This patch adds supports for the WNR2000v1 board with 4MB flash, and
produces device-specific factory, rootfs, and sysupgrade files for the
WNR2000v1. This board is errorneously claimed as supported on the OpenWRT
wiki as AP81, but AP81 image would not work because of APT81 image
requiring having 8MB of flash, while WNR2000v1 has only 4MB.
The image requires the u-boot bootloader to be modified to fuhry's
bootloader first.
Short specification:
- CPU: Atheros AR9132
- 4x 10/100 Mbps Ethernet, 1x WAN 10/100 Mbps
- 4 MB of Flash
- 32 MB of RAM
- UART header (J1) on board
- 1x button
Factory/Initial flash instructions:
- Set up a TFTP server on your local machine.
- Download the uImage for ar71xx-generic and the rootfs image for
ar71xx-generic-wnr2000 and save in the tftp server root.
- Gain serial access to the router via the UART port (telnetenable over
the network only won't work!).
- Upgrade the u-boot bootloader to fuhry's version by running the
script: http://fuhry.com/b/wnr2000/install-repart.sh
- When the router restarts, interrupt u-boot and gain access to u-boot command line.
- Repartititon the board and flash initial uImage and rootfs as follow.
Commands to type in u-boot:
# tells u-boot that we have a tftp server on 192.168.1.10
setenv serverip 192.168.1.10
# tells u-boot that the router should take the address 192.168.1.1
setenv ipaddr 192.168.1.1
# erase the region from 0x050000-0x3f0000
erase 0xbf050000 +0x3A0000
# loads sqfs.bin on TFTP server, and put it to memory address 0x81000000
tftpboot 0x81000000 sqfs.bin
# it will tell you the length of sqfs.bin in hex, let's say ZZZZZZ
# copy bit by bit 0xZZZZZZ bytes from offset 0x050000
cp.b 0x81000000 0xbf050000 0xZZZZZZ
# same to the uImage.bin, write it right next to sqfs.bin
# again, 0xYYYYYY is the length that tftpboot reports
tftpboot 0x81000000 uImage.bin
cp.b 0x81000000 0xbf2a0000 0xYYYYYY
# We need to tell the kernel what board it is booting into, and where to find the partitions
setenv bootargs "board=WNR2000 console=ttyS0,115200 mtdparts=spi0.0:256k(u-boot)ro,64k(u-boot-env)ro,3712k(firmware),64k(art)ro rootfstype=squashfs,jffs2 noinitrd"
# Tell u-boot where to find the uImage
setenv bootcmd "bootm 0xbf2a0000"
# Tell u-boot to save parameters to the u-boot-env partitions
saveenv
# Reset the board
reset
Tested on:
- WNR2000v1 board.
- Initial flash works.
Known bugs:
- I don't know why factory image doesn't work on initial flash on stock
firmware in u-boot recovery mode while it should.
- Sysupgrade does not yet work, if you do -f it will mess up your
installation (requiring a reinstall of sqfs and uImage).
Signed-off-by: Huan Truong <htruong@tnhh.net>
This board is very old and unlikely to still be relevant today. Support
for it contains a significant amount of device specific baggage which is
worth getting rid of.
Signed-off-by: Felix Fietkau <nbd@nbd.name>
YunCore SR3200 is a dual-band AC1200 router, based on Qualcomm/Atheros
QCA9563+QCA9882+QCA8337N.
YunCore XD3200 (FCC ID: 2ADUG-XD3200) is a dual-band AC1200 ceiling mount
AP with PoE support, based on Qualcomm/Atheros QCA9563+QCA9882+QCA8334.
Common specification:
- 775/650/258 MHz (CPU/DDR/AHB)
- 128 MB or RAM (DDR2)
- 16 MB of FLASH (SPI NOR)
- 2T2R 2.4 GHz, with ext. PA (SKY65174-21), up to 30 dBm
- 2T2R 5 GHz, with ext. PA (SKY85405-11) and LNA (SKY85601-11), up to 30 dBm
SR3200 specification:
- 5x 10/100/1000 Mbps Ethernet
- 6x ext. RP-SMA antennas (actually, only 4 are connected with radio chips)
- 3x LED (+ 5x LED in RJ45 sockets), 1x button
- UART header on PCB
XD3200 specification:
- 2x 10/100/1000 Mbps Ethernet, with 802.3at PoE support (WAN port)
- 4x internal antennas
- 3 sets of LEDs on external PCB (+ 2x LED near RJ45 sockets), 1x button
- UART and JTAG (custom 6-pin, 2 mm pitch) headers on PCB
LED for 5 GHz WLAN is currently not supported on both devices as it is
connected directly to the QCA9882 radio chip.
Flash instruction under vendor firmware, using telnet/SSH:
1. If your firmware does not have root password, go to point 5
2. Connect PC with 192.168.1.x address to LAN or WAN port
3. Power up device, enter failsafe mode with button (no LED indicator!)
4. Change root password and reboot (mount_root, passwd ..., reboot -f)
5. Upload lede-ar71xx-...-sysupgrade.bin to /tmp using SCP
6. Connect PC with 192.168.188.x address to LAN port, SSH to 192.168.188.253
7. Invoke:
- cd /tmp
- fw_setenv bootcmd "bootm 0x9fe80000 || bootm 0x9f050000"
- mtd -e firmware -r write lede-ar71xx-...-sysupgrade.bin firmware
Flash instruction under U-Boot, using UART:
1. tftp 0x80060000 lede-ar71xx-...-sysupgrade.bin
2. erase 0x9f050000 +$filesize
3. cp.b $fileaddr 0x9f050000 $filesize
4. setenv bootcmd "bootm 0x9fe80000 || bootm 0x9f050000"
5. saveenv && reset
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
This device uses NAND FLASH, so it should be kept in nand subtarget.
Also, inlcude in packages kmod-usb-ledtrig-usbport instead of
obsolete kmod-ledtrig-usbdev.
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
CPE830 is a clone of AP90Q, with different type of antenna (panel)
and additional 4 LEDs for WiFi signal level indication.
Use the same flash approach as for YunCore AP90Q.
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
YunCore AP90Q is an outdoor CPE/AP based on Qualcomm/Atheros QCA9531 v2.
Short specification:
- 650/600/216 MHz (CPU/DDR/AHB)
- 2x 10/100 Mbps Ethernet, passive PoE support
- 64/128 MB of RAM (DDR2)
- 16 MB of FLASH
- 2T2R 2.4 GHz with external PA, up to 29 dBm
- 2x internal 5 dBi omni antennas
- 4x LED, 1x button
- UART (JP1) header on PCB
Flash instruction under U-Boot, using UART:
1. tftp 0x80060000 lede-ar71xx-generic-ap90q-squashfs-sysupgrade
2. erase 0x9f050000 +$filesize
3. cp.b $fileaddr 0x9f050000 $filesize
4. setenv bootcmd "bootm 0x9f050000"
5. saveenv && reset
Flash instruction under vendor fimrware, using telnet/SSH:
1. Connect PC with 192.168.1.x address to WAN port
2. Power up device, enter failsafe mode with button (no LED indicator!)
3. Change root password and reboot (mount_root, passwd ..., reboot -f)
4. Upload lede-ar71xx-generic-ap90q-squashfs-sysupgrade.bin to /tmp using SCP
5. Connect PC with 192.168.188.x address to LAN port, SSH to 192.168.188.253
6. Invoke:
- cd /tmp
- fw_setenv bootcmd "bootm 0x9f050000"
- mtd erase firmware
- mtd -r write lede-ar71xx-generic-ap90q-squashfs-sysupgrade.bin firmware
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
COMFAST CF-E380AC v1/v2 is a ceiling mount AP with PoE
support, based on Qualcomm/Atheros QCA9558+QCA9880+AR8035.
There are two versions of this model, with different RAM
and U-Boot mtd partition sizes:
- v1: 128 MB of RAM, 128 KB U-Boot image size
- v2: 256 MB of RAM, 256 KB U-Boot image size
Version number is available only inside vendor GUI,
hardware and markings are the same.
Short specification:
- 720/600/200 MHz (CPU/DDR/AHB)
- 1x 10/100/1000 Mbps Ethernet, with PoE support
- 128 or 256 MB of RAM (DDR2)
- 16 MB of FLASH
- 3T3R 2.4 GHz, with external PA (SE2576L), up to 28 dBm
- 3T3R 5 GHz, with external PA (SE5003L1), up to 30 dBm
- 6x internal antennas
- 1x RGB LED, 1x button
- UART (T11), LEDs/GPIO (J7) and USB (T12) headers on PCB
- external watchdog (Pericon Technology PT7A7514)
Flash instruction:
Original firmware is based on OpenWrt.
Use sysupgrade image directly in vendor GUI.
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
As we already have support for CF-E316N v2 and many devices from
this vendor look similar, the support was included in existing
mach-*.c file, with few cleanups and fixes.
All 3 devices are based on Qualcomm/Atheros QCA9531 v2.
COMFAST CF-E320N v2 is a ceiling mount AP with PoE support.
Short specification:
- 650/393/216 MHz (CPU/DDR/AHB)
- 2x 10/100 Mbps Ethernet, both with PoE support
- 64 MB of RAM (DDR2)
- 16 MB of FLASH
- 2T2R 2.4 GHz, up to 22 dBm
- 2x internal antennas
- 1x RGB LED, 1x button
- UART (J1), GPIO (J9) and USB (J2) headers on PCB
- external watchdog (Pericon Technology PT7A7514)
COMFAST CF-E520N/CF-E530N are in-wall APs with USB and PoE support.
They seem to have different only the front panel.
Short specification:
- 650/393/216 MHz (CPU/DDR/AHB)
- 2x 10/100 Mbps Ethernet, WAN with PoE support
- 1x USB 2.0 (in CF-E520N covered by panel, available on PCB)
- 32 MB of RAM (DDR2)
- 8 MB of FLASH
- 2T2R 2.4 GHz, up to 22 dBm
- 2x internal antennas
- 1x LED, 1x button
- UART (J1) headers on PCB
Flash instruction:
Original firmware is based on OpenWrt.
Use sysupgrade image directly in vendor GUI.
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
The latest stock firmwares for US and EU regions have started checking the
region code.
Tested-by: Andreas Ziegler <ml@andreas-ziegler.de>
Signed-off-by: Matthias Schiffer <mschiffer@universe-factory.net>
This patch adds support solely for version 1 of the TP-Link WR802N.
It is based on Rick Pannen's patch posted on the OpenWrt devel list.
Signed-off-by: Julius Schulz-Zander <julius@inet.tu-berlin.de>
On the stock Meraki Firmare for the MR12/MR16, a chunk of SPI space
after u-boot-env is used to store the boards Mac address. Sadly as this
was removed on any device already on OpenWRT/LEDE, moving forward a new,
64k partition named "mac" will be used to store the mac address for the
device (which is the minimum size). This allows users to properly set
the correct MAC, without editing the ART partition (which holds the same
MAC for all devices).
The reason the space is taken from kernel instead of rootfs is currently
kernels are only 1.3MB, so that way we can leave the current rootfs
space alone for users who fully utilize the available storage space.
Once this partition is added to a device, you can set your MAC doing the
following:
mtd erase mac
echo -n -e '\x00\x18\x0a\x33\x44\x55' > /dev/mtd5
sync && reboot
Where 00:18:0a:33:44:55 is your MAC address.
This was tested, and confirmed working on both the MR12 and MR16.
Signed-off-by: Chris Blake <chrisrblake93@gmail.com>
This moves the Meraki MR12 and Meraki MR16 to the new generic target.
Tested and verified working on both devices.
Note that kernel/rootfs images are still generated. This is because they
are used for the inital flashing process due to the fun pace at which
UBoot erases/writes to SPI.
Signed-off-by: Chris Blake <chrisrblake93@gmail.com>
This makes init.d script handle existing UCI entries using the new
trigger. It also switches all targets to use its package.
Signed-off-by: Rafał Miłecki <rafal@milecki.pl>
There is no US firmware for the TL-WA901ND v4 yet, so we'll just
unconditionally set the EU region for now.
This makes LEDE flashable on these devices again. The format of the region
string is slightly different from the one used on the Archer C7 that is
generated by mktplinkfw (the second half of the region string is missing),
but it's similar enough to make it work.
Tested-by: Jannis Pinter <jannis@pinterjann.is>
Signed-off-by: Matthias Schiffer <mschiffer@universe-factory.net>
This patch adds support for the Airtight C-60.
SOC: Atheros AR9344 rev 2 (CPU:560.000MHz)
RAM: 128 MiB
NOR: MX25L3205D 4MiB
NAND: ST Micro NAND 32MiB 3,3V 8-bit
SW-NET: AR8327N (2 Ports)
WLAN1: Dual-Band AR9340 Rev:2 (built-in SoC)
WLAN2: Dual-Band AR9300 Rev:4 PCIe Chip
The switch is setup for an accesspoint:
LAN1: (gigabit) is the wan-port.
LAN2: (fast ethernet) is bridged with the br-lan.
Flashing Guide (via initramfs):
1. Connect a PC to the serial port of the C-60.
power up the C-60.
Enter u-boot command prompt:
#> nand erase
#> setenv bootcmd "bootm 0x9f060000"
#> saveenv
#> setenv ipaddr 192.168.1.1
#> setenv netmask 255.255.255.0
#> setenv serverip 192.168.1.100
#> setenv bootfile lede-ar71xx-nand-c-60-initramfs-kernel.bin
#> tftpboot
#> bootm
2. Wait for the C-60 to boot LEDE.
On the root prompt. Enter:
# ubiformat /dev/mtd4
# ubiattach -p /dev/mtd4
3. After that copy the sysupgrade.tar onto the router and run:
# sysupgrade sysupgrade.tar
to flash the image.
Special thanks to Chris Blake <chrisrblake93@gmail.com>. He provided
a C-60 unit and he helped with debugging the switch, LEDs and platfrom
support.
Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
Split seama-factory and seama-sysupgrade into smaller pieces (similar to
the ramips code) to make the image generation more flexible.
Also use standard pad-offset instead of adding a block of zeros at the
beginning of the image that is later cut off again. Standard pad-rootfs can
be used as the seal header doesn't contain an image size or checksum.
Signed-off-by: Matthias Schiffer <mschiffer@universe-factory.net>
TP-Link uses a different region coding mechanism for IL firmware for the Archer
C7 v2. Instead of of setting the region, they set a different TPLINK_HWREV.
Signed-off-by: Amir Rachum <amir@rachum.com>
This patch adds support for Cisco's Z1.
Detailed instructions for the flashing the device can
be found in the OpenWrt wiki:
<https://wiki.openwrt.org/toh/meraki/z1>
Signed-off-by: Chris Blake <chrisrblake93@gmail.com>
General convention is to keep U-Boot and radio calibration
data (ART) mtd partitions marked as read-only.
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
There are currently two stock firmwares for the TL-WDR3600/4300, a US and
a universal version. Both allow installing images with US region code, so
we don't need to provide multiple images.
Signed-off-by: Matthias Schiffer <mschiffer@universe-factory.net>
Simplify modifying some of the images without affecting the others.
While we're at it, also unify the profiles to use := syntax and add "v1" to
the TL-WDR4300 name to make things more consistent.
Signed-off-by: Matthias Schiffer <mschiffer@universe-factory.net>
Using pad-to instead of passing the optional padding to append-kernel
or append-rootfs. It could be that the value of a variable is passed.
In case the variable is empty no error is thrown.
Furthermore the purpose of the extra parameter is hard to get without
reading the code.
Signed-off-by: Mathias Kresin <dev@kresin.me>
The kernel size isn't passed to the append-kernel build step and the
resulting image bricks the device.
Fixes FS#168.
Signed-off-by: Mathias Kresin <dev@kresin.me>
TP-Link has started providing US- and EU-specific stock firmwares that only
allow upgrading to firmwares with the same region code. Provide factory
images for both these regions.
To avoid confusing users outside these regions, we still provide a
"universal" factory.bin without a region code, although flashing either of
the US and EU images would work as well.
Signed-off-by: Matthias Schiffer <mschiffer@universe-factory.net>
Zbtlink ZBT-WE1526 is based on Qualcomm Atheros QCA9531 v2.
Short specification:
- 650/400/200 MHz (CPU/DDR/AHB)
- 5x 10/100 Mbps Ethernet
- 1x USB 2.0
- 128 MB of RAM (DDR2)
- 16 MB of FLASH
- 2T2R 2.4 GHz, up to 22 dBm
- two external, non-detachable antennas
- 8x LED, 1x button
- UART header (pinout: VCC, RX, TX, GND)
Flash instruction:
Use sysupgrade in vendor firmare which is based on OpenWrt.
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
The mw4530r-v1 profile in tp-link.mk is for Mercury MW4530R.
There is no such a device called TL-WDR4530.
Also change MERCURY to Mercury in /lib/ar71xx.sh
Signed-off-by: Chuanhong Guo <gch981213@gmail.com>
Now that the "sysupgrade-nand" step is used by non-NAND targets as well,
rename it to "sysupgrade-tar" to make it more generic.
Signed-off-by: Jo-Philipp Wich <jo@mein.io>
Several legacy images were not buildable because of missing profile
definitions in legacy-devices.mk since MultiProfile was removed. Update
legacy-devices.mk to provide all necessary profiles, and change ordering
to match legacy.mk.
Signed-off-by: Matthias Schiffer <mschiffer@universe-factory.net>
jjPlus JWAP230 is based on Qualcomm Atheros QCA9558 + QCA8337.
Short specification:
- 720/600/200 MHz (CPU/DDR/AHB)
- 2x 10/100/1000 Mbps Ethernet
- 128 MB of RAM (DDR2)
- 16 MB of FLASH
- 3T3R 2.4 GHz with external PA (SST12LP15A), up to 28 dBm
- 3x MMCX connectors
- power input: 802.3at PoE or wide range DC (36-57 V)
- optional 802.3af PSE
- 1x mini-PCIe connector with PCIe, USB buses and SIM slot
- 1x mini-PCIe connector with PCIe bus
- 1x USB type-A connector
- 6x LED, 1x button (hardware reset)
- RS232 (MAX3223) and (E)JTAG headers
Default configuration:
- WAN on eth1 (RJ45 near LEDs with PoE input)
- LAN on eth0 (RJ45 near DC jack)
- left top LED set to be status LED
- all LEDs configurable form user space
Flash instruction (do it under U-Boot, using RS232):
1. tftp 0x80060000 lede-ar71xx-generic-jwap230-squashfs-sysupgrade.bin
2. erase 0x9f050000 +$filesize
3. cp.b $fileaddr 0x9f050000 $filesize
4. setenv bootcmd "bootm 0x9f050000"
5. saveenv && reset
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
Wallys DR531 is based on Qualcomm Atheros QCA9531 v2.
Short specification:
- 550/400/200 MHz (CPU/DDR/AHB)
- 2x 10/100 Mbps Ethernet
- 64 MB of RAM (DDR2)
- 8 MB of FLASH
- 2T2R 2.4 GHz with external PA (SE2576L), up to 30 dBm
- 2x MMCX connectors
- mini-PCIe connector with PCIe/USB buses and SIM slot
- 7x LED, 1x button, 1x optional buzzer
- UART, (E)JTAG and LED headers
Default configuration:
- WAN on eth1 (RJ45 near DC jack)
- LAN on eth0 (RJ45 near button)
- S4 LED set to be status LED
- all LEDs configurable form user space
- button configured for reset
Flash instruction (do it under U-Boot, using UART):
1. tftp 0x80060000 lede-ar71xx-generic-dr531-squashfs-sysupgrade.bin
2. erase 0x9f050000 +$filesize
3. cp.b $fileaddr 0x9f050000 $filesize
4. setenv bootcmd "bootm 0x9f050000"
5. saveenv && reset
Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
rootfs part needs to be aligned to erase block size which is passed as
the 6th argument to Image/Build/Seama and is now 65536 since commit
commit 5119ee9 "ar71xx: fix bogus hardcoded kernel image size for Seama
images (fixes#20585)", but $(($(6) - 64)) still assumes that the
argument is a limit on kernel partition size, i.e. 1310720, so the
generated factory image is wrong in that the kernel will fail to find
the rootfs (FlySpray link at [1])
This patch will workaround it with the following steps
1. Calculate the required space for seama header and META data in step 5
2. Pre-padding 64 bytes to lzma-compressed loader
3. Generate correctly padded image-$(2).tmp
4. Strip out the padding
5. Seal it with seama utility
While at it convert seama to new build method
[1] FS#35 - mynet-n750 factory images don't find root partition,
https://bugs.lede-project.org/index.php?do=details&task_id=35
Reported-by: Steven Haigh <netwiz@crc.id.au>
Signed-off-by: Yousong Zhou <yszhou4tech@gmail.com>
Remove kmod-crypto-deflate and kmod-ledtrig-gpio as the device works the
same by default without them
Signed-off-by: Yousong Zhou <yszhou4tech@gmail.com>
- Add missing macro to trigger the generation of 64k padded squashfs images
- Revert Zcomax image generation to use the prepared 64k squashfs image
Signed-off-by: Jo-Philipp Wich <jo@mein.io>
- Remove old style device profiles and convert them to device definitions
within the image building code
- Fix the legacy build macros for the changed eval depth in the legacy
image build wrapper
Signed-off-by: John Crispin <john@phrozen.org>
Signed-off-by: Jo-Philipp Wich <jo@mein.io>
This reverts commit 59e98b27c9.
and
Revert "ar71xx: merge profiles into image building code"
This reverts commit 636089ead6.
these are still causing issues
Signed-off-by: John Crispin <john@phrozen.org>
After the conversion from legacy device profiles to the newer profile
information embedded in the image building code, the legacy recipes got
triggered twice with different eval depths, leading to shell syntax errors
when processing certain images.
The double processing was caused by the remaining Image/Build macro in
legacy.mk which serves as main entry point for the new style image build code
in conjunction with the newly introduced LegacyDevice/* macros which caused
the legacy image build fallback code to kick in.
In order to fix the issue, rework all legacy macros to work under the legacy
image build wrapper and remove the Image/Build macro of legacy.mk to prevent
legacy profiles getting executed in the context of the new build code.
Signed-off-by: Jo-Philipp Wich <jo@mein.io>
The patch has been run-tested and the relevant dmsg logs are as the
following
[ 0.762447] Creating 5 MTD partitions on "spi0.0":
[ 0.767217] 0x000000000000-0x000000010000 : "u-boot"
[ 0.775139] 0x000000010000-0x000000020000 : "bdinfo"
[ 0.781014] 0x000000020000-0x000000fe0000 : "firmware"
[ 0.810558] 2 uimage-fw partitions found on MTD device firmware
[ 0.815043] 0x000000020000-0x000000170000 : "kernel"
[ 0.821925] 0x000000170000-0x000000fe0000 : "rootfs"
[ 0.827587] mtd: device 4 (rootfs) set to be root filesystem
[ 0.831937] 1 squashfs-split partitions found on MTD device rootfs
[ 0.837983] 0x0000005c0000-0x000000fe0000 : "rootfs_data"
[ 0.845621] 0x000000fe0000-0x000000ff0000 : "backup"
[ 0.851445] 0x000000ff0000-0x000001000000 : "art"
While at it, convert to new build method
Signed-off-by: Yousong Zhou <yszhou4tech@gmail.com>
This patch adds the target profile SOM9331 and configures hardware
functionality for the 3x Eth Ports & corresponding LED's, the USB Host,
the USART to USB bridge and the System LED.
Signed-off-by: Allan Nick Pedrana <nik9993@gmail.com>
The CPE210 was still described for the OEM upgrade as compatible,
even the wireless configuration isn't compatible anymore between
both series (2ghz and 5ghz).
Update the CPE210 image profile to use the new profile.
Signed-off-by: Alexander Couzens <lynxis@fe80.eu>
The CPE210's ancestor is the CPE510 not the other way around. The device
profile is also named after the CPE510.
Signed-off-by: Alexander Couzens <lynxis@fe80.eu>
Some OpenWrt based firmwares like Gluon expect that a sysupgrade image
exists when a device firmware can be updated via sysupgrade. This image
wasn't created until now because OpenMesh devices use the same image for
factory and sysupgrade flash. Copying the image from *factory.bin to
*sysupgrade.bin is therefore enough to make the sysupgrade functionality
visible.
Reported-by: Matthias Schiffer <mschiffer@universe-factory.net>
Signed-off-by: Sven Eckelmann <sven.eckelmann@open-mesh.com>