This patch adds support for GL.iNet GL-B1300
Specification:
- SOC: IPQ4028 / QCA Dakota
- RAM: 256 MiB
- FLASH: 32 MiB
- ETH: Qualcomm Atheros QCA8075 Gigabit Switch (2 x LAN, 1 x WAN)
- USB: 1 x 3.0 (via Synopsys DesignWare DWC3 controller in the SoC)
- WLAN1: Qualcomm Atheros QCA4028 2.4GHz 802.11bgn 2:2x2
- WLAN2: Qualcomm Atheros QCA4028 5GHz 802.11a/n/ac 2:2x2
- INPUT: one reset and one WPS button
- LEDS: 3 leds: Power, WIFI(only for 2.4G currently), and one reserved
- UART: 1 x UART on PCB (3.3V, TX, RX, GND) - 115200 8N1
Installation:
Method 1:
- use serial port to stop uboot
- uboot command: run lf
Method 2:
- push down reset button and power on
- wait until three leds constantly on then release
- upgrade by uboot web at http://192.168.1.1
Note:
- the sysupgrade image need to be renamed to lede-gl-b1300.bin in both method.
- the sysupgrade image can be automatically downloaded if tftp server at
192.168.1.2 have that file.
- the wifi led will be flashing when writing image.
Signed-off-by: Dongming Han <handongming@gl-inet.com>
Use the generic board detection method:
- Board name: First compatible string from the device tree
- Board model: Model property from the device tree
Change occurrences of board name in userspace by the compatible
string, and removed target specific board detection script
Replace the definition of SUPPORTED_DEVICES in Device/Default
to extract the dt compatible string from each device definition.
Additionally, for devices supported by lede-17.01, append
the value of BOARD_NAME to SUPPORTED_DEVICES in the device
definition.
Signed-off-by: Luis Araneda <luaraneda@gmail.com>
This will allow to maintain the current syntax for LEDs config
when switching to a device tree compatible string boardname.
None of the current boards use a comma in the boardname, so they
will be unaffected.
Signed-off-by: Luis Araneda <luaraneda@gmail.com>
This patch adds support for AVM FRITZ!Box 4040.
hardware highlights:
SOC: IPQ4018 / QCA Dakota
CPU: Quad-Core ARMv7 Processor rev 5 (v7l) Cortex-A7
DRAM: 256 MiB Nanya NT5CC128M16IP
FLASH: 32 MiB MXIC MX25L25635FMI
ETH: Qualcomm Atheros QCA8075 Gigabit Switch (4 x LAN, 1 x WAN)
USB: 1 x 3.0 (via Synopsys DesignWare DWC3 controller in the SoC)
1 x 2.0 (via Synopsys DesignWare DWC3 controller in the SoC)
WLAN1: Qualcomm Atheros QCA4018 2.4GHz 802.11bgn 2:2x2
WLAN2: Qualcomm Atheros QCA4018 5GHz 802.11a/n/ac 2:2x2
INPUT: one WLAN and one WPS button
LEDS: Power, WAN/Internet, WIFI, INFO (red and amber) and LAN.
Serial:
WARNING: The serial port needs a TTL/RS-232 v3.3 level converter!
The Serial setting is 115200-8-N-1. The SoC's serial port is right
next to the MXIC FLASH chip. The board has a unpopulated 1x4 0.1"
header for it. Use a multimeter to figure out the pinout!
This board currently needs an additional u-boot image in order to boot
properly. Booting with EVA isn't possible ATM.
Install Procedure:
0. It's highly recommended to connect to the serial port.
The serial settings are listed above.
1. install a u-boot image for AVM Fritz!Box 4040
(see <https://github.com/chunkeey/FritzBox-4040-UBOOT/releases> and
<https://github.com/chunkeey/FritzBox-4040-UBOOT/blob/master/upload-to-f4040.sh>)
2. upload the initramfs.itb image via tftp (u-boot listens to
192.168.1.1 - use binary transfer mode!)
3. connect to the FB4040 and use sysupgrade sysupgrade.bin
to install the image.
Works:
- Switch and Ethernet (99%)
- Buttons (WLAN, WPS)
- FLASH (1 x 32MiB NOR Chip)
- WLAN2G and WLAN5G
- CPUFREQ scaling
- PRNG
- serial
- Crypto Accelerator
- sysupgrade (Read the flash instructions to avoid bricking)
- full LEDE Install (Read the flash instructions to avoid bricking)
- LEDs (Power, WAN, Info (red and amber), LAN)
The LEDs are connected to the QCA8075 LED ports.
The AR40xx driver contains a gpio-controller to
handle these special "GPIOs".
- USB Both 3.0 and 2.0 ports
- many packages from other ARMv7 boards
(This does include the RaspberryPi Model 2!)
- ...
Not planned:
- WAN<->LAN short-cut
- Qualcomm Secure Execution Environment
- ...
Signed-off-by: Christian Lamparter <chunkeey@googlemail.com>
Signed-off-by: John Crispin <john@phrozen.org>
Remove the wifi5g LED from the the d7800, r7500 and r7800. Albeit this
GPIO is mentioned in the GPL tarball, it doesn't do anything. The
2.4/5 GHz LEDs are connected to the wifi chips and not be controlled
from the the userspace.
Use the LEDs names/colours as they are used in the board manuals. Merge
redundant LED configurations. Use the phy[0|1]tpt trigger for the
wireless LEDs. Remove the workarounds for the not controllable wireless
LEDs.
Fix spi compatible strings and remove superfluous spi-max-frequency
parameters.
If there are two power leds, use one for indicating normal operation and
one for failsafe/upgrade. Keep the on/off state of the main power led
during boot.
Use the usb pinmux settings from the nbg6817 gpl sources.
Signed-off-by: Mathias Kresin <dev@kresin.me>
Set the pinmux to the values found in the GPL tarballs of the boards.
Remove pinmux which are is not used (like nand pinmux for spi
flash boards).
This allows to use the wan orange led of the C2600 which had a wrong
pinmux before. Might fix buttons or leds of other boards as well.
Fix the LED color and the ledswitch key code of the C2600. Rename the
ledgnr to ledswitch.
Add support for indication the boot state using LEDs to the D7800,
NBG6817, R7500 and R7500v2.
Change GPIO active to readable values in D7800, EA8500, R7500,
R7500v2 and R7800.
Change gpioexport to gpio pinmux.
Add proper "drive strenght" to i2c4_pins and use it for RPM on
C2600, D7800, EA8500, R7500, R7500v2.
Remove pcie pinmux from D7800.
Move pinctrl to correct place in NBG6817 and R7800.
Signed-off-by: Henryk Heisig <hyniu@o2.pl>
This router is similar to the C2600. Ethernet on WAN + LAN, switch,
sysupgrade, LEDs, buttons and WiFi on 2G + 5G do work. The xDSL modem
and the POTS/DECT interface are not supported yet.
It is not possible to flash LEDE via the TP-Link webinterface. The
image need to be signed. The first 0x200 bytes of the image is the
TP-Link header including the signature. The signature is not validated
by the bootloader. The LEDE image is zeroed in this area.
To install LEDE it is necessary to solder a four pin header to JP2.
Connect a serial interface to this header and interrupt the autostart
of kernel. Transfer the sysupgrade image via TFTP and write it to the
serial flash at 0x320000.
Signed-off-by: Sebastian Quilitz <zeraphim@x-pantion.de>
Updating spi pins configuration in R7800 and C2600 DTs
Adding more usb power pin export and gsbi6 in R7800 DT
Updating and fixing leds
Signed-off-by: Pavel Kubelun <be.dissent@gmail.com>
CPU: 2x1.8GHz ARM, RAM: 512MiB
Storage: 4MiB serial Flash, 3.9GiB MMC
NIC: 2x1GBit/s, Switch with 5 external and 2 internal ports
WiFi: Dualband, ath10k 2.4GHz, 5GHz MU-MIMO
For installation copy xx-mmcblk0p4-kernel.bin and xx-mmcblk0p5-rootfs-full.bin
to device. Then run:
cat xx-mmcblk0p4-kernel.bin > /dev/mmc0blk0p4
cat xx-mmcblk0p5-rootfs-full.bin > /dev/mmc0blk0p5
reboot -f
For debugging serial console is easily visible on board, no soldering needed.
Signed-off-by: André Valentin <avalentin@marcant.net>
Signed-off-by: Alexis Green <alexis@cessp.it>
[Jo-Philipp Wich: add missing DEVICE_TITLE, fix model name in commit title]
Signed-off-by: Jo-Philipp Wich <jo@mein.io>
Replace former uci-defaults.sh implementation with the uci-defaults-new.sh one
and update all users accordingly.
Signed-off-by: Jo-Philipp Wich <jow@openwrt.org>
SVN-Revision: 47867