2010-02-22 11:13:02 +00:00
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/*
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* (C) Copyright 2009
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* Marvell Semiconductor <www.marvell.com>
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* Prafulla Wadaskar <prafulla@marvell.com>
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*
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* (C) Copyright 2009
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* Stefan Roese, DENX Software Engineering, sr@denx.de.
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*
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* (C) Copyright 2010
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* Heiko Schocher, DENX Software Engineering, hs@denx.de.
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*
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* See file CREDITS for list of people who contributed to this
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* project.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation; either version 2 of
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* the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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* MA 02110-1301 USA
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*/
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#include <common.h>
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#include <i2c.h>
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#include <nand.h>
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#include <netdev.h>
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#include <miiphy.h>
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#include <asm/io.h>
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#include <asm/arch/kirkwood.h>
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#include <asm/arch/mpp.h>
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#include "../common/common.h"
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DECLARE_GLOBAL_DATA_PTR;
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static int io_dev;
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extern I2C_MUX_DEVICE *i2c_mux_ident_muxstring (uchar *buf);
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/* Multi-Purpose Pins Functionality configuration */
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u32 kwmpp_config[] = {
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MPP0_NF_IO2,
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MPP1_NF_IO3,
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MPP2_NF_IO4,
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MPP3_NF_IO5,
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MPP4_NF_IO6,
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MPP5_NF_IO7,
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MPP6_SYSRST_OUTn,
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MPP7_PEX_RST_OUTn,
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#if defined(CONFIG_SOFT_I2C)
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MPP8_GPIO, /* SDA */
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MPP9_GPIO, /* SCL */
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#endif
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#if defined(CONFIG_HARD_I2C)
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MPP8_TW_SDA,
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MPP9_TW_SCK,
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#endif
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MPP10_UART0_TXD,
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MPP11_UART0_RXD,
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MPP12_GPO, /* Reserved */
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MPP13_UART1_TXD,
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MPP14_UART1_RXD,
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MPP15_GPIO, /* Not used */
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MPP16_GPIO, /* Not used */
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MPP17_GPIO, /* Reserved */
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MPP18_NF_IO0,
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MPP19_NF_IO1,
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MPP20_GPIO,
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MPP21_GPIO,
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MPP22_GPIO,
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MPP23_GPIO,
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MPP24_GPIO,
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MPP25_GPIO,
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MPP26_GPIO,
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MPP27_GPIO,
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MPP28_GPIO,
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MPP29_GPIO,
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MPP30_GPIO,
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MPP31_GPIO,
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MPP32_GPIO,
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MPP33_GPIO,
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MPP34_GPIO, /* CDL1 (input) */
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MPP35_GPIO, /* CDL2 (input) */
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MPP36_GPIO, /* MAIN_IRQ (input) */
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MPP37_GPIO, /* BOARD_LED */
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MPP38_GPIO, /* Piggy3 LED[1] */
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MPP39_GPIO, /* Piggy3 LED[2] */
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MPP40_GPIO, /* Piggy3 LED[3] */
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MPP41_GPIO, /* Piggy3 LED[4] */
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MPP42_GPIO, /* Piggy3 LED[5] */
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MPP43_GPIO, /* Piggy3 LED[6] */
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MPP44_GPIO, /* Piggy3 LED[7] */
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MPP45_GPIO, /* Piggy3 LED[8] */
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MPP46_GPIO, /* Reserved */
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MPP47_GPIO, /* Reserved */
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MPP48_GPIO, /* Reserved */
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MPP49_GPIO, /* SW_INTOUTn */
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0
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};
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int ethernet_present(void)
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{
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uchar buf;
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int ret = 0;
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if (i2c_read(0x10, 2, 1, &buf, 1) != 0) {
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printf ("%s: Error reading Boco\n", __FUNCTION__);
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return -1;
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}
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if ((buf & 0x40) == 0x40) {
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ret = 1;
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}
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return ret;
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}
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int misc_init_r(void)
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{
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I2C_MUX_DEVICE *i2cdev;
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char *str;
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int mach_type;
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/* add I2C Bus for I/O Expander */
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i2cdev = i2c_mux_ident_muxstring((uchar *)"pca9554a:70:a");
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io_dev = i2cdev->busid;
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puts("Piggy:");
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if (ethernet_present() == 0)
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puts (" not");
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puts(" present\n");
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str = getenv("mach_type");
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if (str != NULL) {
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mach_type = simple_strtoul(str, NULL, 10);
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printf("Overwriting MACH_TYPE with %d!!!\n", mach_type);
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gd->bd->bi_arch_number = mach_type;
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}
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return 0;
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}
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2010-10-20 14:03:26 +00:00
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int board_early_init_f(void)
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2010-02-22 11:13:02 +00:00
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{
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u32 tmp;
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kirkwood_mpp_conf(kwmpp_config);
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/*
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* The FLASH_GPIO_PIN switches between using a
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* NAND or a SPI FLASH. Set this pin on start
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* to NAND mode.
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*/
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tmp = readl(KW_GPIO0_BASE);
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writel(tmp | FLASH_GPIO_PIN , KW_GPIO0_BASE);
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tmp = readl(KW_GPIO0_BASE + 4);
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writel(tmp & (~FLASH_GPIO_PIN) , KW_GPIO0_BASE + 4);
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printf("KM: setting NAND mode\n");
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#if defined(CONFIG_SOFT_I2C)
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/* init the GPIO for I2C Bitbang driver */
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kw_gpio_set_valid(SUEN3_SDA_PIN, 1);
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kw_gpio_set_valid(SUEN3_SCL_PIN, 1);
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kw_gpio_direction_output(SUEN3_SDA_PIN, 0);
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kw_gpio_direction_output(SUEN3_SCL_PIN, 0);
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#endif
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#if defined(CONFIG_SYS_EEPROM_WREN)
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kw_gpio_set_valid(SUEN3_ENV_WP, 38);
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kw_gpio_direction_output(SUEN3_ENV_WP, 1);
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#endif
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2010-10-20 14:03:26 +00:00
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return 0;
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}
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int board_init(void)
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{
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/*
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* arch number of board
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*/
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gd->bd->bi_arch_number = MACH_TYPE_SUEN3;
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/* address of boot parameters */
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gd->bd->bi_boot_params = kw_sdram_bar(0) + 0x100;
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2010-02-22 11:13:02 +00:00
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return 0;
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}
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#if defined(CONFIG_CMD_SF)
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2010-06-28 20:00:46 +00:00
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int do_spi_toggle(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
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2010-02-22 11:13:02 +00:00
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{
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u32 tmp;
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2010-07-16 23:06:04 +00:00
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if (argc < 2)
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return cmd_usage(cmdtp);
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2010-02-22 11:13:02 +00:00
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if ((strcmp(argv[1], "off") == 0)) {
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printf("SPI FLASH disabled, NAND enabled\n");
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/* Multi-Purpose Pins Functionality configuration */
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kwmpp_config[0] = MPP0_NF_IO2;
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kwmpp_config[1] = MPP1_NF_IO3;
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kwmpp_config[2] = MPP2_NF_IO4;
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kwmpp_config[3] = MPP3_NF_IO5;
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kirkwood_mpp_conf(kwmpp_config);
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tmp = readl(KW_GPIO0_BASE);
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writel(tmp | FLASH_GPIO_PIN , KW_GPIO0_BASE);
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} else if ((strcmp(argv[1], "on") == 0)) {
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printf("SPI FLASH enabled, NAND disabled\n");
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/* Multi-Purpose Pins Functionality configuration */
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kwmpp_config[0] = MPP0_SPI_SCn;
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kwmpp_config[1] = MPP1_SPI_MOSI;
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kwmpp_config[2] = MPP2_SPI_SCK;
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kwmpp_config[3] = MPP3_SPI_MISO;
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kirkwood_mpp_conf(kwmpp_config);
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tmp = readl(KW_GPIO0_BASE);
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writel(tmp & (~FLASH_GPIO_PIN) , KW_GPIO0_BASE);
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} else {
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2010-07-16 23:06:04 +00:00
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return cmd_usage(cmdtp);
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2010-02-22 11:13:02 +00:00
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}
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return 0;
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}
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U_BOOT_CMD(
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spitoggle, 2, 0, do_spi_toggle,
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"En-/disable SPI FLASH access",
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"<on|off> - Enable (on) or disable (off) SPI FLASH access\n"
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);
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#endif
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2010-09-17 11:10:42 +00:00
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int dram_init(void)
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{
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/* dram_init must store complete ramsize in gd->ram_size */
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/* Fix this */
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gd->ram_size = get_ram_size((volatile void *)kw_sdram_bar(0),
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kw_sdram_bs(0));
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2010-02-22 11:13:02 +00:00
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return 0;
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}
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2010-09-17 11:10:42 +00:00
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void dram_init_banksize(void)
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{
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int i;
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for (i = 0; i < CONFIG_NR_DRAM_BANKS; i++) {
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gd->bd->bi_dram[i].start = kw_sdram_bar(i);
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gd->bd->bi_dram[i].size = kw_sdram_bs(i);
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gd->bd->bi_dram[i].size = get_ram_size((long *)kw_sdram_bar(i),
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kw_sdram_bs(i));
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}
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}
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2010-02-22 11:13:02 +00:00
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/* Configure and enable MV88E1118 PHY */
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void reset_phy(void)
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{
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char *name = "egiga0";
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if (miiphy_set_current_dev(name))
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return;
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/* reset the phy */
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miiphy_reset(name, CONFIG_PHY_BASE_ADR);
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}
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#if defined(CONFIG_HUSH_INIT_VAR)
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int hush_init_var (void)
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{
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ivm_read_eeprom ();
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return 0;
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}
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#endif
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#if defined(CONFIG_BOOTCOUNT_LIMIT)
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void bootcount_store (ulong a)
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{
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volatile ulong *save_addr;
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volatile ulong size = 0;
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int i;
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for (i = 0; i < CONFIG_NR_DRAM_BANKS; i++) {
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size += gd->bd->bi_dram[i].size;
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}
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save_addr = (ulong*)(size - BOOTCOUNT_ADDR);
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writel(a, save_addr);
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writel(BOOTCOUNT_MAGIC, &save_addr[1]);
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}
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ulong bootcount_load (void)
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{
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volatile ulong *save_addr;
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volatile ulong size = 0;
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int i;
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for (i = 0; i < CONFIG_NR_DRAM_BANKS; i++) {
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size += gd->bd->bi_dram[i].size;
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}
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save_addr = (ulong*)(size - BOOTCOUNT_ADDR);
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if (readl(&save_addr[1]) != BOOTCOUNT_MAGIC)
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return 0;
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else
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return readl(save_addr);
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}
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#endif
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#if defined(CONFIG_SOFT_I2C)
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void set_sda (int state)
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{
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I2C_ACTIVE;
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I2C_SDA(state);
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}
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void set_scl (int state)
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{
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I2C_SCL(state);
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}
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int get_sda (void)
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{
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I2C_TRISTATE;
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return I2C_READ;
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}
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int get_scl (void)
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{
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return (kw_gpio_get_value(SUEN3_SCL_PIN) ? 1 : 0);
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}
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#endif
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#if defined(CONFIG_SYS_EEPROM_WREN)
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int eeprom_write_enable (unsigned dev_addr, int state)
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{
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kw_gpio_set_value(SUEN3_ENV_WP, !state);
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return !kw_gpio_get_value(SUEN3_ENV_WP);
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}
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#endif
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