From ace9429bb58fd418f0c81d4c2835699bddf6bde6 Mon Sep 17 00:00:00 2001 From: Daniel Baumann Date: Thu, 11 Apr 2024 10:27:49 +0200 Subject: Adding upstream version 6.6.15. Signed-off-by: Daniel Baumann --- drivers/phy/st/Kconfig | 49 ++ drivers/phy/st/Makefile | 6 + drivers/phy/st/phy-miphy28lp.c | 1260 ++++++++++++++++++++++++++++++++++ drivers/phy/st/phy-spear1310-miphy.c | 258 +++++++ drivers/phy/st/phy-spear1340-miphy.c | 291 ++++++++ drivers/phy/st/phy-stih407-usb.c | 176 +++++ drivers/phy/st/phy-stm32-usbphyc.c | 826 ++++++++++++++++++++++ 7 files changed, 2866 insertions(+) create mode 100644 drivers/phy/st/Kconfig create mode 100644 drivers/phy/st/Makefile create mode 100644 drivers/phy/st/phy-miphy28lp.c create mode 100644 drivers/phy/st/phy-spear1310-miphy.c create mode 100644 drivers/phy/st/phy-spear1340-miphy.c create mode 100644 drivers/phy/st/phy-stih407-usb.c create mode 100644 drivers/phy/st/phy-stm32-usbphyc.c (limited to 'drivers/phy/st') diff --git a/drivers/phy/st/Kconfig b/drivers/phy/st/Kconfig new file mode 100644 index 0000000000..3fc3d0781f --- /dev/null +++ b/drivers/phy/st/Kconfig @@ -0,0 +1,49 @@ +# SPDX-License-Identifier: GPL-2.0-only +# +# Phy drivers for STMicro platforms +# +config PHY_MIPHY28LP + tristate "STMicroelectronics MIPHY28LP PHY driver for STiH407" + depends on ARCH_STI + select GENERIC_PHY + help + Enable this to support the miphy transceiver (for SATA/PCIE/USB3) + that is part of STMicroelectronics STiH407 SoC. + +config PHY_ST_SPEAR1310_MIPHY + tristate "ST SPEAR1310-MIPHY driver" + select GENERIC_PHY + depends on MACH_SPEAR1310 || COMPILE_TEST + help + Support for ST SPEAr1310 MIPHY which can be used for PCIe and SATA. + +config PHY_ST_SPEAR1340_MIPHY + tristate "ST SPEAR1340-MIPHY driver" + select GENERIC_PHY + depends on MACH_SPEAR1340 || COMPILE_TEST + help + Support for ST SPEAr1340 MIPHY which can be used for PCIe and SATA. + +config PHY_STIH407_USB + tristate "STMicroelectronics USB2 picoPHY driver for STiH407 family" + depends on RESET_CONTROLLER + depends on ARCH_STI || COMPILE_TEST + select GENERIC_PHY + help + Enable this support to enable the picoPHY device used by USB2 + and USB3 controllers on STMicroelectronics STiH407 SoC families. + +config PHY_STM32_USBPHYC + tristate "STMicroelectronics STM32 USB HS PHY Controller driver" + depends on ARCH_STM32 || COMPILE_TEST + depends on COMMON_CLK + select GENERIC_PHY + help + Enable this to support the High-Speed USB transceivers that are part + of some STMicroelectronics STM32 SoCs. + + This driver controls the entire USB PHY block: the USB PHY controller + (USBPHYC) and the two 8-bit wide UTMI+ interfaces. First interface is + used by an HS USB Host controller, and the second one is shared + between an HS USB OTG controller and an HS USB Host controller, + selected by a USB switch. diff --git a/drivers/phy/st/Makefile b/drivers/phy/st/Makefile new file mode 100644 index 0000000000..c862dd937b --- /dev/null +++ b/drivers/phy/st/Makefile @@ -0,0 +1,6 @@ +# SPDX-License-Identifier: GPL-2.0-only +obj-$(CONFIG_PHY_MIPHY28LP) += phy-miphy28lp.o +obj-$(CONFIG_PHY_ST_SPEAR1310_MIPHY) += phy-spear1310-miphy.o +obj-$(CONFIG_PHY_ST_SPEAR1340_MIPHY) += phy-spear1340-miphy.o +obj-$(CONFIG_PHY_STIH407_USB) += phy-stih407-usb.o +obj-$(CONFIG_PHY_STM32_USBPHYC) += phy-stm32-usbphyc.o diff --git a/drivers/phy/st/phy-miphy28lp.c b/drivers/phy/st/phy-miphy28lp.c new file mode 100644 index 0000000000..e30305b77f --- /dev/null +++ b/drivers/phy/st/phy-miphy28lp.c @@ -0,0 +1,1260 @@ +// SPDX-License-Identifier: GPL-2.0-only +/* + * Copyright (C) 2014 STMicroelectronics + * + * STMicroelectronics PHY driver MiPHY28lp (for SoC STiH407). + * + * Author: Alexandre Torgue + */ + +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include + +#include + +/* MiPHY registers */ +#define MIPHY_CONF_RESET 0x00 +#define RST_APPLI_SW BIT(0) +#define RST_CONF_SW BIT(1) +#define RST_MACRO_SW BIT(2) + +#define MIPHY_RESET 0x01 +#define RST_PLL_SW BIT(0) +#define RST_COMP_SW BIT(2) + +#define MIPHY_STATUS_1 0x02 +#define PHY_RDY BIT(0) +#define HFC_RDY BIT(1) +#define HFC_PLL BIT(2) + +#define MIPHY_CONTROL 0x04 +#define TERM_EN_SW BIT(2) +#define DIS_LINK_RST BIT(3) +#define AUTO_RST_RX BIT(4) +#define PX_RX_POL BIT(5) + +#define MIPHY_BOUNDARY_SEL 0x0a +#define TX_SEL BIT(6) +#define SSC_SEL BIT(4) +#define GENSEL_SEL BIT(0) + +#define MIPHY_BOUNDARY_1 0x0b +#define MIPHY_BOUNDARY_2 0x0c +#define SSC_EN_SW BIT(2) + +#define MIPHY_PLL_CLKREF_FREQ 0x0d +#define MIPHY_SPEED 0x0e +#define TX_SPDSEL_80DEC 0 +#define TX_SPDSEL_40DEC 1 +#define TX_SPDSEL_20DEC 2 +#define RX_SPDSEL_80DEC 0 +#define RX_SPDSEL_40DEC (1 << 2) +#define RX_SPDSEL_20DEC (2 << 2) + +#define MIPHY_CONF 0x0f +#define MIPHY_CTRL_TEST_SEL 0x20 +#define MIPHY_CTRL_TEST_1 0x21 +#define MIPHY_CTRL_TEST_2 0x22 +#define MIPHY_CTRL_TEST_3 0x23 +#define MIPHY_CTRL_TEST_4 0x24 +#define MIPHY_FEEDBACK_TEST 0x25 +#define MIPHY_DEBUG_BUS 0x26 +#define MIPHY_DEBUG_STATUS_MSB 0x27 +#define MIPHY_DEBUG_STATUS_LSB 0x28 +#define MIPHY_PWR_RAIL_1 0x29 +#define MIPHY_PWR_RAIL_2 0x2a +#define MIPHY_SYNCHAR_CONTROL 0x30 + +#define MIPHY_COMP_FSM_1 0x3a +#define COMP_START BIT(6) + +#define MIPHY_COMP_FSM_6 0x3f +#define COMP_DONE BIT(7) + +#define MIPHY_COMP_POSTP 0x42 +#define MIPHY_TX_CTRL_1 0x49 +#define TX_REG_STEP_0V 0 +#define TX_REG_STEP_P_25MV 1 +#define TX_REG_STEP_P_50MV 2 +#define TX_REG_STEP_N_25MV 7 +#define TX_REG_STEP_N_50MV 6 +#define TX_REG_STEP_N_75MV 5 + +#define MIPHY_TX_CTRL_2 0x4a +#define TX_SLEW_SW_40_PS 0 +#define TX_SLEW_SW_80_PS 1 +#define TX_SLEW_SW_120_PS 2 + +#define MIPHY_TX_CTRL_3 0x4b +#define MIPHY_TX_CAL_MAN 0x4e +#define TX_SLEW_CAL_MAN_EN BIT(0) + +#define MIPHY_TST_BIAS_BOOST_2 0x62 +#define MIPHY_BIAS_BOOST_1 0x63 +#define MIPHY_BIAS_BOOST_2 0x64 +#define MIPHY_RX_DESBUFF_FDB_2 0x67 +#define MIPHY_RX_DESBUFF_FDB_3 0x68 +#define MIPHY_SIGDET_COMPENS1 0x69 +#define MIPHY_SIGDET_COMPENS2 0x6a +#define MIPHY_JITTER_PERIOD 0x6b +#define MIPHY_JITTER_AMPLITUDE_1 0x6c +#define MIPHY_JITTER_AMPLITUDE_2 0x6d +#define MIPHY_JITTER_AMPLITUDE_3 0x6e +#define MIPHY_RX_K_GAIN 0x78 +#define MIPHY_RX_BUFFER_CTRL 0x7a +#define VGA_GAIN BIT(0) +#define EQ_DC_GAIN BIT(2) +#define EQ_BOOST_GAIN BIT(3) + +#define MIPHY_RX_VGA_GAIN 0x7b +#define MIPHY_RX_EQU_GAIN_1 0x7f +#define MIPHY_RX_EQU_GAIN_2 0x80 +#define MIPHY_RX_EQU_GAIN_3 0x81 +#define MIPHY_RX_CAL_CTRL_1 0x97 +#define MIPHY_RX_CAL_CTRL_2 0x98 + +#define MIPHY_RX_CAL_OFFSET_CTRL 0x99 +#define CAL_OFFSET_VGA_64 (0x03 << 0) +#define CAL_OFFSET_THRESHOLD_64 (0x03 << 2) +#define VGA_OFFSET_POLARITY BIT(4) +#define OFFSET_COMPENSATION_EN BIT(6) + +#define MIPHY_RX_CAL_VGA_STEP 0x9a +#define MIPHY_RX_CAL_EYE_MIN 0x9d +#define MIPHY_RX_CAL_OPT_LENGTH 0x9f +#define MIPHY_RX_LOCK_CTRL_1 0xc1 +#define MIPHY_RX_LOCK_SETTINGS_OPT 0xc2 +#define MIPHY_RX_LOCK_STEP 0xc4 + +#define MIPHY_RX_SIGDET_SLEEP_OA 0xc9 +#define MIPHY_RX_SIGDET_SLEEP_SEL 0xca +#define MIPHY_RX_SIGDET_WAIT_SEL 0xcb +#define MIPHY_RX_SIGDET_DATA_SEL 0xcc +#define EN_ULTRA_LOW_POWER BIT(0) +#define EN_FIRST_HALF BIT(1) +#define EN_SECOND_HALF BIT(2) +#define EN_DIGIT_SIGNAL_CHECK BIT(3) + +#define MIPHY_RX_POWER_CTRL_1 0xcd +#define MIPHY_RX_POWER_CTRL_2 0xce +#define MIPHY_PLL_CALSET_CTRL 0xd3 +#define MIPHY_PLL_CALSET_1 0xd4 +#define MIPHY_PLL_CALSET_2 0xd5 +#define MIPHY_PLL_CALSET_3 0xd6 +#define MIPHY_PLL_CALSET_4 0xd7 +#define MIPHY_PLL_SBR_1 0xe3 +#define SET_NEW_CHANGE BIT(1) + +#define MIPHY_PLL_SBR_2 0xe4 +#define MIPHY_PLL_SBR_3 0xe5 +#define MIPHY_PLL_SBR_4 0xe6 +#define MIPHY_PLL_COMMON_MISC_2 0xe9 +#define START_ACT_FILT BIT(6) + +#define MIPHY_PLL_SPAREIN 0xeb + +/* + * On STiH407 the glue logic can be different among MiPHY devices; for example: + * MiPHY0: OSC_FORCE_EXT means: + * 0: 30MHz crystal clk - 1: 100MHz ext clk routed through MiPHY1 + * MiPHY1: OSC_FORCE_EXT means: + * 1: 30MHz crystal clk - 0: 100MHz ext clk routed through MiPHY1 + * Some devices have not the possibility to check if the osc is ready. + */ +#define MIPHY_OSC_FORCE_EXT BIT(3) +#define MIPHY_OSC_RDY BIT(5) + +#define MIPHY_CTRL_MASK 0x0f +#define MIPHY_CTRL_DEFAULT 0 +#define MIPHY_CTRL_SYNC_D_EN BIT(2) + +/* SATA / PCIe defines */ +#define SATA_CTRL_MASK 0x07 +#define PCIE_CTRL_MASK 0xff +#define SATA_CTRL_SELECT_SATA 1 +#define SATA_CTRL_SELECT_PCIE 0 +#define SYSCFG_PCIE_PCIE_VAL 0x80 +#define SATA_SPDMODE 1 + +#define MIPHY_SATA_BANK_NB 3 +#define MIPHY_PCIE_BANK_NB 2 + +enum { + SYSCFG_CTRL, + SYSCFG_STATUS, + SYSCFG_PCI, + SYSCFG_SATA, + SYSCFG_REG_MAX, +}; + +struct miphy28lp_phy { + struct phy *phy; + struct miphy28lp_dev *phydev; + void __iomem *base; + void __iomem *pipebase; + + bool osc_force_ext; + bool osc_rdy; + bool px_rx_pol_inv; + bool ssc; + bool tx_impedance; + + struct reset_control *miphy_rst; + + u32 sata_gen; + + /* Sysconfig registers offsets needed to configure the device */ + u32 syscfg_reg[SYSCFG_REG_MAX]; + u8 type; +}; + +struct miphy28lp_dev { + struct device *dev; + struct regmap *regmap; + struct mutex miphy_mutex; + struct miphy28lp_phy **phys; + int nphys; +}; + +struct miphy_initval { + u16 reg; + u16 val; +}; + +enum miphy_sata_gen { SATA_GEN1, SATA_GEN2, SATA_GEN3 }; + +static char *PHY_TYPE_name[] = { "sata-up", "pcie-up", "", "usb3-up" }; + +struct pll_ratio { + int clk_ref; + int calset_1; + int calset_2; + int calset_3; + int calset_4; + int cal_ctrl; +}; + +static struct pll_ratio sata_pll_ratio = { + .clk_ref = 0x1e, + .calset_1 = 0xc8, + .calset_2 = 0x00, + .calset_3 = 0x00, + .calset_4 = 0x00, + .cal_ctrl = 0x00, +}; + +static struct pll_ratio pcie_pll_ratio = { + .clk_ref = 0x1e, + .calset_1 = 0xa6, + .calset_2 = 0xaa, + .calset_3 = 0xaa, + .calset_4 = 0x00, + .cal_ctrl = 0x00, +}; + +static struct pll_ratio usb3_pll_ratio = { + .clk_ref = 0x1e, + .calset_1 = 0xa6, + .calset_2 = 0xaa, + .calset_3 = 0xaa, + .calset_4 = 0x04, + .cal_ctrl = 0x00, +}; + +struct miphy28lp_pll_gen { + int bank; + int speed; + int bias_boost_1; + int bias_boost_2; + int tx_ctrl_1; + int tx_ctrl_2; + int tx_ctrl_3; + int rx_k_gain; + int rx_vga_gain; + int rx_equ_gain_1; + int rx_equ_gain_2; + int rx_equ_gain_3; + int rx_buff_ctrl; +}; + +static struct miphy28lp_pll_gen sata_pll_gen[] = { + { + .bank = 0x00, + .speed = TX_SPDSEL_80DEC | RX_SPDSEL_80DEC, + .bias_boost_1 = 0x00, + .bias_boost_2 = 0xae, + .tx_ctrl_2 = 0x53, + .tx_ctrl_3 = 0x00, + .rx_buff_ctrl = EQ_BOOST_GAIN | EQ_DC_GAIN | VGA_GAIN, + .rx_vga_gain = 0x00, + .rx_equ_gain_1 = 0x7d, + .rx_equ_gain_2 = 0x56, + .rx_equ_gain_3 = 0x00, + }, + { + .bank = 0x01, + .speed = TX_SPDSEL_40DEC | RX_SPDSEL_40DEC, + .bias_boost_1 = 0x00, + .bias_boost_2 = 0xae, + .tx_ctrl_2 = 0x72, + .tx_ctrl_3 = 0x20, + .rx_buff_ctrl = EQ_BOOST_GAIN | EQ_DC_GAIN | VGA_GAIN, + .rx_vga_gain = 0x00, + .rx_equ_gain_1 = 0x7d, + .rx_equ_gain_2 = 0x56, + .rx_equ_gain_3 = 0x00, + }, + { + .bank = 0x02, + .speed = TX_SPDSEL_20DEC | RX_SPDSEL_20DEC, + .bias_boost_1 = 0x00, + .bias_boost_2 = 0xae, + .tx_ctrl_2 = 0xc0, + .tx_ctrl_3 = 0x20, + .rx_buff_ctrl = EQ_BOOST_GAIN | EQ_DC_GAIN | VGA_GAIN, + .rx_vga_gain = 0x00, + .rx_equ_gain_1 = 0x7d, + .rx_equ_gain_2 = 0x56, + .rx_equ_gain_3 = 0x00, + }, +}; + +static struct miphy28lp_pll_gen pcie_pll_gen[] = { + { + .bank = 0x00, + .speed = TX_SPDSEL_40DEC | RX_SPDSEL_40DEC, + .bias_boost_1 = 0x00, + .bias_boost_2 = 0xa5, + .tx_ctrl_1 = TX_REG_STEP_N_25MV, + .tx_ctrl_2 = 0x71, + .tx_ctrl_3 = 0x60, + .rx_k_gain = 0x98, + .rx_buff_ctrl = EQ_BOOST_GAIN | EQ_DC_GAIN | VGA_GAIN, + .rx_vga_gain = 0x00, + .rx_equ_gain_1 = 0x79, + .rx_equ_gain_2 = 0x56, + }, + { + .bank = 0x01, + .speed = TX_SPDSEL_20DEC | RX_SPDSEL_20DEC, + .bias_boost_1 = 0x00, + .bias_boost_2 = 0xa5, + .tx_ctrl_1 = TX_REG_STEP_N_25MV, + .tx_ctrl_2 = 0x70, + .tx_ctrl_3 = 0x60, + .rx_k_gain = 0xcc, + .rx_buff_ctrl = EQ_BOOST_GAIN | EQ_DC_GAIN | VGA_GAIN, + .rx_vga_gain = 0x00, + .rx_equ_gain_1 = 0x78, + .rx_equ_gain_2 = 0x07, + }, +}; + +static inline void miphy28lp_set_reset(struct miphy28lp_phy *miphy_phy) +{ + void __iomem *base = miphy_phy->base; + u8 val; + + /* Putting Macro in reset */ + writeb_relaxed(RST_APPLI_SW, base + MIPHY_CONF_RESET); + + val = RST_APPLI_SW | RST_CONF_SW; + writeb_relaxed(val, base + MIPHY_CONF_RESET); + + writeb_relaxed(RST_APPLI_SW, base + MIPHY_CONF_RESET); + + /* Bringing the MIPHY-CPU registers out of reset */ + if (miphy_phy->type == PHY_TYPE_PCIE) { + val = AUTO_RST_RX | TERM_EN_SW; + writeb_relaxed(val, base + MIPHY_CONTROL); + } else { + val = AUTO_RST_RX | TERM_EN_SW | DIS_LINK_RST; + writeb_relaxed(val, base + MIPHY_CONTROL); + } +} + +static inline void miphy28lp_pll_calibration(struct miphy28lp_phy *miphy_phy, + struct pll_ratio *pll_ratio) +{ + void __iomem *base = miphy_phy->base; + u8 val; + + /* Applying PLL Settings */ + writeb_relaxed(0x1d, base + MIPHY_PLL_SPAREIN); + writeb_relaxed(pll_ratio->clk_ref, base + MIPHY_PLL_CLKREF_FREQ); + + /* PLL Ratio */ + writeb_relaxed(pll_ratio->calset_1, base + MIPHY_PLL_CALSET_1); + writeb_relaxed(pll_ratio->calset_2, base + MIPHY_PLL_CALSET_2); + writeb_relaxed(pll_ratio->calset_3, base + MIPHY_PLL_CALSET_3); + writeb_relaxed(pll_ratio->calset_4, base + MIPHY_PLL_CALSET_4); + writeb_relaxed(pll_ratio->cal_ctrl, base + MIPHY_PLL_CALSET_CTRL); + + writeb_relaxed(TX_SEL, base + MIPHY_BOUNDARY_SEL); + + val = (0x68 << 1) | TX_SLEW_CAL_MAN_EN; + writeb_relaxed(val, base + MIPHY_TX_CAL_MAN); + + val = VGA_OFFSET_POLARITY | CAL_OFFSET_THRESHOLD_64 | CAL_OFFSET_VGA_64; + + if (miphy_phy->type != PHY_TYPE_SATA) + val |= OFFSET_COMPENSATION_EN; + + writeb_relaxed(val, base + MIPHY_RX_CAL_OFFSET_CTRL); + + if (miphy_phy->type == PHY_TYPE_USB3) { + writeb_relaxed(0x00, base + MIPHY_CONF); + writeb_relaxed(0x70, base + MIPHY_RX_LOCK_STEP); + writeb_relaxed(EN_FIRST_HALF, base + MIPHY_RX_SIGDET_SLEEP_OA); + writeb_relaxed(EN_FIRST_HALF, base + MIPHY_RX_SIGDET_SLEEP_SEL); + writeb_relaxed(EN_FIRST_HALF, base + MIPHY_RX_SIGDET_WAIT_SEL); + + val = EN_DIGIT_SIGNAL_CHECK | EN_FIRST_HALF; + writeb_relaxed(val, base + MIPHY_RX_SIGDET_DATA_SEL); + } + +} + +static inline void miphy28lp_sata_config_gen(struct miphy28lp_phy *miphy_phy) +{ + void __iomem *base = miphy_phy->base; + int i; + + for (i = 0; i < ARRAY_SIZE(sata_pll_gen); i++) { + struct miphy28lp_pll_gen *gen = &sata_pll_gen[i]; + + /* Banked settings */ + writeb_relaxed(gen->bank, base + MIPHY_CONF); + writeb_relaxed(gen->speed, base + MIPHY_SPEED); + writeb_relaxed(gen->bias_boost_1, base + MIPHY_BIAS_BOOST_1); + writeb_relaxed(gen->bias_boost_2, base + MIPHY_BIAS_BOOST_2); + + /* TX buffer Settings */ + writeb_relaxed(gen->tx_ctrl_2, base + MIPHY_TX_CTRL_2); + writeb_relaxed(gen->tx_ctrl_3, base + MIPHY_TX_CTRL_3); + + /* RX Buffer Settings */ + writeb_relaxed(gen->rx_buff_ctrl, base + MIPHY_RX_BUFFER_CTRL); + writeb_relaxed(gen->rx_vga_gain, base + MIPHY_RX_VGA_GAIN); + writeb_relaxed(gen->rx_equ_gain_1, base + MIPHY_RX_EQU_GAIN_1); + writeb_relaxed(gen->rx_equ_gain_2, base + MIPHY_RX_EQU_GAIN_2); + writeb_relaxed(gen->rx_equ_gain_3, base + MIPHY_RX_EQU_GAIN_3); + } +} + +static inline void miphy28lp_pcie_config_gen(struct miphy28lp_phy *miphy_phy) +{ + void __iomem *base = miphy_phy->base; + int i; + + for (i = 0; i < ARRAY_SIZE(pcie_pll_gen); i++) { + struct miphy28lp_pll_gen *gen = &pcie_pll_gen[i]; + + /* Banked settings */ + writeb_relaxed(gen->bank, base + MIPHY_CONF); + writeb_relaxed(gen->speed, base + MIPHY_SPEED); + writeb_relaxed(gen->bias_boost_1, base + MIPHY_BIAS_BOOST_1); + writeb_relaxed(gen->bias_boost_2, base + MIPHY_BIAS_BOOST_2); + + /* TX buffer Settings */ + writeb_relaxed(gen->tx_ctrl_1, base + MIPHY_TX_CTRL_1); + writeb_relaxed(gen->tx_ctrl_2, base + MIPHY_TX_CTRL_2); + writeb_relaxed(gen->tx_ctrl_3, base + MIPHY_TX_CTRL_3); + + writeb_relaxed(gen->rx_k_gain, base + MIPHY_RX_K_GAIN); + + /* RX Buffer Settings */ + writeb_relaxed(gen->rx_buff_ctrl, base + MIPHY_RX_BUFFER_CTRL); + writeb_relaxed(gen->rx_vga_gain, base + MIPHY_RX_VGA_GAIN); + writeb_relaxed(gen->rx_equ_gain_1, base + MIPHY_RX_EQU_GAIN_1); + writeb_relaxed(gen->rx_equ_gain_2, base + MIPHY_RX_EQU_GAIN_2); + } +} + +static inline int miphy28lp_wait_compensation(struct miphy28lp_phy *miphy_phy) +{ + u8 val; + + /* Waiting for Compensation to complete */ + return readb_relaxed_poll_timeout(miphy_phy->base + MIPHY_COMP_FSM_6, + val, val & COMP_DONE, 1, 5 * USEC_PER_SEC); +} + + +static inline int miphy28lp_compensation(struct miphy28lp_phy *miphy_phy, + struct pll_ratio *pll_ratio) +{ + void __iomem *base = miphy_phy->base; + + /* Poll for HFC ready after reset release */ + /* Compensation measurement */ + writeb_relaxed(RST_PLL_SW | RST_COMP_SW, base + MIPHY_RESET); + + writeb_relaxed(0x00, base + MIPHY_PLL_COMMON_MISC_2); + writeb_relaxed(pll_ratio->clk_ref, base + MIPHY_PLL_CLKREF_FREQ); + writeb_relaxed(COMP_START, base + MIPHY_COMP_FSM_1); + + if (miphy_phy->type == PHY_TYPE_PCIE) + writeb_relaxed(RST_PLL_SW, base + MIPHY_RESET); + + writeb_relaxed(0x00, base + MIPHY_RESET); + writeb_relaxed(START_ACT_FILT, base + MIPHY_PLL_COMMON_MISC_2); + writeb_relaxed(SET_NEW_CHANGE, base + MIPHY_PLL_SBR_1); + + /* TX compensation offset to re-center TX impedance */ + writeb_relaxed(0x00, base + MIPHY_COMP_POSTP); + + if (miphy_phy->type == PHY_TYPE_PCIE) + return miphy28lp_wait_compensation(miphy_phy); + + return 0; +} + +static inline void miphy28_usb3_miphy_reset(struct miphy28lp_phy *miphy_phy) +{ + void __iomem *base = miphy_phy->base; + u8 val; + + /* MIPHY Reset */ + writeb_relaxed(RST_APPLI_SW, base + MIPHY_CONF_RESET); + writeb_relaxed(0x00, base + MIPHY_CONF_RESET); + writeb_relaxed(RST_COMP_SW, base + MIPHY_RESET); + + val = RST_COMP_SW | RST_PLL_SW; + writeb_relaxed(val, base + MIPHY_RESET); + + writeb_relaxed(0x00, base + MIPHY_PLL_COMMON_MISC_2); + writeb_relaxed(0x1e, base + MIPHY_PLL_CLKREF_FREQ); + writeb_relaxed(COMP_START, base + MIPHY_COMP_FSM_1); + writeb_relaxed(RST_PLL_SW, base + MIPHY_RESET); + writeb_relaxed(0x00, base + MIPHY_RESET); + writeb_relaxed(START_ACT_FILT, base + MIPHY_PLL_COMMON_MISC_2); + writeb_relaxed(0x00, base + MIPHY_CONF); + writeb_relaxed(0x00, base + MIPHY_BOUNDARY_1); + writeb_relaxed(0x00, base + MIPHY_TST_BIAS_BOOST_2); + writeb_relaxed(0x00, base + MIPHY_CONF); + writeb_relaxed(SET_NEW_CHANGE, base + MIPHY_PLL_SBR_1); + writeb_relaxed(0xa5, base + MIPHY_DEBUG_BUS); + writeb_relaxed(0x00, base + MIPHY_CONF); +} + +static void miphy_sata_tune_ssc(struct miphy28lp_phy *miphy_phy) +{ + void __iomem *base = miphy_phy->base; + u8 val; + + /* Compensate Tx impedance to avoid out of range values */ + /* + * Enable the SSC on PLL for all banks + * SSC Modulation @ 31 KHz and 4000 ppm modulation amp + */ + val = readb_relaxed(base + MIPHY_BOUNDARY_2); + val |= SSC_EN_SW; + writeb_relaxed(val, base + MIPHY_BOUNDARY_2); + + val = readb_relaxed(base + MIPHY_BOUNDARY_SEL); + val |= SSC_SEL; + writeb_relaxed(val, base + MIPHY_BOUNDARY_SEL); + + for (val = 0; val < MIPHY_SATA_BANK_NB; val++) { + writeb_relaxed(val, base + MIPHY_CONF); + + /* Add value to each reference clock cycle */ + /* and define the period length of the SSC */ + writeb_relaxed(0x3c, base + MIPHY_PLL_SBR_2); + writeb_relaxed(0x6c, base + MIPHY_PLL_SBR_3); + writeb_relaxed(0x81, base + MIPHY_PLL_SBR_4); + + /* Clear any previous request */ + writeb_relaxed(0x00, base + MIPHY_PLL_SBR_1); + + /* requests the PLL to take in account new parameters */ + writeb_relaxed(SET_NEW_CHANGE, base + MIPHY_PLL_SBR_1); + + /* To be sure there is no other pending requests */ + writeb_relaxed(0x00, base + MIPHY_PLL_SBR_1); + } +} + +static void miphy_pcie_tune_ssc(struct miphy28lp_phy *miphy_phy) +{ + void __iomem *base = miphy_phy->base; + u8 val; + + /* Compensate Tx impedance to avoid out of range values */ + /* + * Enable the SSC on PLL for all banks + * SSC Modulation @ 31 KHz and 4000 ppm modulation amp + */ + val = readb_relaxed(base + MIPHY_BOUNDARY_2); + val |= SSC_EN_SW; + writeb_relaxed(val, base + MIPHY_BOUNDARY_2); + + val = readb_relaxed(base + MIPHY_BOUNDARY_SEL); + val |= SSC_SEL; + writeb_relaxed(val, base + MIPHY_BOUNDARY_SEL); + + for (val = 0; val < MIPHY_PCIE_BANK_NB; val++) { + writeb_relaxed(val, base + MIPHY_CONF); + + /* Validate Step component */ + writeb_relaxed(0x69, base + MIPHY_PLL_SBR_3); + writeb_relaxed(0x21, base + MIPHY_PLL_SBR_4); + + /* Validate Period component */ + writeb_relaxed(0x3c, base + MIPHY_PLL_SBR_2); + writeb_relaxed(0x21, base + MIPHY_PLL_SBR_4); + + /* Clear any previous request */ + writeb_relaxed(0x00, base + MIPHY_PLL_SBR_1); + + /* requests the PLL to take in account new parameters */ + writeb_relaxed(SET_NEW_CHANGE, base + MIPHY_PLL_SBR_1); + + /* To be sure there is no other pending requests */ + writeb_relaxed(0x00, base + MIPHY_PLL_SBR_1); + } +} + +static inline void miphy_tune_tx_impedance(struct miphy28lp_phy *miphy_phy) +{ + /* Compensate Tx impedance to avoid out of range values */ + writeb_relaxed(0x02, miphy_phy->base + MIPHY_COMP_POSTP); +} + +static inline int miphy28lp_configure_sata(struct miphy28lp_phy *miphy_phy) +{ + void __iomem *base = miphy_phy->base; + int err; + u8 val; + + /* Putting Macro in reset */ + miphy28lp_set_reset(miphy_phy); + + /* PLL calibration */ + miphy28lp_pll_calibration(miphy_phy, &sata_pll_ratio); + + /* Banked settings Gen1/Gen2/Gen3 */ + miphy28lp_sata_config_gen(miphy_phy); + + /* Power control */ + /* Input bridge enable, manual input bridge control */ + writeb_relaxed(0x21, base + MIPHY_RX_POWER_CTRL_1); + + /* Macro out of reset */ + writeb_relaxed(0x00, base + MIPHY_CONF_RESET); + + /* Poll for HFC ready after reset release */ + /* Compensation measurement */ + err = miphy28lp_compensation(miphy_phy, &sata_pll_ratio); + if (err) + return err; + + if (miphy_phy->px_rx_pol_inv) { + /* Invert Rx polarity */ + val = readb_relaxed(miphy_phy->base + MIPHY_CONTROL); + val |= PX_RX_POL; + writeb_relaxed(val, miphy_phy->base + MIPHY_CONTROL); + } + + if (miphy_phy->ssc) + miphy_sata_tune_ssc(miphy_phy); + + if (miphy_phy->tx_impedance) + miphy_tune_tx_impedance(miphy_phy); + + return 0; +} + +static inline int miphy28lp_configure_pcie(struct miphy28lp_phy *miphy_phy) +{ + void __iomem *base = miphy_phy->base; + int err; + + /* Putting Macro in reset */ + miphy28lp_set_reset(miphy_phy); + + /* PLL calibration */ + miphy28lp_pll_calibration(miphy_phy, &pcie_pll_ratio); + + /* Banked settings Gen1/Gen2 */ + miphy28lp_pcie_config_gen(miphy_phy); + + /* Power control */ + /* Input bridge enable, manual input bridge control */ + writeb_relaxed(0x21, base + MIPHY_RX_POWER_CTRL_1); + + /* Macro out of reset */ + writeb_relaxed(0x00, base + MIPHY_CONF_RESET); + + /* Poll for HFC ready after reset release */ + /* Compensation measurement */ + err = miphy28lp_compensation(miphy_phy, &pcie_pll_ratio); + if (err) + return err; + + if (miphy_phy->ssc) + miphy_pcie_tune_ssc(miphy_phy); + + if (miphy_phy->tx_impedance) + miphy_tune_tx_impedance(miphy_phy); + + return 0; +} + + +static inline void miphy28lp_configure_usb3(struct miphy28lp_phy *miphy_phy) +{ + void __iomem *base = miphy_phy->base; + u8 val; + + /* Putting Macro in reset */ + miphy28lp_set_reset(miphy_phy); + + /* PLL calibration */ + miphy28lp_pll_calibration(miphy_phy, &usb3_pll_ratio); + + /* Writing The Speed Rate */ + writeb_relaxed(0x00, base + MIPHY_CONF); + + val = RX_SPDSEL_20DEC | TX_SPDSEL_20DEC; + writeb_relaxed(val, base + MIPHY_SPEED); + + /* RX Channel compensation and calibration */ + writeb_relaxed(0x1c, base + MIPHY_RX_LOCK_SETTINGS_OPT); + writeb_relaxed(0x51, base + MIPHY_RX_CAL_CTRL_1); + writeb_relaxed(0x70, base + MIPHY_RX_CAL_CTRL_2); + + val = OFFSET_COMPENSATION_EN | VGA_OFFSET_POLARITY | + CAL_OFFSET_THRESHOLD_64 | CAL_OFFSET_VGA_64; + writeb_relaxed(val, base + MIPHY_RX_CAL_OFFSET_CTRL); + writeb_relaxed(0x22, base + MIPHY_RX_CAL_VGA_STEP); + writeb_relaxed(0x0e, base + MIPHY_RX_CAL_OPT_LENGTH); + + val = EQ_DC_GAIN | VGA_GAIN; + writeb_relaxed(val, base + MIPHY_RX_BUFFER_CTRL); + writeb_relaxed(0x78, base + MIPHY_RX_EQU_GAIN_1); + writeb_relaxed(0x1b, base + MIPHY_SYNCHAR_CONTROL); + + /* TX compensation offset to re-center TX impedance */ + writeb_relaxed(0x02, base + MIPHY_COMP_POSTP); + + /* Enable GENSEL_SEL and SSC */ + /* TX_SEL=0 swing preemp forced by pipe registres */ + val = SSC_SEL | GENSEL_SEL; + writeb_relaxed(val, base + MIPHY_BOUNDARY_SEL); + + /* MIPHY Bias boost */ + writeb_relaxed(0x00, base + MIPHY_BIAS_BOOST_1); + writeb_relaxed(0xa7, base + MIPHY_BIAS_BOOST_2); + + /* SSC modulation */ + writeb_relaxed(SSC_EN_SW, base + MIPHY_BOUNDARY_2); + + /* MIPHY TX control */ + writeb_relaxed(0x00, base + MIPHY_CONF); + + /* Validate Step component */ + writeb_relaxed(0x5a, base + MIPHY_PLL_SBR_3); + writeb_relaxed(0xa0, base + MIPHY_PLL_SBR_4); + + /* Validate Period component */ + writeb_relaxed(0x3c, base + MIPHY_PLL_SBR_2); + writeb_relaxed(0xa1, base + MIPHY_PLL_SBR_4); + + /* Clear any previous request */ + writeb_relaxed(0x00, base + MIPHY_PLL_SBR_1); + + /* requests the PLL to take in account new parameters */ + writeb_relaxed(0x02, base + MIPHY_PLL_SBR_1); + + /* To be sure there is no other pending requests */ + writeb_relaxed(0x00, base + MIPHY_PLL_SBR_1); + + /* Rx PI controller settings */ + writeb_relaxed(0xca, base + MIPHY_RX_K_GAIN); + + /* MIPHY RX input bridge control */ + /* INPUT_BRIDGE_EN_SW=1, manual input bridge control[0]=1 */ + writeb_relaxed(0x21, base + MIPHY_RX_POWER_CTRL_1); + writeb_relaxed(0x29, base + MIPHY_RX_POWER_CTRL_1); + writeb_relaxed(0x1a, base + MIPHY_RX_POWER_CTRL_2); + + /* MIPHY Reset for usb3 */ + miphy28_usb3_miphy_reset(miphy_phy); +} + +static inline int miphy_is_ready(struct miphy28lp_phy *miphy_phy) +{ + u8 mask = HFC_PLL | HFC_RDY; + u8 val; + + /* + * For PCIe and USB3 check only that PLL and HFC are ready + * For SATA check also that phy is ready! + */ + if (miphy_phy->type == PHY_TYPE_SATA) + mask |= PHY_RDY; + + return readb_relaxed_poll_timeout(miphy_phy->base + MIPHY_STATUS_1, + val, (val & mask) == mask, 1, + 5 * USEC_PER_SEC); +} + +static int miphy_osc_is_ready(struct miphy28lp_phy *miphy_phy) +{ + struct miphy28lp_dev *miphy_dev = miphy_phy->phydev; + u32 val; + + if (!miphy_phy->osc_rdy) + return 0; + + if (!miphy_phy->syscfg_reg[SYSCFG_STATUS]) + return -EINVAL; + + return regmap_read_poll_timeout(miphy_dev->regmap, + miphy_phy->syscfg_reg[SYSCFG_STATUS], + val, val & MIPHY_OSC_RDY, 1, + 5 * USEC_PER_SEC); +} + +static int miphy28lp_get_resource_byname(struct device_node *child, + char *rname, struct resource *res) +{ + int index; + + index = of_property_match_string(child, "reg-names", rname); + if (index < 0) + return -ENODEV; + + return of_address_to_resource(child, index, res); +} + +static int miphy28lp_get_one_addr(struct device *dev, + struct device_node *child, char *rname, + void __iomem **base) +{ + struct resource res; + int ret; + + ret = miphy28lp_get_resource_byname(child, rname, &res); + if (!ret) { + *base = devm_ioremap(dev, res.start, resource_size(&res)); + if (!*base) { + dev_err(dev, "failed to ioremap %s address region\n" + , rname); + return -ENOENT; + } + } + + return 0; +} + +/* MiPHY reset and sysconf setup */ +static int miphy28lp_setup(struct miphy28lp_phy *miphy_phy, u32 miphy_val) +{ + int err; + struct miphy28lp_dev *miphy_dev = miphy_phy->phydev; + + if (!miphy_phy->syscfg_reg[SYSCFG_CTRL]) + return -EINVAL; + + err = reset_control_assert(miphy_phy->miphy_rst); + if (err) { + dev_err(miphy_dev->dev, "unable to bring out of miphy reset\n"); + return err; + } + + if (miphy_phy->osc_force_ext) + miphy_val |= MIPHY_OSC_FORCE_EXT; + + regmap_update_bits(miphy_dev->regmap, + miphy_phy->syscfg_reg[SYSCFG_CTRL], + MIPHY_CTRL_MASK, miphy_val); + + err = reset_control_deassert(miphy_phy->miphy_rst); + if (err) { + dev_err(miphy_dev->dev, "unable to bring out of miphy reset\n"); + return err; + } + + return miphy_osc_is_ready(miphy_phy); +} + +static int miphy28lp_init_sata(struct miphy28lp_phy *miphy_phy) +{ + struct miphy28lp_dev *miphy_dev = miphy_phy->phydev; + int err, sata_conf = SATA_CTRL_SELECT_SATA; + + if ((!miphy_phy->syscfg_reg[SYSCFG_SATA]) || + (!miphy_phy->syscfg_reg[SYSCFG_PCI]) || + (!miphy_phy->base)) + return -EINVAL; + + dev_info(miphy_dev->dev, "sata-up mode, addr 0x%p\n", miphy_phy->base); + + /* Configure the glue-logic */ + sata_conf |= ((miphy_phy->sata_gen - SATA_GEN1) << SATA_SPDMODE); + + regmap_update_bits(miphy_dev->regmap, + miphy_phy->syscfg_reg[SYSCFG_SATA], + SATA_CTRL_MASK, sata_conf); + + regmap_update_bits(miphy_dev->regmap, miphy_phy->syscfg_reg[SYSCFG_PCI], + PCIE_CTRL_MASK, SATA_CTRL_SELECT_PCIE); + + /* MiPHY path and clocking init */ + err = miphy28lp_setup(miphy_phy, MIPHY_CTRL_DEFAULT); + + if (err) { + dev_err(miphy_dev->dev, "SATA phy setup failed\n"); + return err; + } + + /* initialize miphy */ + miphy28lp_configure_sata(miphy_phy); + + return miphy_is_ready(miphy_phy); +} + +static int miphy28lp_init_pcie(struct miphy28lp_phy *miphy_phy) +{ + struct miphy28lp_dev *miphy_dev = miphy_phy->phydev; + int err; + + if ((!miphy_phy->syscfg_reg[SYSCFG_SATA]) || + (!miphy_phy->syscfg_reg[SYSCFG_PCI]) + || (!miphy_phy->base) || (!miphy_phy->pipebase)) + return -EINVAL; + + dev_info(miphy_dev->dev, "pcie-up mode, addr 0x%p\n", miphy_phy->base); + + /* Configure the glue-logic */ + regmap_update_bits(miphy_dev->regmap, + miphy_phy->syscfg_reg[SYSCFG_SATA], + SATA_CTRL_MASK, SATA_CTRL_SELECT_PCIE); + + regmap_update_bits(miphy_dev->regmap, miphy_phy->syscfg_reg[SYSCFG_PCI], + PCIE_CTRL_MASK, SYSCFG_PCIE_PCIE_VAL); + + /* MiPHY path and clocking init */ + err = miphy28lp_setup(miphy_phy, MIPHY_CTRL_DEFAULT); + + if (err) { + dev_err(miphy_dev->dev, "PCIe phy setup failed\n"); + return err; + } + + /* initialize miphy */ + err = miphy28lp_configure_pcie(miphy_phy); + if (err) + return err; + + /* PIPE Wrapper Configuration */ + writeb_relaxed(0x68, miphy_phy->pipebase + 0x104); /* Rise_0 */ + writeb_relaxed(0x61, miphy_phy->pipebase + 0x105); /* Rise_1 */ + writeb_relaxed(0x68, miphy_phy->pipebase + 0x108); /* Fall_0 */ + writeb_relaxed(0x61, miphy_phy->pipebase + 0x109); /* Fall-1 */ + writeb_relaxed(0x68, miphy_phy->pipebase + 0x10c); /* Threshold_0 */ + writeb_relaxed(0x60, miphy_phy->pipebase + 0x10d); /* Threshold_1 */ + + /* Wait for phy_ready */ + return miphy_is_ready(miphy_phy); +} + +static int miphy28lp_init_usb3(struct miphy28lp_phy *miphy_phy) +{ + struct miphy28lp_dev *miphy_dev = miphy_phy->phydev; + int err; + + if ((!miphy_phy->base) || (!miphy_phy->pipebase)) + return -EINVAL; + + dev_info(miphy_dev->dev, "usb3-up mode, addr 0x%p\n", miphy_phy->base); + + /* MiPHY path and clocking init */ + err = miphy28lp_setup(miphy_phy, MIPHY_CTRL_SYNC_D_EN); + if (err) { + dev_err(miphy_dev->dev, "USB3 phy setup failed\n"); + return err; + } + + /* initialize miphy */ + miphy28lp_configure_usb3(miphy_phy); + + /* PIPE Wrapper Configuration */ + writeb_relaxed(0x68, miphy_phy->pipebase + 0x23); + writeb_relaxed(0x61, miphy_phy->pipebase + 0x24); + writeb_relaxed(0x68, miphy_phy->pipebase + 0x26); + writeb_relaxed(0x61, miphy_phy->pipebase + 0x27); + writeb_relaxed(0x18, miphy_phy->pipebase + 0x29); + writeb_relaxed(0x61, miphy_phy->pipebase + 0x2a); + + /* pipe Wrapper usb3 TX swing de-emph margin PREEMPH[7:4], SWING[3:0] */ + writeb_relaxed(0X67, miphy_phy->pipebase + 0x68); + writeb_relaxed(0x0d, miphy_phy->pipebase + 0x69); + writeb_relaxed(0X67, miphy_phy->pipebase + 0x6a); + writeb_relaxed(0X0d, miphy_phy->pipebase + 0x6b); + writeb_relaxed(0X67, miphy_phy->pipebase + 0x6c); + writeb_relaxed(0X0d, miphy_phy->pipebase + 0x6d); + writeb_relaxed(0X67, miphy_phy->pipebase + 0x6e); + writeb_relaxed(0X0d, miphy_phy->pipebase + 0x6f); + + return miphy_is_ready(miphy_phy); +} + +static int miphy28lp_init(struct phy *phy) +{ + struct miphy28lp_phy *miphy_phy = phy_get_drvdata(phy); + struct miphy28lp_dev *miphy_dev = miphy_phy->phydev; + int ret; + + mutex_lock(&miphy_dev->miphy_mutex); + + switch (miphy_phy->type) { + + case PHY_TYPE_SATA: + ret = miphy28lp_init_sata(miphy_phy); + break; + case PHY_TYPE_PCIE: + ret = miphy28lp_init_pcie(miphy_phy); + break; + case PHY_TYPE_USB3: + ret = miphy28lp_init_usb3(miphy_phy); + break; + default: + ret = -EINVAL; + break; + } + + mutex_unlock(&miphy_dev->miphy_mutex); + + return ret; +} + +static int miphy28lp_get_addr(struct miphy28lp_phy *miphy_phy) +{ + struct miphy28lp_dev *miphy_dev = miphy_phy->phydev; + struct device_node *phynode = miphy_phy->phy->dev.of_node; + int err; + + if ((miphy_phy->type != PHY_TYPE_SATA) && + (miphy_phy->type != PHY_TYPE_PCIE) && + (miphy_phy->type != PHY_TYPE_USB3)) { + return -EINVAL; + } + + err = miphy28lp_get_one_addr(miphy_dev->dev, phynode, + PHY_TYPE_name[miphy_phy->type - PHY_TYPE_SATA], + &miphy_phy->base); + if (err) + return err; + + if ((miphy_phy->type == PHY_TYPE_PCIE) || + (miphy_phy->type == PHY_TYPE_USB3)) { + err = miphy28lp_get_one_addr(miphy_dev->dev, phynode, "pipew", + &miphy_phy->pipebase); + if (err) + return err; + } + + return 0; +} + +static struct phy *miphy28lp_xlate(struct device *dev, + struct of_phandle_args *args) +{ + struct miphy28lp_dev *miphy_dev = dev_get_drvdata(dev); + struct miphy28lp_phy *miphy_phy = NULL; + struct device_node *phynode = args->np; + int ret, index = 0; + + if (args->args_count != 1) { + dev_err(dev, "Invalid number of cells in 'phy' property\n"); + return ERR_PTR(-EINVAL); + } + + for (index = 0; index < miphy_dev->nphys; index++) + if (phynode == miphy_dev->phys[index]->phy->dev.of_node) { + miphy_phy = miphy_dev->phys[index]; + break; + } + + if (!miphy_phy) { + dev_err(dev, "Failed to find appropriate phy\n"); + return ERR_PTR(-EINVAL); + } + + miphy_phy->type = args->args[0]; + + ret = miphy28lp_get_addr(miphy_phy); + if (ret < 0) + return ERR_PTR(ret); + + return miphy_phy->phy; +} + +static const struct phy_ops miphy28lp_ops = { + .init = miphy28lp_init, + .owner = THIS_MODULE, +}; + +static int miphy28lp_probe_resets(struct device_node *node, + struct miphy28lp_phy *miphy_phy) +{ + struct miphy28lp_dev *miphy_dev = miphy_phy->phydev; + int err; + + miphy_phy->miphy_rst = + of_reset_control_get_shared(node, "miphy-sw-rst"); + + if (IS_ERR(miphy_phy->miphy_rst)) { + dev_err(miphy_dev->dev, + "miphy soft reset control not defined\n"); + return PTR_ERR(miphy_phy->miphy_rst); + } + + err = reset_control_deassert(miphy_phy->miphy_rst); + if (err) { + dev_err(miphy_dev->dev, "unable to bring out of miphy reset\n"); + return err; + } + + return 0; +} + +static int miphy28lp_of_probe(struct device_node *np, + struct miphy28lp_phy *miphy_phy) +{ + int i; + u32 ctrlreg; + + miphy_phy->osc_force_ext = + of_property_read_bool(np, "st,osc-force-ext"); + + miphy_phy->osc_rdy = of_property_read_bool(np, "st,osc-rdy"); + + miphy_phy->px_rx_pol_inv = + of_property_read_bool(np, "st,px_rx_pol_inv"); + + miphy_phy->ssc = of_property_read_bool(np, "st,ssc-on"); + + miphy_phy->tx_impedance = + of_property_read_bool(np, "st,tx-impedance-comp"); + + of_property_read_u32(np, "st,sata-gen", &miphy_phy->sata_gen); + if (!miphy_phy->sata_gen) + miphy_phy->sata_gen = SATA_GEN1; + + for (i = 0; i < SYSCFG_REG_MAX; i++) { + if (!of_property_read_u32_index(np, "st,syscfg", i, &ctrlreg)) + miphy_phy->syscfg_reg[i] = ctrlreg; + } + + return 0; +} + +static int miphy28lp_probe(struct platform_device *pdev) +{ + struct device_node *child, *np = pdev->dev.of_node; + struct miphy28lp_dev *miphy_dev; + struct phy_provider *provider; + struct phy *phy; + int ret, port = 0; + + miphy_dev = devm_kzalloc(&pdev->dev, sizeof(*miphy_dev), GFP_KERNEL); + if (!miphy_dev) + return -ENOMEM; + + miphy_dev->nphys = of_get_child_count(np); + miphy_dev->phys = devm_kcalloc(&pdev->dev, miphy_dev->nphys, + sizeof(*miphy_dev->phys), GFP_KERNEL); + if (!miphy_dev->phys) + return -ENOMEM; + + miphy_dev->regmap = syscon_regmap_lookup_by_phandle(np, "st,syscfg"); + if (IS_ERR(miphy_dev->regmap)) { + dev_err(miphy_dev->dev, "No syscfg phandle specified\n"); + return PTR_ERR(miphy_dev->regmap); + } + + miphy_dev->dev = &pdev->dev; + + dev_set_drvdata(&pdev->dev, miphy_dev); + + mutex_init(&miphy_dev->miphy_mutex); + + for_each_child_of_node(np, child) { + struct miphy28lp_phy *miphy_phy; + + miphy_phy = devm_kzalloc(&pdev->dev, sizeof(*miphy_phy), + GFP_KERNEL); + if (!miphy_phy) { + ret = -ENOMEM; + goto put_child; + } + + miphy_dev->phys[port] = miphy_phy; + + phy = devm_phy_create(&pdev->dev, child, &miphy28lp_ops); + if (IS_ERR(phy)) { + dev_err(&pdev->dev, "failed to create PHY\n"); + ret = PTR_ERR(phy); + goto put_child; + } + + miphy_dev->phys[port]->phy = phy; + miphy_dev->phys[port]->phydev = miphy_dev; + + ret = miphy28lp_of_probe(child, miphy_phy); + if (ret) + goto put_child; + + ret = miphy28lp_probe_resets(child, miphy_dev->phys[port]); + if (ret) + goto put_child; + + phy_set_drvdata(phy, miphy_dev->phys[port]); + port++; + + } + + provider = devm_of_phy_provider_register(&pdev->dev, miphy28lp_xlate); + return PTR_ERR_OR_ZERO(provider); +put_child: + of_node_put(child); + return ret; +} + +static const struct of_device_id miphy28lp_of_match[] = { + {.compatible = "st,miphy28lp-phy", }, + {}, +}; + +MODULE_DEVICE_TABLE(of, miphy28lp_of_match); + +static struct platform_driver miphy28lp_driver = { + .probe = miphy28lp_probe, + .driver = { + .name = "miphy28lp-phy", + .of_match_table = miphy28lp_of_match, + } +}; + +module_platform_driver(miphy28lp_driver); + +MODULE_AUTHOR("Alexandre Torgue "); +MODULE_DESCRIPTION("STMicroelectronics miphy28lp driver"); +MODULE_LICENSE("GPL v2"); diff --git a/drivers/phy/st/phy-spear1310-miphy.c b/drivers/phy/st/phy-spear1310-miphy.c new file mode 100644 index 0000000000..35a9831b51 --- /dev/null +++ b/drivers/phy/st/phy-spear1310-miphy.c @@ -0,0 +1,258 @@ +// SPDX-License-Identifier: GPL-2.0-only +/* + * ST SPEAr1310-miphy driver + * + * Copyright (C) 2014 ST Microelectronics + * Pratyush Anand + * Mohit Kumar + */ + +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include + +/* SPEAr1310 Registers */ +#define SPEAR1310_PCIE_SATA_CFG 0x3A4 + #define SPEAR1310_PCIE_SATA2_SEL_PCIE (0 << 31) + #define SPEAR1310_PCIE_SATA1_SEL_PCIE (0 << 30) + #define SPEAR1310_PCIE_SATA0_SEL_PCIE (0 << 29) + #define SPEAR1310_PCIE_SATA2_SEL_SATA BIT(31) + #define SPEAR1310_PCIE_SATA1_SEL_SATA BIT(30) + #define SPEAR1310_PCIE_SATA0_SEL_SATA BIT(29) + #define SPEAR1310_SATA2_CFG_TX_CLK_EN BIT(27) + #define SPEAR1310_SATA2_CFG_RX_CLK_EN BIT(26) + #define SPEAR1310_SATA2_CFG_POWERUP_RESET BIT(25) + #define SPEAR1310_SATA2_CFG_PM_CLK_EN BIT(24) + #define SPEAR1310_SATA1_CFG_TX_CLK_EN BIT(23) + #define SPEAR1310_SATA1_CFG_RX_CLK_EN BIT(22) + #define SPEAR1310_SATA1_CFG_POWERUP_RESET BIT(21) + #define SPEAR1310_SATA1_CFG_PM_CLK_EN BIT(20) + #define SPEAR1310_SATA0_CFG_TX_CLK_EN BIT(19) + #define SPEAR1310_SATA0_CFG_RX_CLK_EN BIT(18) + #define SPEAR1310_SATA0_CFG_POWERUP_RESET BIT(17) + #define SPEAR1310_SATA0_CFG_PM_CLK_EN BIT(16) + #define SPEAR1310_PCIE2_CFG_DEVICE_PRESENT BIT(11) + #define SPEAR1310_PCIE2_CFG_POWERUP_RESET BIT(10) + #define SPEAR1310_PCIE2_CFG_CORE_CLK_EN BIT(9) + #define SPEAR1310_PCIE2_CFG_AUX_CLK_EN BIT(8) + #define SPEAR1310_PCIE1_CFG_DEVICE_PRESENT BIT(7) + #define SPEAR1310_PCIE1_CFG_POWERUP_RESET BIT(6) + #define SPEAR1310_PCIE1_CFG_CORE_CLK_EN BIT(5) + #define SPEAR1310_PCIE1_CFG_AUX_CLK_EN BIT(4) + #define SPEAR1310_PCIE0_CFG_DEVICE_PRESENT BIT(3) + #define SPEAR1310_PCIE0_CFG_POWERUP_RESET BIT(2) + #define SPEAR1310_PCIE0_CFG_CORE_CLK_EN BIT(1) + #define SPEAR1310_PCIE0_CFG_AUX_CLK_EN BIT(0) + + #define SPEAR1310_PCIE_CFG_MASK(x) ((0xF << (x * 4)) | BIT((x + 29))) + #define SPEAR1310_SATA_CFG_MASK(x) ((0xF << (x * 4 + 16)) | \ + BIT((x + 29))) + #define SPEAR1310_PCIE_CFG_VAL(x) \ + (SPEAR1310_PCIE_SATA##x##_SEL_PCIE | \ + SPEAR1310_PCIE##x##_CFG_AUX_CLK_EN | \ + SPEAR1310_PCIE##x##_CFG_CORE_CLK_EN | \ + SPEAR1310_PCIE##x##_CFG_POWERUP_RESET | \ + SPEAR1310_PCIE##x##_CFG_DEVICE_PRESENT) + #define SPEAR1310_SATA_CFG_VAL(x) \ + (SPEAR1310_PCIE_SATA##x##_SEL_SATA | \ + SPEAR1310_SATA##x##_CFG_PM_CLK_EN | \ + SPEAR1310_SATA##x##_CFG_POWERUP_RESET | \ + SPEAR1310_SATA##x##_CFG_RX_CLK_EN | \ + SPEAR1310_SATA##x##_CFG_TX_CLK_EN) + +#define SPEAR1310_PCIE_MIPHY_CFG_1 0x3A8 + #define SPEAR1310_MIPHY_DUAL_OSC_BYPASS_EXT BIT(31) + #define SPEAR1310_MIPHY_DUAL_CLK_REF_DIV2 BIT(28) + #define SPEAR1310_MIPHY_DUAL_PLL_RATIO_TOP(x) (x << 16) + #define SPEAR1310_MIPHY_SINGLE_OSC_BYPASS_EXT BIT(15) + #define SPEAR1310_MIPHY_SINGLE_CLK_REF_DIV2 BIT(12) + #define SPEAR1310_MIPHY_SINGLE_PLL_RATIO_TOP(x) (x << 0) + #define SPEAR1310_PCIE_SATA_MIPHY_CFG_SATA_MASK (0xFFFF) + #define SPEAR1310_PCIE_SATA_MIPHY_CFG_PCIE_MASK (0xFFFF << 16) + #define SPEAR1310_PCIE_SATA_MIPHY_CFG_SATA \ + (SPEAR1310_MIPHY_DUAL_OSC_BYPASS_EXT | \ + SPEAR1310_MIPHY_DUAL_CLK_REF_DIV2 | \ + SPEAR1310_MIPHY_DUAL_PLL_RATIO_TOP(60) | \ + SPEAR1310_MIPHY_SINGLE_OSC_BYPASS_EXT | \ + SPEAR1310_MIPHY_SINGLE_CLK_REF_DIV2 | \ + SPEAR1310_MIPHY_SINGLE_PLL_RATIO_TOP(60)) + #define SPEAR1310_PCIE_SATA_MIPHY_CFG_SATA_25M_CRYSTAL_CLK \ + (SPEAR1310_MIPHY_SINGLE_PLL_RATIO_TOP(120)) + #define SPEAR1310_PCIE_SATA_MIPHY_CFG_PCIE \ + (SPEAR1310_MIPHY_DUAL_OSC_BYPASS_EXT | \ + SPEAR1310_MIPHY_DUAL_PLL_RATIO_TOP(25) | \ + SPEAR1310_MIPHY_SINGLE_OSC_BYPASS_EXT | \ + SPEAR1310_MIPHY_SINGLE_PLL_RATIO_TOP(25)) + +#define SPEAR1310_PCIE_MIPHY_CFG_2 0x3AC + +enum spear1310_miphy_mode { + SATA, + PCIE, +}; + +struct spear1310_miphy_priv { + /* instance id of this phy */ + u32 id; + /* phy mode: 0 for SATA 1 for PCIe */ + enum spear1310_miphy_mode mode; + /* regmap for any soc specific misc registers */ + struct regmap *misc; + /* phy struct pointer */ + struct phy *phy; +}; + +static int spear1310_miphy_pcie_init(struct spear1310_miphy_priv *priv) +{ + u32 val; + + regmap_update_bits(priv->misc, SPEAR1310_PCIE_MIPHY_CFG_1, + SPEAR1310_PCIE_SATA_MIPHY_CFG_PCIE_MASK, + SPEAR1310_PCIE_SATA_MIPHY_CFG_PCIE); + + switch (priv->id) { + case 0: + val = SPEAR1310_PCIE_CFG_VAL(0); + break; + case 1: + val = SPEAR1310_PCIE_CFG_VAL(1); + break; + case 2: + val = SPEAR1310_PCIE_CFG_VAL(2); + break; + default: + return -EINVAL; + } + + regmap_update_bits(priv->misc, SPEAR1310_PCIE_SATA_CFG, + SPEAR1310_PCIE_CFG_MASK(priv->id), val); + + return 0; +} + +static int spear1310_miphy_pcie_exit(struct spear1310_miphy_priv *priv) +{ + regmap_update_bits(priv->misc, SPEAR1310_PCIE_SATA_CFG, + SPEAR1310_PCIE_CFG_MASK(priv->id), 0); + + regmap_update_bits(priv->misc, SPEAR1310_PCIE_MIPHY_CFG_1, + SPEAR1310_PCIE_SATA_MIPHY_CFG_PCIE_MASK, 0); + + return 0; +} + +static int spear1310_miphy_init(struct phy *phy) +{ + struct spear1310_miphy_priv *priv = phy_get_drvdata(phy); + int ret = 0; + + if (priv->mode == PCIE) + ret = spear1310_miphy_pcie_init(priv); + + return ret; +} + +static int spear1310_miphy_exit(struct phy *phy) +{ + struct spear1310_miphy_priv *priv = phy_get_drvdata(phy); + int ret = 0; + + if (priv->mode == PCIE) + ret = spear1310_miphy_pcie_exit(priv); + + return ret; +} + +static const struct of_device_id spear1310_miphy_of_match[] = { + { .compatible = "st,spear1310-miphy" }, + { }, +}; +MODULE_DEVICE_TABLE(of, spear1310_miphy_of_match); + +static const struct phy_ops spear1310_miphy_ops = { + .init = spear1310_miphy_init, + .exit = spear1310_miphy_exit, + .owner = THIS_MODULE, +}; + +static struct phy *spear1310_miphy_xlate(struct device *dev, + struct of_phandle_args *args) +{ + struct spear1310_miphy_priv *priv = dev_get_drvdata(dev); + + if (args->args_count < 1) { + dev_err(dev, "DT did not pass correct no of args\n"); + return ERR_PTR(-ENODEV); + } + + priv->mode = args->args[0]; + + if (priv->mode != SATA && priv->mode != PCIE) { + dev_err(dev, "DT did not pass correct phy mode\n"); + return ERR_PTR(-ENODEV); + } + + return priv->phy; +} + +static int spear1310_miphy_probe(struct platform_device *pdev) +{ + struct device *dev = &pdev->dev; + struct spear1310_miphy_priv *priv; + struct phy_provider *phy_provider; + + priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL); + if (!priv) + return -ENOMEM; + + priv->misc = + syscon_regmap_lookup_by_phandle(dev->of_node, "misc"); + if (IS_ERR(priv->misc)) { + dev_err(dev, "failed to find misc regmap\n"); + return PTR_ERR(priv->misc); + } + + if (of_property_read_u32(dev->of_node, "phy-id", &priv->id)) { + dev_err(dev, "failed to find phy id\n"); + return -EINVAL; + } + + priv->phy = devm_phy_create(dev, NULL, &spear1310_miphy_ops); + if (IS_ERR(priv->phy)) { + dev_err(dev, "failed to create SATA PCIe PHY\n"); + return PTR_ERR(priv->phy); + } + + dev_set_drvdata(dev, priv); + phy_set_drvdata(priv->phy, priv); + + phy_provider = + devm_of_phy_provider_register(dev, spear1310_miphy_xlate); + if (IS_ERR(phy_provider)) { + dev_err(dev, "failed to register phy provider\n"); + return PTR_ERR(phy_provider); + } + + return 0; +} + +static struct platform_driver spear1310_miphy_driver = { + .probe = spear1310_miphy_probe, + .driver = { + .name = "spear1310-miphy", + .of_match_table = spear1310_miphy_of_match, + }, +}; + +module_platform_driver(spear1310_miphy_driver); + +MODULE_DESCRIPTION("ST SPEAR1310-MIPHY driver"); +MODULE_AUTHOR("Pratyush Anand "); +MODULE_LICENSE("GPL v2"); diff --git a/drivers/phy/st/phy-spear1340-miphy.c b/drivers/phy/st/phy-spear1340-miphy.c new file mode 100644 index 0000000000..34a1cf2101 --- /dev/null +++ b/drivers/phy/st/phy-spear1340-miphy.c @@ -0,0 +1,291 @@ +// SPDX-License-Identifier: GPL-2.0-only +/* + * ST spear1340-miphy driver + * + * Copyright (C) 2014 ST Microelectronics + * Pratyush Anand + * Mohit Kumar + */ + +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include + +/* SPEAr1340 Registers */ +/* Power Management Registers */ +#define SPEAR1340_PCM_CFG 0x100 + #define SPEAR1340_PCM_CFG_SATA_POWER_EN BIT(11) +#define SPEAR1340_PCM_WKUP_CFG 0x104 +#define SPEAR1340_SWITCH_CTR 0x108 + +#define SPEAR1340_PERIP1_SW_RST 0x318 + #define SPEAR1340_PERIP1_SW_RSATA BIT(12) +#define SPEAR1340_PERIP2_SW_RST 0x31C +#define SPEAR1340_PERIP3_SW_RST 0x320 + +/* PCIE - SATA configuration registers */ +#define SPEAR1340_PCIE_SATA_CFG 0x424 + /* PCIE CFG MASks */ + #define SPEAR1340_PCIE_CFG_DEVICE_PRESENT BIT(11) + #define SPEAR1340_PCIE_CFG_POWERUP_RESET BIT(10) + #define SPEAR1340_PCIE_CFG_CORE_CLK_EN BIT(9) + #define SPEAR1340_PCIE_CFG_AUX_CLK_EN BIT(8) + #define SPEAR1340_SATA_CFG_TX_CLK_EN BIT(4) + #define SPEAR1340_SATA_CFG_RX_CLK_EN BIT(3) + #define SPEAR1340_SATA_CFG_POWERUP_RESET BIT(2) + #define SPEAR1340_SATA_CFG_PM_CLK_EN BIT(1) + #define SPEAR1340_PCIE_SATA_SEL_PCIE (0) + #define SPEAR1340_PCIE_SATA_SEL_SATA (1) + #define SPEAR1340_PCIE_SATA_CFG_MASK 0xF1F + #define SPEAR1340_PCIE_CFG_VAL (SPEAR1340_PCIE_SATA_SEL_PCIE | \ + SPEAR1340_PCIE_CFG_AUX_CLK_EN | \ + SPEAR1340_PCIE_CFG_CORE_CLK_EN | \ + SPEAR1340_PCIE_CFG_POWERUP_RESET | \ + SPEAR1340_PCIE_CFG_DEVICE_PRESENT) + #define SPEAR1340_SATA_CFG_VAL (SPEAR1340_PCIE_SATA_SEL_SATA | \ + SPEAR1340_SATA_CFG_PM_CLK_EN | \ + SPEAR1340_SATA_CFG_POWERUP_RESET | \ + SPEAR1340_SATA_CFG_RX_CLK_EN | \ + SPEAR1340_SATA_CFG_TX_CLK_EN) + +#define SPEAR1340_PCIE_MIPHY_CFG 0x428 + #define SPEAR1340_MIPHY_OSC_BYPASS_EXT BIT(31) + #define SPEAR1340_MIPHY_CLK_REF_DIV2 BIT(27) + #define SPEAR1340_MIPHY_CLK_REF_DIV4 (2 << 27) + #define SPEAR1340_MIPHY_CLK_REF_DIV8 (3 << 27) + #define SPEAR1340_MIPHY_PLL_RATIO_TOP(x) (x << 0) + #define SPEAR1340_PCIE_MIPHY_CFG_MASK 0xF80000FF + #define SPEAR1340_PCIE_SATA_MIPHY_CFG_SATA \ + (SPEAR1340_MIPHY_OSC_BYPASS_EXT | \ + SPEAR1340_MIPHY_CLK_REF_DIV2 | \ + SPEAR1340_MIPHY_PLL_RATIO_TOP(60)) + #define SPEAR1340_PCIE_SATA_MIPHY_CFG_SATA_25M_CRYSTAL_CLK \ + (SPEAR1340_MIPHY_PLL_RATIO_TOP(120)) + #define SPEAR1340_PCIE_SATA_MIPHY_CFG_PCIE \ + (SPEAR1340_MIPHY_OSC_BYPASS_EXT | \ + SPEAR1340_MIPHY_PLL_RATIO_TOP(25)) + +enum spear1340_miphy_mode { + SATA, + PCIE, +}; + +struct spear1340_miphy_priv { + /* phy mode: 0 for SATA 1 for PCIe */ + enum spear1340_miphy_mode mode; + /* regmap for any soc specific misc registers */ + struct regmap *misc; + /* phy struct pointer */ + struct phy *phy; +}; + +static int spear1340_miphy_sata_init(struct spear1340_miphy_priv *priv) +{ + regmap_update_bits(priv->misc, SPEAR1340_PCIE_SATA_CFG, + SPEAR1340_PCIE_SATA_CFG_MASK, + SPEAR1340_SATA_CFG_VAL); + regmap_update_bits(priv->misc, SPEAR1340_PCIE_MIPHY_CFG, + SPEAR1340_PCIE_MIPHY_CFG_MASK, + SPEAR1340_PCIE_SATA_MIPHY_CFG_SATA_25M_CRYSTAL_CLK); + /* Switch on sata power domain */ + regmap_update_bits(priv->misc, SPEAR1340_PCM_CFG, + SPEAR1340_PCM_CFG_SATA_POWER_EN, + SPEAR1340_PCM_CFG_SATA_POWER_EN); + /* Wait for SATA power domain on */ + msleep(20); + + /* Disable PCIE SATA Controller reset */ + regmap_update_bits(priv->misc, SPEAR1340_PERIP1_SW_RST, + SPEAR1340_PERIP1_SW_RSATA, 0); + /* Wait for SATA reset de-assert completion */ + msleep(20); + + return 0; +} + +static int spear1340_miphy_sata_exit(struct spear1340_miphy_priv *priv) +{ + regmap_update_bits(priv->misc, SPEAR1340_PCIE_SATA_CFG, + SPEAR1340_PCIE_SATA_CFG_MASK, 0); + regmap_update_bits(priv->misc, SPEAR1340_PCIE_MIPHY_CFG, + SPEAR1340_PCIE_MIPHY_CFG_MASK, 0); + + /* Enable PCIE SATA Controller reset */ + regmap_update_bits(priv->misc, SPEAR1340_PERIP1_SW_RST, + SPEAR1340_PERIP1_SW_RSATA, + SPEAR1340_PERIP1_SW_RSATA); + /* Wait for SATA power domain off */ + msleep(20); + /* Switch off sata power domain */ + regmap_update_bits(priv->misc, SPEAR1340_PCM_CFG, + SPEAR1340_PCM_CFG_SATA_POWER_EN, 0); + /* Wait for SATA reset assert completion */ + msleep(20); + + return 0; +} + +static int spear1340_miphy_pcie_init(struct spear1340_miphy_priv *priv) +{ + regmap_update_bits(priv->misc, SPEAR1340_PCIE_MIPHY_CFG, + SPEAR1340_PCIE_MIPHY_CFG_MASK, + SPEAR1340_PCIE_SATA_MIPHY_CFG_PCIE); + regmap_update_bits(priv->misc, SPEAR1340_PCIE_SATA_CFG, + SPEAR1340_PCIE_SATA_CFG_MASK, + SPEAR1340_PCIE_CFG_VAL); + + return 0; +} + +static int spear1340_miphy_pcie_exit(struct spear1340_miphy_priv *priv) +{ + regmap_update_bits(priv->misc, SPEAR1340_PCIE_MIPHY_CFG, + SPEAR1340_PCIE_MIPHY_CFG_MASK, 0); + regmap_update_bits(priv->misc, SPEAR1340_PCIE_SATA_CFG, + SPEAR1340_PCIE_SATA_CFG_MASK, 0); + + return 0; +} + +static int spear1340_miphy_init(struct phy *phy) +{ + struct spear1340_miphy_priv *priv = phy_get_drvdata(phy); + int ret = 0; + + if (priv->mode == SATA) + ret = spear1340_miphy_sata_init(priv); + else if (priv->mode == PCIE) + ret = spear1340_miphy_pcie_init(priv); + + return ret; +} + +static int spear1340_miphy_exit(struct phy *phy) +{ + struct spear1340_miphy_priv *priv = phy_get_drvdata(phy); + int ret = 0; + + if (priv->mode == SATA) + ret = spear1340_miphy_sata_exit(priv); + else if (priv->mode == PCIE) + ret = spear1340_miphy_pcie_exit(priv); + + return ret; +} + +static const struct of_device_id spear1340_miphy_of_match[] = { + { .compatible = "st,spear1340-miphy" }, + { }, +}; +MODULE_DEVICE_TABLE(of, spear1340_miphy_of_match); + +static const struct phy_ops spear1340_miphy_ops = { + .init = spear1340_miphy_init, + .exit = spear1340_miphy_exit, + .owner = THIS_MODULE, +}; + +#ifdef CONFIG_PM_SLEEP +static int spear1340_miphy_suspend(struct device *dev) +{ + struct spear1340_miphy_priv *priv = dev_get_drvdata(dev); + int ret = 0; + + if (priv->mode == SATA) + ret = spear1340_miphy_sata_exit(priv); + + return ret; +} + +static int spear1340_miphy_resume(struct device *dev) +{ + struct spear1340_miphy_priv *priv = dev_get_drvdata(dev); + int ret = 0; + + if (priv->mode == SATA) + ret = spear1340_miphy_sata_init(priv); + + return ret; +} +#endif + +static SIMPLE_DEV_PM_OPS(spear1340_miphy_pm_ops, spear1340_miphy_suspend, + spear1340_miphy_resume); + +static struct phy *spear1340_miphy_xlate(struct device *dev, + struct of_phandle_args *args) +{ + struct spear1340_miphy_priv *priv = dev_get_drvdata(dev); + + if (args->args_count < 1) { + dev_err(dev, "DT did not pass correct no of args\n"); + return ERR_PTR(-ENODEV); + } + + priv->mode = args->args[0]; + + if (priv->mode != SATA && priv->mode != PCIE) { + dev_err(dev, "DT did not pass correct phy mode\n"); + return ERR_PTR(-ENODEV); + } + + return priv->phy; +} + +static int spear1340_miphy_probe(struct platform_device *pdev) +{ + struct device *dev = &pdev->dev; + struct spear1340_miphy_priv *priv; + struct phy_provider *phy_provider; + + priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL); + if (!priv) + return -ENOMEM; + + priv->misc = + syscon_regmap_lookup_by_phandle(dev->of_node, "misc"); + if (IS_ERR(priv->misc)) { + dev_err(dev, "failed to find misc regmap\n"); + return PTR_ERR(priv->misc); + } + + priv->phy = devm_phy_create(dev, NULL, &spear1340_miphy_ops); + if (IS_ERR(priv->phy)) { + dev_err(dev, "failed to create SATA PCIe PHY\n"); + return PTR_ERR(priv->phy); + } + + dev_set_drvdata(dev, priv); + phy_set_drvdata(priv->phy, priv); + + phy_provider = + devm_of_phy_provider_register(dev, spear1340_miphy_xlate); + if (IS_ERR(phy_provider)) { + dev_err(dev, "failed to register phy provider\n"); + return PTR_ERR(phy_provider); + } + + return 0; +} + +static struct platform_driver spear1340_miphy_driver = { + .probe = spear1340_miphy_probe, + .driver = { + .name = "spear1340-miphy", + .pm = &spear1340_miphy_pm_ops, + .of_match_table = spear1340_miphy_of_match, + }, +}; + +module_platform_driver(spear1340_miphy_driver); + +MODULE_DESCRIPTION("ST SPEAR1340-MIPHY driver"); +MODULE_AUTHOR("Pratyush Anand "); +MODULE_LICENSE("GPL v2"); diff --git a/drivers/phy/st/phy-stih407-usb.c b/drivers/phy/st/phy-stih407-usb.c new file mode 100644 index 0000000000..a4ae2cca7f --- /dev/null +++ b/drivers/phy/st/phy-stih407-usb.c @@ -0,0 +1,176 @@ +// SPDX-License-Identifier: GPL-2.0-only +/* + * Copyright (C) 2014 STMicroelectronics + * + * STMicroelectronics Generic PHY driver for STiH407 USB2. + * + * Author: Giuseppe Cavallaro + */ +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include + +#define PHYPARAM_REG 1 +#define PHYCTRL_REG 2 + +/* Default PHY_SEL and REFCLKSEL configuration */ +#define STIH407_USB_PICOPHY_CTRL_PORT_CONF 0x6 +#define STIH407_USB_PICOPHY_CTRL_PORT_MASK 0x1f + +/* ports parameters overriding */ +#define STIH407_USB_PICOPHY_PARAM_DEF 0x39a4dc +#define STIH407_USB_PICOPHY_PARAM_MASK 0xffffffff + +struct stih407_usb2_picophy { + struct phy *phy; + struct regmap *regmap; + struct device *dev; + struct reset_control *rstc; + struct reset_control *rstport; + int ctrl; + int param; +}; + +static int stih407_usb2_pico_ctrl(struct stih407_usb2_picophy *phy_dev) +{ + reset_control_deassert(phy_dev->rstc); + + return regmap_update_bits(phy_dev->regmap, phy_dev->ctrl, + STIH407_USB_PICOPHY_CTRL_PORT_MASK, + STIH407_USB_PICOPHY_CTRL_PORT_CONF); +} + +static int stih407_usb2_init_port(struct phy *phy) +{ + int ret; + struct stih407_usb2_picophy *phy_dev = phy_get_drvdata(phy); + + stih407_usb2_pico_ctrl(phy_dev); + + ret = regmap_update_bits(phy_dev->regmap, + phy_dev->param, + STIH407_USB_PICOPHY_PARAM_MASK, + STIH407_USB_PICOPHY_PARAM_DEF); + if (ret) + return ret; + + return reset_control_deassert(phy_dev->rstport); +} + +static int stih407_usb2_exit_port(struct phy *phy) +{ + struct stih407_usb2_picophy *phy_dev = phy_get_drvdata(phy); + + /* + * Only port reset is asserted, phy global reset is kept untouched + * as other ports may still be active. When all ports are in reset + * state, assumption is made that power will be cut off on the phy, in + * case of suspend for instance. Theoretically, asserting individual + * reset (like here) or global reset should be equivalent. + */ + return reset_control_assert(phy_dev->rstport); +} + +static const struct phy_ops stih407_usb2_picophy_data = { + .init = stih407_usb2_init_port, + .exit = stih407_usb2_exit_port, + .owner = THIS_MODULE, +}; + +static int stih407_usb2_picophy_probe(struct platform_device *pdev) +{ + struct stih407_usb2_picophy *phy_dev; + struct device *dev = &pdev->dev; + struct device_node *np = dev->of_node; + struct phy_provider *phy_provider; + struct phy *phy; + int ret; + + phy_dev = devm_kzalloc(dev, sizeof(*phy_dev), GFP_KERNEL); + if (!phy_dev) + return -ENOMEM; + + phy_dev->dev = dev; + dev_set_drvdata(dev, phy_dev); + + phy_dev->rstc = devm_reset_control_get_shared(dev, "global"); + if (IS_ERR(phy_dev->rstc)) { + dev_err(dev, "failed to ctrl picoPHY reset\n"); + return PTR_ERR(phy_dev->rstc); + } + + phy_dev->rstport = devm_reset_control_get_exclusive(dev, "port"); + if (IS_ERR(phy_dev->rstport)) { + dev_err(dev, "failed to ctrl picoPHY reset\n"); + return PTR_ERR(phy_dev->rstport); + } + + /* Reset port by default: only deassert it in phy init */ + reset_control_assert(phy_dev->rstport); + + phy_dev->regmap = syscon_regmap_lookup_by_phandle(np, "st,syscfg"); + if (IS_ERR(phy_dev->regmap)) { + dev_err(dev, "No syscfg phandle specified\n"); + return PTR_ERR(phy_dev->regmap); + } + + ret = of_property_read_u32_index(np, "st,syscfg", PHYPARAM_REG, + &phy_dev->param); + if (ret) { + dev_err(dev, "can't get phyparam offset (%d)\n", ret); + return ret; + } + + ret = of_property_read_u32_index(np, "st,syscfg", PHYCTRL_REG, + &phy_dev->ctrl); + if (ret) { + dev_err(dev, "can't get phyctrl offset (%d)\n", ret); + return ret; + } + + phy = devm_phy_create(dev, NULL, &stih407_usb2_picophy_data); + if (IS_ERR(phy)) { + dev_err(dev, "failed to create Display Port PHY\n"); + return PTR_ERR(phy); + } + + phy_dev->phy = phy; + phy_set_drvdata(phy, phy_dev); + + phy_provider = devm_of_phy_provider_register(dev, of_phy_simple_xlate); + if (IS_ERR(phy_provider)) + return PTR_ERR(phy_provider); + + dev_info(dev, "STiH407 USB Generic picoPHY driver probed!"); + + return 0; +} + +static const struct of_device_id stih407_usb2_picophy_of_match[] = { + { .compatible = "st,stih407-usb2-phy" }, + { /*sentinel */ }, +}; + +MODULE_DEVICE_TABLE(of, stih407_usb2_picophy_of_match); + +static struct platform_driver stih407_usb2_picophy_driver = { + .probe = stih407_usb2_picophy_probe, + .driver = { + .name = "stih407-usb-genphy", + .of_match_table = stih407_usb2_picophy_of_match, + } +}; + +module_platform_driver(stih407_usb2_picophy_driver); + +MODULE_AUTHOR("Giuseppe Cavallaro "); +MODULE_DESCRIPTION("STMicroelectronics Generic picoPHY driver for STiH407"); +MODULE_LICENSE("GPL v2"); diff --git a/drivers/phy/st/phy-stm32-usbphyc.c b/drivers/phy/st/phy-stm32-usbphyc.c new file mode 100644 index 0000000000..d5e7e44000 --- /dev/null +++ b/drivers/phy/st/phy-stm32-usbphyc.c @@ -0,0 +1,826 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * STMicroelectronics STM32 USB PHY Controller driver + * + * Copyright (C) 2018 STMicroelectronics + * Author(s): Amelie Delaunay . + */ +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include +#include + +#define STM32_USBPHYC_PLL 0x0 +#define STM32_USBPHYC_MISC 0x8 +#define STM32_USBPHYC_MONITOR(X) (0x108 + ((X) * 0x100)) +#define STM32_USBPHYC_TUNE(X) (0x10C + ((X) * 0x100)) +#define STM32_USBPHYC_VERSION 0x3F4 + +/* STM32_USBPHYC_PLL bit fields */ +#define PLLNDIV GENMASK(6, 0) +#define PLLFRACIN GENMASK(25, 10) +#define PLLEN BIT(26) +#define PLLSTRB BIT(27) +#define PLLSTRBYP BIT(28) +#define PLLFRACCTL BIT(29) +#define PLLDITHEN0 BIT(30) +#define PLLDITHEN1 BIT(31) + +/* STM32_USBPHYC_MISC bit fields */ +#define SWITHOST BIT(0) + +/* STM32_USBPHYC_MONITOR bit fields */ +#define STM32_USBPHYC_MON_OUT GENMASK(3, 0) +#define STM32_USBPHYC_MON_SEL GENMASK(8, 4) +#define STM32_USBPHYC_MON_SEL_LOCKP 0x1F +#define STM32_USBPHYC_MON_OUT_LOCKP BIT(3) + +/* STM32_USBPHYC_TUNE bit fields */ +#define INCURREN BIT(0) +#define INCURRINT BIT(1) +#define LFSCAPEN BIT(2) +#define HSDRVSLEW BIT(3) +#define HSDRVDCCUR BIT(4) +#define HSDRVDCLEV BIT(5) +#define HSDRVCURINCR BIT(6) +#define FSDRVRFADJ BIT(7) +#define HSDRVRFRED BIT(8) +#define HSDRVCHKITRM GENMASK(12, 9) +#define HSDRVCHKZTRM GENMASK(14, 13) +#define OTPCOMP GENMASK(19, 15) +#define SQLCHCTL GENMASK(21, 20) +#define HDRXGNEQEN BIT(22) +#define HSRXOFF GENMASK(24, 23) +#define HSFALLPREEM BIT(25) +#define SHTCCTCTLPROT BIT(26) +#define STAGSEL BIT(27) + +enum boosting_vals { + BOOST_1000_UA = 1000, + BOOST_2000_UA = 2000, +}; + +enum dc_level_vals { + DC_NOMINAL, + DC_PLUS_5_TO_7_MV, + DC_PLUS_10_TO_14_MV, + DC_MINUS_5_TO_7_MV, + DC_MAX, +}; + +enum current_trim { + CUR_NOMINAL, + CUR_PLUS_1_56_PCT, + CUR_PLUS_3_12_PCT, + CUR_PLUS_4_68_PCT, + CUR_PLUS_6_24_PCT, + CUR_PLUS_7_8_PCT, + CUR_PLUS_9_36_PCT, + CUR_PLUS_10_92_PCT, + CUR_PLUS_12_48_PCT, + CUR_PLUS_14_04_PCT, + CUR_PLUS_15_6_PCT, + CUR_PLUS_17_16_PCT, + CUR_PLUS_19_01_PCT, + CUR_PLUS_20_58_PCT, + CUR_PLUS_22_16_PCT, + CUR_PLUS_23_73_PCT, + CUR_MAX, +}; + +enum impedance_trim { + IMP_NOMINAL, + IMP_MINUS_2_OHMS, + IMP_MINUS_4_OMHS, + IMP_MINUS_6_OHMS, + IMP_MAX, +}; + +enum squelch_level { + SQLCH_NOMINAL, + SQLCH_PLUS_7_MV, + SQLCH_MINUS_5_MV, + SQLCH_PLUS_14_MV, + SQLCH_MAX, +}; + +enum rx_offset { + NO_RX_OFFSET, + RX_OFFSET_PLUS_5_MV, + RX_OFFSET_PLUS_10_MV, + RX_OFFSET_MINUS_5_MV, + RX_OFFSET_MAX, +}; + +/* STM32_USBPHYC_VERSION bit fields */ +#define MINREV GENMASK(3, 0) +#define MAJREV GENMASK(7, 4) + +#define PLL_FVCO_MHZ 2880 +#define PLL_INFF_MIN_RATE_HZ 19200000 +#define PLL_INFF_MAX_RATE_HZ 38400000 + +struct pll_params { + u8 ndiv; + u16 frac; +}; + +struct stm32_usbphyc_phy { + struct phy *phy; + struct stm32_usbphyc *usbphyc; + struct regulator *vbus; + u32 index; + bool active; + u32 tune; +}; + +struct stm32_usbphyc { + struct device *dev; + void __iomem *base; + struct clk *clk; + struct reset_control *rst; + struct stm32_usbphyc_phy **phys; + int nphys; + struct regulator *vdda1v1; + struct regulator *vdda1v8; + atomic_t n_pll_cons; + struct clk_hw clk48_hw; + int switch_setup; +}; + +static inline void stm32_usbphyc_set_bits(void __iomem *reg, u32 bits) +{ + writel_relaxed(readl_relaxed(reg) | bits, reg); +} + +static inline void stm32_usbphyc_clr_bits(void __iomem *reg, u32 bits) +{ + writel_relaxed(readl_relaxed(reg) & ~bits, reg); +} + +static int stm32_usbphyc_regulators_enable(struct stm32_usbphyc *usbphyc) +{ + int ret; + + ret = regulator_enable(usbphyc->vdda1v1); + if (ret) + return ret; + + ret = regulator_enable(usbphyc->vdda1v8); + if (ret) + goto vdda1v1_disable; + + return 0; + +vdda1v1_disable: + regulator_disable(usbphyc->vdda1v1); + + return ret; +} + +static int stm32_usbphyc_regulators_disable(struct stm32_usbphyc *usbphyc) +{ + int ret; + + ret = regulator_disable(usbphyc->vdda1v8); + if (ret) + return ret; + + ret = regulator_disable(usbphyc->vdda1v1); + if (ret) + return ret; + + return 0; +} + +static void stm32_usbphyc_get_pll_params(u32 clk_rate, + struct pll_params *pll_params) +{ + unsigned long long fvco, ndiv, frac; + + /* _ + * | FVCO = INFF*2*(NDIV + FRACT/2^16) when DITHER_DISABLE[1] = 1 + * | FVCO = 2880MHz + * < + * | NDIV = integer part of input bits to set the LDF + * |_FRACT = fractional part of input bits to set the LDF + * => PLLNDIV = integer part of (FVCO / (INFF*2)) + * => PLLFRACIN = fractional part of(FVCO / INFF*2) * 2^16 + * <=> PLLFRACIN = ((FVCO / (INFF*2)) - PLLNDIV) * 2^16 + */ + fvco = (unsigned long long)PLL_FVCO_MHZ * HZ_PER_MHZ; + + ndiv = fvco; + do_div(ndiv, (clk_rate * 2)); + pll_params->ndiv = (u8)ndiv; + + frac = fvco * (1 << 16); + do_div(frac, (clk_rate * 2)); + frac = frac - (ndiv * (1 << 16)); + pll_params->frac = (u16)frac; +} + +static int stm32_usbphyc_pll_init(struct stm32_usbphyc *usbphyc) +{ + struct pll_params pll_params; + u32 clk_rate = clk_get_rate(usbphyc->clk); + u32 ndiv, frac; + u32 usbphyc_pll; + + if ((clk_rate < PLL_INFF_MIN_RATE_HZ) || + (clk_rate > PLL_INFF_MAX_RATE_HZ)) { + dev_err(usbphyc->dev, "input clk freq (%dHz) out of range\n", + clk_rate); + return -EINVAL; + } + + stm32_usbphyc_get_pll_params(clk_rate, &pll_params); + ndiv = FIELD_PREP(PLLNDIV, pll_params.ndiv); + frac = FIELD_PREP(PLLFRACIN, pll_params.frac); + + usbphyc_pll = PLLDITHEN1 | PLLDITHEN0 | PLLSTRBYP | ndiv; + + if (pll_params.frac) + usbphyc_pll |= PLLFRACCTL | frac; + + writel_relaxed(usbphyc_pll, usbphyc->base + STM32_USBPHYC_PLL); + + dev_dbg(usbphyc->dev, "input clk freq=%dHz, ndiv=%lu, frac=%lu\n", + clk_rate, FIELD_GET(PLLNDIV, usbphyc_pll), + FIELD_GET(PLLFRACIN, usbphyc_pll)); + + return 0; +} + +static int __stm32_usbphyc_pll_disable(struct stm32_usbphyc *usbphyc) +{ + void __iomem *pll_reg = usbphyc->base + STM32_USBPHYC_PLL; + u32 pllen; + + stm32_usbphyc_clr_bits(pll_reg, PLLEN); + + /* Wait for minimum width of powerdown pulse (ENABLE = Low) */ + if (readl_relaxed_poll_timeout(pll_reg, pllen, !(pllen & PLLEN), 5, 50)) + dev_err(usbphyc->dev, "PLL not reset\n"); + + return stm32_usbphyc_regulators_disable(usbphyc); +} + +static int stm32_usbphyc_pll_disable(struct stm32_usbphyc *usbphyc) +{ + /* Check if a phy port is still active or clk48 in use */ + if (atomic_dec_return(&usbphyc->n_pll_cons) > 0) + return 0; + + return __stm32_usbphyc_pll_disable(usbphyc); +} + +static int stm32_usbphyc_pll_enable(struct stm32_usbphyc *usbphyc) +{ + void __iomem *pll_reg = usbphyc->base + STM32_USBPHYC_PLL; + bool pllen = readl_relaxed(pll_reg) & PLLEN; + int ret; + + /* + * Check if a phy port or clk48 prepare has configured the pll + * and ensure the PLL is enabled + */ + if (atomic_inc_return(&usbphyc->n_pll_cons) > 1 && pllen) + return 0; + + if (pllen) { + /* + * PLL shouldn't be enabled without known consumer, + * disable it and reinit n_pll_cons + */ + dev_warn(usbphyc->dev, "PLL enabled without known consumers\n"); + + ret = __stm32_usbphyc_pll_disable(usbphyc); + if (ret) + goto dec_n_pll_cons; + } + + ret = stm32_usbphyc_regulators_enable(usbphyc); + if (ret) + goto dec_n_pll_cons; + + ret = stm32_usbphyc_pll_init(usbphyc); + if (ret) + goto reg_disable; + + stm32_usbphyc_set_bits(pll_reg, PLLEN); + + /* Wait for maximum lock time */ + usleep_range(200, 300); + + return 0; + +reg_disable: + stm32_usbphyc_regulators_disable(usbphyc); + +dec_n_pll_cons: + atomic_dec(&usbphyc->n_pll_cons); + + return ret; +} + +static int stm32_usbphyc_phy_init(struct phy *phy) +{ + struct stm32_usbphyc_phy *usbphyc_phy = phy_get_drvdata(phy); + struct stm32_usbphyc *usbphyc = usbphyc_phy->usbphyc; + u32 reg_mon = STM32_USBPHYC_MONITOR(usbphyc_phy->index); + u32 monsel = FIELD_PREP(STM32_USBPHYC_MON_SEL, + STM32_USBPHYC_MON_SEL_LOCKP); + u32 monout; + int ret; + + ret = stm32_usbphyc_pll_enable(usbphyc); + if (ret) + return ret; + + /* Check that PLL Lock input to PHY is High */ + writel_relaxed(monsel, usbphyc->base + reg_mon); + ret = readl_relaxed_poll_timeout(usbphyc->base + reg_mon, monout, + (monout & STM32_USBPHYC_MON_OUT_LOCKP), + 100, 1000); + if (ret) { + dev_err(usbphyc->dev, "PLL Lock input to PHY is Low (val=%x)\n", + (u32)(monout & STM32_USBPHYC_MON_OUT)); + goto pll_disable; + } + + usbphyc_phy->active = true; + + return 0; + +pll_disable: + stm32_usbphyc_pll_disable(usbphyc); + + return ret; +} + +static int stm32_usbphyc_phy_exit(struct phy *phy) +{ + struct stm32_usbphyc_phy *usbphyc_phy = phy_get_drvdata(phy); + struct stm32_usbphyc *usbphyc = usbphyc_phy->usbphyc; + + usbphyc_phy->active = false; + + return stm32_usbphyc_pll_disable(usbphyc); +} + +static int stm32_usbphyc_phy_power_on(struct phy *phy) +{ + struct stm32_usbphyc_phy *usbphyc_phy = phy_get_drvdata(phy); + + if (usbphyc_phy->vbus) + return regulator_enable(usbphyc_phy->vbus); + + return 0; +} + +static int stm32_usbphyc_phy_power_off(struct phy *phy) +{ + struct stm32_usbphyc_phy *usbphyc_phy = phy_get_drvdata(phy); + + if (usbphyc_phy->vbus) + return regulator_disable(usbphyc_phy->vbus); + + return 0; +} + +static const struct phy_ops stm32_usbphyc_phy_ops = { + .init = stm32_usbphyc_phy_init, + .exit = stm32_usbphyc_phy_exit, + .power_on = stm32_usbphyc_phy_power_on, + .power_off = stm32_usbphyc_phy_power_off, + .owner = THIS_MODULE, +}; + +static int stm32_usbphyc_clk48_prepare(struct clk_hw *hw) +{ + struct stm32_usbphyc *usbphyc = container_of(hw, struct stm32_usbphyc, clk48_hw); + + return stm32_usbphyc_pll_enable(usbphyc); +} + +static void stm32_usbphyc_clk48_unprepare(struct clk_hw *hw) +{ + struct stm32_usbphyc *usbphyc = container_of(hw, struct stm32_usbphyc, clk48_hw); + + stm32_usbphyc_pll_disable(usbphyc); +} + +static unsigned long stm32_usbphyc_clk48_recalc_rate(struct clk_hw *hw, unsigned long parent_rate) +{ + return 48000000; +} + +static const struct clk_ops usbphyc_clk48_ops = { + .prepare = stm32_usbphyc_clk48_prepare, + .unprepare = stm32_usbphyc_clk48_unprepare, + .recalc_rate = stm32_usbphyc_clk48_recalc_rate, +}; + +static void stm32_usbphyc_clk48_unregister(void *data) +{ + struct stm32_usbphyc *usbphyc = data; + + of_clk_del_provider(usbphyc->dev->of_node); + clk_hw_unregister(&usbphyc->clk48_hw); +} + +static int stm32_usbphyc_clk48_register(struct stm32_usbphyc *usbphyc) +{ + struct device_node *node = usbphyc->dev->of_node; + struct clk_init_data init = { }; + int ret = 0; + + init.name = "ck_usbo_48m"; + init.ops = &usbphyc_clk48_ops; + + usbphyc->clk48_hw.init = &init; + + ret = clk_hw_register(usbphyc->dev, &usbphyc->clk48_hw); + if (ret) + return ret; + + ret = of_clk_add_hw_provider(node, of_clk_hw_simple_get, &usbphyc->clk48_hw); + if (ret) + clk_hw_unregister(&usbphyc->clk48_hw); + + return ret; +} + +static void stm32_usbphyc_phy_tuning(struct stm32_usbphyc *usbphyc, + struct device_node *np, u32 index) +{ + struct stm32_usbphyc_phy *usbphyc_phy = usbphyc->phys[index]; + u32 reg = STM32_USBPHYC_TUNE(index); + u32 otpcomp, val; + int ret; + + /* Backup OTP compensation code */ + otpcomp = FIELD_GET(OTPCOMP, readl_relaxed(usbphyc->base + reg)); + + ret = of_property_read_u32(np, "st,current-boost-microamp", &val); + if (ret != -EINVAL) { + if (!ret && (val == BOOST_1000_UA || val == BOOST_2000_UA)) { + val = (val == BOOST_2000_UA) ? 1 : 0; + usbphyc_phy->tune |= INCURREN | FIELD_PREP(INCURRINT, val); + } else { + dev_warn(usbphyc->dev, "phy%d: invalid st,current-boost-microamp\n", index); + } + } + + if (!of_property_read_bool(np, "st,no-lsfs-fb-cap")) + usbphyc_phy->tune |= LFSCAPEN; + + if (of_property_read_bool(np, "st,decrease-hs-slew-rate")) + usbphyc_phy->tune |= HSDRVSLEW; + + ret = of_property_read_u32(np, "st,tune-hs-dc-level", &val); + if (ret != -EINVAL) { + if (!ret && val < DC_MAX) { + if (val == DC_MINUS_5_TO_7_MV) {/* Decreases HS driver DC level */ + usbphyc_phy->tune |= HSDRVDCCUR; + } else if (val > 0) { /* Increases HS driver DC level */ + val = (val == DC_PLUS_10_TO_14_MV) ? 1 : 0; + usbphyc_phy->tune |= HSDRVCURINCR | FIELD_PREP(HSDRVDCLEV, val); + } + } else { + dev_warn(usbphyc->dev, "phy%d: invalid st,tune-hs-dc-level\n", index); + } + } + + if (of_property_read_bool(np, "st,enable-fs-rftime-tuning")) + usbphyc_phy->tune |= FSDRVRFADJ; + + if (of_property_read_bool(np, "st,enable-hs-rftime-reduction")) + usbphyc_phy->tune |= HSDRVRFRED; + + ret = of_property_read_u32(np, "st,trim-hs-current", &val); + if (ret != -EINVAL) { + if (!ret && val < CUR_MAX) + usbphyc_phy->tune |= FIELD_PREP(HSDRVCHKITRM, val); + else + dev_warn(usbphyc->dev, "phy%d: invalid st,trim-hs-current\n", index); + } + + ret = of_property_read_u32(np, "st,trim-hs-impedance", &val); + if (ret != -EINVAL) { + if (!ret && val < IMP_MAX) + usbphyc_phy->tune |= FIELD_PREP(HSDRVCHKZTRM, val); + else + dev_warn(usbphyc->dev, "phy%d: invalid st,trim-hs-impedance\n", index); + } + + ret = of_property_read_u32(np, "st,tune-squelch-level", &val); + if (ret != -EINVAL) { + if (!ret && val < SQLCH_MAX) + usbphyc_phy->tune |= FIELD_PREP(SQLCHCTL, val); + else + dev_warn(usbphyc->dev, "phy%d: invalid st,tune-squelch\n", index); + } + + if (of_property_read_bool(np, "st,enable-hs-rx-gain-eq")) + usbphyc_phy->tune |= HDRXGNEQEN; + + ret = of_property_read_u32(np, "st,tune-hs-rx-offset", &val); + if (ret != -EINVAL) { + if (!ret && val < RX_OFFSET_MAX) + usbphyc_phy->tune |= FIELD_PREP(HSRXOFF, val); + else + dev_warn(usbphyc->dev, "phy%d: invalid st,tune-hs-rx-offset\n", index); + } + + if (of_property_read_bool(np, "st,no-hs-ftime-ctrl")) + usbphyc_phy->tune |= HSFALLPREEM; + + if (!of_property_read_bool(np, "st,no-lsfs-sc")) + usbphyc_phy->tune |= SHTCCTCTLPROT; + + if (of_property_read_bool(np, "st,enable-hs-tx-staggering")) + usbphyc_phy->tune |= STAGSEL; + + /* Restore OTP compensation code */ + usbphyc_phy->tune |= FIELD_PREP(OTPCOMP, otpcomp); + + /* + * By default, if no st,xxx tuning property is used, usbphyc_phy->tune is equal to + * STM32_USBPHYC_TUNE reset value (LFSCAPEN | SHTCCTCTLPROT | OTPCOMP). + */ + writel_relaxed(usbphyc_phy->tune, usbphyc->base + reg); +} + +static void stm32_usbphyc_switch_setup(struct stm32_usbphyc *usbphyc, + u32 utmi_switch) +{ + if (!utmi_switch) + stm32_usbphyc_clr_bits(usbphyc->base + STM32_USBPHYC_MISC, + SWITHOST); + else + stm32_usbphyc_set_bits(usbphyc->base + STM32_USBPHYC_MISC, + SWITHOST); + usbphyc->switch_setup = utmi_switch; +} + +static struct phy *stm32_usbphyc_of_xlate(struct device *dev, + struct of_phandle_args *args) +{ + struct stm32_usbphyc *usbphyc = dev_get_drvdata(dev); + struct stm32_usbphyc_phy *usbphyc_phy = NULL; + struct device_node *phynode = args->np; + int port = 0; + + for (port = 0; port < usbphyc->nphys; port++) { + if (phynode == usbphyc->phys[port]->phy->dev.of_node) { + usbphyc_phy = usbphyc->phys[port]; + break; + } + } + if (!usbphyc_phy) { + dev_err(dev, "failed to find phy\n"); + return ERR_PTR(-EINVAL); + } + + if (((usbphyc_phy->index == 0) && (args->args_count != 0)) || + ((usbphyc_phy->index == 1) && (args->args_count != 1))) { + dev_err(dev, "invalid number of cells for phy port%d\n", + usbphyc_phy->index); + return ERR_PTR(-EINVAL); + } + + /* Configure the UTMI switch for PHY port#2 */ + if (usbphyc_phy->index == 1) { + if (usbphyc->switch_setup < 0) { + stm32_usbphyc_switch_setup(usbphyc, args->args[0]); + } else { + if (args->args[0] != usbphyc->switch_setup) { + dev_err(dev, "phy port1 already used\n"); + return ERR_PTR(-EBUSY); + } + } + } + + return usbphyc_phy->phy; +} + +static int stm32_usbphyc_probe(struct platform_device *pdev) +{ + struct stm32_usbphyc *usbphyc; + struct device *dev = &pdev->dev; + struct device_node *child, *np = dev->of_node; + struct phy_provider *phy_provider; + u32 pllen, version; + int ret, port = 0; + + usbphyc = devm_kzalloc(dev, sizeof(*usbphyc), GFP_KERNEL); + if (!usbphyc) + return -ENOMEM; + usbphyc->dev = dev; + dev_set_drvdata(dev, usbphyc); + + usbphyc->base = devm_platform_ioremap_resource(pdev, 0); + if (IS_ERR(usbphyc->base)) + return PTR_ERR(usbphyc->base); + + usbphyc->clk = devm_clk_get(dev, NULL); + if (IS_ERR(usbphyc->clk)) + return dev_err_probe(dev, PTR_ERR(usbphyc->clk), "clk get_failed\n"); + + ret = clk_prepare_enable(usbphyc->clk); + if (ret) { + dev_err(dev, "clk enable failed: %d\n", ret); + return ret; + } + + usbphyc->rst = devm_reset_control_get(dev, NULL); + if (!IS_ERR(usbphyc->rst)) { + reset_control_assert(usbphyc->rst); + udelay(2); + reset_control_deassert(usbphyc->rst); + } else { + ret = PTR_ERR(usbphyc->rst); + if (ret == -EPROBE_DEFER) + goto clk_disable; + + stm32_usbphyc_clr_bits(usbphyc->base + STM32_USBPHYC_PLL, PLLEN); + } + + /* + * Wait for minimum width of powerdown pulse (ENABLE = Low): + * we have to ensure the PLL is disabled before phys initialization. + */ + if (readl_relaxed_poll_timeout(usbphyc->base + STM32_USBPHYC_PLL, + pllen, !(pllen & PLLEN), 5, 50)) { + dev_warn(usbphyc->dev, "PLL not reset\n"); + ret = -EPROBE_DEFER; + goto clk_disable; + } + + usbphyc->switch_setup = -EINVAL; + usbphyc->nphys = of_get_child_count(np); + usbphyc->phys = devm_kcalloc(dev, usbphyc->nphys, + sizeof(*usbphyc->phys), GFP_KERNEL); + if (!usbphyc->phys) { + ret = -ENOMEM; + goto clk_disable; + } + + usbphyc->vdda1v1 = devm_regulator_get(dev, "vdda1v1"); + if (IS_ERR(usbphyc->vdda1v1)) { + ret = dev_err_probe(dev, PTR_ERR(usbphyc->vdda1v1), + "failed to get vdda1v1 supply\n"); + goto clk_disable; + } + + usbphyc->vdda1v8 = devm_regulator_get(dev, "vdda1v8"); + if (IS_ERR(usbphyc->vdda1v8)) { + ret = dev_err_probe(dev, PTR_ERR(usbphyc->vdda1v8), + "failed to get vdda1v8 supply\n"); + goto clk_disable; + } + + for_each_child_of_node(np, child) { + struct stm32_usbphyc_phy *usbphyc_phy; + struct phy *phy; + u32 index; + + phy = devm_phy_create(dev, child, &stm32_usbphyc_phy_ops); + if (IS_ERR(phy)) { + ret = PTR_ERR(phy); + if (ret != -EPROBE_DEFER) + dev_err(dev, "failed to create phy%d: %d\n", + port, ret); + goto put_child; + } + + usbphyc_phy = devm_kzalloc(dev, sizeof(*usbphyc_phy), + GFP_KERNEL); + if (!usbphyc_phy) { + ret = -ENOMEM; + goto put_child; + } + + ret = of_property_read_u32(child, "reg", &index); + if (ret || index > usbphyc->nphys) { + dev_err(&phy->dev, "invalid reg property: %d\n", ret); + if (!ret) + ret = -EINVAL; + goto put_child; + } + + usbphyc->phys[port] = usbphyc_phy; + phy_set_bus_width(phy, 8); + phy_set_drvdata(phy, usbphyc_phy); + + usbphyc->phys[port]->phy = phy; + usbphyc->phys[port]->usbphyc = usbphyc; + usbphyc->phys[port]->index = index; + usbphyc->phys[port]->active = false; + + usbphyc->phys[port]->vbus = devm_regulator_get_optional(&phy->dev, "vbus"); + if (IS_ERR(usbphyc->phys[port]->vbus)) { + ret = PTR_ERR(usbphyc->phys[port]->vbus); + if (ret == -EPROBE_DEFER) + goto put_child; + usbphyc->phys[port]->vbus = NULL; + } + + /* Configure phy tuning */ + stm32_usbphyc_phy_tuning(usbphyc, child, index); + + port++; + } + + phy_provider = devm_of_phy_provider_register(dev, + stm32_usbphyc_of_xlate); + if (IS_ERR(phy_provider)) { + ret = PTR_ERR(phy_provider); + dev_err(dev, "failed to register phy provider: %d\n", ret); + goto clk_disable; + } + + ret = stm32_usbphyc_clk48_register(usbphyc); + if (ret) { + dev_err(dev, "failed to register ck_usbo_48m clock: %d\n", ret); + goto clk_disable; + } + + version = readl_relaxed(usbphyc->base + STM32_USBPHYC_VERSION); + dev_info(dev, "registered rev:%lu.%lu\n", + FIELD_GET(MAJREV, version), FIELD_GET(MINREV, version)); + + return 0; + +put_child: + of_node_put(child); +clk_disable: + clk_disable_unprepare(usbphyc->clk); + + return ret; +} + +static void stm32_usbphyc_remove(struct platform_device *pdev) +{ + struct stm32_usbphyc *usbphyc = dev_get_drvdata(&pdev->dev); + int port; + + /* Ensure PHYs are not active, to allow PLL disabling */ + for (port = 0; port < usbphyc->nphys; port++) + if (usbphyc->phys[port]->active) + stm32_usbphyc_phy_exit(usbphyc->phys[port]->phy); + + stm32_usbphyc_clk48_unregister(usbphyc); + + clk_disable_unprepare(usbphyc->clk); +} + +static int __maybe_unused stm32_usbphyc_resume(struct device *dev) +{ + struct stm32_usbphyc *usbphyc = dev_get_drvdata(dev); + struct stm32_usbphyc_phy *usbphyc_phy; + int port; + + if (usbphyc->switch_setup >= 0) + stm32_usbphyc_switch_setup(usbphyc, usbphyc->switch_setup); + + for (port = 0; port < usbphyc->nphys; port++) { + usbphyc_phy = usbphyc->phys[port]; + writel_relaxed(usbphyc_phy->tune, usbphyc->base + STM32_USBPHYC_TUNE(port)); + } + + return 0; +} + +static SIMPLE_DEV_PM_OPS(stm32_usbphyc_pm_ops, NULL, stm32_usbphyc_resume); + +static const struct of_device_id stm32_usbphyc_of_match[] = { + { .compatible = "st,stm32mp1-usbphyc", }, + { }, +}; +MODULE_DEVICE_TABLE(of, stm32_usbphyc_of_match); + +static struct platform_driver stm32_usbphyc_driver = { + .probe = stm32_usbphyc_probe, + .remove_new = stm32_usbphyc_remove, + .driver = { + .of_match_table = stm32_usbphyc_of_match, + .name = "stm32-usbphyc", + .pm = &stm32_usbphyc_pm_ops, + } +}; +module_platform_driver(stm32_usbphyc_driver); + +MODULE_DESCRIPTION("STMicroelectronics STM32 USBPHYC driver"); +MODULE_AUTHOR("Amelie Delaunay "); +MODULE_LICENSE("GPL v2"); -- cgit v1.2.3