staging: rts5208: use ternary operators to reduce indentation level
Convert code in format of if (a) if(b) { [...] } to one line with a simple ternary operation to avoid unnecesary increase of indentation level. Signed-off-by: Giedrius Statkevičius <giedrius.statkevicius@gmail.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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Родитель
fbbf359c4c
Коммит
609fc15ef8
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@ -309,14 +309,10 @@ int rtsx_reset_chip(struct rtsx_chip *chip)
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chip->aspm_level[0] = chip->aspm_l0s_l1_en;
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if (CHK_SDIO_EXIST(chip)) {
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chip->aspm_level[1] = chip->aspm_l0s_l1_en;
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if (CHECK_PID(chip, 0x5288))
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retval = rtsx_write_cfg_dw(chip, 2,
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0xC0, 0xFF,
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chip->aspm_l0s_l1_en);
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else
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retval = rtsx_write_cfg_dw(chip, 1,
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0xC0, 0xFF,
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chip->aspm_l0s_l1_en);
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retval = rtsx_write_cfg_dw(chip,
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CHECK_PID(chip, 0x5288) ? 2 : 1,
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0xC0, 0xFF,
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chip->aspm_l0s_l1_en);
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if (retval != STATUS_SUCCESS)
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TRACE_RET(chip, STATUS_FAIL);
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@ -341,12 +337,9 @@ int rtsx_reset_chip(struct rtsx_chip *chip)
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TRACE_RET(chip, STATUS_FAIL);
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if (CHK_SDIO_EXIST(chip)) {
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if (CHECK_PID(chip, 0x5288))
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retval = rtsx_write_cfg_dw(chip, 2, 0xC0,
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0xFF00, 0x0100);
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else
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retval = rtsx_write_cfg_dw(chip, 1, 0xC0,
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0xFF00, 0x0100);
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retval = rtsx_write_cfg_dw(chip,
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CHECK_PID(chip, 0x5288) ? 2 : 1,
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0xC0, 0xFF00, 0x0100);
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if (retval != STATUS_SUCCESS)
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TRACE_RET(chip, STATUS_FAIL);
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@ -537,10 +530,7 @@ static int rts5208_init(struct rtsx_chip *chip)
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RTSX_WRITE_REG(chip, CLK_SEL, 0x03, 0x03);
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RTSX_READ_REG(chip, CLK_SEL, &val);
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if (val == 0)
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chip->asic_code = 1;
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else
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chip->asic_code = 0;
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chip->asic_code = val == 0 ? 1 : 0;
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if (chip->asic_code) {
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retval = rtsx_read_phy_register(chip, 0x1C, ®);
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@ -550,10 +540,7 @@ static int rts5208_init(struct rtsx_chip *chip)
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dev_dbg(rtsx_dev(chip), "Value of phy register 0x1C is 0x%x\n",
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reg);
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chip->ic_version = (reg >> 4) & 0x07;
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if (reg & PHY_DEBUG_MODE)
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chip->phy_debug_mode = 1;
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else
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chip->phy_debug_mode = 0;
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chip->phy_debug_mode = reg & PHY_DEBUG_MODE ? 1 : 0;
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} else {
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RTSX_READ_REG(chip, 0xFE80, &val);
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@ -563,16 +550,10 @@ static int rts5208_init(struct rtsx_chip *chip)
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RTSX_READ_REG(chip, PDINFO, &val);
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dev_dbg(rtsx_dev(chip), "PDINFO: 0x%x\n", val);
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if (val & AUX_PWR_DETECTED)
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chip->aux_pwr_exist = 1;
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else
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chip->aux_pwr_exist = 0;
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chip->aux_pwr_exist = val & AUX_PWR_DETECTED ? 1 : 0;
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RTSX_READ_REG(chip, 0xFE50, &val);
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if (val & 0x01)
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chip->hw_bypass_sd = 1;
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else
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chip->hw_bypass_sd = 0;
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chip->hw_bypass_sd = val & 0x01 ? 1 : 0;
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rtsx_read_config_byte(chip, 0x0E, &val);
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if (val & 0x80)
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@ -582,10 +563,7 @@ static int rts5208_init(struct rtsx_chip *chip)
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if (chip->use_hw_setting) {
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RTSX_READ_REG(chip, CHANGE_LINK_STATE, &val);
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if (val & 0x80)
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chip->auto_delink_en = 1;
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else
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chip->auto_delink_en = 0;
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chip->auto_delink_en = val & 0x80 ? 1 : 0;
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}
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return STATUS_SUCCESS;
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@ -599,33 +577,21 @@ static int rts5288_init(struct rtsx_chip *chip)
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RTSX_WRITE_REG(chip, CLK_SEL, 0x03, 0x03);
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RTSX_READ_REG(chip, CLK_SEL, &val);
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if (val == 0)
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chip->asic_code = 1;
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else
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chip->asic_code = 0;
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chip->asic_code = val == 0 ? 1 : 0;
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chip->ic_version = 0;
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chip->phy_debug_mode = 0;
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RTSX_READ_REG(chip, PDINFO, &val);
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dev_dbg(rtsx_dev(chip), "PDINFO: 0x%x\n", val);
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if (val & AUX_PWR_DETECTED)
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chip->aux_pwr_exist = 1;
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else
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chip->aux_pwr_exist = 0;
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chip->aux_pwr_exist = val & AUX_PWR_DETECTED ? 1 : 0;
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RTSX_READ_REG(chip, CARD_SHARE_MODE, &val);
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dev_dbg(rtsx_dev(chip), "CARD_SHARE_MODE: 0x%x\n", val);
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if (val & 0x04)
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chip->baro_pkg = QFN;
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else
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chip->baro_pkg = LQFP;
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chip->baro_pkg = val & 0x04 ? QFN : LQFP;
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RTSX_READ_REG(chip, 0xFE5A, &val);
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if (val & 0x10)
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chip->hw_bypass_sd = 1;
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else
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chip->hw_bypass_sd = 0;
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chip->hw_bypass_sd = val & 0x10 ? 1 : 0;
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retval = rtsx_read_cfg_dw(chip, 0, 0x718, &lval);
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if (retval != STATUS_SUCCESS)
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@ -640,10 +606,7 @@ static int rts5288_init(struct rtsx_chip *chip)
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if (chip->use_hw_setting) {
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RTSX_READ_REG(chip, CHANGE_LINK_STATE, &val);
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if (val & 0x80)
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chip->auto_delink_en = 1;
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else
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chip->auto_delink_en = 0;
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chip->auto_delink_en = val & 0x80 ? 1 : 0;
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if (CHECK_BARO_PKG(chip, LQFP))
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chip->lun_mode = SD_MS_1LUN;
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@ -1522,7 +1485,7 @@ int rtsx_set_phy_reg_bit(struct rtsx_chip *chip, u8 reg, u8 bit)
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if (retval != STATUS_SUCCESS)
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TRACE_RET(chip, STATUS_FAIL);
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if (0 == (value & (1 << bit))) {
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if ((value & (1 << bit)) == 0) {
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value |= (1 << bit);
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retval = rtsx_write_phy_register(chip, reg, value);
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if (retval != STATUS_SUCCESS)
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@ -1595,12 +1558,9 @@ void rtsx_enter_ss(struct rtsx_chip *chip)
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rtsx_force_power_down(chip, SSC_PDCTL | OC_PDCTL);
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}
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if (CHK_SDIO_EXIST(chip)) {
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if (CHECK_PID(chip, 0x5288))
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rtsx_write_cfg_dw(chip, 2, 0xC0, 0xFF00, 0x0100);
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else
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rtsx_write_cfg_dw(chip, 1, 0xC0, 0xFF00, 0x0100);
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}
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if (CHK_SDIO_EXIST(chip))
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rtsx_write_cfg_dw(chip, CHECK_PID(chip, 0x5288) ? 2 : 1,
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0xC0, 0xFF00, 0x0100);
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if (chip->auto_delink_en) {
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rtsx_write_register(chip, HOST_SLEEP_STATE, 0x01, 0x01);
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@ -1811,12 +1771,8 @@ void rtsx_enable_aspm(struct rtsx_chip *chip)
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if (CHK_SDIO_EXIST(chip)) {
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u16 val = chip->aspm_l0s_l1_en | 0x0100;
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if (CHECK_PID(chip, 0x5288))
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rtsx_write_cfg_dw(chip, 2, 0xC0,
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0xFFFF, val);
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else
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rtsx_write_cfg_dw(chip, 1, 0xC0,
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0xFFFF, val);
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rtsx_write_cfg_dw(chip, CHECK_PID(chip, 0x5288) ? 2 : 1,
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0xC0, 0xFFF, val);
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}
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}
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}
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