summaryrefslogtreecommitdiff
path: root/drivers/net/wireless/rtlwifi/rtl8192se/hw.c
diff options
context:
space:
mode:
Diffstat (limited to 'drivers/net/wireless/rtlwifi/rtl8192se/hw.c')
-rw-r--r--drivers/net/wireless/rtlwifi/rtl8192se/hw.c2512
1 files changed, 2512 insertions, 0 deletions
diff --git a/drivers/net/wireless/rtlwifi/rtl8192se/hw.c b/drivers/net/wireless/rtlwifi/rtl8192se/hw.c
new file mode 100644
index 000000000000..2e9005d0454b
--- /dev/null
+++ b/drivers/net/wireless/rtlwifi/rtl8192se/hw.c
@@ -0,0 +1,2512 @@
+/******************************************************************************
+ *
+ * Copyright(c) 2009-2010 Realtek Corporation.
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms of version 2 of the GNU General Public License as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful, but WITHOUT
+ * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
+ * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
+ * more details.
+ *
+ * You should have received a copy of the GNU General Public License along with
+ * this program; if not, write to the Free Software Foundation, Inc.,
+ * 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
+ *
+ * The full GNU General Public License is included in this distribution in the
+ * file called LICENSE.
+ *
+ * Contact Information:
+ * wlanfae <wlanfae@realtek.com>
+ * Realtek Corporation, No. 2, Innovation Road II, Hsinchu Science Park,
+ * Hsinchu 300, Taiwan.
+ *
+ * Larry Finger <Larry.Finger@lwfinger.net>
+ *
+ *****************************************************************************/
+
+#include "../wifi.h"
+#include "../efuse.h"
+#include "../base.h"
+#include "../regd.h"
+#include "../cam.h"
+#include "../ps.h"
+#include "../pci.h"
+#include "reg.h"
+#include "def.h"
+#include "phy.h"
+#include "dm.h"
+#include "fw.h"
+#include "led.h"
+#include "hw.h"
+
+void rtl92se_get_hw_reg(struct ieee80211_hw *hw, u8 variable, u8 *val)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
+ struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
+
+ switch (variable) {
+ case HW_VAR_RCR: {
+ *((u32 *) (val)) = rtlpci->receive_config;
+ break;
+ }
+ case HW_VAR_RF_STATE: {
+ *((enum rf_pwrstate *)(val)) = ppsc->rfpwr_state;
+ break;
+ }
+ case HW_VAR_FW_PSMODE_STATUS: {
+ *((bool *) (val)) = ppsc->fw_current_inpsmode;
+ break;
+ }
+ case HW_VAR_CORRECT_TSF: {
+ u64 tsf;
+ u32 *ptsf_low = (u32 *)&tsf;
+ u32 *ptsf_high = ((u32 *)&tsf) + 1;
+
+ *ptsf_high = rtl_read_dword(rtlpriv, (TSFR + 4));
+ *ptsf_low = rtl_read_dword(rtlpriv, TSFR);
+
+ *((u64 *) (val)) = tsf;
+
+ break;
+ }
+ case HW_VAR_MRC: {
+ *((bool *)(val)) = rtlpriv->dm.current_mrc_switch;
+ break;
+ }
+ default: {
+ RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
+ ("switch case not process\n"));
+ break;
+ }
+ }
+}
+
+void rtl92se_set_hw_reg(struct ieee80211_hw *hw, u8 variable, u8 *val)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
+ struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
+ struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
+ struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
+ struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
+
+ switch (variable) {
+ case HW_VAR_ETHER_ADDR:{
+ rtl_write_dword(rtlpriv, IDR0, ((u32 *)(val))[0]);
+ rtl_write_word(rtlpriv, IDR4, ((u16 *)(val + 4))[0]);
+ break;
+ }
+ case HW_VAR_BASIC_RATE:{
+ u16 rate_cfg = ((u16 *) val)[0];
+ u8 rate_index = 0;
+
+ if (rtlhal->version == VERSION_8192S_ACUT)
+ rate_cfg = rate_cfg & 0x150;
+ else
+ rate_cfg = rate_cfg & 0x15f;
+
+ rate_cfg |= 0x01;
+
+ rtl_write_byte(rtlpriv, RRSR, rate_cfg & 0xff);
+ rtl_write_byte(rtlpriv, RRSR + 1,
+ (rate_cfg >> 8) & 0xff);
+
+ while (rate_cfg > 0x1) {
+ rate_cfg = (rate_cfg >> 1);
+ rate_index++;
+ }
+ rtl_write_byte(rtlpriv, INIRTSMCS_SEL, rate_index);
+
+ break;
+ }
+ case HW_VAR_BSSID:{
+ rtl_write_dword(rtlpriv, BSSIDR, ((u32 *)(val))[0]);
+ rtl_write_word(rtlpriv, BSSIDR + 4,
+ ((u16 *)(val + 4))[0]);
+ break;
+ }
+ case HW_VAR_SIFS:{
+ rtl_write_byte(rtlpriv, SIFS_OFDM, val[0]);
+ rtl_write_byte(rtlpriv, SIFS_OFDM + 1, val[1]);
+ break;
+ }
+ case HW_VAR_SLOT_TIME:{
+ u8 e_aci;
+
+ RT_TRACE(rtlpriv, COMP_MLME, DBG_LOUD,
+ ("HW_VAR_SLOT_TIME %x\n", val[0]));
+
+ rtl_write_byte(rtlpriv, SLOT_TIME, val[0]);
+
+ for (e_aci = 0; e_aci < AC_MAX; e_aci++) {
+ rtlpriv->cfg->ops->set_hw_reg(hw,
+ HW_VAR_AC_PARAM,
+ (u8 *)(&e_aci));
+ }
+ break;
+ }
+ case HW_VAR_ACK_PREAMBLE:{
+ u8 reg_tmp;
+ u8 short_preamble = (bool) (*(u8 *) val);
+ reg_tmp = (mac->cur_40_prime_sc) << 5;
+ if (short_preamble)
+ reg_tmp |= 0x80;
+
+ rtl_write_byte(rtlpriv, RRSR + 2, reg_tmp);
+ break;
+ }
+ case HW_VAR_AMPDU_MIN_SPACE:{
+ u8 min_spacing_to_set;
+ u8 sec_min_space;
+
+ min_spacing_to_set = *((u8 *)val);
+ if (min_spacing_to_set <= 7) {
+ if (rtlpriv->sec.pairwise_enc_algorithm ==
+ NO_ENCRYPTION)
+ sec_min_space = 0;
+ else
+ sec_min_space = 1;
+
+ if (min_spacing_to_set < sec_min_space)
+ min_spacing_to_set = sec_min_space;
+ if (min_spacing_to_set > 5)
+ min_spacing_to_set = 5;
+
+ mac->min_space_cfg =
+ ((mac->min_space_cfg & 0xf8) |
+ min_spacing_to_set);
+
+ *val = min_spacing_to_set;
+
+ RT_TRACE(rtlpriv, COMP_MLME, DBG_LOUD,
+ ("Set HW_VAR_AMPDU_MIN_SPACE: %#x\n",
+ mac->min_space_cfg));
+
+ rtl_write_byte(rtlpriv, AMPDU_MIN_SPACE,
+ mac->min_space_cfg);
+ }
+ break;
+ }
+ case HW_VAR_SHORTGI_DENSITY:{
+ u8 density_to_set;
+
+ density_to_set = *((u8 *) val);
+ mac->min_space_cfg = rtlpriv->rtlhal.minspace_cfg;
+ mac->min_space_cfg |= (density_to_set << 3);
+
+ RT_TRACE(rtlpriv, COMP_MLME, DBG_LOUD,
+ ("Set HW_VAR_SHORTGI_DENSITY: %#x\n",
+ mac->min_space_cfg));
+
+ rtl_write_byte(rtlpriv, AMPDU_MIN_SPACE,
+ mac->min_space_cfg);
+
+ break;
+ }
+ case HW_VAR_AMPDU_FACTOR:{
+ u8 factor_toset;
+ u8 regtoset;
+ u8 factorlevel[18] = {
+ 2, 4, 4, 7, 7, 13, 13,
+ 13, 2, 7, 7, 13, 13,
+ 15, 15, 15, 15, 0};
+ u8 index = 0;
+
+ factor_toset = *((u8 *) val);
+ if (factor_toset <= 3) {
+ factor_toset = (1 << (factor_toset + 2));
+ if (factor_toset > 0xf)
+ factor_toset = 0xf;
+
+ for (index = 0; index < 17; index++) {
+ if (factorlevel[index] > factor_toset)
+ factorlevel[index] =
+ factor_toset;
+ }
+
+ for (index = 0; index < 8; index++) {
+ regtoset = ((factorlevel[index * 2]) |
+ (factorlevel[index *
+ 2 + 1] << 4));
+ rtl_write_byte(rtlpriv,
+ AGGLEN_LMT_L + index,
+ regtoset);
+ }
+
+ regtoset = ((factorlevel[16]) |
+ (factorlevel[17] << 4));
+ rtl_write_byte(rtlpriv, AGGLEN_LMT_H, regtoset);
+
+ RT_TRACE(rtlpriv, COMP_MLME, DBG_LOUD,
+ ("Set HW_VAR_AMPDU_FACTOR: %#x\n",
+ factor_toset));
+ }
+ break;
+ }
+ case HW_VAR_AC_PARAM:{
+ u8 e_aci = *((u8 *) val);
+ rtl92s_dm_init_edca_turbo(hw);
+
+ if (rtlpci->acm_method != eAcmWay2_SW)
+ rtlpriv->cfg->ops->set_hw_reg(hw,
+ HW_VAR_ACM_CTRL,
+ (u8 *)(&e_aci));
+ break;
+ }
+ case HW_VAR_ACM_CTRL:{
+ u8 e_aci = *((u8 *) val);
+ union aci_aifsn *p_aci_aifsn = (union aci_aifsn *)(&(
+ mac->ac[0].aifs));
+ u8 acm = p_aci_aifsn->f.acm;
+ u8 acm_ctrl = rtl_read_byte(rtlpriv, AcmHwCtrl);
+
+ acm_ctrl = acm_ctrl | ((rtlpci->acm_method == 2) ?
+ 0x0 : 0x1);
+
+ if (acm) {
+ switch (e_aci) {
+ case AC0_BE:
+ acm_ctrl |= AcmHw_BeqEn;
+ break;
+ case AC2_VI:
+ acm_ctrl |= AcmHw_ViqEn;
+ break;
+ case AC3_VO:
+ acm_ctrl |= AcmHw_VoqEn;
+ break;
+ default:
+ RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING,
+ ("HW_VAR_ACM_CTRL acm set "
+ "failed: eACI is %d\n", acm));
+ break;
+ }
+ } else {
+ switch (e_aci) {
+ case AC0_BE:
+ acm_ctrl &= (~AcmHw_BeqEn);
+ break;
+ case AC2_VI:
+ acm_ctrl &= (~AcmHw_ViqEn);
+ break;
+ case AC3_VO:
+ acm_ctrl &= (~AcmHw_BeqEn);
+ break;
+ default:
+ RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
+ ("switch case not process\n"));
+ break;
+ }
+ }
+
+ RT_TRACE(rtlpriv, COMP_QOS, DBG_TRACE,
+ ("HW_VAR_ACM_CTRL Write 0x%X\n", acm_ctrl));
+ rtl_write_byte(rtlpriv, AcmHwCtrl, acm_ctrl);
+ break;
+ }
+ case HW_VAR_RCR:{
+ rtl_write_dword(rtlpriv, RCR, ((u32 *) (val))[0]);
+ rtlpci->receive_config = ((u32 *) (val))[0];
+ break;
+ }
+ case HW_VAR_RETRY_LIMIT:{
+ u8 retry_limit = ((u8 *) (val))[0];
+
+ rtl_write_word(rtlpriv, RETRY_LIMIT,
+ retry_limit << RETRY_LIMIT_SHORT_SHIFT |
+ retry_limit << RETRY_LIMIT_LONG_SHIFT);
+ break;
+ }
+ case HW_VAR_DUAL_TSF_RST: {
+ break;
+ }
+ case HW_VAR_EFUSE_BYTES: {
+ rtlefuse->efuse_usedbytes = *((u16 *) val);
+ break;
+ }
+ case HW_VAR_EFUSE_USAGE: {
+ rtlefuse->efuse_usedpercentage = *((u8 *) val);
+ break;
+ }
+ case HW_VAR_IO_CMD: {
+ break;
+ }
+ case HW_VAR_WPA_CONFIG: {
+ rtl_write_byte(rtlpriv, REG_SECR, *((u8 *) val));
+ break;
+ }
+ case HW_VAR_SET_RPWM:{
+ break;
+ }
+ case HW_VAR_H2C_FW_PWRMODE:{
+ break;
+ }
+ case HW_VAR_FW_PSMODE_STATUS: {
+ ppsc->fw_current_inpsmode = *((bool *) val);
+ break;
+ }
+ case HW_VAR_H2C_FW_JOINBSSRPT:{
+ break;
+ }
+ case HW_VAR_AID:{
+ break;
+ }
+ case HW_VAR_CORRECT_TSF:{
+ break;
+ }
+ case HW_VAR_MRC: {
+ bool bmrc_toset = *((bool *)val);
+ u8 u1bdata = 0;
+
+ if (bmrc_toset) {
+ rtl_set_bbreg(hw, ROFDM0_TRXPATHENABLE,
+ MASKBYTE0, 0x33);
+ u1bdata = (u8)rtl_get_bbreg(hw,
+ ROFDM1_TRXPATHENABLE,
+ MASKBYTE0);
+ rtl_set_bbreg(hw, ROFDM1_TRXPATHENABLE,
+ MASKBYTE0,
+ ((u1bdata & 0xf0) | 0x03));
+ u1bdata = (u8)rtl_get_bbreg(hw,
+ ROFDM0_TRXPATHENABLE,
+ MASKBYTE1);
+ rtl_set_bbreg(hw, ROFDM0_TRXPATHENABLE,
+ MASKBYTE1,
+ (u1bdata | 0x04));
+
+ /* Update current settings. */
+ rtlpriv->dm.current_mrc_switch = bmrc_toset;
+ } else {
+ rtl_set_bbreg(hw, ROFDM0_TRXPATHENABLE,
+ MASKBYTE0, 0x13);
+ u1bdata = (u8)rtl_get_bbreg(hw,
+ ROFDM1_TRXPATHENABLE,
+ MASKBYTE0);
+ rtl_set_bbreg(hw, ROFDM1_TRXPATHENABLE,
+ MASKBYTE0,
+ ((u1bdata & 0xf0) | 0x01));
+ u1bdata = (u8)rtl_get_bbreg(hw,
+ ROFDM0_TRXPATHENABLE,
+ MASKBYTE1);
+ rtl_set_bbreg(hw, ROFDM0_TRXPATHENABLE,
+ MASKBYTE1, (u1bdata & 0xfb));
+
+ /* Update current settings. */
+ rtlpriv->dm.current_mrc_switch = bmrc_toset;
+ }
+
+ break;
+ }
+ default:
+ RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
+ ("switch case not process\n"));
+ break;
+ }
+
+}
+
+void rtl92se_enable_hw_security_config(struct ieee80211_hw *hw)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ u8 sec_reg_value = 0x0;
+
+ RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD, ("PairwiseEncAlgorithm = %d "
+ "GroupEncAlgorithm = %d\n",
+ rtlpriv->sec.pairwise_enc_algorithm,
+ rtlpriv->sec.group_enc_algorithm));
+
+ if (rtlpriv->cfg->mod_params->sw_crypto || rtlpriv->sec.use_sw_sec) {
+ RT_TRACE(rtlpriv, COMP_SEC, DBG_DMESG,
+ ("not open hw encryption\n"));
+ return;
+ }
+
+ sec_reg_value = SCR_TXENCENABLE | SCR_RXENCENABLE;
+
+ if (rtlpriv->sec.use_defaultkey) {
+ sec_reg_value |= SCR_TXUSEDK;
+ sec_reg_value |= SCR_RXUSEDK;
+ }
+
+ RT_TRACE(rtlpriv, COMP_SEC, DBG_LOUD, ("The SECR-value %x\n",
+ sec_reg_value));
+
+ rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_WPA_CONFIG, &sec_reg_value);
+
+}
+
+static u8 _rtl92ce_halset_sysclk(struct ieee80211_hw *hw, u8 data)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ u8 waitcount = 100;
+ bool bresult = false;
+ u8 tmpvalue;
+
+ rtl_write_byte(rtlpriv, SYS_CLKR + 1, data);
+
+ /* Wait the MAC synchronized. */
+ udelay(400);
+
+ /* Check if it is set ready. */
+ tmpvalue = rtl_read_byte(rtlpriv, SYS_CLKR + 1);
+ bresult = ((tmpvalue & BIT(7)) == (data & BIT(7)));
+
+ if ((data & (BIT(6) | BIT(7))) == false) {
+ waitcount = 100;
+ tmpvalue = 0;
+
+ while (1) {
+ waitcount--;
+
+ tmpvalue = rtl_read_byte(rtlpriv, SYS_CLKR + 1);
+ if ((tmpvalue & BIT(6)))
+ break;
+
+ printk(KERN_ERR "wait for BIT(6) return value %x\n",
+ tmpvalue);
+ if (waitcount == 0)
+ break;
+
+ udelay(10);
+ }
+
+ if (waitcount == 0)
+ bresult = false;
+ else
+ bresult = true;
+ }
+
+ return bresult;
+}
+
+void rtl8192se_gpiobit3_cfg_inputmode(struct ieee80211_hw *hw)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ u8 u1tmp;
+
+ /* The following config GPIO function */
+ rtl_write_byte(rtlpriv, MAC_PINMUX_CFG, (GPIOMUX_EN | GPIOSEL_GPIO));
+ u1tmp = rtl_read_byte(rtlpriv, GPIO_IO_SEL);
+
+ /* config GPIO3 to input */
+ u1tmp &= HAL_8192S_HW_GPIO_OFF_MASK;
+ rtl_write_byte(rtlpriv, GPIO_IO_SEL, u1tmp);
+
+}
+
+static u8 _rtl92se_rf_onoff_detect(struct ieee80211_hw *hw)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ u8 u1tmp;
+ u8 retval = ERFON;
+
+ /* The following config GPIO function */
+ rtl_write_byte(rtlpriv, MAC_PINMUX_CFG, (GPIOMUX_EN | GPIOSEL_GPIO));
+ u1tmp = rtl_read_byte(rtlpriv, GPIO_IO_SEL);
+
+ /* config GPIO3 to input */
+ u1tmp &= HAL_8192S_HW_GPIO_OFF_MASK;
+ rtl_write_byte(rtlpriv, GPIO_IO_SEL, u1tmp);
+
+ /* On some of the platform, driver cannot read correct
+ * value without delay between Write_GPIO_SEL and Read_GPIO_IN */
+ mdelay(10);
+
+ /* check GPIO3 */
+ u1tmp = rtl_read_byte(rtlpriv, GPIO_IN);
+ retval = (u1tmp & HAL_8192S_HW_GPIO_OFF_BIT) ? ERFON : ERFOFF;
+
+ return retval;
+}
+
+static void _rtl92se_macconfig_before_fwdownload(struct ieee80211_hw *hw)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
+ struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
+
+ u8 i;
+ u8 tmpu1b;
+ u16 tmpu2b;
+ u8 pollingcnt = 20;
+
+ if (rtlpci->first_init) {
+ /* Reset PCIE Digital */
+ tmpu1b = rtl_read_byte(rtlpriv, REG_SYS_FUNC_EN + 1);
+ tmpu1b &= 0xFE;
+ rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN + 1, tmpu1b);
+ udelay(1);
+ rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN + 1, tmpu1b | BIT(0));
+ }
+
+ /* Switch to SW IO control */
+ tmpu1b = rtl_read_byte(rtlpriv, (SYS_CLKR + 1));
+ if (tmpu1b & BIT(7)) {
+ tmpu1b &= ~(BIT(6) | BIT(7));
+
+ /* Set failed, return to prevent hang. */
+ if (!_rtl92ce_halset_sysclk(hw, tmpu1b))
+ return;
+ }
+
+ rtl_write_byte(rtlpriv, AFE_PLL_CTRL, 0x0);
+ udelay(50);
+ rtl_write_byte(rtlpriv, LDOA15_CTRL, 0x34);
+ udelay(50);
+
+ /* Clear FW RPWM for FW control LPS.*/
+ rtl_write_byte(rtlpriv, RPWM, 0x0);
+
+ /* Reset MAC-IO and CPU and Core Digital BIT(10)/11/15 */
+ tmpu1b = rtl_read_byte(rtlpriv, REG_SYS_FUNC_EN + 1);
+ tmpu1b &= 0x73;
+ rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN + 1, tmpu1b);
+ /* wait for BIT 10/11/15 to pull high automatically!! */
+ mdelay(1);
+
+ rtl_write_byte(rtlpriv, CMDR, 0);
+ rtl_write_byte(rtlpriv, TCR, 0);
+
+ /* Data sheet not define 0x562!!! Copy from WMAC!!!!! */
+ tmpu1b = rtl_read_byte(rtlpriv, 0x562);
+ tmpu1b |= 0x08;
+ rtl_write_byte(rtlpriv, 0x562, tmpu1b);
+ tmpu1b &= ~(BIT(3));
+ rtl_write_byte(rtlpriv, 0x562, tmpu1b);
+
+ /* Enable AFE clock source */
+ tmpu1b = rtl_read_byte(rtlpriv, AFE_XTAL_CTRL);
+ rtl_write_byte(rtlpriv, AFE_XTAL_CTRL, (tmpu1b | 0x01));
+ /* Delay 1.5ms */
+ mdelay(2);
+ tmpu1b = rtl_read_byte(rtlpriv, AFE_XTAL_CTRL + 1);
+ rtl_write_byte(rtlpriv, AFE_XTAL_CTRL + 1, (tmpu1b & 0xfb));
+
+ /* Enable AFE Macro Block's Bandgap */
+ tmpu1b = rtl_read_byte(rtlpriv, AFE_MISC);
+ rtl_write_byte(rtlpriv, AFE_MISC, (tmpu1b | BIT(0)));
+ mdelay(1);
+
+ /* Enable AFE Mbias */
+ tmpu1b = rtl_read_byte(rtlpriv, AFE_MISC);
+ rtl_write_byte(rtlpriv, AFE_MISC, (tmpu1b | 0x02));
+ mdelay(1);
+
+ /* Enable LDOA15 block */
+ tmpu1b = rtl_read_byte(rtlpriv, LDOA15_CTRL);
+ rtl_write_byte(rtlpriv, LDOA15_CTRL, (tmpu1b | BIT(0)));
+
+ /* Set Digital Vdd to Retention isolation Path. */
+ tmpu2b = rtl_read_word(rtlpriv, REG_SYS_ISO_CTRL);
+ rtl_write_word(rtlpriv, REG_SYS_ISO_CTRL, (tmpu2b | BIT(11)));
+
+ /* For warm reboot NIC disappera bug. */
+ tmpu2b = rtl_read_word(rtlpriv, REG_SYS_FUNC_EN);
+ rtl_write_word(rtlpriv, REG_SYS_FUNC_EN, (tmpu2b | BIT(13)));
+
+ rtl_write_byte(rtlpriv, REG_SYS_ISO_CTRL + 1, 0x68);
+
+ /* Enable AFE PLL Macro Block */
+ /* We need to delay 100u before enabling PLL. */
+ udelay(200);
+ tmpu1b = rtl_read_byte(rtlpriv, AFE_PLL_CTRL);
+ rtl_write_byte(rtlpriv, AFE_PLL_CTRL, (tmpu1b | BIT(0) | BIT(4)));
+
+ /* for divider reset */
+ udelay(100);
+ rtl_write_byte(rtlpriv, AFE_PLL_CTRL, (tmpu1b | BIT(0) |
+ BIT(4) | BIT(6)));
+ udelay(10);
+ rtl_write_byte(rtlpriv, AFE_PLL_CTRL, (tmpu1b | BIT(0) | BIT(4)));
+ udelay(10);
+
+ /* Enable MAC 80MHZ clock */
+ tmpu1b = rtl_read_byte(rtlpriv, AFE_PLL_CTRL + 1);
+ rtl_write_byte(rtlpriv, AFE_PLL_CTRL + 1, (tmpu1b | BIT(0)));
+ mdelay(1);
+
+ /* Release isolation AFE PLL & MD */
+ rtl_write_byte(rtlpriv, REG_SYS_ISO_CTRL, 0xA6);
+
+ /* Enable MAC clock */
+ tmpu2b = rtl_read_word(rtlpriv, SYS_CLKR);
+ rtl_write_word(rtlpriv, SYS_CLKR, (tmpu2b | BIT(12) | BIT(11)));
+
+ /* Enable Core digital and enable IOREG R/W */
+ tmpu2b = rtl_read_word(rtlpriv, REG_SYS_FUNC_EN);
+ rtl_write_word(rtlpriv, REG_SYS_FUNC_EN, (tmpu2b | BIT(11)));
+
+ tmpu1b = rtl_read_byte(rtlpriv, REG_SYS_FUNC_EN + 1);
+ rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN + 1, tmpu1b & ~(BIT(7)));
+
+ /* enable REG_EN */
+ rtl_write_word(rtlpriv, REG_SYS_FUNC_EN, (tmpu2b | BIT(11) | BIT(15)));
+
+ /* Switch the control path. */
+ tmpu2b = rtl_read_word(rtlpriv, SYS_CLKR);
+ rtl_write_word(rtlpriv, SYS_CLKR, (tmpu2b & (~BIT(2))));
+
+ tmpu1b = rtl_read_byte(rtlpriv, (SYS_CLKR + 1));
+ tmpu1b = ((tmpu1b | BIT(7)) & (~BIT(6)));
+ if (!_rtl92ce_halset_sysclk(hw, tmpu1b))
+ return; /* Set failed, return to prevent hang. */
+
+ rtl_write_word(rtlpriv, CMDR, 0x07FC);
+
+ /* MH We must enable the section of code to prevent load IMEM fail. */
+ /* Load MAC register from WMAc temporarily We simulate macreg. */
+ /* txt HW will provide MAC txt later */
+ rtl_write_byte(rtlpriv, 0x6, 0x30);
+ rtl_write_byte(rtlpriv, 0x49, 0xf0);
+
+ rtl_write_byte(rtlpriv, 0x4b, 0x81);
+
+ rtl_write_byte(rtlpriv, 0xb5, 0x21);
+
+ rtl_write_byte(rtlpriv, 0xdc, 0xff);
+ rtl_write_byte(rtlpriv, 0xdd, 0xff);
+ rtl_write_byte(rtlpriv, 0xde, 0xff);
+ rtl_write_byte(rtlpriv, 0xdf, 0xff);
+
+ rtl_write_byte(rtlpriv, 0x11a, 0x00);
+ rtl_write_byte(rtlpriv, 0x11b, 0x00);
+
+ for (i = 0; i < 32; i++)
+ rtl_write_byte(rtlpriv, INIMCS_SEL + i, 0x1b);
+
+ rtl_write_byte(rtlpriv, 0x236, 0xff);
+
+ rtl_write_byte(rtlpriv, 0x503, 0x22);
+
+ if (ppsc->support_aspm && !ppsc->support_backdoor)
+ rtl_write_byte(rtlpriv, 0x560, 0x40);
+ else
+ rtl_write_byte(rtlpriv, 0x560, 0x00);
+
+ rtl_write_byte(rtlpriv, DBG_PORT, 0x91);
+
+ /* Set RX Desc Address */
+ rtl_write_dword(rtlpriv, RDQDA, rtlpci->rx_ring[RX_MPDU_QUEUE].dma);
+ rtl_write_dword(rtlpriv, RCDA, rtlpci->rx_ring[RX_CMD_QUEUE].dma);
+
+ /* Set TX Desc Address */
+ rtl_write_dword(rtlpriv, TBKDA, rtlpci->tx_ring[BK_QUEUE].dma);
+ rtl_write_dword(rtlpriv, TBEDA, rtlpci->tx_ring[BE_QUEUE].dma);
+ rtl_write_dword(rtlpriv, TVIDA, rtlpci->tx_ring[VI_QUEUE].dma);
+ rtl_write_dword(rtlpriv, TVODA, rtlpci->tx_ring[VO_QUEUE].dma);
+ rtl_write_dword(rtlpriv, TBDA, rtlpci->tx_ring[BEACON_QUEUE].dma);
+ rtl_write_dword(rtlpriv, TCDA, rtlpci->tx_ring[TXCMD_QUEUE].dma);
+ rtl_write_dword(rtlpriv, TMDA, rtlpci->tx_ring[MGNT_QUEUE].dma);
+ rtl_write_dword(rtlpriv, THPDA, rtlpci->tx_ring[HIGH_QUEUE].dma);
+ rtl_write_dword(rtlpriv, HDA, rtlpci->tx_ring[HCCA_QUEUE].dma);
+
+ rtl_write_word(rtlpriv, CMDR, 0x37FC);
+
+ /* To make sure that TxDMA can ready to download FW. */
+ /* We should reset TxDMA if IMEM RPT was not ready. */
+ do {
+ tmpu1b = rtl_read_byte(rtlpriv, TCR);
+ if ((tmpu1b & TXDMA_INIT_VALUE) == TXDMA_INIT_VALUE)
+ break;
+
+ udelay(5);
+ } while (pollingcnt--);
+
+ if (pollingcnt <= 0) {
+ RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
+ ("Polling TXDMA_INIT_VALUE "
+ "timeout!! Current TCR(%#x)\n", tmpu1b));
+ tmpu1b = rtl_read_byte(rtlpriv, CMDR);
+ rtl_write_byte(rtlpriv, CMDR, tmpu1b & (~TXDMA_EN));
+ udelay(2);
+ /* Reset TxDMA */
+ rtl_write_byte(rtlpriv, CMDR, tmpu1b | TXDMA_EN);
+ }
+
+ /* After MACIO reset,we must refresh LED state. */
+ if ((ppsc->rfoff_reason == RF_CHANGE_BY_IPS) ||
+ (ppsc->rfoff_reason == 0)) {
+ struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw);
+ struct rtl_led *pLed0 = &(pcipriv->ledctl.sw_led0);
+ enum rf_pwrstate rfpwr_state_toset;
+ rfpwr_state_toset = _rtl92se_rf_onoff_detect(hw);
+
+ if (rfpwr_state_toset == ERFON)
+ rtl92se_sw_led_on(hw, pLed0);
+ }
+}
+
+static void _rtl92se_macconfig_after_fwdownload(struct ieee80211_hw *hw)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
+ struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
+ struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
+ u8 i;
+ u16 tmpu2b;
+
+ /* 1. System Configure Register (Offset: 0x0000 - 0x003F) */
+
+ /* 2. Command Control Register (Offset: 0x0040 - 0x004F) */
+ /* Turn on 0x40 Command register */
+ rtl_write_word(rtlpriv, CMDR, (BBRSTN | BB_GLB_RSTN |
+ SCHEDULE_EN | MACRXEN | MACTXEN | DDMA_EN | FW2HW_EN |
+ RXDMA_EN | TXDMA_EN | HCI_RXDMA_EN | HCI_TXDMA_EN));
+
+ /* Set TCR TX DMA pre 2 FULL enable bit */
+ rtl_write_dword(rtlpriv, TCR, rtl_read_dword(rtlpriv, TCR) |
+ TXDMAPRE2FULL);
+
+ /* Set RCR */
+ rtl_write_dword(rtlpriv, RCR, rtlpci->receive_config);
+
+ /* 3. MACID Setting Register (Offset: 0x0050 - 0x007F) */
+
+ /* 4. Timing Control Register (Offset: 0x0080 - 0x009F) */
+ /* Set CCK/OFDM SIFS */
+ /* CCK SIFS shall always be 10us. */
+ rtl_write_word(rtlpriv, SIFS_CCK, 0x0a0a);
+ rtl_write_word(rtlpriv, SIFS_OFDM, 0x1010);
+
+ /* Set AckTimeout */
+ rtl_write_byte(rtlpriv, ACK_TIMEOUT, 0x40);
+
+ /* Beacon related */
+ rtl_write_word(rtlpriv, BCN_INTERVAL, 100);
+ rtl_write_word(rtlpriv, ATIMWND, 2);
+
+ /* 5. FIFO Control Register (Offset: 0x00A0 - 0x015F) */
+ /* 5.1 Initialize Number of Reserved Pages in Firmware Queue */
+ /* Firmware allocate now, associate with FW internal setting.!!! */
+
+ /* 5.2 Setting TX/RX page size 0/1/2/3/4=64/128/256/512/1024 */
+ /* 5.3 Set driver info, we only accept PHY status now. */
+ /* 5.4 Set RXDMA arbitration to control RXDMA/MAC/FW R/W for RXFIFO */
+ rtl_write_byte(rtlpriv, RXDMA, rtl_read_byte(rtlpriv, RXDMA) | BIT(6));
+
+ /* 6. Adaptive Control Register (Offset: 0x0160 - 0x01CF) */
+ /* Set RRSR to all legacy rate and HT rate
+ * CCK rate is supported by default.
+ * CCK rate will be filtered out only when associated
+ * AP does not support it.
+ * Only enable ACK rate to OFDM 24M
+ * Disable RRSR for CCK rate in A-Cut */
+
+ if (rtlhal->version == VERSION_8192S_ACUT)
+ rtl_write_byte(rtlpriv, RRSR, 0xf0);
+ else if (rtlhal->version == VERSION_8192S_BCUT)
+ rtl_write_byte(rtlpriv, RRSR, 0xff);
+ rtl_write_byte(rtlpriv, RRSR + 1, 0x01);
+ rtl_write_byte(rtlpriv, RRSR + 2, 0x00);
+
+ /* A-Cut IC do not support CCK rate. We forbid ARFR to */
+ /* fallback to CCK rate */
+ for (i = 0; i < 8; i++) {
+ /*Disable RRSR for CCK rate in A-Cut */
+ if (rtlhal->version == VERSION_8192S_ACUT)
+ rtl_write_dword(rtlpriv, ARFR0 + i * 4, 0x1f0ff0f0);
+ }
+
+ /* Different rate use different AMPDU size */
+ /* MCS32/ MCS15_SG use max AMPDU size 15*2=30K */
+ rtl_write_byte(rtlpriv, AGGLEN_LMT_H, 0x0f);
+ /* MCS0/1/2/3 use max AMPDU size 4*2=8K */
+ rtl_write_word(rtlpriv, AGGLEN_LMT_L, 0x7442);
+ /* MCS4/5 use max AMPDU size 8*2=16K 6/7 use 10*2=20K */
+ rtl_write_word(rtlpriv, AGGLEN_LMT_L + 2, 0xddd7);
+ /* MCS8/9 use max AMPDU size 8*2=16K 10/11 use 10*2=20K */
+ rtl_write_word(rtlpriv, AGGLEN_LMT_L + 4, 0xd772);
+ /* MCS12/13/14/15 use max AMPDU size 15*2=30K */
+ rtl_write_word(rtlpriv, AGGLEN_LMT_L + 6, 0xfffd);
+
+ /* Set Data / Response auto rate fallack retry count */
+ rtl_write_dword(rtlpriv, DARFRC, 0x04010000);
+ rtl_write_dword(rtlpriv, DARFRC + 4, 0x09070605);
+ rtl_write_dword(rtlpriv, RARFRC, 0x04010000);
+ rtl_write_dword(rtlpriv, RARFRC + 4, 0x09070605);
+
+ /* 7. EDCA Setting Register (Offset: 0x01D0 - 0x01FF) */
+ /* Set all rate to support SG */
+ rtl_write_word(rtlpriv, SG_RATE, 0xFFFF);
+
+ /* 8. WMAC, BA, and CCX related Register (Offset: 0x0200 - 0x023F) */
+ /* Set NAV protection length */
+ rtl_write_word(rtlpriv, NAV_PROT_LEN, 0x0080);
+ /* CF-END Threshold */
+ rtl_write_byte(rtlpriv, CFEND_TH, 0xFF);
+ /* Set AMPDU minimum space */
+ rtl_write_byte(rtlpriv, AMPDU_MIN_SPACE, 0x07);
+ /* Set TXOP stall control for several queue/HI/BCN/MGT/ */
+ rtl_write_byte(rtlpriv, TXOP_STALL_CTRL, 0x00);
+
+ /* 9. Security Control Register (Offset: 0x0240 - 0x025F) */
+ /* 10. Power Save Control Register (Offset: 0x0260 - 0x02DF) */
+ /* 11. General Purpose Register (Offset: 0x02E0 - 0x02FF) */
+ /* 12. Host Interrupt Status Register (Offset: 0x0300 - 0x030F) */
+ /* 13. Test Mode and Debug Control Register (Offset: 0x0310 - 0x034F) */
+
+ /* 14. Set driver info, we only accept PHY status now. */
+ rtl_write_byte(rtlpriv, RXDRVINFO_SZ, 4);
+
+ /* 15. For EEPROM R/W Workaround */
+ /* 16. For EFUSE to share REG_SYS_FUNC_EN with EEPROM!!! */
+ tmpu2b = rtl_read_byte(rtlpriv, REG_SYS_FUNC_EN);
+ rtl_write_byte(rtlpriv, REG_SYS_FUNC_EN, tmpu2b | BIT(13));
+ tmpu2b = rtl_read_byte(rtlpriv, REG_SYS_ISO_CTRL);
+ rtl_write_byte(rtlpriv, REG_SYS_ISO_CTRL, tmpu2b & (~BIT(8)));
+
+ /* 17. For EFUSE */
+ /* We may R/W EFUSE in EEPROM mode */
+ if (rtlefuse->epromtype == EEPROM_BOOT_EFUSE) {
+ u8 tempval;
+
+ tempval = rtl_read_byte(rtlpriv, REG_SYS_ISO_CTRL + 1);
+ tempval &= 0xFE;
+ rtl_write_byte(rtlpriv, REG_SYS_ISO_CTRL + 1, tempval);
+
+ /* Change Program timing */
+ rtl_write_byte(rtlpriv, REG_EFUSE_CTRL + 3, 0x72);
+ RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG, ("EFUSE CONFIG OK\n"));
+ }
+
+ RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG, ("OK\n"));
+
+}
+
+static void _rtl92se_hw_configure(struct ieee80211_hw *hw)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
+ struct rtl_phy *rtlphy = &(rtlpriv->phy);
+ struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
+
+ u8 reg_bw_opmode = 0;
+ u32 reg_ratr = 0, reg_rrsr = 0;
+ u8 regtmp = 0;
+
+ reg_bw_opmode = BW_OPMODE_20MHZ;
+ reg_ratr = RATE_ALL_CCK | RATE_ALL_OFDM_AG | RATE_ALL_OFDM_1SS |
+ RATE_ALL_OFDM_2SS;
+ reg_rrsr = RATE_ALL_CCK | RATE_ALL_OFDM_AG;
+
+ regtmp = rtl_read_byte(rtlpriv, INIRTSMCS_SEL);
+ reg_rrsr = ((reg_rrsr & 0x000fffff) << 8) | regtmp;
+ rtl_write_dword(rtlpriv, INIRTSMCS_SEL, reg_rrsr);
+ rtl_write_byte(rtlpriv, BW_OPMODE, reg_bw_opmode);
+
+ /* Set Retry Limit here */
+ rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_RETRY_LIMIT,
+ (u8 *)(&rtlpci->shortretry_limit));
+
+ rtl_write_byte(rtlpriv, MLT, 0x8f);
+
+ /* For Min Spacing configuration. */
+ switch (rtlphy->rf_type) {
+ case RF_1T2R:
+ case RF_1T1R:
+ rtlhal->minspace_cfg = (MAX_MSS_DENSITY_1T << 3);
+ break;
+ case RF_2T2R:
+ case RF_2T2R_GREEN:
+ rtlhal->minspace_cfg = (MAX_MSS_DENSITY_2T << 3);
+ break;
+ }
+ rtl_write_byte(rtlpriv, AMPDU_MIN_SPACE, rtlhal->minspace_cfg);
+}
+
+int rtl92se_hw_init(struct ieee80211_hw *hw)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
+ struct rtl_phy *rtlphy = &(rtlpriv->phy);
+ struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
+ struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
+ u8 tmp_byte = 0;
+
+ bool rtstatus = true;
+ u8 tmp_u1b;
+ int err = false;
+ u8 i;
+ int wdcapra_add[] = {
+ EDCAPARA_BE, EDCAPARA_BK,
+ EDCAPARA_VI, EDCAPARA_VO};
+ u8 secr_value = 0x0;
+
+ rtlpci->being_init_adapter = true;
+
+ rtlpriv->intf_ops->disable_aspm(hw);
+
+ /* 1. MAC Initialize */
+ /* Before FW download, we have to set some MAC register */
+ _rtl92se_macconfig_before_fwdownload(hw);
+
+ rtlhal->version = (enum version_8192s)((rtl_read_dword(rtlpriv,
+ PMC_FSM) >> 16) & 0xF);
+
+ rtl8192se_gpiobit3_cfg_inputmode(hw);
+
+ /* 2. download firmware */
+ rtstatus = rtl92s_download_fw(hw);
+ if (!rtstatus) {
+ RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING,
+ ("Failed to download FW. "
+ "Init HW without FW now.., Please copy FW into"
+ "/lib/firmware/rtlwifi\n"));
+ rtlhal->fw_ready = false;
+ } else {
+ rtlhal->fw_ready = true;
+ }
+
+ /* After FW download, we have to reset MAC register */
+ _rtl92se_macconfig_after_fwdownload(hw);
+
+ /*Retrieve default FW Cmd IO map. */
+ rtlhal->fwcmd_iomap = rtl_read_word(rtlpriv, LBUS_MON_ADDR);
+ rtlhal->fwcmd_ioparam = rtl_read_dword(rtlpriv, LBUS_ADDR_MASK);
+
+ /* 3. Initialize MAC/PHY Config by MACPHY_reg.txt */
+ if (rtl92s_phy_mac_config(hw) != true) {
+ RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG, ("MAC Config failed\n"));
+ return rtstatus;
+ }
+
+ /* Make sure BB/RF write OK. We should prevent enter IPS. radio off. */
+ /* We must set flag avoid BB/RF config period later!! */
+ rtl_write_dword(rtlpriv, CMDR, 0x37FC);
+
+ /* 4. Initialize BB After MAC Config PHY_reg.txt, AGC_Tab.txt */
+ if (rtl92s_phy_bb_config(hw) != true) {
+ RT_TRACE(rtlpriv, COMP_INIT, DBG_EMERG, ("BB Config failed\n"));
+ return rtstatus;
+ }
+
+ /* 5. Initiailze RF RAIO_A.txt RF RAIO_B.txt */
+ /* Before initalizing RF. We can not use FW to do RF-R/W. */
+
+ rtlphy->rf_mode = RF_OP_BY_SW_3WIRE;
+
+ /* RF Power Save */
+#if 0
+ /* H/W or S/W RF OFF before sleep. */
+ if (rtlpriv->psc.rfoff_reason > RF_CHANGE_BY_PS) {
+ u32 rfoffreason = rtlpriv->psc.rfoff_reason;
+
+ rtlpriv->psc.rfoff_reason = RF_CHANGE_BY_INIT;
+ rtlpriv->psc.rfpwr_state = ERFON;
+ rtl_ps_set_rf_state(hw, ERFOFF, rfoffreason, true);
+ } else {
+ /* gpio radio on/off is out of adapter start */
+ if (rtlpriv->psc.hwradiooff == false) {
+ rtlpriv->psc.rfpwr_state = ERFON;
+ rtlpriv->psc.rfoff_reason = 0;
+ }
+ }
+#endif
+
+ /* Before RF-R/W we must execute the IO from Scott's suggestion. */
+ rtl_write_byte(rtlpriv, AFE_XTAL_CTRL + 1, 0xDB);
+ if (rtlhal->version == VERSION_8192S_ACUT)
+ rtl_write_byte(rtlpriv, SPS1_CTRL + 3, 0x07);
+ else
+ rtl_write_byte(rtlpriv, RF_CTRL, 0x07);
+
+ if (rtl92s_phy_rf_config(hw) != true) {
+ RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG, ("RF Config failed\n"));
+ return rtstatus;
+ }
+
+ /* After read predefined TXT, we must set BB/MAC/RF
+ * register as our requirement */
+
+ rtlphy->rfreg_chnlval[0] = rtl92s_phy_query_rf_reg(hw,
+ (enum radio_path)0,
+ RF_CHNLBW,
+ RFREG_OFFSET_MASK);
+ rtlphy->rfreg_chnlval[1] = rtl92s_phy_query_rf_reg(hw,
+ (enum radio_path)1,
+ RF_CHNLBW,
+ RFREG_OFFSET_MASK);
+
+ /*---- Set CCK and OFDM Block "ON"----*/
+ rtl_set_bbreg(hw, RFPGA0_RFMOD, BCCKEN, 0x1);
+ rtl_set_bbreg(hw, RFPGA0_RFMOD, BOFDMEN, 0x1);
+
+ /*3 Set Hardware(Do nothing now) */
+ _rtl92se_hw_configure(hw);
+
+ /* Read EEPROM TX power index and PHY_REG_PG.txt to capture correct */
+ /* TX power index for different rate set. */
+ /* Get original hw reg values */
+ rtl92s_phy_get_hw_reg_originalvalue(hw);
+ /* Write correct tx power index */
+ rtl92s_phy_set_txpower(hw, rtlphy->current_channel);
+
+ /* We must set MAC address after firmware download. */
+ for (i = 0; i < 6; i++)
+ rtl_write_byte(rtlpriv, MACIDR0 + i, rtlefuse->dev_addr[i]);
+
+ /* EEPROM R/W workaround */
+ tmp_u1b = rtl_read_byte(rtlpriv, MAC_PINMUX_CFG);
+ rtl_write_byte(rtlpriv, MAC_PINMUX_CFG, tmp_u1b & (~BIT(3)));
+
+ rtl_write_byte(rtlpriv, 0x4d, 0x0);
+
+ if (hal_get_firmwareversion(rtlpriv) >= 0x49) {
+ tmp_byte = rtl_read_byte(rtlpriv, FW_RSVD_PG_CRTL) & (~BIT(4));
+ tmp_byte = tmp_byte | BIT(5);
+ rtl_write_byte(rtlpriv, FW_RSVD_PG_CRTL, tmp_byte);
+ rtl_write_dword(rtlpriv, TXDESC_MSK, 0xFFFFCFFF);
+ }
+
+ /* We enable high power and RA related mechanism after NIC
+ * initialized. */
+ rtl92s_phy_set_fw_cmd(hw, FW_CMD_RA_INIT);
+
+ /* Add to prevent ASPM bug. */
+ /* Always enable hst and NIC clock request. */
+ rtl92s_phy_switch_ephy_parameter(hw);
+
+ /* Security related
+ * 1. Clear all H/W keys.
+ * 2. Enable H/W encryption/decryption. */
+ rtl_cam_reset_all_entry(hw);
+ secr_value |= SCR_TXENCENABLE;
+ secr_value |= SCR_RXENCENABLE;
+ secr_value |= SCR_NOSKMC;
+ rtl_write_byte(rtlpriv, REG_SECR, secr_value);
+
+ for (i = 0; i < 4; i++)
+ rtl_write_dword(rtlpriv, wdcapra_add[i], 0x5e4322);
+
+ if (rtlphy->rf_type == RF_1T2R) {
+ bool mrc2set = true;
+ /* Turn on B-Path */
+ rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_MRC, (u8 *)&mrc2set);
+ }
+
+ rtlpriv->cfg->ops->led_control(hw, LED_CTL_POWER_ON);
+ rtl92s_dm_init(hw);
+ rtlpci->being_init_adapter = false;
+
+ return err;
+}
+
+void rtl92se_set_mac_addr(struct rtl_io *io, const u8 * addr)
+{
+}
+
+void rtl92se_set_check_bssid(struct ieee80211_hw *hw, bool check_bssid)
+{
+ struct rtl_priv *rtlpriv = rtl_priv(hw);
+ struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
+ u32 reg_rcr = rtlpci->receive_config;
+
+ if (rtlpriv->psc.rfpwr_state != ERFON)
+ return;
+
+ if (check_bssid == true) {
+ reg_rcr |= (RCR_CBSSID);
+ rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_RCR, (u8 *)(&reg_rcr));
+ } else if (check_bssid == false) {
+ reg_rcr &= (~RCR_CBSSID);