blob: fdb57dbed90b07a3dea81f684572ec048f3e3444 [file] [log] [blame]
b.liue9582032025-04-17 19:18:16 +08001# The U-Boot loader of the OpenMesh devices requires image sizes and
2# checksums to be provided in the U-Boot environment.
3# The OpenMesh devices come with 2 main partitions - while one is active
4# sysupgrade will flash the other. The boot order is changed to boot the
5# newly flashed partition. If the new partition can't be booted due to
6# upgrade failures the previously used partition is loaded.
7
8cfg_value_get()
9{
10 local cfg=$1 cfg_opt
11 local section=$2 our_section=0
12 local param=$3 our_param=
13
14 for cfg_opt in $cfg; do
15 [ "$cfg_opt" = "[$section]" ] && our_section=1 && continue
16 [ "$our_section" = "1" ] || continue
17
18 our_param=${cfg_opt%%=*}
19 [ "$param" = "$our_param" ] && echo ${cfg_opt##*=} && break
20 done
21}
22
23platform_do_upgrade_openmesh()
24{
25 local img_path="$1"
26 local restore_backup
27
28 local setenv_script="/tmp/fw_env_upgrade"
29
30 local inactive_mtd="$(find_mtd_index $PART_NAME)"
31 local inactive_offset="$(cat /sys/class/mtd/mtd${inactive_mtd}/offset)"
32 local total_size="$(cat /sys/class/mtd/mtd${inactive_mtd}/size)"
33 local total_kbs=$((total_size / 1024))
34 local flash_start_mem=0x9f000000
35 local data_offset=$((64 * 1024))
36
37 # detect to which flash region the new image is written to.
38 #
39 # 1. check what is the mtd index for the first flash region on this
40 # device
41 # 2. check if the target partition ("inactive") has the mtd index of
42 # the first flash region
43 #
44 # - when it is: the new bootseq will be 1,2 and the first region is
45 # modified
46 # - when it isn't: bootseq will be 2,1 and the second region is
47 # modified
48 #
49 # The detection has to be done via the hardcoded mtd partition because
50 # the current boot might be done with the fallback region. Let us
51 # assume that the current bootseq is 1,2. The bootloader detected that
52 # the image in flash region 1 is corrupt and thus switches to flash
53 # region 2. The bootseq in the u-boot-env is now still the same and
54 # the sysupgrade code can now only rely on the actual mtd indexes and
55 # not the bootseq variable to detect the currently booted flash
56 # region/image.
57 #
58 # In the above example, an implementation which uses bootseq ("1,2") to
59 # detect the currently booted image would assume that region 1 is booted
60 # and then overwrite the variables for the wrong flash region (aka the
61 # one which isn't modified). This could result in a device which doesn't
62 # boot anymore to Linux until it was reflashed with ap51-flash.
63 local next_boot_part="1"
64 local primary_kernel_mtd="3"
65 [ "$inactive_mtd" = "$primary_kernel_mtd" ] || next_boot_part="2"
66
67 local cfg_size=$(dd if="$img_path" bs=8 skip=70 count=1 iflag=skip_bytes 2>/dev/null)
68 local cfg_length=$((0x$cfg_size))
69 local cfg_content=$(dd if="$img_path" bs=$cfg_length skip=$data_offset count=1 iflag=skip_bytes 2>/dev/null)
70
71 local kernel_size=$(dd if="$img_path" bs=8 skip=142 count=1 iflag=skip_bytes 2>/dev/null)
72 local kernel_length=$((0x$kernel_size))
73 local kernel_kbs=$((kernel_length / 1024))
74 local kernel_md5=$(cfg_value_get "$cfg_content" "vmlinux" "md5sum")
75
76 local rootfs_size=$(dd if="$img_path" bs=8 skip=214 count=1 iflag=skip_bytes 2>/dev/null)
77 local rootfs_length=$((0x$rootfs_size))
78 local rootfs_md5=$(cfg_value_get "$cfg_content" "rootfs" "md5sum")
79 local rootfs_checksize=$(cfg_value_get "$cfg_content" "rootfs" "checksize")
80
81 # take care of restoring a saved config
82 [ -n "$UPGRADE_BACKUP" ] && restore_backup="${MTD_CONFIG_ARGS} -j ${UPGRADE_BACKUP}"
83
84 # write image parts
85 mtd -q erase inactive
86 dd if="$img_path" bs=1 skip=$((data_offset + cfg_length + kernel_length)) count=$rootfs_length 2>&- | \
87 mtd -n -p $kernel_length $restore_backup write - $PART_NAME
88 dd if="$img_path" bs=1024 skip=$((data_offset + cfg_length)) count=$kernel_kbs iflag=skip_bytes 2>&- | \
89 mtd -n write - $PART_NAME
90
91 # prepare new u-boot env
92 if [ "$next_boot_part" = "1" ]; then
93 echo "bootseq 1,2" > $setenv_script
94 else
95 echo "bootseq 2,1" > $setenv_script
96 fi
97
98 printf "kernel_size_%i %i\n" $next_boot_part $kernel_kbs >> $setenv_script
99 printf "vmlinux_start_addr 0x%08x\n" $((flash_start_mem + inactive_offset)) >> $setenv_script
100 printf "vmlinux_size 0x%08x\n" ${kernel_length} >> $setenv_script
101 printf "vmlinux_checksum %s\n" ${kernel_md5} >> $setenv_script
102
103 printf "rootfs_size_%i %i\n" $next_boot_part $((total_kbs - kernel_kbs)) >> $setenv_script
104 printf "rootfs_start_addr 0x%08x\n" $((flash_start_mem+inactive_offset+kernel_length)) >> $setenv_script
105 printf "rootfs_size %s\n" $rootfs_checksize >> $setenv_script
106 printf "rootfs_checksum %s\n" ${rootfs_md5} >> $setenv_script
107
108 # store u-boot env changes
109 mkdir -p /var/lock
110 fw_setenv -s $setenv_script || {
111 echo "failed to update U-Boot environment"
112 return 1
113 }
114}