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https://git.openwrt.org/openwrt/openwrt.git
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93259e8ca2
1. Create "rootfs_data" dynamicaly U-Boot firmware images can contain only 2 UBI volumes: bootfs (container with U-Boot + kernel + DTBs) and rootfs (e.g. squashfs). There is no way to include "rootfs_data" UBI volume or make firmware file tell U-Boot to create one. For that reason "rootfs_data" needs to be created dynamically. Use preinit script to handle that. Fire it right before "mount_root" one. 2. Relate "rootfs_data" to flashed firmware As already explained flashing new firmware with U-Boot will do nothing to the "rootfs_data". It could result in new firmware reusing old "rootfs_data" overlay UBI volume and its file. Users expect a clean state after flashing firmware (even if flashing the same one). Solve that by reading flash counter of running firmware and storing it in "rootfs_data" UBI volume. Every mismatch will result in wiping old data. Signed-off-by: Rafał Miłecki <rafal@milecki.pl>
440 lines
11 KiB
Bash
440 lines
11 KiB
Bash
# SPDX-License-Identifier: GPL-2.0 OR BSD-2-Clause
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. /lib/functions/bcm4908.sh
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RAMFS_COPY_BIN="bcm4908img expr grep ln fdtget fw_printenv fw_setenv readlink tr"
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PART_NAME=firmware
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BCM4908_FW_FORMAT=
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BCM4908_FW_BOARD_ID=
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BCM4908_FW_INT_IMG_FORMAT=
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# $(1): file to read from
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# $(2): offset in bytes
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# $(3): length in bytes
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get_content() {
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dd if="$1" skip=$2 bs=1 count=$3 2>/dev/null
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}
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# $(1): file to read from
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# $(2): offset in bytes
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get_hex_u32_le() {
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dd if="$1" skip=$2 bs=1 count=4 2>/dev/null | hexdump -v -e '1/4 "%02x"'
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}
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# $(1): file to read from
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# $(2): offset in bytes
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get_hex_u32_be() {
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dd if="$1" skip=$2 bs=1 count=4 2>/dev/null | hexdump -v -e '1/1 "%02x"'
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}
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platform_expected_image() {
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local machine=$(board_name)
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case "$machine" in
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asus,gt-ac5300) echo "asus GT-AC5300";;
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netgear,r8000p) echo "chk U12H359T00_NETGEAR";;
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tplink,archer-c2300-v1) echo "";;
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esac
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}
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platform_identify() {
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local magic
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local size
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magic=$(get_hex_u32_be "$1" 0)
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case "$magic" in
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d00dfeed)
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BCM4908_FW_FORMAT="pkgtb"
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return
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;;
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2a23245e)
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local header_len=$((0x$(get_hex_u32_be "$1" 4)))
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local board_id_len=$(($header_len - 40))
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BCM4908_FW_FORMAT="chk"
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BCM4908_FW_BOARD_ID=$(dd if="$1" skip=40 bs=1 count=$board_id_len 2>/dev/null | hexdump -v -e '1/1 "%c"')
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magic=$(get_hex_u32_be "$1" "$header_len")
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[ "$magic" = "d00dfeed" ] && {
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BCM4908_FW_INT_IMG_FORMAT="pkgtb"
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} || {
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BCM4908_FW_INT_IMG_FORMAT="bcm4908img"
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}
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BCM4908_FW_INT_IMG_EXTRACT_CMD="dd skip=$header_len iflag=skip_bytes"
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return
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;;
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esac
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size=$(wc -c "$1" | cut -d ' ' -f 1)
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magic=$(get_content "$1" $((size - 20 - 64 + 8)) 12)
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case "$magic" in
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GT-AC5300)
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local size=$(wc -c "$1" | cut -d ' ' -f 1)
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BCM4908_FW_FORMAT="asus"
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BCM4908_FW_BOARD_ID=$(get_content "$1" $((size - 20 - 64 + 8)) 12)
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BCM4908_FW_INT_IMG_FORMAT="bcm4908img"
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return
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;;
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esac
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# Detecting native format is a bit complex (it may start with CFE or
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# JFFS2) so just use bcm4908img instead of bash hacks.
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# Make it the last attempt as bcm4908img detects also vendor formats.
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bcm4908img info -i "$1" > /dev/null && {
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BCM4908_FW_FORMAT="bcm4908img"
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return
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}
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}
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#
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# pkgtb helpers
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#
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platform_pkgtb_get_image_name() {
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local configuration=$($2 < $1 | fdtget - /configurations default)
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[ -z "$configuration" ] && {
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echo "Failed to read default configuration from pkgtb" >&2
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return
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}
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local image_name=$($2 < $1 | fdtget - /configurations/$configuration $3)
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[ -z "$image_name" ] && {
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echo "Failed to read $3 from pkgtb configuration \"$configuration\"" >&2
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return
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}
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echo "$image_name"
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}
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platform_pkgtb_get_image() {
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local cmd="${2:-cat}"
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local image_name=$(platform_pkgtb_get_image_name "$1" "$cmd" "$3")
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$cmd < $1 | fdtget -p - /images/$image_name | grep -Eq "^data$" && {
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$cmd < $1 | fdtget -t r - /images/$image_name data
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return
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}
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$cmd < $1 | fdtget -p - /images/$image_name | grep -Eq "^data-position$" && {
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local data_position=$($cmd < $1 | fdtget - /images/$image_name data-position)
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local data_size=$($cmd < $1 | fdtget - /images/$image_name data-size)
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$cmd < $1 2>/dev/null | dd skip=$data_position count=$data_size iflag=skip_bytes,count_bytes
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return
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}
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$cmd < $1 | fdtget -p - /images/$image_name | grep -Eq "^data-offset" && {
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local data_offset=$($cmd < $1 | fdtget - /images/$image_name data-offset)
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local totalsize=$(get_hex_u32_be "$1" 4)
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local data_position=$(((0x$totalsize + data_offset + 3) & ~3))
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local data_size=$($cmd < $1 | fdtget - /images/$image_name data-size)
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$cmd < $1 2>/dev/null | dd skip=$data_position count=$data_size iflag=skip_bytes,count_bytes
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return
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}
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}
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platform_pkgtb_get_upgrade_index() {
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case "$(fw_printenv -l /tmp -n -c /tmp/env.config COMMITTED)" in
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1) echo 2;;
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2) echo 1;;
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*) echo 1;;
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esac
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}
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platform_pkgtb_commit() {
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local size=$((0x$(get_hex_u32_le /dev/ubi0_1 4)))
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local valid1=0
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local valid2=0
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local seq1
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local seq2
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local tmp
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# Read current values
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for valid in $(fw_printenv -l /tmp -n -c /tmp/env.config VALID | tr ',' ' '); do
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case "$valid" in
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1) valid0=1;;
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2) valid1=2;;
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esac
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done
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seq0=$(fw_printenv -l /tmp -n -c /tmp/env.config SEQ | cut -d ',' -f 1)
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seq1=$(fw_printenv -l /tmp -n -c /tmp/env.config SEQ | cut -d ',' -f 2)
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# Calculate values
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case "$1" in
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1) valid0=1; seq0=$(((seq1 + 1) % 1000));;
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2) valid1=2; seq1=$(((seq0 + 1) % 1000));;
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esac
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# Update variables
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fw_setenv -l /tmp -c /tmp/env.config COMMITTED "$1"
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fw_setenv -l /tmp -c /tmp/env.config VALID "$valid0,$valid1"
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fw_setenv -l /tmp -c /tmp/env.config SEQ "$seq0,$seq1"
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# Write
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tmp=$(cat /tmp/env.head /tmp/env.body | wc -c)
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cat /tmp/env.head /tmp/env.body | ubiupdatevol /dev/ubi0_1 -s $tmp -
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}
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#
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# check
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#
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platform_check_pkgtb() {
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local cmd="${2:-cat}"
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[ -n "$(platform_pkgtb_get_image_name "$1" "$cmd" "bootfs")" -a -n "$(platform_pkgtb_get_image_name "$1" "$cmd" "rootfs")" ]
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}
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platform_check_image() {
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[ "$#" -gt 1 ] && return 1
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local expected_image=$(platform_expected_image)
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local error=0
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platform_identify "$1"
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[ -z "$BCM4908_FW_FORMAT" ] && {
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echo "Invalid image type. Please use firmware specific for this device."
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notify_firmware_broken
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return 1
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}
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echo "Found $BCM4908_FW_FORMAT firmware for device ${BCM4908_FW_BOARD_ID:----}"
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local expected_image="$(platform_expected_image)"
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[ -n "$expected_image" -a -n "$BCM4908_FW_BOARD_ID" -a "$BCM4908_FW_FORMAT $BCM4908_FW_BOARD_ID" != "$expected_image" ] && {
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echo "Firmware doesn't match device ($expected_image)"
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error=1
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}
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case "$BCM4908_FW_FORMAT" in
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"bcm4908img")
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bcm4908img info -i "$1" > /dev/null || {
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echo "Failed to validate BCM4908 image" >&2
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notify_firmware_broken
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return 1
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}
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bcm4908img bootfs -i "$1" ls | grep -q "1-openwrt" || {
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# OpenWrt images have 1-openwrt dummy file in the bootfs.
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# Don't allow backup if it's missing
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notify_firmware_no_backup
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}
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;;
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"pkgtb")
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platform_check_pkgtb "$1" || {
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echo "Failed to validate pkgtb firmware" >&2
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notify_firmware_broken
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return 1
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}
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;;
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*)
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case "$BCM4908_FW_INT_IMG_FORMAT" in
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"bcm4908img")
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bcm4908img info -i "$1" > /dev/null || {
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echo "Failed to validate BCM4908 image" >&2
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notify_firmware_broken
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return 1
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}
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bcm4908img bootfs -i "$1" ls | grep -q "1-openwrt" || {
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# OpenWrt images have 1-openwrt dummy file in the bootfs.
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# Don't allow backup if it's missing
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notify_firmware_no_backup
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}
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;;
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"pkgtb")
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platform_check_pkgtb "$1" "$BCM4908_FW_INT_IMG_EXTRACT_CMD" || {
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echo "Failed to validate pkgtb firmware" >&2
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notify_firmware_broken
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return 1
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}
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;;
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esac
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;;
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esac
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return $error
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}
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#
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# upgrade
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#
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platform_pkgtb_clean_rootfs_data() {
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local ubidev=$(nand_find_ubi $CI_UBIPART)
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local ubivol="$(nand_find_volume $ubidev rootfs_data)"
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bcm4908_verify_rootfs_data "$ubivol"
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}
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platform_do_upgrade_pkgtb() {
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local cmd="${2:-cat}"
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local size
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local idx bootfs_id rootfs_id
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bcm4908_pkgtb_setup_env_config
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idx=$(platform_pkgtb_get_upgrade_index)
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case "$idx" in
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1) bootfs_id=3; rootfs_id=4;;
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2) bootfs_id=5; rootfs_id=6;;
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esac
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size=$(platform_pkgtb_get_image "$1" "$cmd" "bootfs" | wc -c)
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ubirmvol /dev/ubi0 -N bootfs$idx
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ubimkvol /dev/ubi0 -n $bootfs_id -N bootfs$idx -t static -s $size
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platform_pkgtb_get_image "$1" "$cmd" "bootfs" | ubiupdatevol /dev/ubi0_$bootfs_id -s $size -
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size=$(platform_pkgtb_get_image "$1" "$cmd" "rootfs" | wc -c)
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ubirmvol /dev/ubi0 -N rootfs$idx
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ubimkvol /dev/ubi0 -n $rootfs_id -N rootfs$idx -t dynamic -s $size
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platform_pkgtb_get_image "$1" "$cmd" "rootfs" | ubiupdatevol /dev/ubi0_$rootfs_id -s $size -
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platform_pkgtb_commit $idx
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CI_UBIPART="image"
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platform_pkgtb_clean_rootfs_data
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nand_do_upgrade_success
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}
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# $1: cferam index increment value
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platform_calc_new_cferam() {
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local inc="$1"
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local dir="/tmp/sysupgrade-bcm4908"
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local mtd=$(find_mtd_part bootfs)
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[ -z "$mtd" ] && {
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echo "Failed to find bootfs partition" >&2
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return
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}
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rm -fR $dir
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mkdir -p $dir
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mount -t jffs2 -o ro $mtd $dir || {
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echo "Failed to mount bootfs partition $mtd" >&2
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rm -fr $dir
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return
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}
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local idx=$(ls $dir/cferam.??? | sed -n 's/.*cferam\.\(\d\d\d\)/\1/p')
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[ -z "$idx" ] && {
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echo "Failed to find cferam current index" >&2
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rm -fr $dir
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return
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}
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umount $dir
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rm -fr $dir
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idx=$(($(expr $idx + $inc) % 1000))
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echo $(printf "cferam.%03d" $idx)
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}
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platform_do_upgrade_ubi() {
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local dir="/tmp/sysupgrade-bcm4908"
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local inc=1
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# Verify new bootfs size
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local mtd_bootfs_size=$(grep "\"bootfs\"" /proc/mtd | sed "s/mtd[0-9]*:[ \t]*\([^ \t]*\).*/\1/")
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[ -z "$mtd_bootfs_size" ] && {
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echo "Unable to find \"bootfs\" partition size"
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return
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}
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mtd_bootfs_size=$((0x$mtd_bootfs_size))
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local img_bootfs_size=$(bcm4908img extract -i "$1" -t bootfs | wc -c)
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[ $img_bootfs_size -gt $mtd_bootfs_size ] && {
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echo "New bootfs doesn't fit MTD partition."
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return
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}
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# Find cferam name for new firmware
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# For UBI we always flash "firmware" so don't increase cferam index if
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# there is "fallback". That could result in cferam.999 & cferam.001
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[ -n "$(find_mtd_index backup)" -o -n "$(find_mtd_index fallback)" ] && inc=0
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local cferam=$(platform_calc_new_cferam $inc)
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[ -z "$cferam" ] && exit 1
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# Prepare new firmware
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bcm4908img bootfs -i "$1" mv cferam.000 $cferam || {
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echo "Failed to rename cferam.000 to $cferam" >&2
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exit 1
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}
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# Extract rootfs for further flashing
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rm -fr $dir
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mkdir -p $dir
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bcm4908img extract -i "$1" -t rootfs > $dir/root || {
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echo "Failed to extract rootfs" >&2
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rm -fr $dir
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exit 1
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}
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# Flash bootfs MTD partition with new one
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mtd erase bootfs || {
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echo "Failed to erase bootfs" >&2
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rm -fr $dir
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exit 1
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}
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bcm4908img extract -i "$1" -t bootfs | mtd write - bootfs || {
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echo "Failed to flash bootfs" >&2
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rm -fr $dir
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exit 1
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}
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nand_do_upgrade $dir/root
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}
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platform_do_upgrade() {
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platform_identify "$1"
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# Try NAND aware UBI upgrade for OpenWrt images
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case "$BCM4908_FW_FORMAT" in
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"bcm4908img")
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bcm4908img bootfs -i "$1" ls | grep -q "1-openwrt" && platform_do_upgrade_ubi "$1"
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;;
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"pkgtb")
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platform_do_upgrade_pkgtb "$1"
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;;
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*)
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case "$BCM4908_FW_INT_IMG_FORMAT" in
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"bcm4908img")
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bcm4908img bootfs -i "$1" ls | grep -q "1-openwrt" && platform_do_upgrade_ubi "$1"
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;;
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"pkgtb")
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platform_do_upgrade_pkgtb "$1" "$BCM4908_FW_INT_IMG_EXTRACT_CMD"
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;;
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*)
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echo "NAND aware sysupgrade is unsupported for $BCM4908_FW_FORMAT format"
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;;
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esac
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;;
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esac
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# Above calls exit on success.
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# If we got here it isn't OpenWrt image or something went wrong.
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[ "$BCM4908_FW_FORMAT" = "pkgtb" -o "$BCM4908_FW_INT_IMG_FORMAT" = "pkgtb" ] && {
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echo "Failed to upgrade pkgtb. Fallback to raw flashing is impossible for this format." >&2
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exit 1
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}
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echo "Writing whole image to NAND flash. All erase counters will be lost."
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# Find cferam name for new firmware
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local cferam=$(platform_calc_new_cferam 1)
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[ -z "$cferam" ] && exit 1
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# Prepare new firmware
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bcm4908img bootfs -i "$1" mv cferam.000 $cferam || {
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echo "Failed to rename cferam.000 to $cferam" >&2
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exit 1
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}
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# Jush flash firmware partition as is
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[ -n "$(find_mtd_index backup)" ] && PART_NAME=backup
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[ -n "$(find_mtd_index fallback)" ] && PART_NAME=fallback
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mtd erase $PART_NAME
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default_do_upgrade "$1" "bcm4908img extract -t firmware"
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}
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