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https://github.com/AsahiLinux/u-boot
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429033659d
Obviously the mask for the rx and tx select field cannot be right, as it would overlap in one and exceed the 32-bit register in the other case. From looking at the neighbouring bits it looks like the mask should be really 4 bits wide instead of 8. Pointed out by a GCC 6.2 (default) warning. Signed-off-by: Andre Przywara <andre.przywara@arm.com> Reviewed-by: Stefan Roese <sr@denx.de> Reviewed-by: Stefan Roese <sr@denx.de>
275 lines
8.8 KiB
C
275 lines
8.8 KiB
C
/*
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* Copyright (C) 2015-2016 Marvell International Ltd.
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*
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* SPDX-License-Identifier: GPL-2.0+
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*/
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#ifndef _COMPHY_A3700_H_
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#define _COMPHY_A3700_H_
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#include "comphy.h"
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#include "comphy_hpipe.h"
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#define MVEBU_REG(offs) ((uintptr_t)MVEBU_REGISTER(offs))
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#define DEFAULT_REFCLK_MHZ 25
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#define PLL_SET_DELAY_US 600
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#define PLL_LOCK_TIMEOUT 1000
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#define POLL_16B_REG 1
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#define POLL_32B_REG 0
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/*
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* COMPHY SB definitions
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*/
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#define COMPHY_SEL_ADDR MVEBU_REG(0x0183FC)
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#define rf_compy_select(lane) (0x1 << (((lane) == 1) ? 4 : 0))
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#define COMPHY_PHY_CFG1_ADDR(lane) MVEBU_REG(0x018300 + (lane) * 0x28)
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#define rb_pin_pu_iveref BIT(1)
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#define rb_pin_reset_core BIT(11)
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#define rb_pin_reset_comphy BIT(12)
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#define rb_pin_pu_pll BIT(16)
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#define rb_pin_pu_rx BIT(17)
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#define rb_pin_pu_tx BIT(18)
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#define rb_pin_tx_idle BIT(19)
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#define rf_gen_rx_sel_shift 22
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#define rf_gen_rx_select (0x0F << rf_gen_rx_sel_shift)
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#define rf_gen_tx_sel_shift 26
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#define rf_gen_tx_select (0x0F << rf_gen_tx_sel_shift)
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#define rb_phy_rx_init BIT(30)
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#define COMPHY_PHY_STAT1_ADDR(lane) MVEBU_REG(0x018318 + (lane) * 0x28)
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#define rb_rx_init_done BIT(0)
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#define rb_pll_ready_rx BIT(2)
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#define rb_pll_ready_tx BIT(3)
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/*
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* PCIe/USB/SGMII definitions
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*/
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#define PCIE_BASE MVEBU_REG(0x070000)
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#define PCIETOP_BASE MVEBU_REG(0x080000)
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#define PCIE_RAMBASE MVEBU_REG(0x08C000)
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#define PCIEPHY_BASE MVEBU_REG(0x01F000)
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#define PCIEPHY_SHFT 2
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#define USB32_BASE MVEBU_REG(0x050000) /* usb3 device */
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#define USB32H_BASE MVEBU_REG(0x058000) /* usb3 host */
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#define USB3PHY_BASE MVEBU_REG(0x05C000)
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#define USB2PHY_BASE MVEBU_REG(0x05D000)
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#define USB2PHY2_BASE MVEBU_REG(0x05F000)
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#define USB32_CTRL_BASE MVEBU_REG(0x05D800)
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#define USB3PHY_SHFT 2
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#define SGMIIPHY_BASE(l) (l == 1 ? USB3PHY_BASE : PCIEPHY_BASE)
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#define SGMIIPHY_ADDR(l, a) (((a & 0x00007FF) * 2) | SGMIIPHY_BASE(l))
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#define phy_read16(l, a) read16((void __iomem *)SGMIIPHY_ADDR(l, a))
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#define phy_write16(l, a, data, mask) \
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reg_set16((void __iomem *)SGMIIPHY_ADDR(l, a), data, mask)
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/* units */
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#define PCIE 1
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#define USB3 2
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#define PHY_BASE(unit) ((unit == PCIE) ? PCIEPHY_BASE : USB3PHY_BASE)
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#define PHY_SHFT(unit) ((unit == PCIE) ? PCIEPHY_SHFT : USB3PHY_SHFT)
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/* bit definition for USB32_CTRL_BASE (USB32 Control Mode) */
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#define usb32_ctrl_id_mode BIT(0)
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#define usb32_ctrl_soft_id BIT(1)
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#define usb32_ctrl_int_mode BIT(4)
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#define PHY_PWR_PLL_CTRL_ADDR 0x01 /* for phy_read16 and phy_write16 */
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#define PWR_PLL_CTRL_ADDR(unit) \
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(PHY_PWR_PLL_CTRL_ADDR * PHY_SHFT(unit) + PHY_BASE(unit))
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#define rf_phy_mode_shift 5
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#define rf_phy_mode_mask (0x7 << rf_phy_mode_shift)
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#define rf_ref_freq_sel_shift 0
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#define rf_ref_freq_sel_mask (0x1F << rf_ref_freq_sel_shift)
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#define PHY_MODE_SGMII 0x4
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/* for phy_read16 and phy_write16 */
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#define PHY_REG_KVCO_CAL_CTRL_ADDR 0x02
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#define KVCO_CAL_CTRL_ADDR(unit) \
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(PHY_REG_KVCO_CAL_CTRL_ADDR * PHY_SHFT(unit) + PHY_BASE(unit))
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#define rb_use_max_pll_rate BIT(12)
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#define rb_force_calibration_done BIT(9)
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/* for phy_read16 and phy_write16 */
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#define PHY_DIG_LB_EN_ADDR 0x23
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#define DIG_LB_EN_ADDR(unit) \
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(PHY_DIG_LB_EN_ADDR * PHY_SHFT(unit) + PHY_BASE(unit))
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#define rf_data_width_shift 10
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#define rf_data_width_mask (0x3 << rf_data_width_shift)
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/* for phy_read16 and phy_write16 */
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#define PHY_SYNC_PATTERN_ADDR 0x24
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#define SYNC_PATTERN_ADDR(unit) \
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(PHY_SYNC_PATTERN_ADDR * PHY_SHFT(unit) + PHY_BASE(unit))
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#define phy_txd_inv BIT(10)
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#define phy_rxd_inv BIT(11)
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/* for phy_read16 and phy_write16 */
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#define PHY_REG_UNIT_CTRL_ADDR 0x48
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#define UNIT_CTRL_ADDR(unit) \
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(PHY_REG_UNIT_CTRL_ADDR * PHY_SHFT(unit) + PHY_BASE(unit))
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#define rb_idle_sync_en BIT(12)
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/* for phy_read16 and phy_write16 */
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#define PHY_REG_GEN2_SETTINGS_2 0x3e
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#define GEN2_SETTING_2_ADDR(unit) \
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(PHY_REG_GEN2_SETTINGS_2 * PHY_SHFT(unit) + PHY_BASE(unit))
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#define g2_tx_ssc_amp BIT(14)
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/* for phy_read16 and phy_write16 */
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#define PHY_REG_GEN2_SETTINGS_3 0x3f
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#define GEN2_SETTING_3_ADDR(unit) \
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(PHY_REG_GEN2_SETTINGS_3 * PHY_SHFT(unit) + PHY_BASE(unit))
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/* for phy_read16 and phy_write16 */
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#define PHY_MISC_REG0_ADDR 0x4f
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#define MISC_REG0_ADDR(unit) \
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(PHY_MISC_REG0_ADDR * PHY_SHFT(unit) + PHY_BASE(unit))
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#define rb_clk100m_125m_en BIT(4)
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#define rb_clk500m_en BIT(7)
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#define rb_ref_clk_sel BIT(10)
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/* for phy_read16 and phy_write16 */
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#define PHY_REG_IFACE_REF_CLK_CTRL_ADDR 0x51
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#define UNIT_IFACE_REF_CLK_CTRL_ADDR(unit) \
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(PHY_REG_IFACE_REF_CLK_CTRL_ADDR * PHY_SHFT(unit) + PHY_BASE(unit))
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#define rb_ref1m_gen_div_force BIT(8)
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#define rf_ref1m_gen_div_value_shift 0
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#define rf_ref1m_gen_div_value_mask (0xFF << rf_ref1m_gen_div_value_shift)
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/* for phy_read16 and phy_write16 */
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#define PHY_REG_ERR_CNT_CONST_CTRL_ADDR 0x6A
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#define UNIT_ERR_CNT_CONST_CTRL_ADDR(unit) \
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(PHY_REG_ERR_CNT_CONST_CTRL_ADDR * PHY_SHFT(unit) + PHY_BASE(unit))
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#define rb_fast_dfe_enable BIT(13)
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#define MISC_REG1_ADDR(u) (0x73 * PHY_SHFT(u) + PHY_BASE(u))
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#define bf_sel_bits_pcie_force BIT(15)
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#define LANE_CFG0_ADDR(u) (0x180 * PHY_SHFT(u) + PHY_BASE(u))
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#define bf_use_max_pll_rate BIT(9)
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#define LANE_CFG1_ADDR(u) (0x181 * PHY_SHFT(u) + PHY_BASE(u))
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#define bf_use_max_pll_rate BIT(9)
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/* 0x5c310 = 0x93 (set BIT7) */
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#define LANE_CFG4_ADDR(u) (0x188 * PHY_SHFT(u) + PHY_BASE(u))
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#define bf_spread_spectrum_clock_en BIT(7)
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#define LANE_STAT1_ADDR(u) (0x183 * PHY_SHFT(u) + PHY_BASE(u))
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#define rb_txdclk_pclk_en BIT(0)
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#define GLOB_PHY_CTRL0_ADDR(u) (0x1c1 * PHY_SHFT(u) + PHY_BASE(u))
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#define bf_soft_rst BIT(0)
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#define bf_mode_refdiv 0x30
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#define rb_mode_core_clk_freq_sel BIT(9)
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#define rb_mode_pipe_width_32 BIT(3)
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#define TEST_MODE_CTRL_ADDR(u) (0x1c2 * PHY_SHFT(u) + PHY_BASE(u))
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#define rb_mode_margin_override BIT(2)
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#define GLOB_CLK_SRC_LO_ADDR(u) (0x1c3 * PHY_SHFT(u) + PHY_BASE(u))
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#define bf_cfg_sel_20b BIT(15)
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#define PWR_MGM_TIM1_ADDR(u) (0x1d0 * PHY_SHFT(u) + PHY_BASE(u))
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#define PHY_REF_CLK_ADDR (0x4814 + PCIE_BASE)
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#define USB3_CTRPUL_VAL_REG (0x20 + USB32_BASE)
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#define USB3H_CTRPUL_VAL_REG (0x3454 + USB32H_BASE)
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#define rb_usb3_ctr_100ns 0xff000000
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#define USB2_OTG_PHY_CTRL_ADDR (0x820 + USB2PHY_BASE)
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#define rb_usb2phy_suspm BIT(14)
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#define rb_usb2phy_pu BIT(0)
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#define USB2_PHY_OTG_CTRL_ADDR (0x34 + USB2PHY_BASE)
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#define rb_pu_otg BIT(4)
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#define USB2_PHY_CHRGR_DET_ADDR (0x38 + USB2PHY_BASE)
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#define rb_cdp_en BIT(2)
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#define rb_dcp_en BIT(3)
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#define rb_pd_en BIT(4)
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#define rb_pu_chrg_dtc BIT(5)
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#define rb_cdp_dm_auto BIT(7)
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#define rb_enswitch_dp BIT(12)
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#define rb_enswitch_dm BIT(13)
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#define USB2_CAL_CTRL_ADDR (0x8 + USB2PHY_BASE)
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#define rb_usb2phy_pllcal_done BIT(31)
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#define rb_usb2phy_impcal_done BIT(23)
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#define USB2_PLL_CTRL0_ADDR (0x0 + USB2PHY_BASE)
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#define rb_usb2phy_pll_ready BIT(31)
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#define USB2_RX_CHAN_CTRL1_ADDR (0x18 + USB2PHY_BASE)
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#define rb_usb2phy_sqcal_done BIT(31)
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#define USB2_PHY2_CTRL_ADDR (0x804 + USB2PHY2_BASE)
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#define rb_usb2phy2_suspm BIT(7)
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#define rb_usb2phy2_pu BIT(0)
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#define USB2_PHY2_CAL_CTRL_ADDR (0x8 + USB2PHY2_BASE)
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#define USB2_PHY2_PLL_CTRL0_ADDR (0x0 + USB2PHY2_BASE)
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#define USB2_PHY2_RX_CHAN_CTRL1_ADDR (0x18 + USB2PHY2_BASE)
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#define USB2_PHY_BASE(usb32) (usb32 == 0 ? USB2PHY2_BASE : USB2PHY_BASE)
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#define USB2_PHY_CTRL_ADDR(usb32) \
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(usb32 == 0 ? USB2_PHY2_CTRL_ADDR : USB2_OTG_PHY_CTRL_ADDR)
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#define RB_USB2PHY_SUSPM(usb32) \
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(usb32 == 0 ? rb_usb2phy2_suspm : rb_usb2phy_suspm)
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#define RB_USB2PHY_PU(usb32) \
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(usb32 == 0 ? rb_usb2phy2_pu : rb_usb2phy_pu)
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#define USB2_PHY_CAL_CTRL_ADDR(usb32) \
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(usb32 == 0 ? USB2_PHY2_CAL_CTRL_ADDR : USB2_CAL_CTRL_ADDR)
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#define USB2_PHY_RX_CHAN_CTRL1_ADDR(usb32) \
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(usb32 == 0 ? USB2_PHY2_RX_CHAN_CTRL1_ADDR : USB2_RX_CHAN_CTRL1_ADDR)
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#define USB2_PHY_PLL_CTRL0_ADDR(usb32) \
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(usb32 == 0 ? USB2_PHY2_PLL_CTRL0_ADDR : USB2_PLL_CTRL0_ADDR)
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/*
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* SATA definitions
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*/
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#define AHCI_BASE MVEBU_REG(0xE0000)
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#define rh_vsreg_addr (AHCI_BASE + 0x178)
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#define rh_vsreg_data (AHCI_BASE + 0x17C)
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#define rh_vs0_a (AHCI_BASE + 0xA0)
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#define rh_vs0_d (AHCI_BASE + 0xA4)
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#define vphy_sync_pattern_reg 0x224
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#define bs_txd_inv BIT(10)
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#define bs_rxd_inv BIT(11)
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#define vphy_loopback_reg0 0x223
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#define bs_phyintf_40bit 0x0C00
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#define bs_pll_ready_tx 0x10
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#define vphy_power_reg0 0x201
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#define vphy_calctl_reg 0x202
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#define bs_max_pll_rate BIT(12)
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#define vphy_reserve_reg 0x0e
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#define bs_phyctrl_frm_pin BIT(13)
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#define vsata_ctrl_reg 0x00
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#define bs_phy_pu_pll BIT(6)
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/*
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* SDIO/eMMC definitions
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*/
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#define SDIO_BASE MVEBU_REG(0xD8000)
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#define SDIO_HOST_CTRL1_ADDR (SDIO_BASE + 0x28)
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#define SDIO_SDHC_FIFO_ADDR (SDIO_BASE + 0x12C)
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#define SDIO_CAP_12_ADDR (SDIO_BASE + 0x40)
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#define SDIO_ENDIAN_ADDR (SDIO_BASE + 0x1A4)
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#define SDIO_PHY_TIMING_ADDR (SDIO_BASE + 0x170)
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#define SDIO_PHY_PAD_CTRL0_ADDR (SDIO_BASE + 0x178)
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#define SDIO_DLL_RST_ADDR (SDIO_BASE + 0x148)
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#endif /* _COMPHY_A3700_H_ */
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