384 lines
12 KiB
C
384 lines
12 KiB
C
/*
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* Copyright (c) 2011 Sebastian Andrzej Siewior <bigeasy@linutronix.de>
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*
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* Copyright (C) 2015-2016 Freescale Semiconductor, Inc.
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* Copyright 2017 NXP
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*
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* SPDX-License-Identifier: GPL-2.0+
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*/
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#include <common.h>
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#include <image.h>
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#include <android_image.h>
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#include <malloc.h>
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#include <errno.h>
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#include <asm/bootm.h>
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#include <asm/mach-imx/boot_mode.h>
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#include <asm/arch/sys_proto.h>
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#include <fsl_fastboot.h>
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#include <asm/setup.h>
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#include <dm.h>
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#define ANDROID_IMAGE_DEFAULT_KERNEL_ADDR 0x10008000
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static char andr_tmp_str[ANDR_BOOT_ARGS_SIZE + 1];
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static ulong android_image_get_kernel_addr(const struct andr_img_hdr *hdr)
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{
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/*
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* All the Android tools that generate a boot.img use this
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* address as the default.
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*
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* Even though it doesn't really make a lot of sense, and it
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* might be valid on some platforms, we treat that adress as
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* the default value for this field, and try to execute the
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* kernel in place in such a case.
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*
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* Otherwise, we will return the actual value set by the user.
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*/
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if (hdr->kernel_addr == ANDROID_IMAGE_DEFAULT_KERNEL_ADDR)
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return (ulong)hdr + hdr->page_size;
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return hdr->kernel_addr;
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}
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/**
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* android_image_get_kernel() - processes kernel part of Android boot images
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* @hdr: Pointer to image header, which is at the start
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* of the image.
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* @verify: Checksum verification flag. Currently unimplemented.
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* @os_data: Pointer to a ulong variable, will hold os data start
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* address.
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* @os_len: Pointer to a ulong variable, will hold os data length.
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*
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* This function returns the os image's start address and length. Also,
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* it appends the kernel command line to the bootargs env variable.
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*
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* Return: Zero, os start address and length on success,
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* otherwise on failure.
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*/
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int android_image_get_kernel(const struct andr_img_hdr *hdr, int verify,
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ulong *os_data, ulong *os_len)
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{
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extern boot_metric metrics;
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u32 kernel_addr = android_image_get_kernel_addr(hdr);
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/*
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* Not all Android tools use the id field for signing the image with
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* sha1 (or anything) so we don't check it. It is not obvious that the
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* string is null terminated so we take care of this.
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*/
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strncpy(andr_tmp_str, hdr->name, ANDR_BOOT_NAME_SIZE);
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andr_tmp_str[ANDR_BOOT_NAME_SIZE] = '\0';
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if (strlen(andr_tmp_str))
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printf("Android's image name: %s\n", andr_tmp_str);
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printf("Kernel load addr 0x%08x size %u KiB\n",
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kernel_addr, DIV_ROUND_UP(hdr->kernel_size, 1024));
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char newbootargs[512] = {0};
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char commandline[2048] = {0};
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int offset;
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char *bootargs = env_get("bootargs");
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if (bootargs) {
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if (strlen(bootargs) + 1 > sizeof(commandline)) {
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printf("bootargs is too long!\n");
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return -1;
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}
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else
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strncpy(commandline, bootargs, sizeof(commandline) - 1);
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} else {
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offset = fdt_path_offset(gd->fdt_blob, "/chosen");
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if (offset > 0) {
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bootargs = (char *)fdt_getprop(gd->fdt_blob, offset,
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"bootargs", NULL);
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if (bootargs)
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sprintf(commandline, "%s ", bootargs);
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}
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if (*hdr->cmdline) {
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if (strlen(hdr->cmdline) + 1 >
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sizeof(commandline) - strlen(commandline)) {
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printf("cmdline in bootimg is too long!\n");
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return -1;
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}
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else
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strncat(commandline, hdr->cmdline, sizeof(commandline) - strlen(commandline));
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}
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}
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/* Add 'bootargs_ram_capacity' to hold the parameters based on different ram capacity */
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char *bootargs_ram_capacity = env_get("bootargs_ram_capacity");
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if (bootargs_ram_capacity) {
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strncat(commandline, " ", sizeof(commandline) - strlen(commandline));
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strncat(commandline, bootargs_ram_capacity,
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sizeof(commandline) - strlen(commandline));
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}
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#ifdef CONFIG_SERIAL_TAG
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struct tag_serialnr serialnr;
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get_board_serial(&serialnr);
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sprintf(newbootargs,
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" androidboot.serialno=%08x%08x",
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serialnr.high,
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serialnr.low);
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strncat(commandline, newbootargs, sizeof(commandline) - strlen(commandline));
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char bd_addr[16]={0};
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sprintf(bd_addr,
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"%08x%08x",
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serialnr.high,
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serialnr.low);
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sprintf(newbootargs,
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" androidboot.btmacaddr=%c%c:%c%c:%c%c:%c%c:%c%c:%c%c",
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bd_addr[0],bd_addr[1],bd_addr[2],bd_addr[3],bd_addr[4],bd_addr[5],
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bd_addr[6],bd_addr[7],bd_addr[8],bd_addr[9],bd_addr[10],bd_addr[11]);
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strncat(commandline, newbootargs, sizeof(commandline) - strlen(commandline));
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#endif
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/* append soc type into bootargs */
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char *soc_type = env_get("soc_type");
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if (soc_type) {
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sprintf(newbootargs,
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" androidboot.soc_type=%s",
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soc_type);
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strncat(commandline, newbootargs, sizeof(commandline) - strlen(commandline));
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}
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char *storage_type = env_get("storage_type");
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if (storage_type) {
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sprintf(newbootargs,
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" androidboot.storage_type=%s",
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storage_type);
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strncat(commandline, newbootargs, sizeof(commandline) - strlen(commandline));
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} else {
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int bootdev = get_boot_device();
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if (bootdev == SD1_BOOT || bootdev == SD2_BOOT ||
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bootdev == SD3_BOOT || bootdev == SD4_BOOT) {
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sprintf(newbootargs,
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" androidboot.storage_type=sd");
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} else if (bootdev == MMC1_BOOT || bootdev == MMC2_BOOT ||
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bootdev == MMC3_BOOT || bootdev == MMC4_BOOT) {
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sprintf(newbootargs,
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" androidboot.storage_type=emmc");
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} else if (bootdev == NAND_BOOT) {
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sprintf(newbootargs,
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" androidboot.storage_type=nand");
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} else
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printf("boot device type is incorrect.\n");
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strncat(commandline, newbootargs, sizeof(commandline) - strlen(commandline));
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if (bootloader_gpt_overlay()) {
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sprintf(newbootargs, " gpt");
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strncat(commandline, newbootargs, sizeof(commandline) - strlen(commandline));
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}
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}
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/* boot metric variables */
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metrics.ble_1 = get_timer(0);
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sprintf(newbootargs,
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" androidboot.boottime=1BLL:%d,1BLE:%d,KL:%d,KD:%d,AVB:%d,ODT:%d,SW:%d",
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metrics.bll_1, metrics.ble_1, metrics.kl, metrics.kd, metrics.avb,
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metrics.odt, metrics.sw);
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strncat(commandline, newbootargs, sizeof(commandline) - strlen(commandline));
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#if defined(CONFIG_ARCH_MX6) || defined(CONFIG_ARCH_MX7) || \
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defined(CONFIG_ARCH_MX7ULP) || defined(CONFIG_ARCH_IMX8M)
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char cause[18];
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memset(cause, '\0', sizeof(cause));
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get_reboot_reason(cause);
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if (strstr(cause, "POR"))
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sprintf(newbootargs," androidboot.bootreason=cold,powerkey");
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else if (strstr(cause, "WDOG") || strstr(cause, "WDG"))
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sprintf(newbootargs," androidboot.bootreason=watchdog");
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else
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sprintf(newbootargs," androidboot.bootreason=reboot");
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#else
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sprintf(newbootargs," androidboot.bootreason=reboot");
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#endif
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strncat(commandline, newbootargs, sizeof(commandline) - strlen(commandline));
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#ifdef CONFIG_AVB_SUPPORT
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/* secondary cmdline added by avb */
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char *bootargs_sec = env_get("bootargs_sec");
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if (bootargs_sec) {
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strncat(commandline, " ", sizeof(commandline) - strlen(commandline));
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strncat(commandline, bootargs_sec, sizeof(commandline) - strlen(commandline));
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}
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#endif
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#ifdef CONFIG_SYSTEM_RAMDISK_SUPPORT
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/* Normal boot:
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* cmdline to bypass ramdisk in boot.img, but use the system.img
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* Recovery boot:
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* Use the ramdisk in boot.img
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*/
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char *bootargs_3rd = env_get("bootargs_3rd");
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if (bootargs_3rd) {
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strncat(commandline, " ", sizeof(commandline) - strlen(commandline));
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strncat(commandline, bootargs_3rd, sizeof(commandline) - strlen(commandline));
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}
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#endif
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/* VTS need this commandline to verify fdt overlay. Pass the
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* dtb index as "0" here since we only have one dtb in dtbo
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* partition and haven't enabled the dtb overlay.
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*/
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#if defined(CONFIG_ANDROID_SUPPORT) || defined(CONFIG_ANDROID_AUTO_SUPPORT)
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sprintf(newbootargs," androidboot.dtbo_idx=0");
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strncat(commandline, newbootargs, sizeof(commandline) - strlen(commandline));
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#endif
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char *keystore = env_get("keystore");
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if ((keystore == NULL) || strncmp(keystore, "trusty", sizeof("trusty"))) {
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char *bootargs_trusty = "androidboot.keystore=software";
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strncat(commandline, " ", sizeof(commandline) - strlen(commandline));
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strncat(commandline, bootargs_trusty, sizeof(commandline) - strlen(commandline));
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} else {
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char *bootargs_trusty = "androidboot.keystore=trusty";
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strncat(commandline, " ", sizeof(commandline) - strlen(commandline));
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strncat(commandline, bootargs_trusty, sizeof(commandline) - strlen(commandline));
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}
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#ifdef CONFIG_APPEND_BOOTARGS
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/* Add 'append_bootargs' to hold some paramemters which need to be appended
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* to bootargs */
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char *append_bootargs = env_get("append_bootargs");
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if (append_bootargs) {
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if (strlen(append_bootargs) + 2 >
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(sizeof(commandline) - strlen(commandline))) {
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printf("The 'append_bootargs' is too long to be appended to bootargs\n");
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} else {
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strncat(commandline, " ", sizeof(commandline) - strlen(commandline));
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strncat(commandline, append_bootargs, sizeof(commandline) - strlen(commandline));
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}
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}
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#endif
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debug("Kernel command line: %s\n", commandline);
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env_set("bootargs", commandline);
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if (os_data) {
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*os_data = (ulong)hdr;
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*os_data += hdr->page_size;
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}
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if (os_len)
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*os_len = hdr->kernel_size;
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return 0;
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}
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int android_image_check_header(const struct andr_img_hdr *hdr)
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{
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return memcmp(ANDR_BOOT_MAGIC, hdr->magic, ANDR_BOOT_MAGIC_SIZE);
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}
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ulong android_image_get_end(const struct andr_img_hdr *hdr)
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{
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ulong end;
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/*
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* The header takes a full page, the remaining components are aligned
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* on page boundary
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*/
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end = (ulong)hdr;
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end += hdr->page_size;
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end += ALIGN(hdr->kernel_size, hdr->page_size);
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end += ALIGN(hdr->ramdisk_size, hdr->page_size);
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end += ALIGN(hdr->second_size, hdr->page_size);
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return end;
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}
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ulong android_image_get_kload(const struct andr_img_hdr *hdr)
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{
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return android_image_get_kernel_addr(hdr);
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}
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int android_image_get_ramdisk(const struct andr_img_hdr *hdr,
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ulong *rd_data, ulong *rd_len)
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{
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if (!hdr->ramdisk_size) {
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*rd_data = *rd_len = 0;
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return -1;
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}
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printf("RAM disk load addr 0x%08x size %u KiB\n",
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hdr->ramdisk_addr, DIV_ROUND_UP(hdr->ramdisk_size, 1024));
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*rd_data = (unsigned long)hdr;
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*rd_data += hdr->page_size;
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*rd_data += ALIGN(hdr->kernel_size, hdr->page_size);
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*rd_len = hdr->ramdisk_size;
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return 0;
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}
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int android_image_get_second(const struct andr_img_hdr *hdr,
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ulong *second_data, ulong *second_len)
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{
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if (!hdr->second_size) {
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*second_data = *second_len = 0;
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return -1;
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}
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*second_data = (unsigned long)hdr;
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*second_data += hdr->page_size;
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*second_data += ALIGN(hdr->kernel_size, hdr->page_size);
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*second_data += ALIGN(hdr->ramdisk_size, hdr->page_size);
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printf("second address is 0x%lx\n",*second_data);
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*second_len = hdr->second_size;
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return 0;
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}
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#if !defined(CONFIG_SPL_BUILD)
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/**
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* android_print_contents - prints out the contents of the Android format image
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* @hdr: pointer to the Android format image header
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*
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* android_print_contents() formats a multi line Android image contents
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* description.
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* The routine prints out Android image properties
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*
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* returns:
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* no returned results
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*/
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void android_print_contents(const struct andr_img_hdr *hdr)
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{
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const char * const p = IMAGE_INDENT_STRING;
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/* os_version = ver << 11 | lvl */
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u32 os_ver = hdr->os_version >> 11;
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u32 os_lvl = hdr->os_version & ((1U << 11) - 1);
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printf("%skernel size: %x\n", p, hdr->kernel_size);
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printf("%skernel address: %x\n", p, hdr->kernel_addr);
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printf("%sramdisk size: %x\n", p, hdr->ramdisk_size);
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printf("%sramdisk addrress: %x\n", p, hdr->ramdisk_addr);
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printf("%ssecond size: %x\n", p, hdr->second_size);
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printf("%ssecond address: %x\n", p, hdr->second_addr);
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printf("%stags address: %x\n", p, hdr->tags_addr);
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printf("%spage size: %x\n", p, hdr->page_size);
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/* ver = A << 14 | B << 7 | C (7 bits for each of A, B, C)
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* lvl = ((Y - 2000) & 127) << 4 | M (7 bits for Y, 4 bits for M) */
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printf("%sos_version: %x (ver: %u.%u.%u, level: %u.%u)\n",
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p, hdr->os_version,
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(os_ver >> 7) & 0x7F, (os_ver >> 14) & 0x7F, os_ver & 0x7F,
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(os_lvl >> 4) + 2000, os_lvl & 0x0F);
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printf("%sname: %s\n", p, hdr->name);
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printf("%scmdline: %s\n", p, hdr->cmdline);
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}
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#endif
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#define ARM64_IMAGE_MAGIC 0x644d5241
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bool image_arm64(void *images)
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{
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struct header_image *ih;
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ih = (struct header_image *)images;
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debug("image magic: %x\n", ih->magic);
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if (ih->magic == le32_to_cpu(ARM64_IMAGE_MAGIC))
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return true;
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return false;
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}
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