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39e794bff7
This change adds a support for a 20nm qcom-ufs phy that is required in platforms that use ufs-qcom controller. Signed-off-by: Yaniv Gardi <ygardi@codeaurora.org> Reviewed-by: Dov Levenglick <dovl@codeaurora.org> Signed-off-by: Christoph Hellwig <hch@lst.de>
236 lines
11 KiB
C
236 lines
11 KiB
C
/*
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* Copyright (c) 2013-2015, Linux Foundation. All rights reserved.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 and
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* only version 2 as published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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*/
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#ifndef UFS_QCOM_PHY_QMP_20NM_H_
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#define UFS_QCOM_PHY_QMP_20NM_H_
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#include "phy-qcom-ufs-i.h"
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/* QCOM UFS PHY control registers */
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#define COM_OFF(x) (0x000 + x)
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#define PHY_OFF(x) (0xC00 + x)
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#define TX_OFF(n, x) (0x400 + (0x400 * n) + x)
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#define RX_OFF(n, x) (0x600 + (0x400 * n) + x)
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/* UFS PHY PLL block registers */
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#define QSERDES_COM_SYS_CLK_CTRL COM_OFF(0x0)
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#define QSERDES_COM_PLL_VCOTAIL_EN COM_OFF(0x04)
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#define QSERDES_COM_PLL_CNTRL COM_OFF(0x14)
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#define QSERDES_COM_PLL_IP_SETI COM_OFF(0x24)
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#define QSERDES_COM_CORE_CLK_IN_SYNC_SEL COM_OFF(0x28)
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#define QSERDES_COM_BIAS_EN_CLKBUFLR_EN COM_OFF(0x30)
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#define QSERDES_COM_PLL_CP_SETI COM_OFF(0x34)
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#define QSERDES_COM_PLL_IP_SETP COM_OFF(0x38)
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#define QSERDES_COM_PLL_CP_SETP COM_OFF(0x3C)
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#define QSERDES_COM_SYSCLK_EN_SEL_TXBAND COM_OFF(0x48)
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#define QSERDES_COM_RESETSM_CNTRL COM_OFF(0x4C)
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#define QSERDES_COM_RESETSM_CNTRL2 COM_OFF(0x50)
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#define QSERDES_COM_PLLLOCK_CMP1 COM_OFF(0x90)
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#define QSERDES_COM_PLLLOCK_CMP2 COM_OFF(0x94)
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#define QSERDES_COM_PLLLOCK_CMP3 COM_OFF(0x98)
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#define QSERDES_COM_PLLLOCK_CMP_EN COM_OFF(0x9C)
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#define QSERDES_COM_BGTC COM_OFF(0xA0)
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#define QSERDES_COM_DEC_START1 COM_OFF(0xAC)
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#define QSERDES_COM_PLL_AMP_OS COM_OFF(0xB0)
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#define QSERDES_COM_RES_CODE_UP_OFFSET COM_OFF(0xD8)
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#define QSERDES_COM_RES_CODE_DN_OFFSET COM_OFF(0xDC)
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#define QSERDES_COM_DIV_FRAC_START1 COM_OFF(0x100)
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#define QSERDES_COM_DIV_FRAC_START2 COM_OFF(0x104)
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#define QSERDES_COM_DIV_FRAC_START3 COM_OFF(0x108)
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#define QSERDES_COM_DEC_START2 COM_OFF(0x10C)
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#define QSERDES_COM_PLL_RXTXEPCLK_EN COM_OFF(0x110)
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#define QSERDES_COM_PLL_CRCTRL COM_OFF(0x114)
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#define QSERDES_COM_PLL_CLKEPDIV COM_OFF(0x118)
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/* TX LANE n (0, 1) registers */
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#define QSERDES_TX_EMP_POST1_LVL(n) TX_OFF(n, 0x08)
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#define QSERDES_TX_DRV_LVL(n) TX_OFF(n, 0x0C)
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#define QSERDES_TX_LANE_MODE(n) TX_OFF(n, 0x54)
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/* RX LANE n (0, 1) registers */
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#define QSERDES_RX_CDR_CONTROL1(n) RX_OFF(n, 0x0)
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#define QSERDES_RX_CDR_CONTROL_HALF(n) RX_OFF(n, 0x8)
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#define QSERDES_RX_RX_EQ_GAIN1_LSB(n) RX_OFF(n, 0xA8)
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#define QSERDES_RX_RX_EQ_GAIN1_MSB(n) RX_OFF(n, 0xAC)
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#define QSERDES_RX_RX_EQ_GAIN2_LSB(n) RX_OFF(n, 0xB0)
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#define QSERDES_RX_RX_EQ_GAIN2_MSB(n) RX_OFF(n, 0xB4)
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#define QSERDES_RX_RX_EQU_ADAPTOR_CNTRL2(n) RX_OFF(n, 0xBC)
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#define QSERDES_RX_CDR_CONTROL_QUARTER(n) RX_OFF(n, 0xC)
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#define QSERDES_RX_SIGDET_CNTRL(n) RX_OFF(n, 0x100)
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/* UFS PHY registers */
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#define UFS_PHY_PHY_START PHY_OFF(0x00)
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#define UFS_PHY_POWER_DOWN_CONTROL PHY_OFF(0x4)
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#define UFS_PHY_TX_LANE_ENABLE PHY_OFF(0x44)
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#define UFS_PHY_PWM_G1_CLK_DIVIDER PHY_OFF(0x08)
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#define UFS_PHY_PWM_G2_CLK_DIVIDER PHY_OFF(0x0C)
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#define UFS_PHY_PWM_G3_CLK_DIVIDER PHY_OFF(0x10)
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#define UFS_PHY_PWM_G4_CLK_DIVIDER PHY_OFF(0x14)
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#define UFS_PHY_CORECLK_PWM_G1_CLK_DIVIDER PHY_OFF(0x34)
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#define UFS_PHY_CORECLK_PWM_G2_CLK_DIVIDER PHY_OFF(0x38)
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#define UFS_PHY_CORECLK_PWM_G3_CLK_DIVIDER PHY_OFF(0x3C)
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#define UFS_PHY_CORECLK_PWM_G4_CLK_DIVIDER PHY_OFF(0x40)
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#define UFS_PHY_OMC_STATUS_RDVAL PHY_OFF(0x68)
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#define UFS_PHY_LINE_RESET_TIME PHY_OFF(0x28)
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#define UFS_PHY_LINE_RESET_GRANULARITY PHY_OFF(0x2C)
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#define UFS_PHY_TSYNC_RSYNC_CNTL PHY_OFF(0x48)
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#define UFS_PHY_PLL_CNTL PHY_OFF(0x50)
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#define UFS_PHY_TX_LARGE_AMP_DRV_LVL PHY_OFF(0x54)
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#define UFS_PHY_TX_SMALL_AMP_DRV_LVL PHY_OFF(0x5C)
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#define UFS_PHY_TX_LARGE_AMP_POST_EMP_LVL PHY_OFF(0x58)
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#define UFS_PHY_TX_SMALL_AMP_POST_EMP_LVL PHY_OFF(0x60)
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#define UFS_PHY_CFG_CHANGE_CNT_VAL PHY_OFF(0x64)
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#define UFS_PHY_RX_SYNC_WAIT_TIME PHY_OFF(0x6C)
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#define UFS_PHY_TX_MIN_SLEEP_NOCONFIG_TIME_CAPABILITY PHY_OFF(0xB4)
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#define UFS_PHY_RX_MIN_SLEEP_NOCONFIG_TIME_CAPABILITY PHY_OFF(0xE0)
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#define UFS_PHY_TX_MIN_STALL_NOCONFIG_TIME_CAPABILITY PHY_OFF(0xB8)
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#define UFS_PHY_RX_MIN_STALL_NOCONFIG_TIME_CAPABILITY PHY_OFF(0xE4)
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#define UFS_PHY_TX_MIN_SAVE_CONFIG_TIME_CAPABILITY PHY_OFF(0xBC)
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#define UFS_PHY_RX_MIN_SAVE_CONFIG_TIME_CAPABILITY PHY_OFF(0xE8)
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#define UFS_PHY_RX_PWM_BURST_CLOSURE_LENGTH_CAPABILITY PHY_OFF(0xFC)
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#define UFS_PHY_RX_MIN_ACTIVATETIME_CAPABILITY PHY_OFF(0x100)
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#define UFS_PHY_RX_SIGDET_CTRL3 PHY_OFF(0x14c)
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#define UFS_PHY_RMMI_ATTR_CTRL PHY_OFF(0x160)
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#define UFS_PHY_RMMI_RX_CFGUPDT_L1 (1 << 7)
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#define UFS_PHY_RMMI_TX_CFGUPDT_L1 (1 << 6)
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#define UFS_PHY_RMMI_CFGWR_L1 (1 << 5)
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#define UFS_PHY_RMMI_CFGRD_L1 (1 << 4)
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#define UFS_PHY_RMMI_RX_CFGUPDT_L0 (1 << 3)
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#define UFS_PHY_RMMI_TX_CFGUPDT_L0 (1 << 2)
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#define UFS_PHY_RMMI_CFGWR_L0 (1 << 1)
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#define UFS_PHY_RMMI_CFGRD_L0 (1 << 0)
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#define UFS_PHY_RMMI_ATTRID PHY_OFF(0x164)
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#define UFS_PHY_RMMI_ATTRWRVAL PHY_OFF(0x168)
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#define UFS_PHY_RMMI_ATTRRDVAL_L0_STATUS PHY_OFF(0x16C)
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#define UFS_PHY_RMMI_ATTRRDVAL_L1_STATUS PHY_OFF(0x170)
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#define UFS_PHY_PCS_READY_STATUS PHY_OFF(0x174)
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#define UFS_PHY_TX_LANE_ENABLE_MASK 0x3
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/*
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* This structure represents the 20nm specific phy.
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* common_cfg MUST remain the first field in this structure
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* in case extra fields are added. This way, when calling
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* get_ufs_qcom_phy() of generic phy, we can extract the
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* common phy structure (struct ufs_qcom_phy) out of it
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* regardless of the relevant specific phy.
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*/
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struct ufs_qcom_phy_qmp_20nm {
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struct ufs_qcom_phy common_cfg;
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};
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static struct ufs_qcom_phy_calibration phy_cal_table_rate_A_1_2_0[] = {
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UFS_QCOM_PHY_CAL_ENTRY(UFS_PHY_POWER_DOWN_CONTROL, 0x01),
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UFS_QCOM_PHY_CAL_ENTRY(UFS_PHY_RX_SIGDET_CTRL3, 0x0D),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_VCOTAIL_EN, 0xe1),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_CRCTRL, 0xcc),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_SYSCLK_EN_SEL_TXBAND, 0x08),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_CLKEPDIV, 0x03),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_RXTXEPCLK_EN, 0x10),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DEC_START1, 0x82),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DEC_START2, 0x03),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DIV_FRAC_START1, 0x80),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DIV_FRAC_START2, 0x80),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DIV_FRAC_START3, 0x40),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLLLOCK_CMP1, 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLLLOCK_CMP2, 0x19),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLLLOCK_CMP3, 0x00),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLLLOCK_CMP_EN, 0x03),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_RESETSM_CNTRL, 0x90),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_RESETSM_CNTRL2, 0x03),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL1(0), 0xf2),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL_HALF(0), 0x0c),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL_QUARTER(0), 0x12),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL1(1), 0xf2),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL_HALF(1), 0x0c),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL_QUARTER(1), 0x12),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN1_LSB(0), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN1_MSB(0), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN2_LSB(0), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN2_MSB(0), 0x00),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN1_LSB(1), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN1_MSB(1), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN2_LSB(1), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN2_MSB(1), 0x00),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_CP_SETI, 0x3f),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_IP_SETP, 0x1b),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_CP_SETP, 0x0f),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_IP_SETI, 0x01),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_TX_EMP_POST1_LVL(0), 0x2F),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_TX_DRV_LVL(0), 0x20),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_TX_EMP_POST1_LVL(1), 0x2F),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_TX_DRV_LVL(1), 0x20),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_TX_LANE_MODE(0), 0x68),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_TX_LANE_MODE(1), 0x68),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQU_ADAPTOR_CNTRL2(1), 0xdc),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQU_ADAPTOR_CNTRL2(0), 0xdc),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_BIAS_EN_CLKBUFLR_EN, 0x3),
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};
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static struct ufs_qcom_phy_calibration phy_cal_table_rate_A_1_3_0[] = {
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UFS_QCOM_PHY_CAL_ENTRY(UFS_PHY_POWER_DOWN_CONTROL, 0x01),
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UFS_QCOM_PHY_CAL_ENTRY(UFS_PHY_RX_SIGDET_CTRL3, 0x0D),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_VCOTAIL_EN, 0xe1),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_CRCTRL, 0xcc),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_SYSCLK_EN_SEL_TXBAND, 0x08),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_CLKEPDIV, 0x03),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_RXTXEPCLK_EN, 0x10),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DEC_START1, 0x82),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DEC_START2, 0x03),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DIV_FRAC_START1, 0x80),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DIV_FRAC_START2, 0x80),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DIV_FRAC_START3, 0x40),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLLLOCK_CMP1, 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLLLOCK_CMP2, 0x19),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLLLOCK_CMP3, 0x00),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLLLOCK_CMP_EN, 0x03),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_RESETSM_CNTRL, 0x90),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_RESETSM_CNTRL2, 0x03),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL1(0), 0xf2),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL_HALF(0), 0x0c),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL_QUARTER(0), 0x12),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL1(1), 0xf2),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL_HALF(1), 0x0c),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_CDR_CONTROL_QUARTER(1), 0x12),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN1_LSB(0), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN1_MSB(0), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN2_LSB(0), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN2_MSB(0), 0x00),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN1_LSB(1), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN1_MSB(1), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN2_LSB(1), 0xff),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQ_GAIN2_MSB(1), 0x00),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_CP_SETI, 0x2b),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_IP_SETP, 0x38),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_CP_SETP, 0x3c),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_RES_CODE_UP_OFFSET, 0x02),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_RES_CODE_DN_OFFSET, 0x02),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_IP_SETI, 0x01),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLL_CNTRL, 0x40),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_TX_LANE_MODE(0), 0x68),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_TX_LANE_MODE(1), 0x68),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQU_ADAPTOR_CNTRL2(1), 0xdc),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_RX_RX_EQU_ADAPTOR_CNTRL2(0), 0xdc),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_BIAS_EN_CLKBUFLR_EN, 0x3),
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};
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static struct ufs_qcom_phy_calibration phy_cal_table_rate_B[] = {
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_DEC_START1, 0x98),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLLLOCK_CMP1, 0x65),
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UFS_QCOM_PHY_CAL_ENTRY(QSERDES_COM_PLLLOCK_CMP2, 0x1e),
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};
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#endif
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