger else 1703f1d2b4d3SLarry Finger rtlhal->oem_id = RT_CID_DEFAULT; 1704f1d2b4d3SLarry Finger } else { 1705f1d2b4d3SLarry Finger rtlhal->oem_id = RT_CID_DEFAULT; 1706f1d2b4d3SLarry Finger } 1707f1d2b4d3SLarry Finger break; 1708f1d2b4d3SLarry Finger case EEPROM_CID_TOSHIBA: 1709f1d2b4d3SLarry Finger rtlhal->oem_id = RT_CID_TOSHIBA; 1710f1d2b4d3SLarry Finger break; 1711f1d2b4d3SLarry Finger case EEPROM_CID_QMI: 1712f1d2b4d3SLarry Finger rtlhal->oem_id = RT_CID_819X_QMI; 1713f1d2b4d3SLarry Finger break; 1714f1d2b4d3SLarry Finger case EEPROM_CID_WHQL: 1715f1d2b4d3SLarry Finger default: 1716f1d2b4d3SLarry Finger rtlhal->oem_id = RT_CID_DEFAULT; 1717f1d2b4d3SLarry Finger break; 1718f1d2b4d3SLarry Finger } 1719f1d2b4d3SLarry Finger } 1720df5cbc69SLarry Finger exit: 1721df5cbc69SLarry Finger kfree(hwinfo); 1722f1d2b4d3SLarry Finger } 1723f1d2b4d3SLarry Finger 1724f1d2b4d3SLarry Finger static void _rtl92ce_hal_customized_behavior(struct ieee80211_hw *hw) 1725f1d2b4d3SLarry Finger { 1726f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1727f1d2b4d3SLarry Finger struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw); 1728f1d2b4d3SLarry Finger struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw)); 1729f1d2b4d3SLarry Finger 1730f1d2b4d3SLarry Finger switch (rtlhal->oem_id) { 1731f1d2b4d3SLarry Finger case RT_CID_819X_HP: 1732f1d2b4d3SLarry Finger pcipriv->ledctl.led_opendrain = true; 1733f1d2b4d3SLarry Finger break; 1734f1d2b4d3SLarry Finger case RT_CID_819X_LENOVO: 1735f1d2b4d3SLarry Finger case RT_CID_DEFAULT: 1736f1d2b4d3SLarry Finger case RT_CID_TOSHIBA: 1737f1d2b4d3SLarry Finger case RT_CID_CCX: 1738f1d2b4d3SLarry Finger case RT_CID_819X_ACER: 1739f1d2b4d3SLarry Finger case RT_CID_WHQL: 1740f1d2b4d3SLarry Finger default: 1741f1d2b4d3SLarry Finger break; 1742f1d2b4d3SLarry Finger } 1743f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG, 1744f1d2b4d3SLarry Finger "RT Customized ID: 0x%02X\n", rtlhal->oem_id); 1745f1d2b4d3SLarry Finger } 1746f1d2b4d3SLarry Finger 1747f1d2b4d3SLarry Finger void rtl92ce_read_eeprom_info(struct ieee80211_hw *hw) 1748f1d2b4d3SLarry Finger { 1749f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1750f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw)); 1751f1d2b4d3SLarry Finger struct rtl_phy *rtlphy = &(rtlpriv->phy); 1752f1d2b4d3SLarry Finger struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw)); 1753f1d2b4d3SLarry Finger u8 tmp_u1b; 1754f1d2b4d3SLarry Finger 1755f1d2b4d3SLarry Finger rtlhal->version = _rtl92ce_read_chip_version(hw); 1756f1d2b4d3SLarry Finger if (get_rf_type(rtlphy) == RF_1T1R) 1757f1d2b4d3SLarry Finger rtlpriv->dm.rfpath_rxenable[0] = true; 1758f1d2b4d3SLarry Finger else 1759f1d2b4d3SLarry Finger rtlpriv->dm.rfpath_rxenable[0] = 1760f1d2b4d3SLarry Finger rtlpriv->dm.rfpath_rxenable[1] = true; 1761f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD, "VersionID = 0x%4x\n", 1762f1d2b4d3SLarry Finger rtlhal->version); 1763f1d2b4d3SLarry Finger tmp_u1b = rtl_read_byte(rtlpriv, REG_9346CR); 1764f1d2b4d3SLarry Finger if (tmp_u1b & BIT(4)) { 1765f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG, "Boot from EEPROM\n"); 1766f1d2b4d3SLarry Finger rtlefuse->epromtype = EEPROM_93C46; 1767f1d2b4d3SLarry Finger } else { 1768f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG, "Boot from EFUSE\n"); 1769f1d2b4d3SLarry Finger rtlefuse->epromtype = EEPROM_BOOT_EFUSE; 1770f1d2b4d3SLarry Finger } 1771f1d2b4d3SLarry Finger if (tmp_u1b & BIT(5)) { 1772f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD, "Autoload OK\n"); 1773f1d2b4d3SLarry Finger rtlefuse->autoload_failflag = false; 1774f1d2b4d3SLarry Finger _rtl92ce_read_adapter_info(hw); 1775f1d2b4d3SLarry Finger } else { 1776*e40a0056SLarry Finger pr_err("Autoload ERR!!\n"); 1777f1d2b4d3SLarry Finger } 1778f1d2b4d3SLarry Finger _rtl92ce_hal_customized_behavior(hw); 1779f1d2b4d3SLarry Finger } 1780f1d2b4d3SLarry Finger 1781f1d2b4d3SLarry Finger static void rtl92ce_update_hal_rate_table(struct ieee80211_hw *hw, 1782f1d2b4d3SLarry Finger struct ieee80211_sta *sta) 1783f1d2b4d3SLarry Finger { 1784f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1785f1d2b4d3SLarry Finger struct rtl_pci_priv *rtlpcipriv = rtl_pcipriv(hw); 1786f1d2b4d3SLarry Finger struct rtl_phy *rtlphy = &(rtlpriv->phy); 1787f1d2b4d3SLarry Finger struct rtl_mac *mac = rtl_mac(rtl_priv(hw)); 1788f1d2b4d3SLarry Finger struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw)); 1789f1d2b4d3SLarry Finger u32 ratr_value; 1790f1d2b4d3SLarry Finger u8 ratr_index = 0; 1791f1d2b4d3SLarry Finger u8 nmode = mac->ht_enable; 1792f1d2b4d3SLarry Finger u16 shortgi_rate; 1793f1d2b4d3SLarry Finger u32 tmp_ratr_value; 1794f1d2b4d3SLarry Finger u8 curtxbw_40mhz = mac->bw_40; 1795f1d2b4d3SLarry Finger u8 curshortgi_40mhz = (sta->ht_cap.cap & IEEE80211_HT_CAP_SGI_40) ? 1796f1d2b4d3SLarry Finger 1 : 0; 1797f1d2b4d3SLarry Finger u8 curshortgi_20mhz = (sta->ht_cap.cap & IEEE80211_HT_CAP_SGI_20) ? 1798f1d2b4d3SLarry Finger 1 : 0; 1799f1d2b4d3SLarry Finger enum wireless_mode wirelessmode = mac->mode; 1800f1d2b4d3SLarry Finger u32 ratr_mask; 1801f1d2b4d3SLarry Finger 1802f1d2b4d3SLarry Finger if (rtlhal->current_bandtype == BAND_ON_5G) 1803f1d2b4d3SLarry Finger ratr_value = sta->supp_rates[1] << 4; 1804f1d2b4d3SLarry Finger else 1805f1d2b4d3SLarry Finger ratr_value = sta->supp_rates[0]; 1806f1d2b4d3SLarry Finger if (mac->opmode == NL80211_IFTYPE_ADHOC) 1807f1d2b4d3SLarry Finger ratr_value = 0xfff; 1808f1d2b4d3SLarry Finger 1809f1d2b4d3SLarry Finger ratr_value |= (sta->ht_cap.mcs.rx_mask[1] << 20 | 1810f1d2b4d3SLarry Finger sta->ht_cap.mcs.rx_mask[0] << 12); 1811f1d2b4d3SLarry Finger switch (wirelessmode) { 1812f1d2b4d3SLarry Finger case WIRELESS_MODE_B: 1813f1d2b4d3SLarry Finger if (ratr_value & 0x0000000c) 1814f1d2b4d3SLarry Finger ratr_value &= 0x0000000d; 1815f1d2b4d3SLarry Finger else 1816f1d2b4d3SLarry Finger ratr_value &= 0x0000000f; 1817f1d2b4d3SLarry Finger break; 1818f1d2b4d3SLarry Finger case WIRELESS_MODE_G: 1819f1d2b4d3SLarry Finger ratr_value &= 0x00000FF5; 1820f1d2b4d3SLarry Finger break; 1821f1d2b4d3SLarry Finger case WIRELESS_MODE_N_24G: 1822f1d2b4d3SLarry Finger case WIRELESS_MODE_N_5G: 1823f1d2b4d3SLarry Finger nmode = 1; 1824f1d2b4d3SLarry Finger if (get_rf_type(rtlphy) == RF_1T2R || 1825f1d2b4d3SLarry Finger get_rf_type(rtlphy) == RF_1T1R) 1826f1d2b4d3SLarry Finger ratr_mask = 0x000ff005; 1827f1d2b4d3SLarry Finger else 1828f1d2b4d3SLarry Finger ratr_mask = 0x0f0ff005; 1829f1d2b4d3SLarry Finger 1830f1d2b4d3SLarry Finger ratr_value &= ratr_mask; 1831f1d2b4d3SLarry Finger break; 1832f1d2b4d3SLarry Finger default: 1833f1d2b4d3SLarry Finger if (rtlphy->rf_type == RF_1T2R) 1834f1d2b4d3SLarry Finger ratr_value &= 0x000ff0ff; 1835f1d2b4d3SLarry Finger else 1836f1d2b4d3SLarry Finger ratr_value &= 0x0f0ff0ff; 1837f1d2b4d3SLarry Finger 1838f1d2b4d3SLarry Finger break; 1839f1d2b4d3SLarry Finger } 1840f1d2b4d3SLarry Finger 1841f1d2b4d3SLarry Finger if ((rtlpcipriv->bt_coexist.bt_coexistence) && 1842f1d2b4d3SLarry Finger (rtlpcipriv->bt_coexist.bt_coexist_type == BT_CSR_BC4) && 1843f1d2b4d3SLarry Finger (rtlpcipriv->bt_coexist.bt_cur_state) && 1844f1d2b4d3SLarry Finger (rtlpcipriv->bt_coexist.bt_ant_isolation) && 1845f1d2b4d3SLarry Finger ((rtlpcipriv->bt_coexist.bt_service == BT_SCO) || 1846f1d2b4d3SLarry Finger (rtlpcipriv->bt_coexist.bt_service == BT_BUSY))) 1847f1d2b4d3SLarry Finger ratr_value &= 0x0fffcfc0; 1848f1d2b4d3SLarry Finger else 1849f1d2b4d3SLarry Finger ratr_value &= 0x0FFFFFFF; 1850f1d2b4d3SLarry Finger 1851f1d2b4d3SLarry Finger if (nmode && ((curtxbw_40mhz && 1852f1d2b4d3SLarry Finger curshortgi_40mhz) || (!curtxbw_40mhz && 1853f1d2b4d3SLarry Finger curshortgi_20mhz))) { 1854f1d2b4d3SLarry Finger 1855f1d2b4d3SLarry Finger ratr_value |= 0x10000000; 1856f1d2b4d3SLarry Finger tmp_ratr_value = (ratr_value >> 12); 1857f1d2b4d3SLarry Finger 1858f1d2b4d3SLarry Finger for (shortgi_rate = 15; shortgi_rate > 0; shortgi_rate--) { 1859f1d2b4d3SLarry Finger if ((1 << shortgi_rate) & tmp_ratr_value) 1860f1d2b4d3SLarry Finger break; 1861f1d2b4d3SLarry Finger } 1862f1d2b4d3SLarry Finger 1863f1d2b4d3SLarry Finger shortgi_rate = (shortgi_rate << 12) | (shortgi_rate << 8) | 1864f1d2b4d3SLarry Finger (shortgi_rate << 4) | (shortgi_rate); 1865f1d2b4d3SLarry Finger } 1866f1d2b4d3SLarry Finger 1867f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_ARFR0 + ratr_index * 4, ratr_value); 1868f1d2b4d3SLarry Finger 1869f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_RATR, DBG_DMESG, "%x\n", 1870f1d2b4d3SLarry Finger rtl_read_dword(rtlpriv, REG_ARFR0)); 1871f1d2b4d3SLarry Finger } 1872f1d2b4d3SLarry Finger 1873f1d2b4d3SLarry Finger static void rtl92ce_update_hal_rate_mask(struct ieee80211_hw *hw, 1874f1d2b4d3SLarry Finger struct ieee80211_sta *sta, u8 rssi_level) 1875f1d2b4d3SLarry Finger { 1876f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 1877f1d2b4d3SLarry Finger struct rtl_phy *rtlphy = &(rtlpriv->phy); 1878f1d2b4d3SLarry Finger struct rtl_mac *mac = rtl_mac(rtl_priv(hw)); 1879f1d2b4d3SLarry Finger struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw)); 1880f1d2b4d3SLarry Finger struct rtl_sta_info *sta_entry = NULL; 1881f1d2b4d3SLarry Finger u32 ratr_bitmap; 1882f1d2b4d3SLarry Finger u8 ratr_index; 1883f1d2b4d3SLarry Finger u8 curtxbw_40mhz = (sta->ht_cap.cap & 1884f1d2b4d3SLarry Finger IEEE80211_HT_CAP_SUP_WIDTH_20_40) ? 1 : 0; 1885f1d2b4d3SLarry Finger u8 curshortgi_40mhz = (sta->ht_cap.cap & 1886f1d2b4d3SLarry Finger IEEE80211_HT_CAP_SGI_40) ? 1 : 0; 1887f1d2b4d3SLarry Finger u8 curshortgi_20mhz = (sta->ht_cap.cap & IEEE80211_HT_CAP_SGI_20) ? 1888f1d2b4d3SLarry Finger 1 : 0; 1889f1d2b4d3SLarry Finger enum wireless_mode wirelessmode = 0; 1890f1d2b4d3SLarry Finger bool shortgi = false; 1891f1d2b4d3SLarry Finger u8 rate_mask[5]; 1892f1d2b4d3SLarry Finger u8 macid = 0; 1893f1d2b4d3SLarry Finger 1894f1d2b4d3SLarry Finger sta_entry = (struct rtl_sta_info *) sta->drv_priv; 1895f1d2b4d3SLarry Finger wirelessmode = sta_entry->wireless_mode; 1896f1d2b4d3SLarry Finger if (mac->opmode == NL80211_IFTYPE_STATION || 1897f1d2b4d3SLarry Finger mac->opmode == NL80211_IFTYPE_MESH_POINT) 1898f1d2b4d3SLarry Finger curtxbw_40mhz = mac->bw_40; 1899f1d2b4d3SLarry Finger else if (mac->opmode == NL80211_IFTYPE_AP || 1900f1d2b4d3SLarry Finger mac->opmode == NL80211_IFTYPE_ADHOC) 1901f1d2b4d3SLarry Finger macid = sta->aid + 1; 1902f1d2b4d3SLarry Finger 1903f1d2b4d3SLarry Finger if (rtlhal->current_bandtype == BAND_ON_5G) 1904f1d2b4d3SLarry Finger ratr_bitmap = sta->supp_rates[1] << 4; 1905f1d2b4d3SLarry Finger else 1906f1d2b4d3SLarry Finger ratr_bitmap = sta->supp_rates[0]; 1907f1d2b4d3SLarry Finger if (mac->opmode == NL80211_IFTYPE_ADHOC) 1908f1d2b4d3SLarry Finger ratr_bitmap = 0xfff; 1909f1d2b4d3SLarry Finger ratr_bitmap |= (sta->ht_cap.mcs.rx_mask[1] << 20 | 1910f1d2b4d3SLarry Finger sta->ht_cap.mcs.rx_mask[0] << 12); 1911f1d2b4d3SLarry Finger switch (wirelessmode) { 1912f1d2b4d3SLarry Finger case WIRELESS_MODE_B: 1913f1d2b4d3SLarry Finger ratr_index = RATR_INX_WIRELESS_B; 1914f1d2b4d3SLarry Finger if (ratr_bitmap & 0x0000000c) 1915f1d2b4d3SLarry Finger ratr_bitmap &= 0x0000000d; 1916f1d2b4d3SLarry Finger else 1917f1d2b4d3SLarry Finger ratr_bitmap &= 0x0000000f; 1918f1d2b4d3SLarry Finger break; 1919f1d2b4d3SLarry Finger case WIRELESS_MODE_G: 1920f1d2b4d3SLarry Finger ratr_index = RATR_INX_WIRELESS_GB; 1921f1d2b4d3SLarry Finger 1922f1d2b4d3SLarry Finger if (rssi_level == 1) 1923f1d2b4d3SLarry Finger ratr_bitmap &= 0x00000f00; 1924f1d2b4d3SLarry Finger else if (rssi_level == 2) 1925f1d2b4d3SLarry Finger ratr_bitmap &= 0x00000ff0; 1926f1d2b4d3SLarry Finger else 1927f1d2b4d3SLarry Finger ratr_bitmap &= 0x00000ff5; 1928f1d2b4d3SLarry Finger break; 1929f1d2b4d3SLarry Finger case WIRELESS_MODE_A: 1930f1d2b4d3SLarry Finger ratr_index = RATR_INX_WIRELESS_A; 1931f1d2b4d3SLarry Finger ratr_bitmap &= 0x00000ff0; 1932f1d2b4d3SLarry Finger break; 1933f1d2b4d3SLarry Finger case WIRELESS_MODE_N_24G: 1934f1d2b4d3SLarry Finger case WIRELESS_MODE_N_5G: 1935f1d2b4d3SLarry Finger ratr_index = RATR_INX_WIRELESS_NGB; 1936f1d2b4d3SLarry Finger 1937f1d2b4d3SLarry Finger if (rtlphy->rf_type == RF_1T2R || 1938f1d2b4d3SLarry Finger rtlphy->rf_type == RF_1T1R) { 1939f1d2b4d3SLarry Finger if (curtxbw_40mhz) { 1940f1d2b4d3SLarry Finger if (rssi_level == 1) 1941f1d2b4d3SLarry Finger ratr_bitmap &= 0x000f0000; 1942f1d2b4d3SLarry Finger else if (rssi_level == 2) 1943f1d2b4d3SLarry Finger ratr_bitmap &= 0x000ff000; 1944f1d2b4d3SLarry Finger else 1945f1d2b4d3SLarry Finger ratr_bitmap &= 0x000ff015; 1946f1d2b4d3SLarry Finger } else { 1947f1d2b4d3SLarry Finger if (rssi_level == 1) 1948f1d2b4d3SLarry Finger ratr_bitmap &= 0x000f0000; 1949f1d2b4d3SLarry Finger else if (rssi_level == 2) 1950f1d2b4d3SLarry Finger ratr_bitmap &= 0x000ff000; 1951f1d2b4d3SLarry Finger else 1952f1d2b4d3SLarry Finger ratr_bitmap &= 0x000ff005; 1953f1d2b4d3SLarry Finger } 1954f1d2b4d3SLarry Finger } else { 1955f1d2b4d3SLarry Finger if (curtxbw_40mhz) { 1956f1d2b4d3SLarry Finger if (rssi_level == 1) 1957f1d2b4d3SLarry Finger ratr_bitmap &= 0x0f0f0000; 1958f1d2b4d3SLarry Finger else if (rssi_level == 2) 1959f1d2b4d3SLarry Finger ratr_bitmap &= 0x0f0ff000; 1960f1d2b4d3SLarry Finger else 1961f1d2b4d3SLarry Finger ratr_bitmap &= 0x0f0ff015; 1962f1d2b4d3SLarry Finger } else { 1963f1d2b4d3SLarry Finger if (rssi_level == 1) 1964f1d2b4d3SLarry Finger ratr_bitmap &= 0x0f0f0000; 1965f1d2b4d3SLarry Finger else if (rssi_level == 2) 1966f1d2b4d3SLarry Finger ratr_bitmap &= 0x0f0ff000; 1967f1d2b4d3SLarry Finger else 1968f1d2b4d3SLarry Finger ratr_bitmap &= 0x0f0ff005; 1969f1d2b4d3SLarry Finger } 1970f1d2b4d3SLarry Finger } 1971f1d2b4d3SLarry Finger 1972f1d2b4d3SLarry Finger if ((curtxbw_40mhz && curshortgi_40mhz) || 1973f1d2b4d3SLarry Finger (!curtxbw_40mhz && curshortgi_20mhz)) { 1974f1d2b4d3SLarry Finger 1975f1d2b4d3SLarry Finger if (macid == 0) 1976f1d2b4d3SLarry Finger shortgi = true; 1977f1d2b4d3SLarry Finger else if (macid == 1) 1978f1d2b4d3SLarry Finger shortgi = false; 1979f1d2b4d3SLarry Finger } 1980f1d2b4d3SLarry Finger break; 1981f1d2b4d3SLarry Finger default: 1982f1d2b4d3SLarry Finger ratr_index = RATR_INX_WIRELESS_NGB; 1983f1d2b4d3SLarry Finger 1984f1d2b4d3SLarry Finger if (rtlphy->rf_type == RF_1T2R) 1985f1d2b4d3SLarry Finger ratr_bitmap &= 0x000ff0ff; 1986f1d2b4d3SLarry Finger else 1987f1d2b4d3SLarry Finger ratr_bitmap &= 0x0f0ff0ff; 1988f1d2b4d3SLarry Finger break; 1989f1d2b4d3SLarry Finger } 1990f1d2b4d3SLarry Finger sta_entry->ratr_index = ratr_index; 1991f1d2b4d3SLarry Finger 1992f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_RATR, DBG_DMESG, 1993f1d2b4d3SLarry Finger "ratr_bitmap :%x\n", ratr_bitmap); 1994f1d2b4d3SLarry Finger *(u32 *)&rate_mask = (ratr_bitmap & 0x0fffffff) | 1995f1d2b4d3SLarry Finger (ratr_index << 28); 1996f1d2b4d3SLarry Finger rate_mask[4] = macid | (shortgi ? 0x20 : 0x00) | 0x80; 1997f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_RATR, DBG_DMESG, 1998f1d2b4d3SLarry Finger "Rate_index:%x, ratr_val:%x, %5phC\n", 1999f1d2b4d3SLarry Finger ratr_index, ratr_bitmap, rate_mask); 2000f1d2b4d3SLarry Finger rtl92c_fill_h2c_cmd(hw, H2C_RA_MASK, 5, rate_mask); 2001f1d2b4d3SLarry Finger } 2002f1d2b4d3SLarry Finger 2003f1d2b4d3SLarry Finger void rtl92ce_update_hal_rate_tbl(struct ieee80211_hw *hw, 2004f1d2b4d3SLarry Finger struct ieee80211_sta *sta, u8 rssi_level) 2005f1d2b4d3SLarry Finger { 2006f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 2007f1d2b4d3SLarry Finger 2008f1d2b4d3SLarry Finger if (rtlpriv->dm.useramask) 2009f1d2b4d3SLarry Finger rtl92ce_update_hal_rate_mask(hw, sta, rssi_level); 2010f1d2b4d3SLarry Finger else 2011f1d2b4d3SLarry Finger rtl92ce_update_hal_rate_table(hw, sta); 2012f1d2b4d3SLarry Finger } 2013f1d2b4d3SLarry Finger 2014f1d2b4d3SLarry Finger void rtl92ce_update_channel_access_setting(struct ieee80211_hw *hw) 2015f1d2b4d3SLarry Finger { 2016f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 2017f1d2b4d3SLarry Finger struct rtl_mac *mac = rtl_mac(rtl_priv(hw)); 2018f1d2b4d3SLarry Finger u16 sifs_timer; 2019f1d2b4d3SLarry Finger 2020f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_SLOT_TIME, 2021f1d2b4d3SLarry Finger &mac->slot_time); 2022f1d2b4d3SLarry Finger if (!mac->ht_enable) 2023f1d2b4d3SLarry Finger sifs_timer = 0x0a0a; 2024f1d2b4d3SLarry Finger else 2025f1d2b4d3SLarry Finger sifs_timer = 0x1010; 2026f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_SIFS, (u8 *)&sifs_timer); 2027f1d2b4d3SLarry Finger } 2028f1d2b4d3SLarry Finger 2029f1d2b4d3SLarry Finger bool rtl92ce_gpio_radio_on_off_checking(struct ieee80211_hw *hw, u8 *valid) 2030f1d2b4d3SLarry Finger { 2031f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 2032f1d2b4d3SLarry Finger struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw)); 2033f1d2b4d3SLarry Finger struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw)); 2034f1d2b4d3SLarry Finger enum rf_pwrstate e_rfpowerstate_toset; 2035f1d2b4d3SLarry Finger u8 u1tmp; 2036f1d2b4d3SLarry Finger bool actuallyset = false; 2037f1d2b4d3SLarry Finger unsigned long flag; 2038f1d2b4d3SLarry Finger 2039f1d2b4d3SLarry Finger if (rtlpci->being_init_adapter) 2040f1d2b4d3SLarry Finger return false; 2041f1d2b4d3SLarry Finger 2042f1d2b4d3SLarry Finger if (ppsc->swrf_processing) 2043f1d2b4d3SLarry Finger return false; 2044f1d2b4d3SLarry Finger 2045f1d2b4d3SLarry Finger spin_lock_irqsave(&rtlpriv->locks.rf_ps_lock, flag); 2046f1d2b4d3SLarry Finger if (ppsc->rfchange_inprogress) { 2047f1d2b4d3SLarry Finger spin_unlock_irqrestore(&rtlpriv->locks.rf_ps_lock, flag); 2048f1d2b4d3SLarry Finger return false; 2049f1d2b4d3SLarry Finger } else { 2050f1d2b4d3SLarry Finger ppsc->rfchange_inprogress = true; 2051f1d2b4d3SLarry Finger spin_unlock_irqrestore(&rtlpriv->locks.rf_ps_lock, flag); 2052f1d2b4d3SLarry Finger } 2053f1d2b4d3SLarry Finger 2054f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_MAC_PINMUX_CFG, rtl_read_byte(rtlpriv, 2055f1d2b4d3SLarry Finger REG_MAC_PINMUX_CFG)&~(BIT(3))); 2056f1d2b4d3SLarry Finger 2057f1d2b4d3SLarry Finger u1tmp = rtl_read_byte(rtlpriv, REG_GPIO_IO_SEL); 2058f1d2b4d3SLarry Finger e_rfpowerstate_toset = (u1tmp & BIT(3)) ? ERFON : ERFOFF; 2059f1d2b4d3SLarry Finger 2060f1d2b4d3SLarry Finger if ((ppsc->hwradiooff) && (e_rfpowerstate_toset == ERFON)) { 2061f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_RF, DBG_DMESG, 2062f1d2b4d3SLarry Finger "GPIOChangeRF - HW Radio ON, RF ON\n"); 2063f1d2b4d3SLarry Finger 2064f1d2b4d3SLarry Finger e_rfpowerstate_toset = ERFON; 2065f1d2b4d3SLarry Finger ppsc->hwradiooff = false; 2066f1d2b4d3SLarry Finger actuallyset = true; 2067f1d2b4d3SLarry Finger } else if (!ppsc->hwradiooff && (e_rfpowerstate_toset == ERFOFF)) { 2068f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_RF, DBG_DMESG, 2069f1d2b4d3SLarry Finger "GPIOChangeRF - HW Radio OFF, RF OFF\n"); 2070f1d2b4d3SLarry Finger 2071f1d2b4d3SLarry Finger e_rfpowerstate_toset = ERFOFF; 2072f1d2b4d3SLarry Finger ppsc->hwradiooff = true; 2073f1d2b4d3SLarry Finger actuallyset = true; 2074f1d2b4d3SLarry Finger } 2075f1d2b4d3SLarry Finger 2076f1d2b4d3SLarry Finger if (actuallyset) { 2077f1d2b4d3SLarry Finger spin_lock_irqsave(&rtlpriv->locks.rf_ps_lock, flag); 2078f1d2b4d3SLarry Finger ppsc->rfchange_inprogress = false; 2079f1d2b4d3SLarry Finger spin_unlock_irqrestore(&rtlpriv->locks.rf_ps_lock, flag); 2080f1d2b4d3SLarry Finger } else { 2081f1d2b4d3SLarry Finger if (ppsc->reg_rfps_level & RT_RF_OFF_LEVL_HALT_NIC) 2082f1d2b4d3SLarry Finger RT_SET_PS_LEVEL(ppsc, RT_RF_OFF_LEVL_HALT_NIC); 2083f1d2b4d3SLarry Finger 2084f1d2b4d3SLarry Finger spin_lock_irqsave(&rtlpriv->locks.rf_ps_lock, flag); 2085f1d2b4d3SLarry Finger ppsc->rfchange_inprogress = false; 2086f1d2b4d3SLarry Finger spin_unlock_irqrestore(&rtlpriv->locks.rf_ps_lock, flag); 2087f1d2b4d3SLarry Finger } 2088f1d2b4d3SLarry Finger 2089f1d2b4d3SLarry Finger *valid = 1; 2090f1d2b4d3SLarry Finger return !ppsc->hwradiooff; 2091f1d2b4d3SLarry Finger 2092f1d2b4d3SLarry Finger } 2093f1d2b4d3SLarry Finger 2094f1d2b4d3SLarry Finger void rtl92ce_set_key(struct ieee80211_hw *hw, u32 key_index, 2095f1d2b4d3SLarry Finger u8 *p_macaddr, bool is_group, u8 enc_algo, 2096f1d2b4d3SLarry Finger bool is_wepkey, bool clear_all) 2097f1d2b4d3SLarry Finger { 2098f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 2099f1d2b4d3SLarry Finger struct rtl_mac *mac = rtl_mac(rtl_priv(hw)); 2100f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw)); 2101f1d2b4d3SLarry Finger u8 *macaddr = p_macaddr; 2102f1d2b4d3SLarry Finger u32 entry_id = 0; 2103f1d2b4d3SLarry Finger bool is_pairwise = false; 2104f1d2b4d3SLarry Finger 2105f1d2b4d3SLarry Finger static u8 cam_const_addr[4][6] = { 2106f1d2b4d3SLarry Finger {0x00, 0x00, 0x00, 0x00, 0x00, 0x00}, 2107f1d2b4d3SLarry Finger {0x00, 0x00, 0x00, 0x00, 0x00, 0x01}, 2108f1d2b4d3SLarry Finger {0x00, 0x00, 0x00, 0x00, 0x00, 0x02}, 2109f1d2b4d3SLarry Finger {0x00, 0x00, 0x00, 0x00, 0x00, 0x03} 2110f1d2b4d3SLarry Finger }; 2111f1d2b4d3SLarry Finger static u8 cam_const_broad[] = { 2112f1d2b4d3SLarry Finger 0xff, 0xff, 0xff, 0xff, 0xff, 0xff 2113f1d2b4d3SLarry Finger }; 2114f1d2b4d3SLarry Finger 2115f1d2b4d3SLarry Finger if (clear_all) { 2116f1d2b4d3SLarry Finger u8 idx = 0; 2117f1d2b4d3SLarry Finger u8 cam_offset = 0; 2118f1d2b4d3SLarry Finger u8 clear_number = 5; 2119f1d2b4d3SLarry Finger 2120f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_SEC, DBG_DMESG, "clear_all\n"); 2121f1d2b4d3SLarry Finger 2122f1d2b4d3SLarry Finger for (idx = 0; idx < clear_number; idx++) { 2123f1d2b4d3SLarry Finger rtl_cam_mark_invalid(hw, cam_offset + idx); 2124f1d2b4d3SLarry Finger rtl_cam_empty_entry(hw, cam_offset + idx); 2125f1d2b4d3SLarry Finger 2126f1d2b4d3SLarry Finger if (idx < 5) { 2127f1d2b4d3SLarry Finger memset(rtlpriv->sec.key_buf[idx], 0, 2128f1d2b4d3SLarry Finger MAX_KEY_LEN); 2129f1d2b4d3SLarry Finger rtlpriv->sec.key_len[idx] = 0; 2130f1d2b4d3SLarry Finger } 2131f1d2b4d3SLarry Finger } 2132f1d2b4d3SLarry Finger 2133f1d2b4d3SLarry Finger } else { 2134f1d2b4d3SLarry Finger switch (enc_algo) { 2135f1d2b4d3SLarry Finger case WEP40_ENCRYPTION: 2136f1d2b4d3SLarry Finger enc_algo = CAM_WEP40; 2137f1d2b4d3SLarry Finger break; 2138f1d2b4d3SLarry Finger case WEP104_ENCRYPTION: 2139f1d2b4d3SLarry Finger enc_algo = CAM_WEP104; 2140f1d2b4d3SLarry Finger break; 2141f1d2b4d3SLarry Finger case TKIP_ENCRYPTION: 2142f1d2b4d3SLarry Finger enc_algo = CAM_TKIP; 2143f1d2b4d3SLarry Finger break; 2144f1d2b4d3SLarry Finger case AESCCMP_ENCRYPTION: 2145f1d2b4d3SLarry Finger enc_algo = CAM_AES; 2146f1d2b4d3SLarry Finger break; 2147f1d2b4d3SLarry Finger default: 2148*e40a0056SLarry Finger pr_err("switch case %#x not processed\n", 2149*e40a0056SLarry Finger enc_algo); 2150f1d2b4d3SLarry Finger enc_algo = CAM_TKIP; 2151f1d2b4d3SLarry Finger break; 2152f1d2b4d3SLarry Finger } 2153f1d2b4d3SLarry Finger 2154f1d2b4d3SLarry Finger if (is_wepkey || rtlpriv->sec.use_defaultkey) { 2155f1d2b4d3SLarry Finger macaddr = cam_const_addr[key_index]; 2156f1d2b4d3SLarry Finger entry_id = key_index; 2157f1d2b4d3SLarry Finger } else { 2158f1d2b4d3SLarry Finger if (is_group) { 2159f1d2b4d3SLarry Finger macaddr = cam_const_broad; 2160f1d2b4d3SLarry Finger entry_id = key_index; 2161f1d2b4d3SLarry Finger } else { 2162f1d2b4d3SLarry Finger if (mac->opmode == NL80211_IFTYPE_AP || 2163f1d2b4d3SLarry Finger mac->opmode == NL80211_IFTYPE_MESH_POINT) { 2164f1d2b4d3SLarry Finger entry_id = rtl_cam_get_free_entry(hw, 2165f1d2b4d3SLarry Finger p_macaddr); 2166f1d2b4d3SLarry Finger if (entry_id >= TOTAL_CAM_ENTRY) { 2167*e40a0056SLarry Finger pr_err("Can not find free hw security cam entry\n"); 2168f1d2b4d3SLarry Finger return; 2169f1d2b4d3SLarry Finger } 2170f1d2b4d3SLarry Finger } else { 2171f1d2b4d3SLarry Finger entry_id = CAM_PAIRWISE_KEY_POSITION; 2172f1d2b4d3SLarry Finger } 2173f1d2b4d3SLarry Finger 2174f1d2b4d3SLarry Finger key_index = PAIRWISE_KEYIDX; 2175f1d2b4d3SLarry Finger is_pairwise = true; 2176f1d2b4d3SLarry Finger } 2177f1d2b4d3SLarry Finger } 2178f1d2b4d3SLarry Finger 2179f1d2b4d3SLarry Finger if (rtlpriv->sec.key_len[key_index] == 0) { 2180f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_SEC, DBG_DMESG, 2181f1d2b4d3SLarry Finger "delete one entry, entry_id is %d\n", 2182f1d2b4d3SLarry Finger entry_id); 2183f1d2b4d3SLarry Finger if (mac->opmode == NL80211_IFTYPE_AP || 2184f1d2b4d3SLarry Finger mac->opmode == NL80211_IFTYPE_MESH_POINT) 2185f1d2b4d3SLarry Finger rtl_cam_del_entry(hw, p_macaddr); 2186f1d2b4d3SLarry Finger rtl_cam_delete_one_entry(hw, p_macaddr, entry_id); 2187f1d2b4d3SLarry Finger } else { 2188f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_SEC, DBG_LOUD, 2189f1d2b4d3SLarry Finger "The insert KEY length is %d\n", 2190f1d2b4d3SLarry Finger rtlpriv->sec.key_len[PAIRWISE_KEYIDX]); 2191f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_SEC, DBG_LOUD, 2192f1d2b4d3SLarry Finger "The insert KEY is %x %x\n", 2193f1d2b4d3SLarry Finger rtlpriv->sec.key_buf[0][0], 2194f1d2b4d3SLarry Finger rtlpriv->sec.key_buf[0][1]); 2195f1d2b4d3SLarry Finger 2196f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_SEC, DBG_DMESG, 2197f1d2b4d3SLarry Finger "add one entry\n"); 2198f1d2b4d3SLarry Finger if (is_pairwise) { 2199f1d2b4d3SLarry Finger RT_PRINT_DATA(rtlpriv, COMP_SEC, DBG_LOUD, 2200f1d2b4d3SLarry Finger "Pairwise Key content", 2201f1d2b4d3SLarry Finger rtlpriv->sec.pairwise_key, 2202f1d2b4d3SLarry Finger rtlpriv->sec. 2203f1d2b4d3SLarry Finger key_len[PAIRWISE_KEYIDX]); 2204f1d2b4d3SLarry Finger 2205f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_SEC, DBG_DMESG, 2206f1d2b4d3SLarry Finger "set Pairwise key\n"); 2207f1d2b4d3SLarry Finger 2208f1d2b4d3SLarry Finger rtl_cam_add_one_entry(hw, macaddr, key_index, 2209f1d2b4d3SLarry Finger entry_id, enc_algo, 2210f1d2b4d3SLarry Finger CAM_CONFIG_NO_USEDK, 2211f1d2b4d3SLarry Finger rtlpriv->sec. 2212f1d2b4d3SLarry Finger key_buf[key_index]); 2213f1d2b4d3SLarry Finger } else { 2214f1d2b4d3SLarry Finger RT_TRACE(rtlpriv, COMP_SEC, DBG_DMESG, 2215f1d2b4d3SLarry Finger "set group key\n"); 2216f1d2b4d3SLarry Finger 2217f1d2b4d3SLarry Finger if (mac->opmode == NL80211_IFTYPE_ADHOC) { 2218f1d2b4d3SLarry Finger rtl_cam_add_one_entry(hw, 2219f1d2b4d3SLarry Finger rtlefuse->dev_addr, 2220f1d2b4d3SLarry Finger PAIRWISE_KEYIDX, 2221f1d2b4d3SLarry Finger CAM_PAIRWISE_KEY_POSITION, 2222f1d2b4d3SLarry Finger enc_algo, 2223f1d2b4d3SLarry Finger CAM_CONFIG_NO_USEDK, 2224f1d2b4d3SLarry Finger rtlpriv->sec.key_buf 2225f1d2b4d3SLarry Finger [entry_id]); 2226f1d2b4d3SLarry Finger } 2227f1d2b4d3SLarry Finger 2228f1d2b4d3SLarry Finger rtl_cam_add_one_entry(hw, macaddr, key_index, 2229f1d2b4d3SLarry Finger entry_id, enc_algo, 2230f1d2b4d3SLarry Finger CAM_CONFIG_NO_USEDK, 2231f1d2b4d3SLarry Finger rtlpriv->sec.key_buf[entry_id]); 2232f1d2b4d3SLarry Finger } 2233f1d2b4d3SLarry Finger 2234f1d2b4d3SLarry Finger } 2235f1d2b4d3SLarry Finger } 2236f1d2b4d3SLarry Finger } 2237f1d2b4d3SLarry Finger 2238f1d2b4d3SLarry Finger static void rtl8192ce_bt_var_init(struct ieee80211_hw *hw) 2239f1d2b4d3SLarry Finger { 2240f1d2b4d3SLarry Finger struct rtl_pci_priv *rtlpcipriv = rtl_pcipriv(hw); 2241f1d2b4d3SLarry Finger 2242f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_coexistence = 2243f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_coexist; 2244f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_ant_num = 2245f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_ant_num; 2246f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_coexist_type = 2247f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_type; 2248f1d2b4d3SLarry Finger 2249f1d2b4d3SLarry Finger if (rtlpcipriv->bt_coexist.reg_bt_iso == 2) 2250f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_ant_isolation = 2251f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_ant_isol; 2252f1d2b4d3SLarry Finger else 2253f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_ant_isolation = 2254f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.reg_bt_iso; 2255f1d2b4d3SLarry Finger 2256f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_radio_shared_type = 2257f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_radio_shared; 2258f1d2b4d3SLarry Finger 2259f1d2b4d3SLarry Finger if (rtlpcipriv->bt_coexist.bt_coexistence) { 2260f1d2b4d3SLarry Finger 2261f1d2b4d3SLarry Finger if (rtlpcipriv->bt_coexist.reg_bt_sco == 1) 2262f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_service = BT_OTHER_ACTION; 2263f1d2b4d3SLarry Finger else if (rtlpcipriv->bt_coexist.reg_bt_sco == 2) 2264f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_service = BT_SCO; 2265f1d2b4d3SLarry Finger else if (rtlpcipriv->bt_coexist.reg_bt_sco == 4) 2266f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_service = BT_BUSY; 2267f1d2b4d3SLarry Finger else if (rtlpcipriv->bt_coexist.reg_bt_sco == 5) 2268f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_service = BT_OTHERBUSY; 2269f1d2b4d3SLarry Finger else 2270f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_service = BT_IDLE; 2271f1d2b4d3SLarry Finger 2272f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_edca_ul = 0; 2273f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_edca_dl = 0; 2274f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_rssi_state = 0xff; 2275f1d2b4d3SLarry Finger } 2276f1d2b4d3SLarry Finger } 2277f1d2b4d3SLarry Finger 2278f1d2b4d3SLarry Finger void rtl8192ce_read_bt_coexist_info_from_hwpg(struct ieee80211_hw *hw, 2279f1d2b4d3SLarry Finger bool auto_load_fail, u8 *hwinfo) 2280f1d2b4d3SLarry Finger { 2281f1d2b4d3SLarry Finger struct rtl_pci_priv *rtlpcipriv = rtl_pcipriv(hw); 2282f1d2b4d3SLarry Finger u8 val; 2283f1d2b4d3SLarry Finger 2284f1d2b4d3SLarry Finger if (!auto_load_fail) { 2285f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_coexist = 2286f1d2b4d3SLarry Finger ((hwinfo[RF_OPTION1] & 0xe0) >> 5); 2287f1d2b4d3SLarry Finger val = hwinfo[RF_OPTION4]; 2288f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_type = ((val & 0xe) >> 1); 2289f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_ant_num = (val & 0x1); 2290f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_ant_isol = ((val & 0x10) >> 4); 2291f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_radio_shared = 2292f1d2b4d3SLarry Finger ((val & 0x20) >> 5); 2293f1d2b4d3SLarry Finger } else { 2294f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_coexist = 0; 2295f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_type = BT_2WIRE; 2296f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_ant_num = ANT_X2; 2297f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_ant_isol = 0; 2298f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.eeprom_bt_radio_shared = BT_RADIO_SHARED; 2299f1d2b4d3SLarry Finger } 2300f1d2b4d3SLarry Finger 2301f1d2b4d3SLarry Finger rtl8192ce_bt_var_init(hw); 2302f1d2b4d3SLarry Finger } 2303f1d2b4d3SLarry Finger 2304f1d2b4d3SLarry Finger void rtl8192ce_bt_reg_init(struct ieee80211_hw *hw) 2305f1d2b4d3SLarry Finger { 2306f1d2b4d3SLarry Finger struct rtl_pci_priv *rtlpcipriv = rtl_pcipriv(hw); 2307f1d2b4d3SLarry Finger 2308f1d2b4d3SLarry Finger /* 0:Low, 1:High, 2:From Efuse. */ 2309f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.reg_bt_iso = 2; 2310f1d2b4d3SLarry Finger /* 0:Idle, 1:None-SCO, 2:SCO, 3:From Counter. */ 2311f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.reg_bt_sco = 3; 2312f1d2b4d3SLarry Finger /* 0:Disable BT control A-MPDU, 1:Enable BT control A-MPDU. */ 2313f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.reg_bt_sco = 0; 2314f1d2b4d3SLarry Finger } 2315f1d2b4d3SLarry Finger 2316f1d2b4d3SLarry Finger 2317f1d2b4d3SLarry Finger void rtl8192ce_bt_hw_init(struct ieee80211_hw *hw) 2318f1d2b4d3SLarry Finger { 2319f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw); 2320f1d2b4d3SLarry Finger struct rtl_phy *rtlphy = &(rtlpriv->phy); 2321f1d2b4d3SLarry Finger struct rtl_pci_priv *rtlpcipriv = rtl_pcipriv(hw); 2322f1d2b4d3SLarry Finger 2323f1d2b4d3SLarry Finger u8 u1_tmp; 2324f1d2b4d3SLarry Finger 2325f1d2b4d3SLarry Finger if (rtlpcipriv->bt_coexist.bt_coexistence && 2326f1d2b4d3SLarry Finger ((rtlpcipriv->bt_coexist.bt_coexist_type == BT_CSR_BC4) || 2327f1d2b4d3SLarry Finger rtlpcipriv->bt_coexist.bt_coexist_type == BT_CSR_BC8)) { 2328f1d2b4d3SLarry Finger 2329f1d2b4d3SLarry Finger if (rtlpcipriv->bt_coexist.bt_ant_isolation) 2330f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, REG_GPIO_MUXCFG, 0xa0); 2331f1d2b4d3SLarry Finger 2332f1d2b4d3SLarry Finger u1_tmp = rtl_read_byte(rtlpriv, 0x4fd) & 2333f1d2b4d3SLarry Finger BIT_OFFSET_LEN_MASK_32(0, 1); 2334f1d2b4d3SLarry Finger u1_tmp = u1_tmp | 2335f1d2b4d3SLarry Finger ((rtlpcipriv->bt_coexist.bt_ant_isolation == 1) ? 2336f1d2b4d3SLarry Finger 0 : BIT_OFFSET_LEN_MASK_32(1, 1)) | 2337f1d2b4d3SLarry Finger ((rtlpcipriv->bt_coexist.bt_service == BT_SCO) ? 2338f1d2b4d3SLarry Finger 0 : BIT_OFFSET_LEN_MASK_32(2, 1)); 2339f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x4fd, u1_tmp); 2340f1d2b4d3SLarry Finger 2341f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_BT_COEX_TABLE+4, 0xaaaa9aaa); 2342f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_BT_COEX_TABLE+8, 0xffbd0040); 2343f1d2b4d3SLarry Finger rtl_write_dword(rtlpriv, REG_BT_COEX_TABLE+0xc, 0x40000010); 2344f1d2b4d3SLarry Finger 2345f1d2b4d3SLarry Finger /* Config to 1T1R. */ 2346f1d2b4d3SLarry Finger if (rtlphy->rf_type == RF_1T1R) { 2347f1d2b4d3SLarry Finger u1_tmp = rtl_read_byte(rtlpriv, ROFDM0_TRXPATHENABLE); 2348f1d2b4d3SLarry Finger u1_tmp &= ~(BIT_OFFSET_LEN_MASK_32(1, 1)); 2349f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, ROFDM0_TRXPATHENABLE, u1_tmp); 2350f1d2b4d3SLarry Finger 2351f1d2b4d3SLarry Finger u1_tmp = rtl_read_byte(rtlpriv, ROFDM1_TRXPATHENABLE); 2352f1d2b4d3SLarry Finger u1_tmp &= ~(BIT_OFFSET_LEN_MASK_32(1, 1)); 2353f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, ROFDM1_TRXPATHENABLE, u1_tmp); 2354f1d2b4d3SLarry Finger } 2355f1d2b4d3SLarry Finger } 2356f1d2b4d3SLarry Finger } 2357f1d2b4d3SLarry Finger 2358f1d2b4d3SLarry Finger void rtl92ce_suspend(struct ieee80211_hw *hw) 2359f1d2b4d3SLarry Finger { 2360f1d2b4d3SLarry Finger } 2361f1d2b4d3SLarry Finger 2362f1d2b4d3SLarry Finger void rtl92ce_resume(struct ieee80211_hw *hw) 2363f1d2b4d3SLarry Finger { 2364f1d2b4d3SLarry Finger } 2365