mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-13 08:27:23 +00:00
54841ab50c
The hush shell dynamically allocates (and re-allocates) memory for the argument strings in the "char *argv[]" argument vector passed to commands. Any code that modifies these pointers will cause serious corruption of the malloc data structures and crash U-Boot, so make sure the compiler can check that no such modifications are being done by changing the code into "char * const argv[]". This modification is the result of debugging a strange crash caused after adding a new command, which used the following argument processing code which has been working perfectly fine in all Unix systems since version 6 - but not so in U-Boot: int main (int argc, char **argv) { while (--argc > 0 && **++argv == '-') { /* ====> */ while (*++*argv) { switch (**argv) { case 'd': debug++; break; ... default: usage (); } } } ... } The line marked "====>" will corrupt the malloc data structures and usually cause U-Boot to crash when the next command gets executed by the shell. With the modification, the compiler will prevent this with an error: increment of read-only location '*argv' N.B.: The code above can be trivially rewritten like this: while (--argc > 0 && **++argv == '-') { char *arg = *argv; while (*++arg) { switch (*arg) { ... Signed-off-by: Wolfgang Denk <wd@denx.de> Acked-by: Mike Frysinger <vapier@gentoo.org>
617 lines
19 KiB
C
617 lines
19 KiB
C
/*
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* Copyright (C) 2005 Sandburst Corporation
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* Travis B. Sawyer
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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., 59 Temple Place, Suite 330, Boston,
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* MA 02111-1307 USA
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*/
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#include <config.h>
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#include <common.h>
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#include <command.h>
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#include "karef.h"
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#include "karef_version.h"
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#include <timestamp.h>
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#include <asm/processor.h>
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#include <asm/io.h>
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#include <spd_sdram.h>
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#include <i2c.h>
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#include "../common/sb_common.h"
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#include "../common/ppc440gx_i2c.h"
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#if defined(CONFIG_HAS_ETH0) || defined(CONFIG_HAS_ETH1) || \
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defined(CONFIG_HAS_ETH2) || defined(CONFIG_HAS_ETH3)
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#include <net.h>
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#endif
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void fpga_init (void);
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KAREF_BOARD_ID_ST board_id_as[] =
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{
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{"Undefined"}, /* Not specified */
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{"Kamino Reference Design"},
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{"Reserved"}, /* Reserved for future use */
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{"Reserved"}, /* Reserved for future use */
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};
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KAREF_BOARD_ID_ST ofem_board_id_as[] =
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{
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{"Undefined"},
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{"1x10 + 10x2"},
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{"Reserved"},
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{"Reserved"},
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};
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/*************************************************************************
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* board_early_init_f
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*
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* Setup chip selects, initialize the Opto-FPGA, initialize
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* interrupt polarity and triggers.
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************************************************************************/
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int board_early_init_f (void)
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{
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ppc440_gpio_regs_t *gpio_regs;
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/* Enable GPIO interrupts */
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mtsdr(SDR0_PFC0, 0x00103E00);
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/* Setup access for LEDs, and system topology info */
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gpio_regs = (ppc440_gpio_regs_t *)CONFIG_SYS_GPIO_BASE;
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gpio_regs->open_drain = SBCOMMON_GPIO_SYS_LEDS;
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gpio_regs->tri_state = SBCOMMON_GPIO_DBGLEDS;
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/* Turn on all the leds for now */
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gpio_regs->out = SBCOMMON_GPIO_LEDS;
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/*--------------------------------------------------------------------+
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| Initialize EBC CONFIG
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+-------------------------------------------------------------------*/
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mtebc(EBC0_CFG,
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EBC_CFG_LE_UNLOCK | EBC_CFG_PTD_ENABLE |
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EBC_CFG_RTC_64PERCLK | EBC_CFG_ATC_PREVIOUS |
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EBC_CFG_DTC_PREVIOUS | EBC_CFG_CTC_PREVIOUS |
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EBC_CFG_EMC_DEFAULT | EBC_CFG_PME_DISABLE |
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EBC_CFG_PR_32);
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/*--------------------------------------------------------------------+
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| 1/2 MB FLASH. Initialize bank 0 with default values.
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+-------------------------------------------------------------------*/
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mtebc(PB0AP,
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EBC_BXAP_BME_DISABLED | EBC_BXAP_TWT_ENCODE(8) |
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EBC_BXAP_BCE_DISABLE | EBC_BXAP_CSN_ENCODE(1) |
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EBC_BXAP_OEN_ENCODE(1)| EBC_BXAP_WBN_ENCODE(1) |
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EBC_BXAP_WBF_ENCODE(1)| EBC_BXAP_TH_ENCODE(1) |
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EBC_BXAP_RE_DISABLED | EBC_BXAP_BEM_WRITEONLY |
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EBC_BXAP_PEN_DISABLED);
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mtebc(PB0CR, EBC_BXCR_BAS_ENCODE(CONFIG_SYS_FLASH_BASE) |
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EBC_BXCR_BS_1MB | EBC_BXCR_BU_RW | EBC_BXCR_BW_8BIT);
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/*--------------------------------------------------------------------+
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| 8KB NVRAM/RTC. Initialize bank 1 with default values.
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+-------------------------------------------------------------------*/
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mtebc(PB1AP,
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EBC_BXAP_BME_DISABLED | EBC_BXAP_TWT_ENCODE(10) |
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EBC_BXAP_BCE_DISABLE | EBC_BXAP_CSN_ENCODE(1) |
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EBC_BXAP_OEN_ENCODE(1)| EBC_BXAP_WBN_ENCODE(1) |
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EBC_BXAP_WBF_ENCODE(1)| EBC_BXAP_TH_ENCODE(1) |
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EBC_BXAP_RE_DISABLED | EBC_BXAP_BEM_WRITEONLY |
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EBC_BXAP_PEN_DISABLED);
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mtebc(PB1CR, EBC_BXCR_BAS_ENCODE(0x48000000) |
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EBC_BXCR_BS_1MB | EBC_BXCR_BU_RW | EBC_BXCR_BW_8BIT);
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/*--------------------------------------------------------------------+
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| Compact Flash, uses 2 Chip Selects (2 & 6)
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+-------------------------------------------------------------------*/
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mtebc(PB2AP,
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EBC_BXAP_BME_DISABLED | EBC_BXAP_TWT_ENCODE(8) |
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EBC_BXAP_BCE_DISABLE | EBC_BXAP_CSN_ENCODE(1) |
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EBC_BXAP_OEN_ENCODE(1)| EBC_BXAP_WBN_ENCODE(1) |
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EBC_BXAP_WBF_ENCODE(0)| EBC_BXAP_TH_ENCODE(1) |
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EBC_BXAP_RE_DISABLED | EBC_BXAP_BEM_WRITEONLY |
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EBC_BXAP_PEN_DISABLED);
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mtebc(PB2CR, EBC_BXCR_BAS_ENCODE(0xF0000000) |
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EBC_BXCR_BS_1MB | EBC_BXCR_BU_RW | EBC_BXCR_BW_16BIT);
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/*--------------------------------------------------------------------+
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| KaRef Scan FPGA. Initialize bank 3 with default values.
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+-------------------------------------------------------------------*/
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mtebc(PB5AP,
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EBC_BXAP_RE_ENABLED | EBC_BXAP_SOR_NONDELAYED |
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EBC_BXAP_BME_DISABLED | EBC_BXAP_TWT_ENCODE(3) |
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EBC_BXAP_TH_ENCODE(1) | EBC_BXAP_WBF_ENCODE(0) |
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EBC_BXAP_CSN_ENCODE(1) | EBC_BXAP_PEN_DISABLED |
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EBC_BXAP_OEN_ENCODE(1) | EBC_BXAP_BEM_RW);
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mtebc(PB5CR, EBC_BXCR_BAS_ENCODE(0x48200000) |
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EBC_BXCR_BS_1MB | EBC_BXCR_BU_RW | EBC_BXCR_BW_32BIT);
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/*--------------------------------------------------------------------+
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| MAC A & B for Kamino. OFEM FPGA decodes the addresses
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| Initialize bank 4 with default values.
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+-------------------------------------------------------------------*/
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mtebc(PB4AP,
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EBC_BXAP_RE_ENABLED | EBC_BXAP_SOR_NONDELAYED |
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EBC_BXAP_BME_DISABLED | EBC_BXAP_TWT_ENCODE(3) |
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EBC_BXAP_TH_ENCODE(1) | EBC_BXAP_WBF_ENCODE(0) |
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EBC_BXAP_CSN_ENCODE(1) | EBC_BXAP_PEN_DISABLED |
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EBC_BXAP_OEN_ENCODE(1) | EBC_BXAP_BEM_RW);
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mtebc(PB4CR, EBC_BXCR_BAS_ENCODE(0x48600000) |
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EBC_BXCR_BS_2MB | EBC_BXCR_BU_RW | EBC_BXCR_BW_32BIT);
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/*--------------------------------------------------------------------+
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| OFEM FPGA Initialize bank 5 with default values.
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+-------------------------------------------------------------------*/
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mtebc(PB3AP,
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EBC_BXAP_RE_ENABLED | EBC_BXAP_SOR_NONDELAYED |
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EBC_BXAP_BME_DISABLED | EBC_BXAP_TWT_ENCODE(3) |
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EBC_BXAP_TH_ENCODE(1) | EBC_BXAP_WBF_ENCODE(0) |
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EBC_BXAP_CSN_ENCODE(1) | EBC_BXAP_PEN_DISABLED |
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EBC_BXAP_OEN_ENCODE(1) | EBC_BXAP_BEM_RW);
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mtebc(PB3CR, EBC_BXCR_BAS_ENCODE(0x48400000) |
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EBC_BXCR_BS_1MB | EBC_BXCR_BU_RW | EBC_BXCR_BW_32BIT);
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/*--------------------------------------------------------------------+
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| Compact Flash, uses 2 Chip Selects (2 & 6)
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+-------------------------------------------------------------------*/
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mtebc(PB6AP,
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EBC_BXAP_BME_DISABLED | EBC_BXAP_TWT_ENCODE(8) |
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EBC_BXAP_BCE_DISABLE | EBC_BXAP_CSN_ENCODE(1) |
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EBC_BXAP_OEN_ENCODE(1)| EBC_BXAP_WBN_ENCODE(1) |
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EBC_BXAP_WBF_ENCODE(0)| EBC_BXAP_TH_ENCODE(1) |
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EBC_BXAP_RE_DISABLED | EBC_BXAP_BEM_WRITEONLY |
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EBC_BXAP_PEN_DISABLED);
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mtebc(PB6CR, EBC_BXCR_BAS_ENCODE(0xF0100000) |
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EBC_BXCR_BS_1MB | EBC_BXCR_BU_RW | EBC_BXCR_BW_16BIT);
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/*--------------------------------------------------------------------+
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| BME-32. Initialize bank 7 with default values.
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+-------------------------------------------------------------------*/
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mtebc(PB7AP,
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EBC_BXAP_RE_ENABLED | EBC_BXAP_SOR_NONDELAYED |
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EBC_BXAP_BME_DISABLED | EBC_BXAP_TWT_ENCODE(3) |
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EBC_BXAP_TH_ENCODE(1) | EBC_BXAP_WBF_ENCODE(0) |
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EBC_BXAP_CSN_ENCODE(1) | EBC_BXAP_PEN_DISABLED |
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EBC_BXAP_OEN_ENCODE(1) | EBC_BXAP_BEM_RW);
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mtebc(PB7CR, EBC_BXCR_BAS_ENCODE(0x48500000) |
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EBC_BXCR_BS_1MB | EBC_BXCR_BU_RW | EBC_BXCR_BW_32BIT);
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/*--------------------------------------------------------------------+
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* Setup the interrupt controller polarities, triggers, etc.
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+-------------------------------------------------------------------*/
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/*
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* Because of the interrupt handling rework to handle 440GX interrupts
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* with the common code, we needed to change names of the UIC registers.
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* Here the new relationship:
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*
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* U-Boot name 440GX name
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* -----------------------
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* UIC0 UICB0
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* UIC1 UIC0
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* UIC2 UIC1
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* UIC3 UIC2
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*/
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mtdcr (UIC1SR, 0xffffffff); /* clear all */
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mtdcr (UIC1ER, 0x00000000); /* disable all */
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mtdcr (UIC1CR, 0x00000000); /* all non- critical */
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mtdcr (UIC1PR, 0xfffffe03); /* polarity */
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mtdcr (UIC1TR, 0x01c00000); /* trigger edge vs level */
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mtdcr (UIC1VR, 0x00000001); /* int31 highest, base=0x000 */
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mtdcr (UIC1SR, 0xffffffff); /* clear all */
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mtdcr (UIC2SR, 0xffffffff); /* clear all */
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mtdcr (UIC2ER, 0x00000000); /* disable all */
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mtdcr (UIC2CR, 0x00000000); /* all non-critical */
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mtdcr (UIC2PR, 0xffffc8ff); /* polarity */
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mtdcr (UIC2TR, 0x00ff0000); /* trigger edge vs level */
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mtdcr (UIC2VR, 0x00000001); /* int31 highest, base=0x000 */
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mtdcr (UIC2SR, 0xffffffff); /* clear all */
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mtdcr (UIC3SR, 0xffffffff); /* clear all */
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mtdcr (UIC3ER, 0x00000000); /* disable all */
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mtdcr (UIC3CR, 0x00000000); /* all non-critical */
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mtdcr (UIC3PR, 0xffff83ff); /* polarity */
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mtdcr (UIC3TR, 0x00ff8c0f); /* trigger edge vs level */
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mtdcr (UIC3VR, 0x00000001); /* int31 highest, base=0x000 */
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mtdcr (UIC3SR, 0xffffffff); /* clear all */
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mtdcr (UIC0SR, 0xfc000000); /* clear all */
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mtdcr (UIC0ER, 0x00000000); /* disable all */
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mtdcr (UIC0CR, 0x00000000); /* all non-critical */
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mtdcr (UIC0PR, 0xfc000000);
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mtdcr (UIC0TR, 0x00000000);
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mtdcr (UIC0VR, 0x00000001);
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fpga_init();
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return 0;
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}
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/*************************************************************************
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* checkboard
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*
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* Dump pertinent info to the console
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************************************************************************/
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int checkboard (void)
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{
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sys_info_t sysinfo;
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unsigned char brd_rev, brd_id;
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unsigned short sernum;
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unsigned char scan_rev, scan_id, ofem_rev=0, ofem_id=0;
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unsigned char ofem_brd_rev, ofem_brd_id;
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KAREF_FPGA_REGS_ST *karef_ps;
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OFEM_FPGA_REGS_ST *ofem_ps;
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karef_ps = (KAREF_FPGA_REGS_ST *)CONFIG_SYS_KAREF_FPGA_BASE;
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ofem_ps = (OFEM_FPGA_REGS_ST *)CONFIG_SYS_OFEM_FPGA_BASE;
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scan_id = (unsigned char)((karef_ps->revision_ul &
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SAND_HAL_KA_SC_SCAN_REVISION_IDENTIFICATION_MASK)
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>> SAND_HAL_KA_SC_SCAN_REVISION_IDENTIFICATION_SHIFT);
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scan_rev = (unsigned char)((karef_ps->revision_ul & SAND_HAL_KA_SC_SCAN_REVISION_REVISION_MASK)
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>> SAND_HAL_KA_SC_SCAN_REVISION_REVISION_SHIFT);
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brd_rev = (unsigned char)((karef_ps->boardinfo_ul & SAND_HAL_KA_SC_SCAN_BRD_INFO_BRD_REV_MASK)
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>> SAND_HAL_KA_SC_SCAN_BRD_INFO_BRD_REV_SHIFT);
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brd_id = (unsigned char)((karef_ps->boardinfo_ul & SAND_HAL_KA_SC_SCAN_BRD_INFO_BRD_ID_MASK)
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>> SAND_HAL_KA_SC_SCAN_BRD_INFO_BRD_ID_SHIFT);
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ofem_brd_id = (unsigned char)((karef_ps->boardinfo_ul & SAND_HAL_KA_SC_SCAN_BRD_INFO_FEM_ID_MASK)
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>> SAND_HAL_KA_SC_SCAN_BRD_INFO_FEM_ID_SHIFT);
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ofem_brd_rev = (unsigned char)((karef_ps->boardinfo_ul & SAND_HAL_KA_SC_SCAN_BRD_INFO_FEM_REV_MASK)
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>> SAND_HAL_KA_SC_SCAN_BRD_INFO_FEM_REV_SHIFT);
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if (0xF != ofem_brd_id) {
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ofem_id = (unsigned char)((ofem_ps->revision_ul &
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SAND_HAL_KA_OF_OFEM_REVISION_IDENTIFICATION_MASK)
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>> SAND_HAL_KA_OF_OFEM_REVISION_IDENTIFICATION_SHIFT);
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ofem_rev = (unsigned char)((ofem_ps->revision_ul &
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SAND_HAL_KA_OF_OFEM_REVISION_REVISION_MASK)
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>> SAND_HAL_KA_OF_OFEM_REVISION_REVISION_SHIFT);
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}
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get_sys_info (&sysinfo);
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sernum = sbcommon_get_serial_number();
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printf ("Board: Sandburst Corporation Kamino Reference Design "
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"Serial Number: %d\n", sernum);
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printf ("%s\n", KAREF_U_BOOT_REL_STR);
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printf ("Built %s %s by %s\n", U_BOOT_DATE, U_BOOT_TIME, BUILDUSER);
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if (sbcommon_get_master()) {
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printf("Slot 0 - Master\nSlave board");
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if (sbcommon_secondary_present())
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printf(" present\n");
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else
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printf(" not detected\n");
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} else {
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printf("Slot 1 - Slave\n\n");
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}
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printf ("ScanFPGA ID:\t0x%02X\tRev: 0x%02X\n", scan_id, scan_rev);
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printf ("Board Rev:\t0x%02X\tID: 0x%02X\n", brd_rev, brd_id);
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if(0xF != ofem_brd_id) {
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printf("OFemFPGA ID:\t0x%02X\tRev: 0x%02X\n", ofem_id, ofem_rev);
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printf("OFEM Board Rev:\t0x%02X\tID: 0x%02X\n", ofem_brd_id, ofem_brd_rev);
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}
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/* Fix the ack in the bme 32 */
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udelay(5000);
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out32(CONFIG_SYS_BME32_BASE + 0x0000000C, 0x00000001);
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asm("eieio");
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return (0);
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}
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/*************************************************************************
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* misc_init_f
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*
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* Initialize I2C bus one to gain access to the fans
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************************************************************************/
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int misc_init_f (void)
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{
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/* Turn on i2c bus 1 */
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puts ("I2C1: ");
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i2c1_init (CONFIG_SYS_I2C_SPEED, CONFIG_SYS_I2C_SLAVE);
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puts ("ready\n");
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/* Turn on fans 3 & 4 */
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sbcommon_fans();
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return (0);
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}
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/*************************************************************************
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* misc_init_r
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*
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* Do nothing.
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************************************************************************/
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int misc_init_r (void)
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{
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unsigned short sernum;
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char envstr[255];
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uchar enetaddr[6];
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KAREF_FPGA_REGS_ST *karef_ps;
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OFEM_FPGA_REGS_ST *ofem_ps;
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if(NULL != getenv("secondserial")) {
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puts("secondserial is set, switching to second serial port\n");
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setenv("stderr", "serial1");
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setenv("stdout", "serial1");
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setenv("stdin", "serial1");
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}
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setenv("ubrelver", KAREF_U_BOOT_REL_STR);
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memset(envstr, 0, 255);
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sprintf (envstr, "Built %s %s by %s",
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U_BOOT_DATE, U_BOOT_TIME, BUILDUSER);
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setenv("bldstr", envstr);
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saveenv();
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if( getenv("autorecover")) {
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setenv("autorecover", NULL);
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saveenv();
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sernum = sbcommon_get_serial_number();
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printf("\nSetting up environment for automatic filesystem recovery\n");
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/*
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* Setup default bootargs
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*/
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memset(envstr, 0, 255);
|
|
|
|
sprintf(envstr, "console=ttyS0,9600 root=/dev/ram0 "
|
|
"rw ip=10.100.70.%d:::255.255.0.0:karef%d:eth0:none idebus=33",
|
|
sernum, sernum);
|
|
setenv("bootargs", envstr);
|
|
|
|
/*
|
|
* Setup Default boot command
|
|
*/
|
|
setenv("bootcmd", "fatload ide 0 8000000 uimage.karef;"
|
|
"fatload ide 0 8100000 pramdisk;"
|
|
"bootm 8000000 8100000");
|
|
|
|
printf("Done. Please type allow the system to continue to boot\n");
|
|
}
|
|
|
|
if( getenv("fakeled")) {
|
|
karef_ps = (KAREF_FPGA_REGS_ST *)CONFIG_SYS_KAREF_FPGA_BASE;
|
|
ofem_ps = (OFEM_FPGA_REGS_ST *)CONFIG_SYS_OFEM_FPGA_BASE;
|
|
ofem_ps->control_ul &= ~SAND_HAL_KA_SC_SCAN_CNTL_FAULT_LED_MASK;
|
|
karef_ps->control_ul &= ~SAND_HAL_KA_OF_OFEM_CNTL_FAULT_LED_MASK;
|
|
setenv("bootdelay", "-1");
|
|
saveenv();
|
|
printf("fakeled is set. use 'setenv fakeled ; setenv bootdelay 5 ; saveenv' to recover\n");
|
|
}
|
|
|
|
#ifdef CONFIG_HAS_ETH0
|
|
if (!eth_getenv_enetaddr("ethaddr", enetaddr)) {
|
|
board_get_enetaddr(0, enetaddr);
|
|
eth_setenv_enetaddr("ethaddr", enetaddr);
|
|
}
|
|
#endif
|
|
|
|
#ifdef CONFIG_HAS_ETH1
|
|
if (!eth_getenv_enetaddr("eth1addr", enetaddr)) {
|
|
board_get_enetaddr(1, enetaddr);
|
|
eth_setenv_enetaddr("eth1addr", enetaddr);
|
|
}
|
|
#endif
|
|
|
|
#ifdef CONFIG_HAS_ETH2
|
|
if (!eth_getenv_enetaddr("eth2addr", enetaddr)) {
|
|
board_get_enetaddr(2, enetaddr);
|
|
eth_setenv_enetaddr("eth2addr", enetaddr);
|
|
}
|
|
#endif
|
|
|
|
#ifdef CONFIG_HAS_ETH3
|
|
if (!eth_getenv_enetaddr("eth3addr", enetaddr)) {
|
|
board_get_enetaddr(3, enetaddr);
|
|
eth_setenv_enetaddr("eth3addr", enetaddr);
|
|
}
|
|
#endif
|
|
|
|
return (0);
|
|
}
|
|
|
|
/*************************************************************************
|
|
* ide_set_reset
|
|
************************************************************************/
|
|
#ifdef CONFIG_IDE_RESET
|
|
void ide_set_reset(int on)
|
|
{
|
|
KAREF_FPGA_REGS_ST *karef_ps;
|
|
/* TODO: ide reset */
|
|
karef_ps = (KAREF_FPGA_REGS_ST *)CONFIG_SYS_KAREF_FPGA_BASE;
|
|
|
|
if (on) {
|
|
karef_ps->reset_ul &= ~SAND_HAL_KA_SC_SCAN_RESET_CF_RESET_N_MASK;
|
|
} else {
|
|
karef_ps->reset_ul |= SAND_HAL_KA_SC_SCAN_RESET_CF_RESET_N_MASK;
|
|
}
|
|
}
|
|
#endif /* CONFIG_IDE_RESET */
|
|
|
|
/*************************************************************************
|
|
* fpga_init
|
|
************************************************************************/
|
|
void fpga_init(void)
|
|
{
|
|
KAREF_FPGA_REGS_ST *karef_ps;
|
|
OFEM_FPGA_REGS_ST *ofem_ps;
|
|
unsigned char ofem_id;
|
|
unsigned long tmp;
|
|
|
|
/* Ensure we have power all around */
|
|
udelay(500);
|
|
|
|
karef_ps = (KAREF_FPGA_REGS_ST *)CONFIG_SYS_KAREF_FPGA_BASE;
|
|
tmp =
|
|
SAND_HAL_KA_SC_SCAN_RESET_CF_RESET_N_MASK |
|
|
SAND_HAL_KA_SC_SCAN_RESET_BME_RESET_N_MASK |
|
|
SAND_HAL_KA_SC_SCAN_RESET_KA_RESET_N_MASK |
|
|
SAND_HAL_KA_SC_SCAN_RESET_SLAVE_RESET_N_MASK |
|
|
SAND_HAL_KA_SC_SCAN_RESET_OFEM_RESET_N_MASK |
|
|
SAND_HAL_KA_SC_SCAN_RESET_IFE_A_RESET_N_MASK |
|
|
SAND_HAL_KA_SC_SCAN_RESET_I2C_MUX1_RESET_N_MASK |
|
|
SAND_HAL_KA_SC_SCAN_RESET_PHY0_RESET_N_MASK |
|
|
SAND_HAL_KA_SC_SCAN_RESET_PHY1_RESET_N_MASK;
|
|
|
|
karef_ps->reset_ul = tmp;
|
|
|
|
/*
|
|
* Wait a bit to allow the ofem fpga to get its brains
|
|
*/
|
|
udelay(5000);
|
|
|
|
/*
|
|
* Check to see if the ofem is there
|
|
*/
|
|
ofem_id = (unsigned char)((karef_ps->boardinfo_ul & SAND_HAL_KA_SC_SCAN_BRD_INFO_FEM_ID_MASK)
|
|
>> SAND_HAL_KA_SC_SCAN_BRD_INFO_FEM_ID_SHIFT);
|
|
if(0xF != ofem_id) {
|
|
tmp =
|
|
SAND_HAL_KA_OF_OFEM_RESET_I2C_MUX0_RESET_N_MASK |
|
|
SAND_HAL_KA_OF_OFEM_RESET_LOCH0_RESET_N_MASK |
|
|
SAND_HAL_KA_OF_OFEM_RESET_MAC0_RESET_N_MASK;
|
|
|
|
ofem_ps = (OFEM_FPGA_REGS_ST *)CONFIG_SYS_OFEM_FPGA_BASE;
|
|
ofem_ps->reset_ul = tmp;
|
|
|
|
ofem_ps->control_ul |= 1 < SAND_HAL_KA_OF_OFEM_CNTL_FAULT_LED_SHIFT;
|
|
}
|
|
|
|
karef_ps->control_ul |= 1 << SAND_HAL_KA_SC_SCAN_CNTL_FAULT_LED_SHIFT;
|
|
|
|
asm("eieio");
|
|
|
|
return;
|
|
}
|
|
|
|
int karefSetupVars(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
|
|
{
|
|
unsigned short sernum;
|
|
char envstr[255];
|
|
|
|
sernum = sbcommon_get_serial_number();
|
|
|
|
memset(envstr, 0, 255);
|
|
/*
|
|
* Setup our ip address
|
|
*/
|
|
sprintf(envstr, "10.100.70.%d", sernum);
|
|
|
|
setenv("ipaddr", envstr);
|
|
/*
|
|
* Setup the host ip address
|
|
*/
|
|
setenv("serverip", "10.100.17.10");
|
|
|
|
/*
|
|
* Setup default bootargs
|
|
*/
|
|
memset(envstr, 0, 255);
|
|
|
|
sprintf(envstr, "console=ttyS0,9600 root=/dev/nfs "
|
|
"rw nfsroot=10.100.17.10:/home/metrobox/mbc70.%d "
|
|
"nfsaddrs=10.100.70.%d:10.100.17.10:10.100.1.1:"
|
|
"255.255.0.0:karef%d.sandburst.com:eth0:none idebus=33",
|
|
sernum, sernum, sernum);
|
|
|
|
setenv("bootargs_nfs", envstr);
|
|
setenv("bootargs", envstr);
|
|
|
|
/*
|
|
* Setup CF bootargs
|
|
*/
|
|
memset(envstr, 0, 255);
|
|
|
|
sprintf(envstr, "console=ttyS0,9600 root=/dev/hda2 "
|
|
"rw ip=10.100.70.%d:::255.255.0.0:karef%d:eth0:none idebus=33",
|
|
sernum, sernum);
|
|
|
|
setenv("bootargs_cf", envstr);
|
|
|
|
/*
|
|
* Setup Default boot command
|
|
*/
|
|
setenv("bootcmd_tftp", "tftp 8000000 uImage.karef;bootm 8000000");
|
|
setenv("bootcmd", "tftp 8000000 uImage.karef;bootm 8000000");
|
|
|
|
/*
|
|
* Setup compact flash boot command
|
|
*/
|
|
setenv("bootcmd_cf", "fatload ide 0 8000000 uimage.karef;bootm 8000000");
|
|
|
|
saveenv();
|
|
|
|
return(1);
|
|
}
|
|
|
|
int karefRecover(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
|
|
{
|
|
unsigned short sernum;
|
|
char envstr[255];
|
|
|
|
sernum = sbcommon_get_serial_number();
|
|
|
|
printf("\nSetting up environment for filesystem recovery\n");
|
|
/*
|
|
* Setup default bootargs
|
|
*/
|
|
memset(envstr, 0, 255);
|
|
|
|
sprintf(envstr, "console=ttyS0,9600 root=/dev/ram0 "
|
|
"rw ip=10.100.70.%d:::255.255.0.0:karef%d:eth0:none",
|
|
sernum, sernum);
|
|
setenv("bootargs", envstr);
|
|
|
|
/*
|
|
* Setup Default boot command
|
|
*/
|
|
|
|
setenv("bootcmd", "fatload ide 0 8000000 uimage.karef;"
|
|
"fatload ide 0 8100000 pramdisk;"
|
|
"bootm 8000000 8100000");
|
|
|
|
printf("Done. Please type boot<cr>.\nWhen the kernel has booted"
|
|
" please type fsrecover.sh<cr>\n");
|
|
|
|
return(1);
|
|
}
|
|
|
|
U_BOOT_CMD(kasetup, 1, 1, karefSetupVars,
|
|
"Set environment to factory defaults", "");
|
|
|
|
U_BOOT_CMD(karecover, 1, 1, karefRecover,
|
|
"Set environment to allow for fs recovery", "");
|