mirror of
git://git.openwrt.org/openwrt/openwrt.git
synced 2024-12-23 23:23:31 +00:00
f1c041e34f
Google WiFi (codename: Gale) is an IPQ4019-based AP, with 2 Ethernet ports, 2x2 2.4+5GHz WiFi, 512 MB RAM, 4 GB eMMC, and a USB type C port. In its stock configuration, it runs a Chromium OS-based system, but you wouldn't know it, since you can only manage it via a "cloud" + mobile-app system. The "v2" label is coded into the bootloader, which prefers the "google,gale-v2" compatible string. I believe "v1" must have been pre-release hardware. Note: this is *not* the Google Nest WiFi, released in 2019. I include "factory.bin" support, where we generate a GPT-based disk image with 2 partitions -- a kernel partition (using the custom "Chrome OS kernel" GUID type) and a root filesystem partition. See below for flashing instructions. Sysupgrade is supported via recent emmc_do_upgrade() helper. This is a subtarget because it enables different features (FEATURES=boot-part rootfs-part) whose configurations don't make sense in the "generic" target, and because it builds in a few USB drivers, which are necessary for installation (installation is performed by booting from USB storage, and so these drivers cannot be built as modules, since we need to load modules from USB storage). Flashing instructions ===================== Documented here: https://openwrt.org/inbox/toh/google/google_wifi Note this requires booting from USB storage. Features ======== I've tested: * Ethernet, both WAN and LAN ports * eMMC * USB-C (hub, power-delivery, peripherals) * LED0 (R/G/B) * WiFi (limited testing) * SPI flash * Serial console: once in developer mode, console can be accessed via the USB-C port with SuzyQable, or other similar "Closed Case Debugging" tools: https://chromium.googlesource.com/chromiumos/third_party/hdctools/+/master/docs/ccd.md#suzyq-suzyqable * Sysupgrade Not tested: * TPM Known not working: * Reboot: this requires some additional TrustZone / SCM configuration to disable Qualcomm's SDI. I have a proposal upstream, and based on IRC chats, this might be acceptable with additional DT logic: [RFC PATCH] firmware: qcom_scm: disable SDI at boot https://lore.kernel.org/linux-arm-msm/20200721080054.2803881-1-computersforpeace@gmail.com/ * SMP: enabling secondary CPUs doesn't currently work using the stock bootloader, as the qcom_scm driver assumes newer features than this TrustZone firmware has. I posted notes here: [RFC] qcom_scm: IPQ4019 firmware does not support atomic API? https://lore.kernel.org/linux-arm-msm/20200913201608.GA3162100@bDebian/ * There's a single external button, and a few useful internal GPIO switches. I haven't hooked them up. The first two are fixed with subsequent commits. Additional notes ================ Much of the DTS is pulled from the Chrome OS kernel 3.18 branch, which the manufacturer image uses. Note: the manufacturer bootloader knows how to patch in calibration data via the wifi{0,1} aliases in the DTB, so while these properties aren't present in the DTS, they are available at runtime: # ls -l /sys/firmware/devicetree/base/soc/wifi@a*/qcom,ath10k-pre-calibration-data -r--r--r-- 1 root root 12064 Jul 15 19:11 /sys/firmware/devicetree/base/soc/wifi@a000000/qcom,ath10k-pre-calibration-data -r--r--r-- 1 root root 12064 Jul 15 19:11 /sys/firmware/devicetree/base/soc/wifi@a800000/qcom,ath10k-pre-calibration-data Ethernet MAC addresses are similarly patched in via the ethernet{0,1} aliases. Signed-off-by: Brian Norris <computersforpeace@gmail.com> (updated 901 - x1pro moved in the process) Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
217 lines
4.5 KiB
Bash
217 lines
4.5 KiB
Bash
PART_NAME=firmware
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REQUIRE_IMAGE_METADATA=1
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RAMFS_COPY_BIN='fw_printenv fw_setenv'
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RAMFS_COPY_DATA='/etc/fw_env.config /var/lock/fw_printenv.lock'
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platform_check_image() {
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case "$(board_name)" in
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asus,rt-ac42u |\
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asus,rt-ac58u)
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local ubidev=$(nand_find_ubi $CI_UBIPART)
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local asus_root=$(nand_find_volume $ubidev jffs2)
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[ -n "$asus_root" ] || return 0
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cat << EOF
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jffs2 partition is still present.
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There's probably no space left
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to install the filesystem.
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You need to delete the jffs2 partition first:
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# ubirmvol /dev/ubi0 --name=jffs2
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Once this is done. Retry.
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EOF
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return 1
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;;
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zte,mf286d)
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CI_UBIPART="rootfs"
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local mtdnum="$( find_mtd_index $CI_UBIPART )"
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[ ! "$mtdnum" ] && return 1
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ubiattach -m "$mtdnum" || true
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local ubidev="$( nand_find_ubi $CI_UBIPART )"
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local ubi_rootfs=$(nand_find_volume $ubidev ubi_rootfs)
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local ubi_rootfs_data=$(nand_find_volume $ubidev ubi_rootfs_data)
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[ -n "$ubi_rootfs" ] || [ -n "$ubi_rootfs_data" ] || return 0
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cat << EOF
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ubi_rootfs partition is still present.
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You need to delete the stock partition first:
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# ubirmvol /dev/ubi0 -N ubi_rootfs
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Please also delete ubi_rootfs_data, if exist:
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# ubirmvol /dev/ubi0 -N ubi_rootfs_data
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Once this is done. Retry.
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EOF
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return 1
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;;
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esac
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return 0;
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}
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askey_do_upgrade() {
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local tar_file="$1"
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local board_dir=$(tar tf $tar_file | grep -m 1 '^sysupgrade-.*/$')
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board_dir=${board_dir%/}
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tar Oxf $tar_file ${board_dir}/root | mtd write - rootfs
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nand_do_upgrade "$1"
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}
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zyxel_do_upgrade() {
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local tar_file="$1"
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local board_dir=$(tar tf $tar_file | grep -m 1 '^sysupgrade-.*/$')
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board_dir=${board_dir%/}
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tar Oxf $tar_file ${board_dir}/kernel | mtd write - kernel
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if [ -n "$UPGRADE_BACKUP" ]; then
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tar Oxf $tar_file ${board_dir}/root | mtd -j "$UPGRADE_BACKUP" write - rootfs
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else
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tar Oxf $tar_file ${board_dir}/root | mtd write - rootfs
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fi
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}
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platform_do_upgrade_mikrotik_nand() {
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local fw_mtd=$(find_mtd_part kernel)
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fw_mtd="${fw_mtd/block/}"
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[ -n "$fw_mtd" ] || return
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local board_dir=$(tar tf "$1" | grep -m 1 '^sysupgrade-.*/$')
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board_dir=${board_dir%/}
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[ -n "$board_dir" ] || return
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local kernel_len=$(tar xf "$1" ${board_dir}/kernel -O | wc -c)
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[ -n "$kernel_len" ] || return
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tar xf "$1" ${board_dir}/kernel -O | ubiformat "$fw_mtd" -y -S $kernel_len -f -
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CI_KERNPART="none"
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nand_do_upgrade "$1"
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}
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platform_do_upgrade() {
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case "$(board_name)" in
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8dev,jalapeno |\
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aruba,ap-303 |\
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aruba,ap-303h |\
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aruba,ap-365 |\
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avm,fritzbox-7530 |\
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avm,fritzrepeater-1200 |\
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avm,fritzrepeater-3000 |\
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buffalo,wtr-m2133hp |\
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cilab,meshpoint-one |\
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edgecore,ecw5211 |\
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edgecore,oap100 |\
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engenius,eap2200 |\
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glinet,gl-ap1300 |\
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luma,wrtq-329acn |\
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mobipromo,cm520-79f |\
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netgear,wac510 |\
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p2w,r619ac-64m |\
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p2w,r619ac-128m |\
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qxwlan,e2600ac-c2)
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nand_do_upgrade "$1"
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;;
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glinet,gl-b2200)
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CI_KERNPART="0:HLOS"
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CI_ROOTPART="rootfs"
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CI_DATAPART="rootfs_data"
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emmc_do_upgrade "$1"
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;;
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alfa-network,ap120c-ac)
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part="$(awk -F 'ubi.mtd=' '{printf $2}' /proc/cmdline | sed -e 's/ .*$//')"
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if [ "$part" = "rootfs1" ]; then
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fw_setenv active 2 || exit 1
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CI_UBIPART="rootfs2"
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else
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fw_setenv active 1 || exit 1
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CI_UBIPART="rootfs1"
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fi
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nand_do_upgrade "$1"
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;;
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asus,map-ac2200)
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CI_KERNPART="linux"
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nand_do_upgrade "$1"
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;;
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asus,rt-ac42u |\
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asus,rt-ac58u)
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CI_KERNPART="linux"
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nand_do_upgrade "$1"
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;;
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cellc,rtl30vw)
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CI_UBIPART="ubifs"
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askey_do_upgrade "$1"
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;;
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compex,wpj419)
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nand_do_upgrade "$1"
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;;
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google,wifi)
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export_bootdevice
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export_partdevice CI_ROOTDEV 0
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CI_KERNPART="kernel"
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CI_ROOTPART="rootfs"
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emmc_do_upgrade "$1"
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;;
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linksys,ea6350v3 |\
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linksys,ea8300 |\
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linksys,mr8300)
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platform_do_upgrade_linksys "$1"
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;;
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meraki,mr33)
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CI_KERNPART="part.safe"
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nand_do_upgrade "$1"
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;;
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mikrotik,cap-ac|\
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mikrotik,hap-ac2|\
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mikrotik,lhgg-60ad|\
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mikrotik,sxtsq-5-ac)
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[ "$(rootfs_type)" = "tmpfs" ] && mtd erase firmware
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default_do_upgrade "$1"
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;;
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mikrotik,hap-ac3)
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platform_do_upgrade_mikrotik_nand "$1"
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;;
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netgear,rbr50 |\
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netgear,rbs50 |\
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netgear,srr60 |\
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netgear,srs60)
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platform_do_upgrade_netgear_orbi_upgrade "$1"
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;;
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openmesh,a42 |\
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openmesh,a62 |\
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plasmacloud,pa1200 |\
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plasmacloud,pa2200)
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PART_NAME="inactive"
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platform_do_upgrade_dualboot_datachk "$1"
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;;
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teltonika,rutx10 |\
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zte,mf286d)
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CI_UBIPART="rootfs"
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nand_do_upgrade "$1"
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;;
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zyxel,nbg6617)
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zyxel_do_upgrade "$1"
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;;
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*)
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default_do_upgrade "$1"
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;;
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esac
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}
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platform_copy_config() {
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case "$(board_name)" in
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glinet,gl-b2200 |\
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google,wifi)
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emmc_copy_config
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;;
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esac
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return 0;
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}
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