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9c653aad16
Some platforms like AM437x have different EVMs with different phy addresses, so this patch adds support for passing phy address via cpsw plaform data. Also renamed phy_id to phy_addr so better understanding of the code. Reviewed-by: Felipe Balbi <balbi@ti.com> Signed-off-by: Mugunthan V N <mugunthanvnm@ti.com> [trini: Update BuR am335x_igep0033 pcm051_rev3 pcm051_rev1 cm_t335 pengwyn boards] Signed-off-by: Tom Rini <trini@ti.com>
207 lines
5 KiB
C
207 lines
5 KiB
C
/*
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* board.c
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*
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* Copyright (C) 2013 Lothar Felten <lothar.felten@gmail.com>
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*
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* SPDX-License-Identifier: GPL-2.0+
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*/
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#include <common.h>
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#include <asm/arch/cpu.h>
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#include <asm/arch/hardware.h>
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#include <asm/arch/ddr_defs.h>
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#include <asm/arch/clock.h>
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#include <asm/arch/sys_proto.h>
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#include <i2c.h>
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#include <phy.h>
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#include <cpsw.h>
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#include "board.h"
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DECLARE_GLOBAL_DATA_PTR;
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static struct ctrl_dev *cdev = (struct ctrl_dev *)CTRL_DEVICE_BASE;
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#if defined(CONFIG_SPL_BUILD)
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/* DDR3 RAM timings */
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static const struct ddr_data ddr3_data = {
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.datardsratio0 = MT41K128MJT187E_RD_DQS,
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.datawdsratio0 = MT41K128MJT187E_WR_DQS,
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.datafwsratio0 = MT41K128MJT187E_PHY_FIFO_WE,
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.datawrsratio0 = MT41K128MJT187E_PHY_WR_DATA,
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};
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static const struct cmd_control ddr3_cmd_ctrl_data = {
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.cmd0csratio = MT41K128MJT187E_RATIO,
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.cmd0iclkout = MT41K128MJT187E_INVERT_CLKOUT,
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.cmd1csratio = MT41K128MJT187E_RATIO,
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.cmd1iclkout = MT41K128MJT187E_INVERT_CLKOUT,
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.cmd2csratio = MT41K128MJT187E_RATIO,
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.cmd2iclkout = MT41K128MJT187E_INVERT_CLKOUT,
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};
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static struct emif_regs ddr3_emif_reg_data = {
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.sdram_config = MT41K128MJT187E_EMIF_SDCFG,
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.ref_ctrl = MT41K128MJT187E_EMIF_SDREF,
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.sdram_tim1 = MT41K128MJT187E_EMIF_TIM1,
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.sdram_tim2 = MT41K128MJT187E_EMIF_TIM2,
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.sdram_tim3 = MT41K128MJT187E_EMIF_TIM3,
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.zq_config = MT41K128MJT187E_ZQ_CFG,
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.emif_ddr_phy_ctlr_1 = MT41K128MJT187E_EMIF_READ_LATENCY |
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PHY_EN_DYN_PWRDN,
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};
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const struct ctrl_ioregs ddr3_ioregs = {
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.cm0ioctl = MT41K128MJT187E_IOCTRL_VALUE,
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.cm1ioctl = MT41K128MJT187E_IOCTRL_VALUE,
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.cm2ioctl = MT41K128MJT187E_IOCTRL_VALUE,
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.dt0ioctl = MT41K128MJT187E_IOCTRL_VALUE,
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.dt1ioctl = MT41K128MJT187E_IOCTRL_VALUE,
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};
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#ifdef CONFIG_SPL_OS_BOOT
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int spl_start_uboot(void)
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{
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/* break into full u-boot on 'c' */
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return serial_tstc() && serial_getc() == 'c';
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}
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#endif
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#define OSC (V_OSCK/1000000)
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const struct dpll_params dpll_ddr_266 = {
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266, OSC-1, 1, -1, -1, -1, -1};
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const struct dpll_params dpll_ddr_303 = {
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303, OSC-1, 1, -1, -1, -1, -1};
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const struct dpll_params dpll_ddr_400 = {
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400, OSC-1, 1, -1, -1, -1, -1};
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void am33xx_spl_board_init(void)
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{
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/*
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* The pengwyn board uses the TPS650250 PMIC without I2C
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* interface and will output the following fixed voltages:
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* DCDC1=3V3 (IO) DCDC2=1V5 (DDR) DCDC3=1V26 (Vmpu)
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* VLDO1=1V8 (IO) VLDO2=1V8(IO)
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* Vcore=1V1 is fixed, generated by TPS62231
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*/
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/* Get the frequency */
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dpll_mpu_opp100.m = am335x_get_efuse_mpu_max_freq(cdev);
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/* Set CORE Frequencies to OPP100 */
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do_setup_dpll(&dpll_core_regs, &dpll_core_opp100);
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/* 720MHz cpu, this might change on newer board revisions */
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dpll_mpu_opp100.m = MPUPLL_M_720;
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do_setup_dpll(&dpll_mpu_regs, &dpll_mpu_opp100);
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}
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const struct dpll_params *get_dpll_ddr_params(void)
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{
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/* future configs can return other clock settings */
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return &dpll_ddr_303;
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}
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void set_uart_mux_conf(void)
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{
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enable_uart0_pin_mux();
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}
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void set_mux_conf_regs(void)
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{
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enable_board_pin_mux();
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}
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void sdram_init(void)
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{
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config_ddr(303, &ddr3_ioregs, &ddr3_data,
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&ddr3_cmd_ctrl_data, &ddr3_emif_reg_data, 0);
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}
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#endif /* if CONFIG_SPL_BUILD */
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/*
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* Basic board specific setup. Pinmux has been handled already.
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*/
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int board_init(void)
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{
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i2c_init(CONFIG_SYS_I2C_SPEED, CONFIG_SYS_I2C_SLAVE);
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gd->bd->bi_boot_params = CONFIG_SYS_SDRAM_BASE + 0x100;
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gpmc_init();
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return 0;
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}
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#ifdef CONFIG_DRIVER_TI_CPSW
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static void cpsw_control(int enabled)
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{
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/* VTP can be added here */
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return;
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}
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static struct cpsw_slave_data cpsw_slaves[] = {
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{
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.slave_reg_ofs = 0x208,
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.sliver_reg_ofs = 0xd80,
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.phy_addr = 0,
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.phy_if = PHY_INTERFACE_MODE_MII,
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},
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{
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.slave_reg_ofs = 0x308,
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.sliver_reg_ofs = 0xdc0,
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.phy_addr = 1,
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.phy_if = PHY_INTERFACE_MODE_MII,
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},
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};
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static struct cpsw_platform_data cpsw_data = {
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.mdio_base = CPSW_MDIO_BASE,
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.cpsw_base = CPSW_BASE,
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.mdio_div = 0xff,
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.channels = 8,
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.cpdma_reg_ofs = 0x800,
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.slaves = 1,
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.slave_data = cpsw_slaves,
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.ale_reg_ofs = 0xd00,
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.ale_entries = 1024,
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.host_port_reg_ofs = 0x108,
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.hw_stats_reg_ofs = 0x900,
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.bd_ram_ofs = 0x2000,
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.mac_control = (1 << 5),
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.control = cpsw_control,
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.host_port_num = 0,
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.version = CPSW_CTRL_VERSION_2,
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};
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int board_eth_init(bd_t *bis)
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{
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int rv, n = 0;
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uint8_t mac_addr[6];
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uint32_t mac_hi, mac_lo;
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if (!eth_getenv_enetaddr("ethaddr", mac_addr)) {
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printf("<ethaddr> not set. Reading from E-fuse\n");
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/* try reading mac address from efuse */
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mac_lo = readl(&cdev->macid0l);
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mac_hi = readl(&cdev->macid0h);
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mac_addr[0] = mac_hi & 0xFF;
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mac_addr[1] = (mac_hi & 0xFF00) >> 8;
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mac_addr[2] = (mac_hi & 0xFF0000) >> 16;
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mac_addr[3] = (mac_hi & 0xFF000000) >> 24;
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mac_addr[4] = mac_lo & 0xFF;
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mac_addr[5] = (mac_lo & 0xFF00) >> 8;
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if (is_valid_ether_addr(mac_addr))
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eth_setenv_enetaddr("ethaddr", mac_addr);
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else
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return n;
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}
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writel(MII_MODE_ENABLE, &cdev->miisel);
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rv = cpsw_register(&cpsw_data);
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if (rv < 0)
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printf("Error %d registering CPSW switch\n", rv);
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else
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n += rv;
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return n;
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}
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#endif /* if CONFIG_DRIVER_TI_CPSW */
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