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path: root/target/linux/ramips/dts/mt7620a_wavlink_wl-wn579x3.dts
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* ramips: clean up useless dts partition labelsShiji Yang2024-02-21
| | | | | | | | | | The previous NVMEM eeprom conversions[1][2] left a lot of partition labels that were no longer used. They can be removed now. [1] https://github.com/openwrt/openwrt/pull/13584 [2] https://github.com/openwrt/openwrt/pull/13587 Signed-off-by: Shiji Yang <yangshiji66@qq.com>
* ramips: convert to new LED color/function format where possibleChristian Marangi2024-02-07
| | | | | | | | Initial conversion to new LED color/function format and drop label format where possible. The same label is composed at runtime. Signed-off-by: Christian Marangi <ansuelsmth@gmail.com>
* ramips: mt7620a: convert to nvmem-layoutRosen Penev2023-11-26
| | | | | | Allows using mac-base to replace mac-address-increment. Signed-off-by: Rosen Penev <rosenp@gmail.com>
* ramips: convert mt76 PCIe NIC EEPROM to NVMEM format for legacy SoCsShiji Yang2023-10-17
| | | | | | | | | | This patch converts MT761{0,2,3} PCIe WiFi calibration data to NVMEM format for legacy Ralink SoCs (MT7620 and Mt7628). The EEPROM size of the MT7610 and MT7612 is 0x200. there are only three devices uses MT7613 NIC, ASUS RT-AC1200 V2, COMFAST CF-WR758AC V2 and Keenetic KN-1613. The EEPROM size of them is 0x4da8. Signed-off-by: Shiji Yang <yangshiji66@qq.com>
* ramips: convert rt2x00 EEPROM to NVMEM formatShiji Yang2023-10-17
| | | | | | | This patch converts legacy Ralink SoCs and MT7620 WiFi calibration data to NVMEM format. The EEPROM size is 0x200. Signed-off-by: Shiji Yang <yangshiji66@qq.com>
* ramips: convert mtd-mac-address to nvmem implementationAnsuel Smith2021-07-19
| | | | | | | Define nvmem-cells and convert mtd-mac-address to nvmem implementation. The conversion is done with an automated script. Signed-off-by: Ansuel Smith <ansuelsmth@gmail.com>
* ramips: mt7620: use DTS to set PHY base address for external PHYsMichael Pratt2021-06-23
| | | | | | | | | | | | | | | | | | | | | | | Set the PHY base address to 12 for mt7530 and 8 for others, which is based on the default setting for some devices from printing the register with the following command after it is written to by uboot during the boot cycle. `md 0x10117014 1` PHY_BASE option only uses 5 bits of the register, bits 16 to 20, so use 8-bit integer type. Set the option using the DTS property mediatek,ephy-base and create the gsw node if missing. Also, added a kernel message to display the EPHY base address. Note: If anything is written to a PHY address that is greater than 1 hex char (greater than 0xf) then there is adverse effects with Atheros switches. Signed-off-by: Michael Pratt <mcpratt@pm.me>
* ramips: mt7620: simplify DTS properties for GMACMichael Pratt2021-06-23
| | | | | | | | | | | | | | | | | | | There are only 2 options in the driver for the function of mt7620 internal switch port 4: EPHY mode (RJ-45, internal PHY) GMAC mode (RGMII, external PHY) Let the DTS property be boolean instead of string where EPHY mode is the default. Fix how the properties are written for all DTS that use them, and add missing nodes where applicable, and remove useless nodes, and minor DTS formatting. Signed-off-by: Michael Pratt <mcpratt@pm.me>
* ramips: add support for the Wavlink WL-WN579X3Ben Gainey2021-06-06
About the device ---------------- SoC: MediaTek MT7620a @ 580MHz RAM: 64M FLASH: 8MB WiFi: SoC-integrated: MediaTek MT7620a bgn WiFi: MediaTek MT7612EN nac GbE: 2x (RTL8211F) BTN: - WPS - Reset - Router/Repeater/AP (3-way slide-switch) LED: - WPS (blue) - 3-segment Wifi signal representation (blue) - WiFi (blue) - WAN (blue) - LAN (blue) - Power (blue) UART: UART is present as Pads with through-holes on the PCB. They are located next to the reset button and are labelled Vcc/TX/RX/GND as appropriate. Use 3.3V, 57600-8N1. Installation ------------ Using the webcmd interface -------------------------- Warning: Do not update to the latest Wavlink firmware (version 20201201) as this removes the webcmd console and you will need to use the serial port instead. You will need to have built uboot/sqauashfs image for this device, and you will need to provide an HTTP service where the image can be downloaded from that is accessible by the device. You cannot use the device manufacturers firmware upgrade interface as it rejects the OpenWrt image. 1. Log into the device's admin portal. This is necessary to authenticate you as a user in order to be able to access the webcmd interface. 2. Navigate to http://<device-ip>/webcmd.shtml - you can access the console directly through this page, or you may wish to launch the installed `telnetd` and use telnet instead. * Using telnet is recommended since it provides a more convenient shell interface that the web form. * Launch telnetd from the form with the command `telnetd`. * Check the port that telnetd is running on using `netstat -antp|grep telnetd`, it is likely to be 2323. * Connect to the target using `telnet`. The username should be `admin2860`, and the password is your admin password. 3. On the target use `curl` to download the image. e.g. `curl -L -O http://<some-other-lan-ip>/openwrt-ramips-mt7620-\ wavlink_wl-wn579x3-squashfs-sysupgrade.bin`. Check the hash using `md5sum`. 4. Use the mtd_write command to flash the image. * The flash partition should be mtd4, but check /sys/class/mtd/mtd4/name first. The partition should be called 'Kernel'. * To flash use the following command: `mtd_write -r -e /dev/mtd<n> write <image-file> /dev/mtd<n>` Where mtd<n> is the Kernel partition, and <image-file> is the OpenWrt image previously downloaded. * The command above will erase, flash and then reboot the device. Once it reboots it will be running OpenWrt. Connect via ssh to the device at 192.168.1.1 on the LAN port. The WAN port will be configured via DHCP. Using the serial port --------------------- The device uses uboot like many other MT7260a based boards. To use this interface, you will need to connect to the serial interface, and provide a TFTP server. At boot follow the bootloader menu and select option 2 to erase/flash the image. Provide the address and filename details for the tftp server. The bootloader will do the rest. Once the image is flashed, the board will boot into OpenWrt. The console is available over the serial port. Signed-off-by: Ben Gainey <ba.gainey@googlemail.com>