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593 lines
16 KiB
593 lines
16 KiB
// SPDX-License-Identifier: GPL-2.0-only |
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/* |
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* HiSilicon Hixxxx UFS Driver |
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* |
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* Copyright (c) 2016-2017 Linaro Ltd. |
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* Copyright (c) 2016-2017 HiSilicon Technologies Co., Ltd. |
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*/ |
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#include <linux/time.h> |
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#include <linux/of.h> |
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#include <linux/of_address.h> |
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#include <linux/dma-mapping.h> |
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#include <linux/platform_device.h> |
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#include <linux/reset.h> |
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#include "ufshcd.h" |
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#include "ufshcd-pltfrm.h" |
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#include "unipro.h" |
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#include "ufs-hisi.h" |
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#include "ufshci.h" |
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#include "ufs_quirks.h" |
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static int ufs_hisi_check_hibern8(struct ufs_hba *hba) |
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{ |
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int err = 0; |
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u32 tx_fsm_val_0 = 0; |
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u32 tx_fsm_val_1 = 0; |
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unsigned long timeout = jiffies + msecs_to_jiffies(HBRN8_POLL_TOUT_MS); |
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do { |
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err = ufshcd_dme_get(hba, UIC_ARG_MIB_SEL(MPHY_TX_FSM_STATE, 0), |
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&tx_fsm_val_0); |
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err |= ufshcd_dme_get(hba, |
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UIC_ARG_MIB_SEL(MPHY_TX_FSM_STATE, 1), &tx_fsm_val_1); |
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if (err || (tx_fsm_val_0 == TX_FSM_HIBERN8 && |
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tx_fsm_val_1 == TX_FSM_HIBERN8)) |
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break; |
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/* sleep for max. 200us */ |
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usleep_range(100, 200); |
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} while (time_before(jiffies, timeout)); |
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/* |
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* we might have scheduled out for long during polling so |
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* check the state again. |
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*/ |
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if (time_after(jiffies, timeout)) { |
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err = ufshcd_dme_get(hba, UIC_ARG_MIB_SEL(MPHY_TX_FSM_STATE, 0), |
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&tx_fsm_val_0); |
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err |= ufshcd_dme_get(hba, |
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UIC_ARG_MIB_SEL(MPHY_TX_FSM_STATE, 1), &tx_fsm_val_1); |
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} |
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if (err) { |
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dev_err(hba->dev, "%s: unable to get TX_FSM_STATE, err %d\n", |
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__func__, err); |
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} else if (tx_fsm_val_0 != TX_FSM_HIBERN8 || |
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tx_fsm_val_1 != TX_FSM_HIBERN8) { |
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err = -1; |
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dev_err(hba->dev, "%s: invalid TX_FSM_STATE, lane0 = %d, lane1 = %d\n", |
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__func__, tx_fsm_val_0, tx_fsm_val_1); |
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} |
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return err; |
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} |
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static void ufs_hisi_clk_init(struct ufs_hba *hba) |
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{ |
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struct ufs_hisi_host *host = ufshcd_get_variant(hba); |
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ufs_sys_ctrl_clr_bits(host, BIT_SYSCTRL_REF_CLOCK_EN, PHY_CLK_CTRL); |
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if (ufs_sys_ctrl_readl(host, PHY_CLK_CTRL) & BIT_SYSCTRL_REF_CLOCK_EN) |
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mdelay(1); |
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/* use abb clk */ |
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ufs_sys_ctrl_clr_bits(host, BIT_UFS_REFCLK_SRC_SEl, UFS_SYSCTRL); |
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ufs_sys_ctrl_clr_bits(host, BIT_UFS_REFCLK_ISO_EN, PHY_ISO_EN); |
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/* open mphy ref clk */ |
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ufs_sys_ctrl_set_bits(host, BIT_SYSCTRL_REF_CLOCK_EN, PHY_CLK_CTRL); |
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} |
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static void ufs_hisi_soc_init(struct ufs_hba *hba) |
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{ |
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struct ufs_hisi_host *host = ufshcd_get_variant(hba); |
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u32 reg; |
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if (!IS_ERR(host->rst)) |
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reset_control_assert(host->rst); |
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/* HC_PSW powerup */ |
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ufs_sys_ctrl_set_bits(host, BIT_UFS_PSW_MTCMOS_EN, PSW_POWER_CTRL); |
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udelay(10); |
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/* notify PWR ready */ |
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ufs_sys_ctrl_set_bits(host, BIT_SYSCTRL_PWR_READY, HC_LP_CTRL); |
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ufs_sys_ctrl_writel(host, MASK_UFS_DEVICE_RESET | 0, |
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UFS_DEVICE_RESET_CTRL); |
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reg = ufs_sys_ctrl_readl(host, PHY_CLK_CTRL); |
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reg = (reg & ~MASK_SYSCTRL_CFG_CLOCK_FREQ) | UFS_FREQ_CFG_CLK; |
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/* set cfg clk freq */ |
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ufs_sys_ctrl_writel(host, reg, PHY_CLK_CTRL); |
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/* set ref clk freq */ |
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ufs_sys_ctrl_clr_bits(host, MASK_SYSCTRL_REF_CLOCK_SEL, PHY_CLK_CTRL); |
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/* bypass ufs clk gate */ |
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ufs_sys_ctrl_set_bits(host, MASK_UFS_CLK_GATE_BYPASS, |
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CLOCK_GATE_BYPASS); |
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ufs_sys_ctrl_set_bits(host, MASK_UFS_SYSCRTL_BYPASS, UFS_SYSCTRL); |
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|
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/* open psw clk */ |
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ufs_sys_ctrl_set_bits(host, BIT_SYSCTRL_PSW_CLK_EN, PSW_CLK_CTRL); |
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/* disable ufshc iso */ |
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ufs_sys_ctrl_clr_bits(host, BIT_UFS_PSW_ISO_CTRL, PSW_POWER_CTRL); |
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/* disable phy iso */ |
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ufs_sys_ctrl_clr_bits(host, BIT_UFS_PHY_ISO_CTRL, PHY_ISO_EN); |
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/* notice iso disable */ |
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ufs_sys_ctrl_clr_bits(host, BIT_SYSCTRL_LP_ISOL_EN, HC_LP_CTRL); |
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/* disable lp_reset_n */ |
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ufs_sys_ctrl_set_bits(host, BIT_SYSCTRL_LP_RESET_N, RESET_CTRL_EN); |
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mdelay(1); |
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ufs_sys_ctrl_writel(host, MASK_UFS_DEVICE_RESET | BIT_UFS_DEVICE_RESET, |
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UFS_DEVICE_RESET_CTRL); |
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msleep(20); |
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/* |
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* enable the fix of linereset recovery, |
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* and enable rx_reset/tx_rest beat |
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* enable ref_clk_en override(bit5) & |
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* override value = 1(bit4), with mask |
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*/ |
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ufs_sys_ctrl_writel(host, 0x03300330, UFS_DEVICE_RESET_CTRL); |
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if (!IS_ERR(host->rst)) |
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reset_control_deassert(host->rst); |
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} |
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static int ufs_hisi_link_startup_pre_change(struct ufs_hba *hba) |
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{ |
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struct ufs_hisi_host *host = ufshcd_get_variant(hba); |
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int err; |
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uint32_t value; |
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uint32_t reg; |
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/* Unipro VS_mphy_disable */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0xD0C1, 0x0), 0x1); |
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/* PA_HSSeries */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x156A, 0x0), 0x2); |
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/* MPHY CBRATESEL */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x8114, 0x0), 0x1); |
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/* MPHY CBOVRCTRL2 */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x8121, 0x0), 0x2D); |
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/* MPHY CBOVRCTRL3 */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x8122, 0x0), 0x1); |
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if (host->caps & UFS_HISI_CAP_PHY10nm) { |
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/* MPHY CBOVRCTRL4 */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x8127, 0x0), 0x98); |
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/* MPHY CBOVRCTRL5 */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x8128, 0x0), 0x1); |
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} |
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/* Unipro VS_MphyCfgUpdt */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0xD085, 0x0), 0x1); |
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/* MPHY RXOVRCTRL4 rx0 */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x800D, 0x4), 0x58); |
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/* MPHY RXOVRCTRL4 rx1 */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x800D, 0x5), 0x58); |
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/* MPHY RXOVRCTRL5 rx0 */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x800E, 0x4), 0xB); |
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/* MPHY RXOVRCTRL5 rx1 */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x800E, 0x5), 0xB); |
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/* MPHY RXSQCONTROL rx0 */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x8009, 0x4), 0x1); |
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/* MPHY RXSQCONTROL rx1 */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x8009, 0x5), 0x1); |
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/* Unipro VS_MphyCfgUpdt */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0xD085, 0x0), 0x1); |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x8113, 0x0), 0x1); |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0xD085, 0x0), 0x1); |
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if (host->caps & UFS_HISI_CAP_PHY10nm) { |
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/* RX_Hibern8Time_Capability*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x0092, 0x4), 0xA); |
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/* RX_Hibern8Time_Capability*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x0092, 0x5), 0xA); |
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/* RX_Min_ActivateTime */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x008f, 0x4), 0xA); |
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/* RX_Min_ActivateTime*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x008f, 0x5), 0xA); |
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} else { |
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/* Tactive RX */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x008F, 0x4), 0x7); |
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/* Tactive RX */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x008F, 0x5), 0x7); |
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} |
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/* Gear3 Synclength */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x0095, 0x4), 0x4F); |
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/* Gear3 Synclength */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x0095, 0x5), 0x4F); |
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/* Gear2 Synclength */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x0094, 0x4), 0x4F); |
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/* Gear2 Synclength */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x0094, 0x5), 0x4F); |
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/* Gear1 Synclength */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x008B, 0x4), 0x4F); |
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/* Gear1 Synclength */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x008B, 0x5), 0x4F); |
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/* Thibernate Tx */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x000F, 0x0), 0x5); |
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/* Thibernate Tx */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0x000F, 0x1), 0x5); |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0xD085, 0x0), 0x1); |
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/* Unipro VS_mphy_disable */ |
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ufshcd_dme_get(hba, UIC_ARG_MIB_SEL(0xD0C1, 0x0), &value); |
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if (value != 0x1) |
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dev_info(hba->dev, |
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"Warring!!! Unipro VS_mphy_disable is 0x%x\n", value); |
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/* Unipro VS_mphy_disable */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0xD0C1, 0x0), 0x0); |
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err = ufs_hisi_check_hibern8(hba); |
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if (err) |
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dev_err(hba->dev, "ufs_hisi_check_hibern8 error\n"); |
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if (!(host->caps & UFS_HISI_CAP_PHY10nm)) |
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ufshcd_writel(hba, UFS_HCLKDIV_NORMAL_VALUE, UFS_REG_HCLKDIV); |
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/* disable auto H8 */ |
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reg = ufshcd_readl(hba, REG_AUTO_HIBERNATE_IDLE_TIMER); |
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reg = reg & (~UFS_AHIT_AH8ITV_MASK); |
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ufshcd_writel(hba, reg, REG_AUTO_HIBERNATE_IDLE_TIMER); |
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/* Unipro PA_Local_TX_LCC_Enable */ |
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ufshcd_disable_host_tx_lcc(hba); |
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/* close Unipro VS_Mk2ExtnSupport */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0xD0AB, 0x0), 0x0); |
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ufshcd_dme_get(hba, UIC_ARG_MIB_SEL(0xD0AB, 0x0), &value); |
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if (value != 0) { |
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/* Ensure close success */ |
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dev_info(hba->dev, "WARN: close VS_Mk2ExtnSupport failed\n"); |
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} |
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return err; |
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} |
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static int ufs_hisi_link_startup_post_change(struct ufs_hba *hba) |
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{ |
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struct ufs_hisi_host *host = ufshcd_get_variant(hba); |
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/* Unipro DL_AFC0CreditThreshold */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x2044), 0x0); |
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/* Unipro DL_TC0OutAckThreshold */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x2045), 0x0); |
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/* Unipro DL_TC0TXFCThreshold */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x2040), 0x9); |
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/* not bypass ufs clk gate */ |
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ufs_sys_ctrl_clr_bits(host, MASK_UFS_CLK_GATE_BYPASS, |
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CLOCK_GATE_BYPASS); |
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ufs_sys_ctrl_clr_bits(host, MASK_UFS_SYSCRTL_BYPASS, |
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UFS_SYSCTRL); |
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/* select received symbol cnt */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0xd09a), 0x80000000); |
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/* reset counter0 and enable */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0xd09c), 0x00000005); |
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return 0; |
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} |
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static int ufs_hisi_link_startup_notify(struct ufs_hba *hba, |
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enum ufs_notify_change_status status) |
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{ |
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int err = 0; |
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switch (status) { |
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case PRE_CHANGE: |
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err = ufs_hisi_link_startup_pre_change(hba); |
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break; |
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case POST_CHANGE: |
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err = ufs_hisi_link_startup_post_change(hba); |
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break; |
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default: |
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break; |
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} |
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return err; |
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} |
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static void ufs_hisi_set_dev_cap(struct ufs_dev_params *hisi_param) |
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{ |
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ufshcd_init_pwr_dev_param(hisi_param); |
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} |
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static void ufs_hisi_pwr_change_pre_change(struct ufs_hba *hba) |
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{ |
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struct ufs_hisi_host *host = ufshcd_get_variant(hba); |
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if (host->caps & UFS_HISI_CAP_PHY10nm) { |
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/* |
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* Boston platform need to set SaveConfigTime to 0x13, |
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* and change sync length to maximum value |
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*/ |
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/* VS_DebugSaveConfigTime */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB((u32)0xD0A0), 0x13); |
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/* g1 sync length */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB((u32)0x1552), 0x4f); |
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/* g2 sync length */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB((u32)0x1554), 0x4f); |
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/* g3 sync length */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB((u32)0x1556), 0x4f); |
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/* PA_Hibern8Time */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB((u32)0x15a7), 0xA); |
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/* PA_Tactivate */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB((u32)0x15a8), 0xA); |
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ufshcd_dme_set(hba, UIC_ARG_MIB_SEL(0xd085, 0x0), 0x01); |
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} |
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if (hba->dev_quirks & UFS_DEVICE_QUIRK_HOST_VS_DEBUGSAVECONFIGTIME) { |
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pr_info("ufs flash device must set VS_DebugSaveConfigTime 0x10\n"); |
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/* VS_DebugSaveConfigTime */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0xD0A0), 0x10); |
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/* sync length */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x1556), 0x48); |
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} |
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|
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/* update */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x15A8), 0x1); |
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/* PA_TxSkip */ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x155c), 0x0); |
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/*PA_PWRModeUserData0 = 8191, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x15b0), 8191); |
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/*PA_PWRModeUserData1 = 65535, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x15b1), 65535); |
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/*PA_PWRModeUserData2 = 32767, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x15b2), 32767); |
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/*DME_FC0ProtectionTimeOutVal = 8191, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0xd041), 8191); |
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/*DME_TC0ReplayTimeOutVal = 65535, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0xd042), 65535); |
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/*DME_AFC0ReqTimeOutVal = 32767, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0xd043), 32767); |
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/*PA_PWRModeUserData3 = 8191, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x15b3), 8191); |
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/*PA_PWRModeUserData4 = 65535, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x15b4), 65535); |
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/*PA_PWRModeUserData5 = 32767, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0x15b5), 32767); |
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/*DME_FC1ProtectionTimeOutVal = 8191, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0xd044), 8191); |
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/*DME_TC1ReplayTimeOutVal = 65535, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0xd045), 65535); |
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/*DME_AFC1ReqTimeOutVal = 32767, default is 0*/ |
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ufshcd_dme_set(hba, UIC_ARG_MIB(0xd046), 32767); |
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} |
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|
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static int ufs_hisi_pwr_change_notify(struct ufs_hba *hba, |
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enum ufs_notify_change_status status, |
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struct ufs_pa_layer_attr *dev_max_params, |
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struct ufs_pa_layer_attr *dev_req_params) |
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{ |
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struct ufs_dev_params ufs_hisi_cap; |
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int ret = 0; |
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|
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if (!dev_req_params) { |
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dev_err(hba->dev, |
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"%s: incoming dev_req_params is NULL\n", __func__); |
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ret = -EINVAL; |
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goto out; |
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} |
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switch (status) { |
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case PRE_CHANGE: |
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ufs_hisi_set_dev_cap(&ufs_hisi_cap); |
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ret = ufshcd_get_pwr_dev_param(&ufs_hisi_cap, |
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dev_max_params, dev_req_params); |
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if (ret) { |
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dev_err(hba->dev, |
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"%s: failed to determine capabilities\n", __func__); |
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goto out; |
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} |
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ufs_hisi_pwr_change_pre_change(hba); |
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break; |
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case POST_CHANGE: |
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break; |
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default: |
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ret = -EINVAL; |
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break; |
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} |
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out: |
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return ret; |
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} |
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|
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static int ufs_hisi_suspend(struct ufs_hba *hba, enum ufs_pm_op pm_op) |
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{ |
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struct ufs_hisi_host *host = ufshcd_get_variant(hba); |
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|
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if (ufshcd_is_runtime_pm(pm_op)) |
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return 0; |
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|
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if (host->in_suspend) { |
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WARN_ON(1); |
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return 0; |
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} |
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|
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ufs_sys_ctrl_clr_bits(host, BIT_SYSCTRL_REF_CLOCK_EN, PHY_CLK_CTRL); |
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udelay(10); |
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/* set ref_dig_clk override of PHY PCS to 0 */ |
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ufs_sys_ctrl_writel(host, 0x00100000, UFS_DEVICE_RESET_CTRL); |
|
|
|
host->in_suspend = true; |
|
|
|
return 0; |
|
} |
|
|
|
static int ufs_hisi_resume(struct ufs_hba *hba, enum ufs_pm_op pm_op) |
|
{ |
|
struct ufs_hisi_host *host = ufshcd_get_variant(hba); |
|
|
|
if (!host->in_suspend) |
|
return 0; |
|
|
|
/* set ref_dig_clk override of PHY PCS to 1 */ |
|
ufs_sys_ctrl_writel(host, 0x00100010, UFS_DEVICE_RESET_CTRL); |
|
udelay(10); |
|
ufs_sys_ctrl_set_bits(host, BIT_SYSCTRL_REF_CLOCK_EN, PHY_CLK_CTRL); |
|
|
|
host->in_suspend = false; |
|
return 0; |
|
} |
|
|
|
static int ufs_hisi_get_resource(struct ufs_hisi_host *host) |
|
{ |
|
struct device *dev = host->hba->dev; |
|
struct platform_device *pdev = to_platform_device(dev); |
|
|
|
/* get resource of ufs sys ctrl */ |
|
host->ufs_sys_ctrl = devm_platform_ioremap_resource(pdev, 1); |
|
return PTR_ERR_OR_ZERO(host->ufs_sys_ctrl); |
|
} |
|
|
|
static void ufs_hisi_set_pm_lvl(struct ufs_hba *hba) |
|
{ |
|
hba->rpm_lvl = UFS_PM_LVL_1; |
|
hba->spm_lvl = UFS_PM_LVL_3; |
|
} |
|
|
|
/** |
|
* ufs_hisi_init_common |
|
* @hba: host controller instance |
|
*/ |
|
static int ufs_hisi_init_common(struct ufs_hba *hba) |
|
{ |
|
int err = 0; |
|
struct device *dev = hba->dev; |
|
struct ufs_hisi_host *host; |
|
|
|
host = devm_kzalloc(dev, sizeof(*host), GFP_KERNEL); |
|
if (!host) |
|
return -ENOMEM; |
|
|
|
host->hba = hba; |
|
ufshcd_set_variant(hba, host); |
|
|
|
host->rst = devm_reset_control_get(dev, "rst"); |
|
if (IS_ERR(host->rst)) { |
|
dev_err(dev, "%s: failed to get reset control\n", __func__); |
|
return PTR_ERR(host->rst); |
|
} |
|
|
|
ufs_hisi_set_pm_lvl(hba); |
|
|
|
err = ufs_hisi_get_resource(host); |
|
if (err) { |
|
ufshcd_set_variant(hba, NULL); |
|
return err; |
|
} |
|
|
|
return 0; |
|
} |
|
|
|
static int ufs_hi3660_init(struct ufs_hba *hba) |
|
{ |
|
int ret = 0; |
|
struct device *dev = hba->dev; |
|
|
|
ret = ufs_hisi_init_common(hba); |
|
if (ret) { |
|
dev_err(dev, "%s: ufs common init fail\n", __func__); |
|
return ret; |
|
} |
|
|
|
ufs_hisi_clk_init(hba); |
|
|
|
ufs_hisi_soc_init(hba); |
|
|
|
return 0; |
|
} |
|
|
|
static int ufs_hi3670_init(struct ufs_hba *hba) |
|
{ |
|
int ret = 0; |
|
struct device *dev = hba->dev; |
|
struct ufs_hisi_host *host; |
|
|
|
ret = ufs_hisi_init_common(hba); |
|
if (ret) { |
|
dev_err(dev, "%s: ufs common init fail\n", __func__); |
|
return ret; |
|
} |
|
|
|
ufs_hisi_clk_init(hba); |
|
|
|
ufs_hisi_soc_init(hba); |
|
|
|
/* Add cap for 10nm PHY variant on HI3670 SoC */ |
|
host = ufshcd_get_variant(hba); |
|
host->caps |= UFS_HISI_CAP_PHY10nm; |
|
|
|
return 0; |
|
} |
|
|
|
static const struct ufs_hba_variant_ops ufs_hba_hi3660_vops = { |
|
.name = "hi3660", |
|
.init = ufs_hi3660_init, |
|
.link_startup_notify = ufs_hisi_link_startup_notify, |
|
.pwr_change_notify = ufs_hisi_pwr_change_notify, |
|
.suspend = ufs_hisi_suspend, |
|
.resume = ufs_hisi_resume, |
|
}; |
|
|
|
static const struct ufs_hba_variant_ops ufs_hba_hi3670_vops = { |
|
.name = "hi3670", |
|
.init = ufs_hi3670_init, |
|
.link_startup_notify = ufs_hisi_link_startup_notify, |
|
.pwr_change_notify = ufs_hisi_pwr_change_notify, |
|
.suspend = ufs_hisi_suspend, |
|
.resume = ufs_hisi_resume, |
|
}; |
|
|
|
static const struct of_device_id ufs_hisi_of_match[] = { |
|
{ .compatible = "hisilicon,hi3660-ufs", .data = &ufs_hba_hi3660_vops }, |
|
{ .compatible = "hisilicon,hi3670-ufs", .data = &ufs_hba_hi3670_vops }, |
|
{}, |
|
}; |
|
|
|
MODULE_DEVICE_TABLE(of, ufs_hisi_of_match); |
|
|
|
static int ufs_hisi_probe(struct platform_device *pdev) |
|
{ |
|
const struct of_device_id *of_id; |
|
|
|
of_id = of_match_node(ufs_hisi_of_match, pdev->dev.of_node); |
|
|
|
return ufshcd_pltfrm_init(pdev, of_id->data); |
|
} |
|
|
|
static int ufs_hisi_remove(struct platform_device *pdev) |
|
{ |
|
struct ufs_hba *hba = platform_get_drvdata(pdev); |
|
|
|
ufshcd_remove(hba); |
|
return 0; |
|
} |
|
|
|
static const struct dev_pm_ops ufs_hisi_pm_ops = { |
|
.suspend = ufshcd_pltfrm_suspend, |
|
.resume = ufshcd_pltfrm_resume, |
|
.runtime_suspend = ufshcd_pltfrm_runtime_suspend, |
|
.runtime_resume = ufshcd_pltfrm_runtime_resume, |
|
.runtime_idle = ufshcd_pltfrm_runtime_idle, |
|
}; |
|
|
|
static struct platform_driver ufs_hisi_pltform = { |
|
.probe = ufs_hisi_probe, |
|
.remove = ufs_hisi_remove, |
|
.shutdown = ufshcd_pltfrm_shutdown, |
|
.driver = { |
|
.name = "ufshcd-hisi", |
|
.pm = &ufs_hisi_pm_ops, |
|
.of_match_table = of_match_ptr(ufs_hisi_of_match), |
|
}, |
|
}; |
|
module_platform_driver(ufs_hisi_pltform); |
|
|
|
MODULE_LICENSE("GPL"); |
|
MODULE_ALIAS("platform:ufshcd-hisi"); |
|
MODULE_DESCRIPTION("HiSilicon Hixxxx UFS Driver");
|
|
|