1e363426eSPeter Korsgaard /* 2e363426eSPeter Korsgaard * board.c 3e363426eSPeter Korsgaard * 4e363426eSPeter Korsgaard * Board functions for TI AM335X based boards 5e363426eSPeter Korsgaard * 6e363426eSPeter Korsgaard * Copyright (C) 2011, Texas Instruments, Incorporated - http://www.ti.com/ 7e363426eSPeter Korsgaard * 8e363426eSPeter Korsgaard * This program is free software; you can redistribute it and/or 9e363426eSPeter Korsgaard * modify it under the terms of the GNU General Public License as 10e363426eSPeter Korsgaard * published by the Free Software Foundation; either version 2 of 11e363426eSPeter Korsgaard * the License, or (at your option) any later version. 12e363426eSPeter Korsgaard * 13e363426eSPeter Korsgaard * This program is distributed in the hope that it will be useful, 14e363426eSPeter Korsgaard * but WITHOUT ANY WARRANTY; without even the implied warranty of 15e363426eSPeter Korsgaard * MERCHANTABILITY or FITNESS FOR A PARTICULAR /PURPOSE. See the 16e363426eSPeter Korsgaard * GNU General Public License for more details. 17e363426eSPeter Korsgaard */ 18e363426eSPeter Korsgaard 19e363426eSPeter Korsgaard #include <common.h> 20e363426eSPeter Korsgaard #include <errno.h> 21e363426eSPeter Korsgaard #include <spl.h> 22e363426eSPeter Korsgaard #include <asm/arch/cpu.h> 23e363426eSPeter Korsgaard #include <asm/arch/hardware.h> 24e363426eSPeter Korsgaard #include <asm/arch/omap.h> 25e363426eSPeter Korsgaard #include <asm/arch/ddr_defs.h> 26e363426eSPeter Korsgaard #include <asm/arch/clock.h> 27e363426eSPeter Korsgaard #include <asm/arch/gpio.h> 28e363426eSPeter Korsgaard #include <asm/arch/mmc_host_def.h> 29e363426eSPeter Korsgaard #include <asm/arch/sys_proto.h> 30e363426eSPeter Korsgaard #include <asm/io.h> 31e363426eSPeter Korsgaard #include <asm/emif.h> 32e363426eSPeter Korsgaard #include <asm/gpio.h> 33e363426eSPeter Korsgaard #include <i2c.h> 34e363426eSPeter Korsgaard #include <miiphy.h> 35e363426eSPeter Korsgaard #include <cpsw.h> 36e363426eSPeter Korsgaard #include "board.h" 37e363426eSPeter Korsgaard 38e363426eSPeter Korsgaard DECLARE_GLOBAL_DATA_PTR; 39e363426eSPeter Korsgaard 40e363426eSPeter Korsgaard static struct wd_timer *wdtimer = (struct wd_timer *)WDT_BASE; 41e363426eSPeter Korsgaard #ifdef CONFIG_SPL_BUILD 42e363426eSPeter Korsgaard static struct uart_sys *uart_base = (struct uart_sys *)DEFAULT_UART_BASE; 43e363426eSPeter Korsgaard #endif 44e363426eSPeter Korsgaard 45e363426eSPeter Korsgaard /* MII mode defines */ 46e363426eSPeter Korsgaard #define MII_MODE_ENABLE 0x0 47cfd4ff6fSYegor Yefremov #define RGMII_MODE_ENABLE 0x3A 48e363426eSPeter Korsgaard 49e363426eSPeter Korsgaard /* GPIO that controls power to DDR on EVM-SK */ 50e363426eSPeter Korsgaard #define GPIO_DDR_VTT_EN 7 51e363426eSPeter Korsgaard 52e363426eSPeter Korsgaard static struct ctrl_dev *cdev = (struct ctrl_dev *)CTRL_DEVICE_BASE; 53e363426eSPeter Korsgaard 54e363426eSPeter Korsgaard static struct am335x_baseboard_id __attribute__((section (".data"))) header; 55e363426eSPeter Korsgaard 56e363426eSPeter Korsgaard static inline int board_is_bone(void) 57e363426eSPeter Korsgaard { 58e363426eSPeter Korsgaard return !strncmp(header.name, "A335BONE", HDR_NAME_LEN); 59e363426eSPeter Korsgaard } 60e363426eSPeter Korsgaard 61e363426eSPeter Korsgaard static inline int board_is_bone_lt(void) 62e363426eSPeter Korsgaard { 63e363426eSPeter Korsgaard return !strncmp(header.name, "A335BNLT", HDR_NAME_LEN); 64e363426eSPeter Korsgaard } 65e363426eSPeter Korsgaard 66e363426eSPeter Korsgaard static inline int board_is_evm_sk(void) 67e363426eSPeter Korsgaard { 68e363426eSPeter Korsgaard return !strncmp("A335X_SK", header.name, HDR_NAME_LEN); 69e363426eSPeter Korsgaard } 70e363426eSPeter Korsgaard 71a956bdcbSMatthias Fuchs static inline int board_is_idk(void) 72a956bdcbSMatthias Fuchs { 73a956bdcbSMatthias Fuchs return !strncmp(header.config, "SKU#02", 6); 74a956bdcbSMatthias Fuchs } 75a956bdcbSMatthias Fuchs 7698bc1228STom Rini static int __maybe_unused board_is_gp_evm(void) 771634e969STom Rini { 781634e969STom Rini return !strncmp("A33515BB", header.name, 8); 791634e969STom Rini } 801634e969STom Rini 8113526f71SJeff Lance int board_is_evm_15_or_later(void) 8213526f71SJeff Lance { 8313526f71SJeff Lance return (!strncmp("A33515BB", header.name, 8) && 8413526f71SJeff Lance strncmp("1.5", header.version, 3) <= 0); 8513526f71SJeff Lance } 8613526f71SJeff Lance 87e363426eSPeter Korsgaard /* 88e363426eSPeter Korsgaard * Read header information from EEPROM into global structure. 89e363426eSPeter Korsgaard */ 90e363426eSPeter Korsgaard static int read_eeprom(void) 91e363426eSPeter Korsgaard { 92e363426eSPeter Korsgaard /* Check if baseboard eeprom is available */ 93e363426eSPeter Korsgaard if (i2c_probe(CONFIG_SYS_I2C_EEPROM_ADDR)) { 94e363426eSPeter Korsgaard puts("Could not probe the EEPROM; something fundamentally " 95e363426eSPeter Korsgaard "wrong on the I2C bus.\n"); 96e363426eSPeter Korsgaard return -ENODEV; 97e363426eSPeter Korsgaard } 98e363426eSPeter Korsgaard 99e363426eSPeter Korsgaard /* read the eeprom using i2c */ 100e363426eSPeter Korsgaard if (i2c_read(CONFIG_SYS_I2C_EEPROM_ADDR, 0, 2, (uchar *)&header, 101e363426eSPeter Korsgaard sizeof(header))) { 102e363426eSPeter Korsgaard puts("Could not read the EEPROM; something fundamentally" 103e363426eSPeter Korsgaard " wrong on the I2C bus.\n"); 104e363426eSPeter Korsgaard return -EIO; 105e363426eSPeter Korsgaard } 106e363426eSPeter Korsgaard 107e363426eSPeter Korsgaard if (header.magic != 0xEE3355AA) { 108e363426eSPeter Korsgaard /* 109e363426eSPeter Korsgaard * read the eeprom using i2c again, 110e363426eSPeter Korsgaard * but use only a 1 byte address 111e363426eSPeter Korsgaard */ 112e363426eSPeter Korsgaard if (i2c_read(CONFIG_SYS_I2C_EEPROM_ADDR, 0, 1, 113e363426eSPeter Korsgaard (uchar *)&header, sizeof(header))) { 114e363426eSPeter Korsgaard puts("Could not read the EEPROM; something " 115e363426eSPeter Korsgaard "fundamentally wrong on the I2C bus.\n"); 116e363426eSPeter Korsgaard return -EIO; 117e363426eSPeter Korsgaard } 118e363426eSPeter Korsgaard 119e363426eSPeter Korsgaard if (header.magic != 0xEE3355AA) { 120e363426eSPeter Korsgaard printf("Incorrect magic number (0x%x) in EEPROM\n", 121e363426eSPeter Korsgaard header.magic); 122e363426eSPeter Korsgaard return -EINVAL; 123e363426eSPeter Korsgaard } 124e363426eSPeter Korsgaard } 125e363426eSPeter Korsgaard 126e363426eSPeter Korsgaard return 0; 127e363426eSPeter Korsgaard } 128e363426eSPeter Korsgaard 129e363426eSPeter Korsgaard /* UART Defines */ 130e363426eSPeter Korsgaard #ifdef CONFIG_SPL_BUILD 131e363426eSPeter Korsgaard #define UART_RESET (0x1 << 1) 132e363426eSPeter Korsgaard #define UART_CLK_RUNNING_MASK 0x1 133e363426eSPeter Korsgaard #define UART_SMART_IDLE_EN (0x1 << 0x3) 134e363426eSPeter Korsgaard 135e363426eSPeter Korsgaard static void rtc32k_enable(void) 136e363426eSPeter Korsgaard { 137e363426eSPeter Korsgaard struct rtc_regs *rtc = (struct rtc_regs *)AM335X_RTC_BASE; 138e363426eSPeter Korsgaard 139e363426eSPeter Korsgaard /* 140e363426eSPeter Korsgaard * Unlock the RTC's registers. For more details please see the 141e363426eSPeter Korsgaard * RTC_SS section of the TRM. In order to unlock we need to 142e363426eSPeter Korsgaard * write these specific values (keys) in this order. 143e363426eSPeter Korsgaard */ 144e363426eSPeter Korsgaard writel(0x83e70b13, &rtc->kick0r); 145e363426eSPeter Korsgaard writel(0x95a4f1e0, &rtc->kick1r); 146e363426eSPeter Korsgaard 147e363426eSPeter Korsgaard /* Enable the RTC 32K OSC by setting bits 3 and 6. */ 148e363426eSPeter Korsgaard writel((1 << 3) | (1 << 6), &rtc->osc); 149e363426eSPeter Korsgaard } 150c00f69dbSPeter Korsgaard 151c00f69dbSPeter Korsgaard static const struct ddr_data ddr2_data = { 152c7d35befSPeter Korsgaard .datardsratio0 = ((MT47H128M16RT25E_RD_DQS<<30) | 153c7d35befSPeter Korsgaard (MT47H128M16RT25E_RD_DQS<<20) | 154c7d35befSPeter Korsgaard (MT47H128M16RT25E_RD_DQS<<10) | 155c7d35befSPeter Korsgaard (MT47H128M16RT25E_RD_DQS<<0)), 156c7d35befSPeter Korsgaard .datawdsratio0 = ((MT47H128M16RT25E_WR_DQS<<30) | 157c7d35befSPeter Korsgaard (MT47H128M16RT25E_WR_DQS<<20) | 158c7d35befSPeter Korsgaard (MT47H128M16RT25E_WR_DQS<<10) | 159c7d35befSPeter Korsgaard (MT47H128M16RT25E_WR_DQS<<0)), 160c7d35befSPeter Korsgaard .datawiratio0 = ((MT47H128M16RT25E_PHY_WRLVL<<30) | 161c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_WRLVL<<20) | 162c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_WRLVL<<10) | 163c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_WRLVL<<0)), 164c7d35befSPeter Korsgaard .datagiratio0 = ((MT47H128M16RT25E_PHY_GATELVL<<30) | 165c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_GATELVL<<20) | 166c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_GATELVL<<10) | 167c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_GATELVL<<0)), 168c7d35befSPeter Korsgaard .datafwsratio0 = ((MT47H128M16RT25E_PHY_FIFO_WE<<30) | 169c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_FIFO_WE<<20) | 170c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_FIFO_WE<<10) | 171c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_FIFO_WE<<0)), 172c7d35befSPeter Korsgaard .datawrsratio0 = ((MT47H128M16RT25E_PHY_WR_DATA<<30) | 173c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_WR_DATA<<20) | 174c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_WR_DATA<<10) | 175c7d35befSPeter Korsgaard (MT47H128M16RT25E_PHY_WR_DATA<<0)), 176c7d35befSPeter Korsgaard .datauserank0delay = MT47H128M16RT25E_PHY_RANK0_DELAY, 177c00f69dbSPeter Korsgaard .datadldiff0 = PHY_DLL_LOCK_DIFF, 178c00f69dbSPeter Korsgaard }; 179c00f69dbSPeter Korsgaard 180c00f69dbSPeter Korsgaard static const struct cmd_control ddr2_cmd_ctrl_data = { 181c7d35befSPeter Korsgaard .cmd0csratio = MT47H128M16RT25E_RATIO, 182c7d35befSPeter Korsgaard .cmd0dldiff = MT47H128M16RT25E_DLL_LOCK_DIFF, 183c7d35befSPeter Korsgaard .cmd0iclkout = MT47H128M16RT25E_INVERT_CLKOUT, 184c00f69dbSPeter Korsgaard 185c7d35befSPeter Korsgaard .cmd1csratio = MT47H128M16RT25E_RATIO, 186c7d35befSPeter Korsgaard .cmd1dldiff = MT47H128M16RT25E_DLL_LOCK_DIFF, 187c7d35befSPeter Korsgaard .cmd1iclkout = MT47H128M16RT25E_INVERT_CLKOUT, 188c00f69dbSPeter Korsgaard 189c7d35befSPeter Korsgaard .cmd2csratio = MT47H128M16RT25E_RATIO, 190c7d35befSPeter Korsgaard .cmd2dldiff = MT47H128M16RT25E_DLL_LOCK_DIFF, 191c7d35befSPeter Korsgaard .cmd2iclkout = MT47H128M16RT25E_INVERT_CLKOUT, 192c00f69dbSPeter Korsgaard }; 193c00f69dbSPeter Korsgaard 194c00f69dbSPeter Korsgaard static const struct emif_regs ddr2_emif_reg_data = { 195c7d35befSPeter Korsgaard .sdram_config = MT47H128M16RT25E_EMIF_SDCFG, 196c7d35befSPeter Korsgaard .ref_ctrl = MT47H128M16RT25E_EMIF_SDREF, 197c7d35befSPeter Korsgaard .sdram_tim1 = MT47H128M16RT25E_EMIF_TIM1, 198c7d35befSPeter Korsgaard .sdram_tim2 = MT47H128M16RT25E_EMIF_TIM2, 199c7d35befSPeter Korsgaard .sdram_tim3 = MT47H128M16RT25E_EMIF_TIM3, 200c7d35befSPeter Korsgaard .emif_ddr_phy_ctlr_1 = MT47H128M16RT25E_EMIF_READ_LATENCY, 201c00f69dbSPeter Korsgaard }; 202c00f69dbSPeter Korsgaard 203c00f69dbSPeter Korsgaard static const struct ddr_data ddr3_data = { 204c7d35befSPeter Korsgaard .datardsratio0 = MT41J128MJT125_RD_DQS, 205c7d35befSPeter Korsgaard .datawdsratio0 = MT41J128MJT125_WR_DQS, 206c7d35befSPeter Korsgaard .datafwsratio0 = MT41J128MJT125_PHY_FIFO_WE, 207c7d35befSPeter Korsgaard .datawrsratio0 = MT41J128MJT125_PHY_WR_DATA, 208c00f69dbSPeter Korsgaard .datadldiff0 = PHY_DLL_LOCK_DIFF, 209c00f69dbSPeter Korsgaard }; 210c00f69dbSPeter Korsgaard 21113526f71SJeff Lance static const struct ddr_data ddr3_evm_data = { 21213526f71SJeff Lance .datardsratio0 = MT41J512M8RH125_RD_DQS, 21313526f71SJeff Lance .datawdsratio0 = MT41J512M8RH125_WR_DQS, 21413526f71SJeff Lance .datafwsratio0 = MT41J512M8RH125_PHY_FIFO_WE, 21513526f71SJeff Lance .datawrsratio0 = MT41J512M8RH125_PHY_WR_DATA, 21613526f71SJeff Lance .datadldiff0 = PHY_DLL_LOCK_DIFF, 21713526f71SJeff Lance }; 21813526f71SJeff Lance 219c00f69dbSPeter Korsgaard static const struct cmd_control ddr3_cmd_ctrl_data = { 220c7d35befSPeter Korsgaard .cmd0csratio = MT41J128MJT125_RATIO, 221c7d35befSPeter Korsgaard .cmd0dldiff = MT41J128MJT125_DLL_LOCK_DIFF, 222c7d35befSPeter Korsgaard .cmd0iclkout = MT41J128MJT125_INVERT_CLKOUT, 223c00f69dbSPeter Korsgaard 224c7d35befSPeter Korsgaard .cmd1csratio = MT41J128MJT125_RATIO, 225c7d35befSPeter Korsgaard .cmd1dldiff = MT41J128MJT125_DLL_LOCK_DIFF, 226c7d35befSPeter Korsgaard .cmd1iclkout = MT41J128MJT125_INVERT_CLKOUT, 227c00f69dbSPeter Korsgaard 228c7d35befSPeter Korsgaard .cmd2csratio = MT41J128MJT125_RATIO, 229c7d35befSPeter Korsgaard .cmd2dldiff = MT41J128MJT125_DLL_LOCK_DIFF, 230c7d35befSPeter Korsgaard .cmd2iclkout = MT41J128MJT125_INVERT_CLKOUT, 231c00f69dbSPeter Korsgaard }; 232c00f69dbSPeter Korsgaard 23313526f71SJeff Lance static const struct cmd_control ddr3_evm_cmd_ctrl_data = { 23413526f71SJeff Lance .cmd0csratio = MT41J512M8RH125_RATIO, 23513526f71SJeff Lance .cmd0dldiff = MT41J512M8RH125_DLL_LOCK_DIFF, 23613526f71SJeff Lance .cmd0iclkout = MT41J512M8RH125_INVERT_CLKOUT, 23713526f71SJeff Lance 23813526f71SJeff Lance .cmd1csratio = MT41J512M8RH125_RATIO, 23913526f71SJeff Lance .cmd1dldiff = MT41J512M8RH125_DLL_LOCK_DIFF, 24013526f71SJeff Lance .cmd1iclkout = MT41J512M8RH125_INVERT_CLKOUT, 24113526f71SJeff Lance 24213526f71SJeff Lance .cmd2csratio = MT41J512M8RH125_RATIO, 24313526f71SJeff Lance .cmd2dldiff = MT41J512M8RH125_DLL_LOCK_DIFF, 24413526f71SJeff Lance .cmd2iclkout = MT41J512M8RH125_INVERT_CLKOUT, 24513526f71SJeff Lance }; 24613526f71SJeff Lance 247c00f69dbSPeter Korsgaard static struct emif_regs ddr3_emif_reg_data = { 248c7d35befSPeter Korsgaard .sdram_config = MT41J128MJT125_EMIF_SDCFG, 249c7d35befSPeter Korsgaard .ref_ctrl = MT41J128MJT125_EMIF_SDREF, 250c7d35befSPeter Korsgaard .sdram_tim1 = MT41J128MJT125_EMIF_TIM1, 251c7d35befSPeter Korsgaard .sdram_tim2 = MT41J128MJT125_EMIF_TIM2, 252c7d35befSPeter Korsgaard .sdram_tim3 = MT41J128MJT125_EMIF_TIM3, 253c7d35befSPeter Korsgaard .zq_config = MT41J128MJT125_ZQ_CFG, 254*59dcf970SVaibhav Hiremath .emif_ddr_phy_ctlr_1 = MT41J128MJT125_EMIF_READ_LATENCY | 255*59dcf970SVaibhav Hiremath PHY_EN_DYN_PWRDN, 256c00f69dbSPeter Korsgaard }; 25713526f71SJeff Lance 25813526f71SJeff Lance static struct emif_regs ddr3_evm_emif_reg_data = { 25913526f71SJeff Lance .sdram_config = MT41J512M8RH125_EMIF_SDCFG, 26013526f71SJeff Lance .ref_ctrl = MT41J512M8RH125_EMIF_SDREF, 26113526f71SJeff Lance .sdram_tim1 = MT41J512M8RH125_EMIF_TIM1, 26213526f71SJeff Lance .sdram_tim2 = MT41J512M8RH125_EMIF_TIM2, 26313526f71SJeff Lance .sdram_tim3 = MT41J512M8RH125_EMIF_TIM3, 26413526f71SJeff Lance .zq_config = MT41J512M8RH125_ZQ_CFG, 265*59dcf970SVaibhav Hiremath .emif_ddr_phy_ctlr_1 = MT41J512M8RH125_EMIF_READ_LATENCY | 266*59dcf970SVaibhav Hiremath PHY_EN_DYN_PWRDN, 26713526f71SJeff Lance }; 268e363426eSPeter Korsgaard #endif 269e363426eSPeter Korsgaard 270e363426eSPeter Korsgaard /* 271e363426eSPeter Korsgaard * early system init of muxing and clocks. 272e363426eSPeter Korsgaard */ 273e363426eSPeter Korsgaard void s_init(void) 274e363426eSPeter Korsgaard { 275e363426eSPeter Korsgaard /* WDT1 is already running when the bootloader gets control 276e363426eSPeter Korsgaard * Disable it to avoid "random" resets 277e363426eSPeter Korsgaard */ 278e363426eSPeter Korsgaard writel(0xAAAA, &wdtimer->wdtwspr); 279e363426eSPeter Korsgaard while (readl(&wdtimer->wdtwwps) != 0x0) 280e363426eSPeter Korsgaard ; 281e363426eSPeter Korsgaard writel(0x5555, &wdtimer->wdtwspr); 282e363426eSPeter Korsgaard while (readl(&wdtimer->wdtwwps) != 0x0) 283e363426eSPeter Korsgaard ; 284e363426eSPeter Korsgaard 285e363426eSPeter Korsgaard #ifdef CONFIG_SPL_BUILD 286e363426eSPeter Korsgaard /* Setup the PLLs and the clocks for the peripherals */ 287e363426eSPeter Korsgaard pll_init(); 288e363426eSPeter Korsgaard 289e363426eSPeter Korsgaard /* Enable RTC32K clock */ 290e363426eSPeter Korsgaard rtc32k_enable(); 291e363426eSPeter Korsgaard 292e363426eSPeter Korsgaard /* UART softreset */ 293e363426eSPeter Korsgaard u32 regVal; 294e363426eSPeter Korsgaard 2956422b70bSAndrew Bradford #ifdef CONFIG_SERIAL1 296e363426eSPeter Korsgaard enable_uart0_pin_mux(); 2976422b70bSAndrew Bradford #endif /* CONFIG_SERIAL1 */ 2986422b70bSAndrew Bradford #ifdef CONFIG_SERIAL2 2996422b70bSAndrew Bradford enable_uart1_pin_mux(); 3006422b70bSAndrew Bradford #endif /* CONFIG_SERIAL2 */ 3016422b70bSAndrew Bradford #ifdef CONFIG_SERIAL3 3026422b70bSAndrew Bradford enable_uart2_pin_mux(); 3036422b70bSAndrew Bradford #endif /* CONFIG_SERIAL3 */ 3046422b70bSAndrew Bradford #ifdef CONFIG_SERIAL4 3056422b70bSAndrew Bradford enable_uart3_pin_mux(); 3066422b70bSAndrew Bradford #endif /* CONFIG_SERIAL4 */ 3076422b70bSAndrew Bradford #ifdef CONFIG_SERIAL5 3086422b70bSAndrew Bradford enable_uart4_pin_mux(); 3096422b70bSAndrew Bradford #endif /* CONFIG_SERIAL5 */ 3106422b70bSAndrew Bradford #ifdef CONFIG_SERIAL6 3116422b70bSAndrew Bradford enable_uart5_pin_mux(); 3126422b70bSAndrew Bradford #endif /* CONFIG_SERIAL6 */ 313e363426eSPeter Korsgaard 314e363426eSPeter Korsgaard regVal = readl(&uart_base->uartsyscfg); 315e363426eSPeter Korsgaard regVal |= UART_RESET; 316e363426eSPeter Korsgaard writel(regVal, &uart_base->uartsyscfg); 317e363426eSPeter Korsgaard while ((readl(&uart_base->uartsyssts) & 318e363426eSPeter Korsgaard UART_CLK_RUNNING_MASK) != UART_CLK_RUNNING_MASK) 319e363426eSPeter Korsgaard ; 320e363426eSPeter Korsgaard 321e363426eSPeter Korsgaard /* Disable smart idle */ 322e363426eSPeter Korsgaard regVal = readl(&uart_base->uartsyscfg); 323e363426eSPeter Korsgaard regVal |= UART_SMART_IDLE_EN; 324e363426eSPeter Korsgaard writel(regVal, &uart_base->uartsyscfg); 325e363426eSPeter Korsgaard 326e363426eSPeter Korsgaard gd = &gdata; 327e363426eSPeter Korsgaard 328e363426eSPeter Korsgaard preloader_console_init(); 329e363426eSPeter Korsgaard 330e363426eSPeter Korsgaard /* Initalize the board header */ 331e363426eSPeter Korsgaard enable_i2c0_pin_mux(); 332e363426eSPeter Korsgaard i2c_init(CONFIG_SYS_I2C_SPEED, CONFIG_SYS_I2C_SLAVE); 333e363426eSPeter Korsgaard if (read_eeprom() < 0) 334e363426eSPeter Korsgaard puts("Could not get board ID.\n"); 335e363426eSPeter Korsgaard 336e363426eSPeter Korsgaard enable_board_pin_mux(&header); 337e363426eSPeter Korsgaard if (board_is_evm_sk()) { 338e363426eSPeter Korsgaard /* 339e363426eSPeter Korsgaard * EVM SK 1.2A and later use gpio0_7 to enable DDR3. 340e363426eSPeter Korsgaard * This is safe enough to do on older revs. 341e363426eSPeter Korsgaard */ 342e363426eSPeter Korsgaard gpio_request(GPIO_DDR_VTT_EN, "ddr_vtt_en"); 343e363426eSPeter Korsgaard gpio_direction_output(GPIO_DDR_VTT_EN, 1); 344e363426eSPeter Korsgaard } 345e363426eSPeter Korsgaard 346c00f69dbSPeter Korsgaard if (board_is_evm_sk() || board_is_bone_lt()) 347c7d35befSPeter Korsgaard config_ddr(303, MT41J128MJT125_IOCTRL_VALUE, &ddr3_data, 348c00f69dbSPeter Korsgaard &ddr3_cmd_ctrl_data, &ddr3_emif_reg_data); 34913526f71SJeff Lance else if (board_is_evm_15_or_later()) 35013526f71SJeff Lance config_ddr(303, MT41J512M8RH125_IOCTRL_VALUE, &ddr3_evm_data, 35113526f71SJeff Lance &ddr3_evm_cmd_ctrl_data, &ddr3_evm_emif_reg_data); 352c00f69dbSPeter Korsgaard else 353c7d35befSPeter Korsgaard config_ddr(266, MT47H128M16RT25E_IOCTRL_VALUE, &ddr2_data, 354c00f69dbSPeter Korsgaard &ddr2_cmd_ctrl_data, &ddr2_emif_reg_data); 355e363426eSPeter Korsgaard #endif 356e363426eSPeter Korsgaard } 357e363426eSPeter Korsgaard 358e363426eSPeter Korsgaard /* 359e363426eSPeter Korsgaard * Basic board specific setup. Pinmux has been handled already. 360e363426eSPeter Korsgaard */ 361e363426eSPeter Korsgaard int board_init(void) 362e363426eSPeter Korsgaard { 363e363426eSPeter Korsgaard i2c_init(CONFIG_SYS_I2C_SPEED, CONFIG_SYS_I2C_SLAVE); 364e363426eSPeter Korsgaard if (read_eeprom() < 0) 365e363426eSPeter Korsgaard puts("Could not get board ID.\n"); 366e363426eSPeter Korsgaard 367e363426eSPeter Korsgaard gd->bd->bi_boot_params = PHYS_DRAM_1 + 0x100; 368e363426eSPeter Korsgaard 36998b5c269SIlya Yanok gpmc_init(); 37098b5c269SIlya Yanok 371e363426eSPeter Korsgaard return 0; 372e363426eSPeter Korsgaard } 373e363426eSPeter Korsgaard 374044fc14bSTom Rini #ifdef CONFIG_BOARD_LATE_INIT 375044fc14bSTom Rini int board_late_init(void) 376044fc14bSTom Rini { 377044fc14bSTom Rini #ifdef CONFIG_ENV_VARS_UBOOT_RUNTIME_CONFIG 378044fc14bSTom Rini char safe_string[HDR_NAME_LEN + 1]; 379044fc14bSTom Rini 380044fc14bSTom Rini /* Now set variables based on the header. */ 381044fc14bSTom Rini strncpy(safe_string, (char *)header.name, sizeof(header.name)); 382044fc14bSTom Rini safe_string[sizeof(header.name)] = 0; 383044fc14bSTom Rini setenv("board_name", safe_string); 384044fc14bSTom Rini 385044fc14bSTom Rini strncpy(safe_string, (char *)header.version, sizeof(header.version)); 386044fc14bSTom Rini safe_string[sizeof(header.version)] = 0; 387044fc14bSTom Rini setenv("board_rev", safe_string); 388044fc14bSTom Rini #endif 389044fc14bSTom Rini 390044fc14bSTom Rini return 0; 391044fc14bSTom Rini } 392044fc14bSTom Rini #endif 393044fc14bSTom Rini 394c0e66793SIlya Yanok #if (defined(CONFIG_DRIVER_TI_CPSW) && !defined(CONFIG_SPL_BUILD)) || \ 395c0e66793SIlya Yanok (defined(CONFIG_SPL_ETH_SUPPORT) && defined(CONFIG_SPL_BUILD)) 396e363426eSPeter Korsgaard static void cpsw_control(int enabled) 397e363426eSPeter Korsgaard { 398e363426eSPeter Korsgaard /* VTP can be added here */ 399e363426eSPeter Korsgaard 400e363426eSPeter Korsgaard return; 401e363426eSPeter Korsgaard } 402e363426eSPeter Korsgaard 403e363426eSPeter Korsgaard static struct cpsw_slave_data cpsw_slaves[] = { 404e363426eSPeter Korsgaard { 405e363426eSPeter Korsgaard .slave_reg_ofs = 0x208, 406e363426eSPeter Korsgaard .sliver_reg_ofs = 0xd80, 407e363426eSPeter Korsgaard .phy_id = 0, 408e363426eSPeter Korsgaard }, 409e363426eSPeter Korsgaard { 410e363426eSPeter Korsgaard .slave_reg_ofs = 0x308, 411e363426eSPeter Korsgaard .sliver_reg_ofs = 0xdc0, 412e363426eSPeter Korsgaard .phy_id = 1, 413e363426eSPeter Korsgaard }, 414e363426eSPeter Korsgaard }; 415e363426eSPeter Korsgaard 416e363426eSPeter Korsgaard static struct cpsw_platform_data cpsw_data = { 417e363426eSPeter Korsgaard .mdio_base = AM335X_CPSW_MDIO_BASE, 418e363426eSPeter Korsgaard .cpsw_base = AM335X_CPSW_BASE, 419e363426eSPeter Korsgaard .mdio_div = 0xff, 420e363426eSPeter Korsgaard .channels = 8, 421e363426eSPeter Korsgaard .cpdma_reg_ofs = 0x800, 422e363426eSPeter Korsgaard .slaves = 1, 423e363426eSPeter Korsgaard .slave_data = cpsw_slaves, 424e363426eSPeter Korsgaard .ale_reg_ofs = 0xd00, 425e363426eSPeter Korsgaard .ale_entries = 1024, 426e363426eSPeter Korsgaard .host_port_reg_ofs = 0x108, 427e363426eSPeter Korsgaard .hw_stats_reg_ofs = 0x900, 428e363426eSPeter Korsgaard .mac_control = (1 << 5), 429e363426eSPeter Korsgaard .control = cpsw_control, 430e363426eSPeter Korsgaard .host_port_num = 0, 431e363426eSPeter Korsgaard .version = CPSW_CTRL_VERSION_2, 432e363426eSPeter Korsgaard }; 433d2aa1154SIlya Yanok #endif 434e363426eSPeter Korsgaard 435d2aa1154SIlya Yanok #if defined(CONFIG_DRIVER_TI_CPSW) || \ 436d2aa1154SIlya Yanok (defined(CONFIG_USB_ETHER) && defined(CONFIG_MUSB_GADGET)) 437e363426eSPeter Korsgaard int board_eth_init(bd_t *bis) 438e363426eSPeter Korsgaard { 439d2aa1154SIlya Yanok int rv, n = 0; 440e363426eSPeter Korsgaard uint8_t mac_addr[6]; 441e363426eSPeter Korsgaard uint32_t mac_hi, mac_lo; 442e363426eSPeter Korsgaard 443e363426eSPeter Korsgaard /* try reading mac address from efuse */ 444e363426eSPeter Korsgaard mac_lo = readl(&cdev->macid0l); 445e363426eSPeter Korsgaard mac_hi = readl(&cdev->macid0h); 446e363426eSPeter Korsgaard mac_addr[0] = mac_hi & 0xFF; 447e363426eSPeter Korsgaard mac_addr[1] = (mac_hi & 0xFF00) >> 8; 448e363426eSPeter Korsgaard mac_addr[2] = (mac_hi & 0xFF0000) >> 16; 449e363426eSPeter Korsgaard mac_addr[3] = (mac_hi & 0xFF000000) >> 24; 450e363426eSPeter Korsgaard mac_addr[4] = mac_lo & 0xFF; 451e363426eSPeter Korsgaard mac_addr[5] = (mac_lo & 0xFF00) >> 8; 452e363426eSPeter Korsgaard 453c0e66793SIlya Yanok #if (defined(CONFIG_DRIVER_TI_CPSW) && !defined(CONFIG_SPL_BUILD)) || \ 454c0e66793SIlya Yanok (defined(CONFIG_SPL_ETH_SUPPORT) && defined(CONFIG_SPL_BUILD)) 455c0e66793SIlya Yanok if (!getenv("ethaddr")) { 456c0e66793SIlya Yanok printf("<ethaddr> not set. Validating first E-fuse MAC\n"); 457c0e66793SIlya Yanok 458e363426eSPeter Korsgaard if (is_valid_ether_addr(mac_addr)) 459e363426eSPeter Korsgaard eth_setenv_enetaddr("ethaddr", mac_addr); 460e363426eSPeter Korsgaard } 461e363426eSPeter Korsgaard 462a956bdcbSMatthias Fuchs if (board_is_bone() || board_is_bone_lt() || board_is_idk()) { 463e363426eSPeter Korsgaard writel(MII_MODE_ENABLE, &cdev->miisel); 464e363426eSPeter Korsgaard cpsw_slaves[0].phy_if = cpsw_slaves[1].phy_if = 465e363426eSPeter Korsgaard PHY_INTERFACE_MODE_MII; 466e363426eSPeter Korsgaard } else { 467e363426eSPeter Korsgaard writel(RGMII_MODE_ENABLE, &cdev->miisel); 468e363426eSPeter Korsgaard cpsw_slaves[0].phy_if = cpsw_slaves[1].phy_if = 469e363426eSPeter Korsgaard PHY_INTERFACE_MODE_RGMII; 470e363426eSPeter Korsgaard } 471e363426eSPeter Korsgaard 472d2aa1154SIlya Yanok rv = cpsw_register(&cpsw_data); 473d2aa1154SIlya Yanok if (rv < 0) 474d2aa1154SIlya Yanok printf("Error %d registering CPSW switch\n", rv); 475d2aa1154SIlya Yanok else 476d2aa1154SIlya Yanok n += rv; 4771634e969STom Rini 4781634e969STom Rini /* 4791634e969STom Rini * 4801634e969STom Rini * CPSW RGMII Internal Delay Mode is not supported in all PVT 4811634e969STom Rini * operating points. So we must set the TX clock delay feature 4821634e969STom Rini * in the AR8051 PHY. Since we only support a single ethernet 4831634e969STom Rini * device in U-Boot, we only do this for the first instance. 4841634e969STom Rini */ 4851634e969STom Rini #define AR8051_PHY_DEBUG_ADDR_REG 0x1d 4861634e969STom Rini #define AR8051_PHY_DEBUG_DATA_REG 0x1e 4871634e969STom Rini #define AR8051_DEBUG_RGMII_CLK_DLY_REG 0x5 4881634e969STom Rini #define AR8051_RGMII_TX_CLK_DLY 0x100 4891634e969STom Rini 4901634e969STom Rini if (board_is_evm_sk() || board_is_gp_evm()) { 4911634e969STom Rini const char *devname; 4921634e969STom Rini devname = miiphy_get_current_dev(); 4931634e969STom Rini 4941634e969STom Rini miiphy_write(devname, 0x0, AR8051_PHY_DEBUG_ADDR_REG, 4951634e969STom Rini AR8051_DEBUG_RGMII_CLK_DLY_REG); 4961634e969STom Rini miiphy_write(devname, 0x0, AR8051_PHY_DEBUG_DATA_REG, 4971634e969STom Rini AR8051_RGMII_TX_CLK_DLY); 4981634e969STom Rini } 499d2aa1154SIlya Yanok #endif 500c0e66793SIlya Yanok #if defined(CONFIG_USB_ETHER) && \ 501c0e66793SIlya Yanok (!defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_USBETH_SUPPORT)) 502c0e66793SIlya Yanok if (is_valid_ether_addr(mac_addr)) 503c0e66793SIlya Yanok eth_setenv_enetaddr("usbnet_devaddr", mac_addr); 504c0e66793SIlya Yanok 505d2aa1154SIlya Yanok rv = usb_eth_initialize(bis); 506d2aa1154SIlya Yanok if (rv < 0) 507d2aa1154SIlya Yanok printf("Error %d registering USB_ETHER\n", rv); 508d2aa1154SIlya Yanok else 509d2aa1154SIlya Yanok n += rv; 510d2aa1154SIlya Yanok #endif 511d2aa1154SIlya Yanok return n; 512e363426eSPeter Korsgaard } 513e363426eSPeter Korsgaard #endif 514