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cad2e03d86
Some implementation of UFS host controller HW might have some non-standard behaviours (quirks) when compared to behaviour specified by UFSHCI specification. This patch add support to allow specifying all such quirks to standard UFS host controller driver so standard driver takes them into account. In this change a UFSHCD_QUIRK_DELAY_BEFORE_DME_CMDS is introduced, where a minimum delay of 1ms is required before DME commands for stability purposes. Signed-off-by: Yaniv Gardi <ygardi@codeaurora.org> Reviewed-by: Gilad Broner <gbroner@codeaurora.org> Signed-off-by: James Bottomley <JBottomley@Odin.com>
197 lines
5.5 KiB
C
197 lines
5.5 KiB
C
/* Copyright (c) 2013-2015, The 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_H_
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#define UFS_QCOM_H_
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#define MAX_UFS_QCOM_HOSTS 1
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#define MAX_U32 (~(u32)0)
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#define MPHY_TX_FSM_STATE 0x41
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#define TX_FSM_HIBERN8 0x1
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#define HBRN8_POLL_TOUT_MS 100
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#define DEFAULT_CLK_RATE_HZ 1000000
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#define BUS_VECTOR_NAME_LEN 32
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#define UFS_HW_VER_MAJOR_SHFT (28)
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#define UFS_HW_VER_MAJOR_MASK (0x000F << UFS_HW_VER_MAJOR_SHFT)
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#define UFS_HW_VER_MINOR_SHFT (16)
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#define UFS_HW_VER_MINOR_MASK (0x0FFF << UFS_HW_VER_MINOR_SHFT)
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#define UFS_HW_VER_STEP_SHFT (0)
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#define UFS_HW_VER_STEP_MASK (0xFFFF << UFS_HW_VER_STEP_SHFT)
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/* vendor specific pre-defined parameters */
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#define SLOW 1
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#define FAST 2
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#define UFS_QCOM_LIMIT_NUM_LANES_RX 2
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#define UFS_QCOM_LIMIT_NUM_LANES_TX 2
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#define UFS_QCOM_LIMIT_HSGEAR_RX UFS_HS_G2
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#define UFS_QCOM_LIMIT_HSGEAR_TX UFS_HS_G2
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#define UFS_QCOM_LIMIT_PWMGEAR_RX UFS_PWM_G4
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#define UFS_QCOM_LIMIT_PWMGEAR_TX UFS_PWM_G4
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#define UFS_QCOM_LIMIT_RX_PWR_PWM SLOW_MODE
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#define UFS_QCOM_LIMIT_TX_PWR_PWM SLOW_MODE
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#define UFS_QCOM_LIMIT_RX_PWR_HS FAST_MODE
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#define UFS_QCOM_LIMIT_TX_PWR_HS FAST_MODE
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#define UFS_QCOM_LIMIT_HS_RATE PA_HS_MODE_B
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#define UFS_QCOM_LIMIT_DESIRED_MODE FAST
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/* QCOM UFS host controller vendor specific registers */
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enum {
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REG_UFS_SYS1CLK_1US = 0xC0,
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REG_UFS_TX_SYMBOL_CLK_NS_US = 0xC4,
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REG_UFS_LOCAL_PORT_ID_REG = 0xC8,
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REG_UFS_PA_ERR_CODE = 0xCC,
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REG_UFS_RETRY_TIMER_REG = 0xD0,
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REG_UFS_PA_LINK_STARTUP_TIMER = 0xD8,
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REG_UFS_CFG1 = 0xDC,
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REG_UFS_CFG2 = 0xE0,
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REG_UFS_HW_VERSION = 0xE4,
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UFS_DBG_RD_REG_UAWM = 0x100,
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UFS_DBG_RD_REG_UARM = 0x200,
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UFS_DBG_RD_REG_TXUC = 0x300,
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UFS_DBG_RD_REG_RXUC = 0x400,
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UFS_DBG_RD_REG_DFC = 0x500,
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UFS_DBG_RD_REG_TRLUT = 0x600,
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UFS_DBG_RD_REG_TMRLUT = 0x700,
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UFS_UFS_DBG_RD_REG_OCSC = 0x800,
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UFS_UFS_DBG_RD_DESC_RAM = 0x1500,
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UFS_UFS_DBG_RD_PRDT_RAM = 0x1700,
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UFS_UFS_DBG_RD_RESP_RAM = 0x1800,
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UFS_UFS_DBG_RD_EDTL_RAM = 0x1900,
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};
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/* bit definitions for REG_UFS_CFG2 register */
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#define UAWM_HW_CGC_EN (1 << 0)
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#define UARM_HW_CGC_EN (1 << 1)
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#define TXUC_HW_CGC_EN (1 << 2)
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#define RXUC_HW_CGC_EN (1 << 3)
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#define DFC_HW_CGC_EN (1 << 4)
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#define TRLUT_HW_CGC_EN (1 << 5)
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#define TMRLUT_HW_CGC_EN (1 << 6)
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#define OCSC_HW_CGC_EN (1 << 7)
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#define REG_UFS_CFG2_CGC_EN_ALL (UAWM_HW_CGC_EN | UARM_HW_CGC_EN |\
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TXUC_HW_CGC_EN | RXUC_HW_CGC_EN |\
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DFC_HW_CGC_EN | TRLUT_HW_CGC_EN |\
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TMRLUT_HW_CGC_EN | OCSC_HW_CGC_EN)
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/* bit offset */
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enum {
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OFFSET_UFS_PHY_SOFT_RESET = 1,
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OFFSET_CLK_NS_REG = 10,
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};
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/* bit masks */
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enum {
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MASK_UFS_PHY_SOFT_RESET = 0x2,
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MASK_TX_SYMBOL_CLK_1US_REG = 0x3FF,
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MASK_CLK_NS_REG = 0xFFFC00,
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};
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enum ufs_qcom_phy_init_type {
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UFS_PHY_INIT_FULL,
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UFS_PHY_INIT_CFG_RESTORE,
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};
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static inline void
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ufs_qcom_get_controller_revision(struct ufs_hba *hba,
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u8 *major, u16 *minor, u16 *step)
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{
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u32 ver = ufshcd_readl(hba, REG_UFS_HW_VERSION);
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*major = (ver & UFS_HW_VER_MAJOR_MASK) >> UFS_HW_VER_MAJOR_SHFT;
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*minor = (ver & UFS_HW_VER_MINOR_MASK) >> UFS_HW_VER_MINOR_SHFT;
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*step = (ver & UFS_HW_VER_STEP_MASK) >> UFS_HW_VER_STEP_SHFT;
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};
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static inline void ufs_qcom_assert_reset(struct ufs_hba *hba)
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{
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ufshcd_rmwl(hba, MASK_UFS_PHY_SOFT_RESET,
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1 << OFFSET_UFS_PHY_SOFT_RESET, REG_UFS_CFG1);
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/*
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* Make sure assertion of ufs phy reset is written to
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* register before returning
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*/
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mb();
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}
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static inline void ufs_qcom_deassert_reset(struct ufs_hba *hba)
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{
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ufshcd_rmwl(hba, MASK_UFS_PHY_SOFT_RESET,
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0 << OFFSET_UFS_PHY_SOFT_RESET, REG_UFS_CFG1);
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/*
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* Make sure de-assertion of ufs phy reset is written to
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* register before returning
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*/
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mb();
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}
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struct ufs_qcom_bus_vote {
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uint32_t client_handle;
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uint32_t curr_vote;
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int min_bw_vote;
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int max_bw_vote;
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int saved_vote;
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bool is_max_bw_needed;
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struct device_attribute max_bus_bw;
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};
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/* Host controller hardware version: major.minor.step */
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struct ufs_hw_version {
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u16 step;
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u16 minor;
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u8 major;
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};
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struct ufs_qcom_host {
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/*
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* Set this capability if host controller supports the QUniPro mode
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* and if driver wants the Host controller to operate in QUniPro mode.
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* Note: By default this capability will be kept enabled if host
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* controller supports the QUniPro mode.
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*/
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#define UFS_QCOM_CAP_QUNIPRO UFS_BIT(0)
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u32 caps;
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struct phy *generic_phy;
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struct ufs_hba *hba;
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struct ufs_qcom_bus_vote bus_vote;
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struct ufs_pa_layer_attr dev_req_params;
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struct clk *rx_l0_sync_clk;
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struct clk *tx_l0_sync_clk;
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struct clk *rx_l1_sync_clk;
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struct clk *tx_l1_sync_clk;
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bool is_lane_clks_enabled;
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struct ufs_hw_version hw_ver;
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};
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#define ufs_qcom_is_link_off(hba) ufshcd_is_link_off(hba)
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#define ufs_qcom_is_link_active(hba) ufshcd_is_link_active(hba)
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#define ufs_qcom_is_link_hibern8(hba) ufshcd_is_link_hibern8(hba)
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static inline bool ufs_qcom_cap_qunipro(struct ufs_qcom_host *host)
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{
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if (host->caps & UFS_QCOM_CAP_QUNIPRO)
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return true;
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else
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return false;
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}
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#endif /* UFS_QCOM_H_ */
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