u-boot/arch/arm/cpu/armv7/omap3/boot.c

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/*
* OMAP3 boot
*
* Copyright (C) 2015 Paul Kocialkowski <contact@paulk.fr>
*
* SPDX-License-Identifier: GPL-2.0+
*/
#include <common.h>
#include <asm/io.h>
#include <asm/arch/sys_proto.h>
#include <spl.h>
static u32 boot_devices[] = {
BOOT_DEVICE_ONENAND,
BOOT_DEVICE_NAND,
BOOT_DEVICE_ONENAND,
BOOT_DEVICE_MMC2,
BOOT_DEVICE_ONENAND,
BOOT_DEVICE_MMC2,
BOOT_DEVICE_MMC1,
BOOT_DEVICE_XIP,
BOOT_DEVICE_XIPWAIT,
BOOT_DEVICE_MMC2,
BOOT_DEVICE_XIP,
BOOT_DEVICE_XIPWAIT,
BOOT_DEVICE_NAND,
BOOT_DEVICE_XIP,
BOOT_DEVICE_XIPWAIT,
BOOT_DEVICE_NAND,
BOOT_DEVICE_ONENAND,
BOOT_DEVICE_MMC2,
BOOT_DEVICE_MMC1,
BOOT_DEVICE_XIP,
BOOT_DEVICE_XIPWAIT,
BOOT_DEVICE_NAND,
BOOT_DEVICE_ONENAND,
BOOT_DEVICE_MMC2,
BOOT_DEVICE_MMC1,
BOOT_DEVICE_XIP,
BOOT_DEVICE_XIPWAIT,
BOOT_DEVICE_NAND,
BOOT_DEVICE_MMC2_2,
};
u32 omap_sys_boot_device(void)
{
struct ctrl *ctrl_base = (struct ctrl *)OMAP34XX_CTRL_BASE;
u32 sys_boot;
/* Grab the first 5 bits of the status register for SYS_BOOT. */
sys_boot = readl(&ctrl_base->status) & ((1 << 5) - 1);
if (sys_boot >= (sizeof(boot_devices) / sizeof(u32)))
return BOOT_DEVICE_NONE;
return boot_devices[sys_boot];
}
int omap_reboot_mode(char *mode, unsigned int length)
{
u32 reboot_mode;
char c;
if (length < 2)
return -1;
reboot_mode = readl((u32 *)(OMAP34XX_SCRATCHPAD +
OMAP_REBOOT_REASON_OFFSET));
c = (reboot_mode >> 24) & 0xff;
if (c != 'B')
return -1;
c = (reboot_mode >> 16) & 0xff;
if (c != 'M')
return -1;
c = reboot_mode & 0xff;
mode[0] = c;
mode[1] = '\0';
return 0;
}
int omap_reboot_mode_clear(void)
{
writel(0, (u32 *)(OMAP34XX_SCRATCHPAD + OMAP_REBOOT_REASON_OFFSET));
return 0;
}
int omap_reboot_mode_store(char *mode)
{
u32 reboot_mode;
reboot_mode = 'B' << 24 | 'M' << 16 | mode[0];
writel(reboot_mode, (u32 *)(OMAP34XX_SCRATCHPAD +
OMAP_REBOOT_REASON_OFFSET));
return 0;
}