mirror of
https://github.com/AsahiLinux/u-boot
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5a428e7510
When fixed offset via CONFIG_SYS_MMC_U_BOOT_OFFS is not specified then expects that U-Boot proper is placed immediately after SPL without any additional padding. This allows to generate smaller SPL+U-Boot final binary as it is not required to specify fixed offset to U-Boot proper at SPL compile time. In this case offset to U-Boot proper is calculated at SPL compile time in linker script. Signed-off-by: Pali Rohár <pali@kernel.org> Reviewed-by: Jaehoon Chung <jh80.chung@samsung.com> Signed-off-by: Marek Behún <kabel@kernel.org>
206 lines
4.9 KiB
C
206 lines
4.9 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* Copyright 2013 Freescale Semiconductor, Inc.
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*/
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#include <common.h>
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#include <cpu_func.h>
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#include <hang.h>
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#include <mmc.h>
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#include <malloc.h>
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#ifndef CONFIG_SYS_MMC_U_BOOT_OFFS
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extern uchar mmc_u_boot_offs[];
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#endif
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/*
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* The environment variables are written to just after the u-boot image
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* on SDCard, so we must read the MBR to get the start address and code
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* length of the u-boot image, then calculate the address of the env.
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*/
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#define ESDHC_BOOT_SIGNATURE_OFF 0x40
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#define ESDHC_BOOT_SIGNATURE 0x424f4f54
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#define ESDHC_BOOT_IMAGE_SIZE 0x48
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#define ESDHC_BOOT_IMAGE_ADDR 0x50
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#define MBRDBR_BOOT_SIG_55 0x1fe
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#define MBRDBR_BOOT_SIG_AA 0x1ff
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void mmc_spl_load_image(uint32_t offs, unsigned int size, void *vdst)
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{
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uint blk_start, blk_cnt, err;
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struct mmc *mmc = find_mmc_device(0);
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if (!mmc) {
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puts("spl: mmc device not found!!\n");
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hang();
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}
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if (mmc_init(mmc)) {
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puts("MMC init failed\n");
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return;
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}
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blk_start = ALIGN(offs, mmc->read_bl_len) / mmc->read_bl_len;
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blk_cnt = ALIGN(size, mmc->read_bl_len) / mmc->read_bl_len;
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err = mmc->block_dev.block_read(&mmc->block_dev, blk_start, blk_cnt,
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vdst);
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if (err != blk_cnt) {
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puts("spl: mmc read failed!!\n");
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hang();
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}
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}
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/*
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* The main entry for mmc booting. It's necessary that SDRAM is already
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* configured and available since this code loads the main U-Boot image
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* from mmc into SDRAM and starts it from there.
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*/
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void __noreturn mmc_boot(void)
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{
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__attribute__((noreturn)) void (*uboot)(void);
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uint blk_start, blk_cnt, err;
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uchar *tmp_buf;
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u32 blklen;
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u32 blk_off;
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#ifndef CONFIG_FSL_CORENET
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uchar val;
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#ifndef CONFIG_SPL_FSL_PBL
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u32 val32;
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#endif
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uint i, byte_num;
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u32 sector;
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#endif
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u32 offset, code_len;
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struct mmc *mmc;
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mmc = find_mmc_device(0);
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if (!mmc) {
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puts("spl: mmc device not found!!\n");
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hang();
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}
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if (mmc_init(mmc)) {
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puts("spl: mmc device init failed!\n");
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hang();
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}
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blklen = mmc->read_bl_len;
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if (blklen < 512)
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blklen = 512;
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tmp_buf = malloc(blklen);
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if (!tmp_buf) {
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puts("spl: malloc memory failed!!\n");
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hang();
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}
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#ifdef CONFIG_FSL_CORENET
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offset = CONFIG_SYS_MMC_U_BOOT_OFFS;
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#else
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sector = 0;
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again:
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memset(tmp_buf, 0, blklen);
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/*
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* Read source addr from sd card
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*/
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blk_start = (sector * 512) / mmc->read_bl_len;
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blk_off = (sector * 512) % mmc->read_bl_len;
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blk_cnt = DIV_ROUND_UP(512, mmc->read_bl_len);
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err = mmc->block_dev.block_read(&mmc->block_dev, blk_start, blk_cnt, tmp_buf);
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if (err != blk_cnt) {
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puts("spl: mmc read failed!!\n");
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hang();
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}
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#ifdef CONFIG_SPL_FSL_PBL
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val = *(tmp_buf + blk_off + MBRDBR_BOOT_SIG_55);
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if (0x55 != val) {
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puts("spl: mmc MBR/DBR signature is not valid!!\n");
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hang();
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}
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val = *(tmp_buf + blk_off + MBRDBR_BOOT_SIG_AA);
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if (0xAA != val) {
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puts("spl: mmc MBR/DBR signature is not valid!!\n");
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hang();
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}
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#else
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/*
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* Booting from On-Chip ROM (eSDHC or eSPI), Document Number: AN3659, Rev. 2, 06/2012.
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* Pre-PBL BootROMs (MPC8536E, MPC8569E, P2020, P1011, P1012, P1013, P1020, P1021, P1022)
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* require custom BOOT signature on sector 0 and MBR/DBR signature is not required at all.
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*/
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byte_num = 4;
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val32 = 0;
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for (i = 0; i < byte_num; i++) {
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val = *(tmp_buf + blk_off + ESDHC_BOOT_SIGNATURE_OFF + i);
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val32 = (val32 << 8) + val;
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}
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if (val32 != ESDHC_BOOT_SIGNATURE) {
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/* BOOT signature may be on the first 24 sectors (each being 512 bytes) */
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if (++sector < 24)
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goto again;
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puts("spl: mmc BOOT signature is not valid!!\n");
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hang();
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}
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#endif
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byte_num = 4;
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offset = 0;
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for (i = 0; i < byte_num; i++) {
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val = *(tmp_buf + blk_off + ESDHC_BOOT_IMAGE_ADDR + i);
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offset = (offset << 8) + val;
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}
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#ifndef CONFIG_SYS_MMC_U_BOOT_OFFS
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offset += (ulong)&mmc_u_boot_offs - CONFIG_SPL_TEXT_BASE;
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#else
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offset += CONFIG_SYS_MMC_U_BOOT_OFFS;
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#endif
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#endif
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/*
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* Load U-Boot image from mmc into RAM
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*/
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code_len = CONFIG_SYS_MMC_U_BOOT_SIZE;
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blk_start = offset / mmc->read_bl_len;
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blk_off = offset % mmc->read_bl_len;
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blk_cnt = ALIGN(code_len, mmc->read_bl_len) / mmc->read_bl_len + 1;
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if (blk_off) {
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err = mmc->block_dev.block_read(&mmc->block_dev,
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blk_start, 1, tmp_buf);
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if (err != 1) {
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puts("spl: mmc read failed!!\n");
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hang();
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}
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blk_start++;
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}
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err = mmc->block_dev.block_read(&mmc->block_dev, blk_start, blk_cnt,
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(uchar *)CONFIG_SYS_MMC_U_BOOT_DST +
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(blk_off ? (mmc->read_bl_len - blk_off) : 0));
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if (err != blk_cnt) {
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puts("spl: mmc read failed!!\n");
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free(tmp_buf);
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hang();
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}
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/*
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* SDHC DMA may erase bytes at dst + bl_len - blk_off - 8
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* due to unaligned access. So copy leading bytes from tmp_buf
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* after SDHC DMA transfer.
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*/
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if (blk_off)
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memcpy((uchar *)CONFIG_SYS_MMC_U_BOOT_DST,
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tmp_buf + blk_off, mmc->read_bl_len - blk_off);
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/*
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* Clean d-cache and invalidate i-cache, to
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* make sure that no stale data is executed.
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*/
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flush_cache(CONFIG_SYS_MMC_U_BOOT_DST, CONFIG_SYS_MMC_U_BOOT_SIZE);
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/*
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* Jump to U-Boot image
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*/
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uboot = (void *)CONFIG_SYS_MMC_U_BOOT_START;
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(*uboot)();
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}
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