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* ramips: Add Xiaomi Mi Router 4A 100M InternationalNita Vesa2022-08-091-0/+10
| | | | | | | | | | | | | | The international version of Mi Router 4A 100M is physically identical to the non-international one, but appears to be using a different partitioning scheme with the "overlay" partition being 2MiB in size instead of 1MiB. This means the following "firmware" partition starts at a different address and the DTS needs to be adjusted for the firmware to work. Signed-off-by: Nita Vesa <werecatf@outlook.com> (cherry picked from commit 1a8c74da709190e5157af9f5c2502b600f6273bb) Signed-off-by: Tom Herbers <freifunk@tomherbers.de>
* ramips: add support for ASUS RT-AC1200-V2Tamas Balogh2022-04-191-0/+13
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Hardware specifications: SoC: MT7628DAN MIPS_24KEc@580MHz 2.4G-n 2x2 WiFi: MT7613BEN 5G-ac 160MHz 2x2 Switch: 4x100M built-in SoC Flash: 16MB W25Q128JVSQ SPI-NOR DRAM: 64MB built-in SoC MAC addresses as verified by OEM firmware: use address source Lan/Wan/2G *:60 factory 0x4 (label) 5G *:64 factory 0x8000 Serial console: 57600,8n1 Installation: Asus windows recovery tool: install the Asus firmware restoration utility unplug the router, hold the reset button while powering it on release when the power LED flashes slowly specify a static IP on your computer: IP address: 192.168.1.75 Subnet mask 255.255.255.0 start the Asus firmware restoration utility, specify the factory image and press upload do NOT power off the device after OpenWrt has booted until the LED flashing after flashing OpenWrt, there will be first no 5GHz Wifi available probably, wait until blinking finishes and do a reboot TFTP Recovery method: set computer to a static ip, 192.168.1.75 connect computer to the LAN 1 port of the router hold the reset button while powering on the router for a few seconds send firmware image using a tftp client; i.e from linux: $ tftp tftp> binary tftp> connect 192.168.1.1 tftp> put factory.bin tftp> quit do NOT power off the device after OpenWrt has booted until the LED flashing after flashing OpenWrt, there will be first no 5GHz Wifi available probably, wait until blinking finishes and do a reboot Signed-off-by: Tamas Balogh <tamasbalogh@hotmail.com> (cherry picked from commit a4bf562aa71ad1e3dcffa392b79110d803a93f11)
* ramips: add support for Wavlink WL-WN531A3Davide Fioravanti2022-04-191-0/+11
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The Wavlink WL-WN531A3 is an AC1200 router with 5 fast ethernet ports and one USB 2.0 port. It's also known as Wavlink QUANTUM D4. Hardware -------- SoC: Mediatek MT7628AN RAM: 64MB FLASH: 8MB NOR (GigaDevice GD25Q64CSIG3) ETH: - 5x 10/100 Mbps Ethernet (4x LAN + 1x WAN) WIFI: - 2.4GHz: 1x (integrated in SOC) (2x2:2) - 5GHz: 1x MT7612E (2x2:2) - 4 external antennas BTN: - 1x Reset button - 1x WPS button - 1x Turbo button - 1x Touchlink button - 1x ON/OFF switch LEDS: - 1x Red led (system status) - 1x Blue led (system status) - 7x Blue leds (wifi led + 5 ethernet ports + power) USB: - 1x USB 2.0 port UART: - 57600-8-N-1 J1 O VCC +3,3V (near lan ports) o RX o TX o GND Everything works correctly. Currently there is no firmware update available. Because of this, in order to restore the OEM firmware, you must firstly dump the OEM firmware from your router before you flash the OpenWrt image. Backup the OEM Firmware ----------------------- The following steps are to be intended for users having little to none experience in linux. Obviously there are many ways to backup the OEM firmware, but probably this is the easiest way for this router. Procedure tested on M31A3.V4300.200420 firmware version. 1) Go to http://192.168.10.1/webcmd.shtml 2) Type the following line in the "Command" input box and then press enter: mkdir /etc_ro/lighttpd/www/dev; cp /dev/mtd0ro /etc_ro/lighttpd/www/dev/mtd0ro; ls -la /etc_ro/lighttpd/www/dev/mtd0ro 3) After few seconds in the textarea should appear this output: -rw-r--r-- 1 0 0 8388608 /etc_ro/lighttpd/www/dev/mtd0ro If your output doesn't match mine, stop reading and ask for help in the forum. 4) Open in another tab http://192.168.10.1/dev/mtd0ro to download the content of the whole NOR. If the file size is 0 byte, stop reading and ask for help in the forum. 5) Come back to the http://192.168.10.1/webcmd.shtml webpage and type: rm /etc_ro/lighttpd/www/dev/mtd0ro; for i in 1 2 3 4 ; do cp /dev/mtd${i}ro /etc_ro/lighttpd/www/dev/mtd${i}ro; done; ls -la /etc_ro/lighttpd/www/dev/ 6) After few seconds, in the textarea should appear this output: -rw-r--r-- 1 0 0 196608 mtd1ro -rw-r--r-- 1 0 0 65536 mtd2ro -rw-r--r-- 1 0 0 65536 mtd3ro -rw-r--r-- 1 0 0 8060928 mtd4ro drwxr-xr-x 7 0 0 0 .. drwxr-xr-x 2 0 0 0 . If your output doesn't match mine, stop reading and ask for help in the forum. 7) Open the following links to download the partitions of the OEM FW: http://192.168.10.1/dev/mtd1ro http://192.168.10.1/dev/mtd2ro http://192.168.10.1/dev/mtd3ro http://192.168.10.1/dev/mtd4ro If one (or more) of these files are 0 byte, stop reading and ask for help in the forum. 8) Store these downloaded files in a safe place. 9) Reboot your router to remove any temporary file in ram. Installation ------------ Flash the initramfs image in the OEM firmware interface (http://192.168.10.1/update.shtml). When Openwrt boots, flash the sysupgrade image otherwise you won't be able to keep configuration between reboots. Restore OEM Firmware -------------------- Flash the "mtd4ro" file you previously backed-up directly from LUCI. Warning: Remember to not keep settings! Warning2: Remember to force the flash. Notes ----- 1) Router mac addresses: LAN XX:XX:XX:XX:XX:9B (factory @ 0x28) WAN XX:XX:XX:XX:XX:9C (factory @ 0x2e) WIFI 2G XX:XX:XX:XX:XX:9D (factory @ 0x04) WIFI 5G XX:XX:XX:XX:XX:9E (factory @ 0x8004) LABEL XX:XX:XX:XX:XX:9D 2) There is just one wifi led for both wifi interfaces. It currently shows only the 2.4 GHz wifi activity. Signed-off-by: Davide Fioravanti <pantanastyle@gmail.com> (cherry picked from commit bb505d82add5636da891bb97fdabc57947280e88)
* ramips: add support for Asus RT-AC1200Ray Wang2022-03-091-0/+9
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Asus RT-AC1200 is a 2.4/5GHz dual band AC router, based on MediaTek MT7628AN. Specification: * SoC: MT7628AN * RAM: DDR2 64 MiB * Flash: 16 MiB NOR (W25Q128BV) * Wi-Fi: * 2.4GHz: SoC Built-in * 5GHz: MT7612EN * Ethernet: 5x 100Mbps * Switch: SoC built-in * USB: 1x 2.0 Flash Layout: 0x0000000-0x0030000 : "bootloader" 0x0030000-0x0040000 : "nvram" 0x0040000-0x0050000 : "factory" 0x0050000-0x1000000 : "firmware" MAC address: LAN: factory 0x28 WAN: factory 0x22 2.4G: factory 0x4 5G: factory 0x8004 Installation via **recovery** mode: 1. Download the Asus recovery firmware (windows) tool from http://dlcdnet.asus.com/pub/ASUS/LiveUpdate/Release/Wireless/Rescue.zip 2. Set your ethernet IP manually 192.168.1.5 / 255.255.255.0 with NO gateway. 3. Plug in your ethernet to LAN port 1 on the router. 4. Load up the recovery software with the firmware file, but don't press "Upload" yet. 5. Plug in the router to power WHILE HOLDING the reset button in. While CONTINUING to hold the button, select "Upload" Continue to hold the reset button in until it finishes and verifies! 6. If that doesn't work try pressing "Upload" first just before you do step 5. At some point while holding reset the rescue tool will finally detect and upload the firmware. That's when you can let go of the reset button. 7. The router will reboot and not much will happen. Wait a minute or 2. 8. Power off and on the router again. Voila. Set everything your Ethernet IP back to DHCP (automatically) and you're good to go. Revert to stock firmware: 1. Install stock image via recovery mode. Tested-by: Ivan Pavlov <AuthorReflex@gmail.com> Signed-off-by: Ray Wang <raywang777@foxmail.com>
* ramips: use parser_trx for Buffalo WCR-1166DSINAGAKI Hiroshi2022-03-061-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Buffalo WCR-1166DS uses trx-fomatted firmware and the custom magic number (0x5C436F74, "\Cot") is required for OpenWrt installation from OEM WebUI. But the current mtdsplit_trx doesn't support the custom magic number and fail to parse and split to kernel and rootfs when the factory image is flashed. Then, the kernel fails to mount rootfs automatically and panics. Before the commit fddc78bc116bc043fb5cd92dbc45cfd054c21af8, mtdsplit_trx was patched in ramips target and the device-specific magic number was supported only for WCR-1166DS[1]. But the patch was not inherited to the later version of the kernel and deleted by the above commit, then, the custom magic number support was broken. [1]: https://github.com/openwrt/openwrt/blob/05d6e92594c507dcd1f4be6c1bcb2282fe1abe1f/target/linux/ramips/patches-4.4/0400-mtd-mtdsplit-add-support-for-custom-trx-magic-for-Buffalo-WCR-1166DS.patch#L27 log (factory image): [ 1.165312] spi-mt7621 10000b00.spi: sys_freq: 193333333 [ 1.195782] spi-nor spi0.0: w25q128 (16384 Kbytes) [ 1.205353] 7 fixed-partitions partitions found on MTD device spi0.0 [ 1.217938] Creating 7 MTD partitions on "spi0.0": [ 1.227436] 0x000000000000-0x000000030000 : "u-boot" [ 1.238427] 0x000000030000-0x000000040000 : "u-boot-env" [ 1.250123] 0x000000040000-0x000000050000 : "factory" [ 1.261306] 0x000000050000-0x000000810000 : "firmware" [ 1.282051] 0x000000810000-0x000000fd0000 : "firmware2" [ 1.293594] 0x000000fd0000-0x000000fe0000 : "glbcfg" [ 1.304719] 0x000000fe0000-0x000000ff0000 : "board_data" ... [ 1.452424] /dev/root: Can't open blockdev [ 1.460619] VFS: Cannot open root device "(null)" or unknown-block(0,0): error -6 [ 1.475434] Please append a correct "root=" boot option; here are the available partitions: [ 1.491986] 1f00 192 mtdblock0 [ 1.491989] (driver?) [ 1.504938] 1f01 64 mtdblock1 [ 1.504941] (driver?) [ 1.517885] 1f02 64 mtdblock2 [ 1.517888] (driver?) [ 1.530831] 1f03 7936 mtdblock3 [ 1.530834] (driver?) [ 1.543777] 1f04 7936 mtdblock4 [ 1.543781] (driver?) [ 1.556724] 1f05 64 mtdblock5 [ 1.556727] (driver?) [ 1.569672] 1f06 64 mtdblock6 [ 1.569675] (driver?) [ 1.582617] Kernel panic - not syncing: VFS: Unable to mount root fs on unknown-block(0,0) [ 1.598976] Rebooting in 1 seconds.. This patch fixes this issue by using parser_trx with specifying custom magic number in dts instead of mtdsplit_trx. log (fixed factory image): [ 1.202044] spi-mt7621 10000b00.spi: sys_freq: 193333333 [ 1.225369] spi-nor spi0.0: w25q128 (16384 Kbytes) [ 1.235015] 7 fixed-partitions partitions found on MTD device spi0.0 [ 1.247603] Creating 7 MTD partitions on "spi0.0": [ 1.257106] 0x000000000000-0x000000030000 : "u-boot" [ 1.269447] 0x000000030000-0x000000040000 : "u-boot-env" [ 1.281192] 0x000000040000-0x000000050000 : "factory" [ 1.294208] 0x000000050000-0x000000810000 : "firmware" [ 1.305774] 2 trx partitions found on MTD device firmware [ 1.316540] Creating 2 MTD partitions on "firmware": [ 1.326399] 0x00000000001c-0x000000214754 : "linux" [ 1.336063] mtd: partition "linux" doesn't start on an erase/write block boundary -- force read-only [ 1.357070] 0x000000214754-0x0000007c0000 : "rootfs" [ 1.366994] mtd: partition "rootfs" doesn't start on an erase/write block boundary -- force read-only [ 1.386368] mtd: device 5 (rootfs) set to be root filesystem [ 1.398700] 1 squashfs-split partitions found on MTD device rootfs [ 1.411027] 0x000000520000-0x0000007c0000 : "rootfs_data" [ 1.422841] 0x000000810000-0x000000fd0000 : "firmware2" [ 1.436282] 0x000000fd0000-0x000000fe0000 : "glbcfg" [ 1.447408] 0x000000fe0000-0x000000ff0000 : "board_data" ... [ 1.611216] VFS: Mounted root (squashfs filesystem) readonly on device 31:5. Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
* ramips: correct vendor name for COMFAST/JoowinRodrigo Araujo2022-01-221-20/+26
| | | | | | | | | | | | | | | | When Joowin WR758AC V1 and V2 devices were added, they should have been added with the primary manufacturer name which is COMFAST, since Joowin is just an alternate vendor name on some coutries or stores. Fix this by changing the the vendor name on the respective files and set Joowin as ALT0 variants while ensuring compatibility for early users. Also adjust the model names to better follow the naming rules. As a side effect, fix mt76x8 network script which was left incorrectly unsorted on the case block conditions. Fixes: 766733e172 ("ramips: add support for Joowin WR758AC V1 and V2") Signed-off-by: Rodrigo Araujo <araujo.rm@gmail.com>
* ramips: add support for Joowin WR758AC V1 and V2Rodrigo Araujo2022-01-081-0/+20
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for Joowin (aka Comfast) WR758AC V1 and V2 devices. Both have the same wall AP/repeater form factor and differ only in the 5Ghz chipset (V1 has MT7662, V2 has MT7663). OpenWrt developers forum page: https://forum.openwrt.org/t/87355 Specifications: - CPU: MediaTek MT7628AN (580MHz) - Flash: 8MB - RAM: 64MB DDR2 - 2.4 GHz: 802.11b/g/n (MT7603) - 5 GHz: 802.11ac (V1 has MT7662, V2 has MT7663) - Antennas: 4x external single band antennas - LAN: 1x 10/100M - LED: Wifi 3x blue. Programmable - Button: WPS MAC addresses as verified by OEM firmware: use address source LAN *:83 factory 0xe000 2g *:85 factory 0x4 5g *:86 factory 0x8004 How to install: 1- Setup a TFTP server on a machine with IP address 192.168.1.10/24 2- Name the image as `firmware_auto.bin` and place it on the root of the TFTP server 3- Connect the device via Ethernet, it should pick and flash the image Signed-off-by: Rodrigo Araujo <araujo.rm@gmail.com>
* ramips: add support for Wavlink WL-WN576A2Thomas Aldrian2021-11-201-0/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for the Wavlink WL-WN576A2 wall-plug wireles repeater / router. It is also sold under the name SilverCrest SWV 733 B1. Device specs: - CPU: MediaTek MT7628AN - Flash: 8MB - RAM: 64MB - Bootloader: U-Boot - Ethernet: 1x 10/100 Mbps - 2.4 GHz: b/g/n SoC - 5 GHz: a/n/ac MT7610EN - Buttons: WPS, reset, sliding switch (ap/repeater) - LEDs: 5x wifi status, 1x LAN/WAN, 1x WPS Flashing: U-Boot launches a TFTP client if WPS button is held during boot. - Server IP: 192.168.10.100 - Firmware file name: firmware.bin Device will reboot automatically. First boot takes about 90s. Coelner (waenger@gmail.com) is the original author, but I have made some fixes. He does not wish to sign off using his real name. Signed-off-by: Thomas Aldrian <dev.aldrian@gmail.com>
* ramips: add support for Xiaomi MiWifi 3CEduardo Santos2021-10-311-0/+8
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for Xiaomi MiWiFi 3C device. Xiaomi MiWifi 3C has almost the same system architecture as the Xiaomi Mi WiFi Nano, which is already officially supported by OpenWrt. The differences are: - Numbers of antennas (4 instead of 2). The antenna management is done via the µC. There is no configuration needed in the software code. - LAN port assignments are different. LAN1 and WAN are interchanged. OpenWrt Wiki: https://openwrt.org/toh/xiaomi/mir3c OpenWrt developers forum page: https://forum.openwrt.org/t/support-for-xiaomi-mi-3c Specifications: - CPU: MediaTek MT7628AN (575MHz) - Flash: 16MB - RAM: 64MB DDR2 - 2.4 GHz: IEEE 802.11b/g/n with Integrated LNA and PA - Antennas: 4x external single band antennas - WAN: 1x 10/100M - LAN: 2x 10/100M - LED: 1x amber/blue/red. Programmable - Button: Reset MAC addresses as verified by OEM firmware: use address source LAN *:92 factory 0x28 WAN *:92 factory 0x28 2g *:93 factory 0x4 OEM firmware uses VLAN's to create the network interface for WAN and LAN. Bootloader info: The stock bootloader uses a "Dual ROM Partition System". OS1 is a deep copy of OS2. The bootloader start OS2 by default. To force start OS1 it is needed to set "flag_try_sys2_failed=1". How to install: 1- Use OpenWRTInvasion to gain telnet, ssh and ftp access. https://github.com/acecilia/OpenWRTInvasion (IP: 192.168.31.1 - Username: root - Password: root) 2- Connect to router using telnet or ssh. 3- Backup all partitions. Use command "dd if=/dev/mtd0 of=/tmp/mtd0". Copy /tmp/mtd0 to computer using ftp. 4- Copy openwrt-ramips-mt76x8-xiaomi_miwifi-3c-squashfs-sysupgrade.bin to /tmp in router using ftp. 5- Enable UART access and change start image for OS1. ``` nvram set uart_en=1 nvram set flag_last_success=1 nvram set boot_wait=on nvram set flag_try_sys2_failed=1 nvram commit ``` 6- Installing Openwrt on OS1 and free OS2. ``` mtd erase OS1 mtd erase OS2 mtd -r write /tmp/openwrt-ramips-mt76x8-xiaomi_miwifi-3c-squashfs-sysupgrade.bin OS1 ``` Limitations: For the first install the image size needs to be less than 7733248 bits. Thanks for all community and especially for this device: minax007, earth08, S.Farid Signed-off-by: Eduardo Santos <edu.2000.kill@gmail.com> [wrap lines, remove whitespace errors, add mediatek,mtd-eeprom to &wmac, convert to nvmem] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for TP-Link RE305 v3Michal Kozuch2021-10-301-0/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Specs (same as in v1): - MT7628AN (575 MHz) - 64MB RAM - 8MB of flash (SPI NOR) - 1x 10/100Mbps Ethernet (MT7628AN built-in switch with vlan) - 1x 2.4GHz wifi (MT7628AN) - 1x 5Ghz wifi (MT7612E) - 4x LEDs (5 GPIO-controlled) - 1x reset button - 1x WPS button The only and important difference between v1 & v3 is in flash memory layout, so pls don't interchange these 2 builds! Installation through web-ui (on OEM factory firmware): 1. Visit http://tplinkrepeater.net or the configured IP address of your RE305 v3 (default 192.168.0.254). 2. Log in with the password you've set during initial setup of the RE305 (there is no default password). 3. Go to Settings -> System Tools -> Firmware upgrade 4. Click Browse and select the OpenWRT image with factory.bin suffix (not sysupgrade.bin) 5. A window with a progress bar will appear. Wait until it completes. 6. The RE305 will reboot into OpenWRT and serve DHCP requests on the ethernet port. 7. Connect an RJ45 cable from the RE305 to your computer and access LuCI at http://192.168.1.1/ to configure (or use ssh). Disassembly: Just unscrew 4 screws in the corners & take off the back cover. Serial is exposed to the right side of the main board (in the middle) and marked with TX/RX/3V3/GND, but the holes are filled with solder. Installation through serial: 1. connect trough serial (1n8, baudrate=57600) 2. setup the TFTP server and connect it via ethernet (ipaddr=192.168.0.254 of device, serverip=192.168.0.184 - your pc) 3. boot from a initramfs image first (choose 1 in the bootloader options) 4. test it a bit with that, then proceed to run sysupgrade build MAC addresses as verified by OEM firmware: use OpenWrt address reference LAN eth0 *:d2 label 2g wlan0 *:d1 label - 1 5g wlan1 *:d0 label - 2 The label MAC address can be found in config 0x2008. Signed-off-by: Michal Kozuch <servitkar@gmail.com> [redistribute WLAN node properties between DTS/DTSI, remove compatible on DTSI, fix indent/wrapping, split out firmware-utils change] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for D-Link DAP-1325-A1Giovanni Cascione2021-08-251-0/+7
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This patch adds support for D-Link DAP-1325-A1 (Range Extender Wi-Fi N300) Specifications: - SoC: 580Mhz MT7628NN - RAM: 64MB, DDR2 SDRAM - Storage: 8MB, SPI (W25Q64JVSSIQ) - Ethernet: 1x 10/100 LAN port - WIFI: 2.4 GHz 802.11bgn - LED: Status (2x to provide 3 colors), Wi-Fi Signal Strength (4x) - Buttons: Reset, WPS - UART: Serial console (57600, 8n1) Row of 4 holes near LAN port, starting from square hole: 3.3V, TX,RX,GND - FCC ID: fccid.io/KA2AP1325A1/ Installation: Failsafe UI Firmware can be uploaded with Failsafe UI web page: - turn device off - press and hold reset button - turn device on - keep holding reset until red wifi strength led turns on (ab. 10sec) - connect to device through LAN port PC must be configured with static ip (192.168.0.x) - connect to 192.168.0.50 - select image to be flashed and upload. Device will reboot after successful update Serial port/TFTP server - Connect through serial connectors on PCB (e.g. with teraterm) - Set up a TFTP server, and connect through LAN with static IP - Put image file in the root of the server - Boot the device and select '2' at U-Boot startup - Set device IP, server IP and image file name - Start upload and flash Signed-off-by: Giovanni Cascione <ing.cascione@gmail.com> [fix whitespaces in DTS, convert to nvmem, add mtd-eeprom] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for Motorola MWR03Shiji Yang2021-08-251-0/+8
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Specifications: * SOC: MT7628AN + MT7612E * ROM: 8 MiB Flash * RAM: 64 MiB DDR2 * WAN: 10/100M *1 * LAN: 10/100M *3 * Button: Reset *1 * LEDs: orange *1, white *1 * Antennas: 2.4 GHz *2 + 5 GHz *2 * TTL Baudrate: 57600 * TFTP Upgrade: IP: 192.168.51.1, Server: 192.168.51.100 MAC addresses as verified by OEM firmware: use address source 2g *:d8 factory 0x0004 (label) 5g *:d9 factory 0x8004 LAN *:d7 factory $label -1 WAN *:da factory $label +2 Installation (TFTP + U-Boot): * Connect device with a TTL cable and open a serial session by PuTTY. * Press "2" when booting to select "Load system code then write to Flash via TFTP". * Configure the IP of local host server. * Upload firmware by tftpd64, it will boot when write instruction is executed. Signed-off-by: Shiji Yang <yangshiji66@qq.com> [fix DTS line endings, fix label MAC address, adjust status LED names, convert mtd-mac-address-increment to mac-address-increment] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: minew g1-c: add the old device name to the supported devicesAlexander Couzens2021-07-071-0/+1
| | | | | | | Allow to use the sysupgrade image as factory image without additional force. Signed-off-by: Alexander Couzens <lynxis@fe80.eu>
* ramips: add support for minew g1-cAlexander Couzens2021-07-051-0/+8
| | | | | | | | | | | | | | | | | | | | | | The minew g1-c is a smart home gateway / BLE gateway. A Nordic nRF52832 is available via USB UART (cp210x) to support BLE. The LED ring is a ring of 24x ws2812b connect to a generic GPIO (unsupported). There is a small LED which is only visible when the device is open which will be used as LED until the ws2812b is supported. The board has also a micro sdcard/tfcard slot (untested). The Nordic nRF52832 exposes SWD over a 5pin header (GND, VCC, SWD, SWC, RST). The vendor uses an older OpenWrt version, sysupgrade can be used via serial or ssh. CPU: MT7628AN / 580MHz RAM: DDR2 128 MiB RAM Flash: SPI NOR 16 MiB W25Q128 Ethernet: 1x 100 mbit (Port 0) (PoE in) USB: USB hub, 2x external, 1x internal to USB UART Power: via micro usb or PoE 802.11af UART: 3.3V, 115200 8n1 Signed-off-by: Alexander Couzens <lynxis@fe80.eu>
* ramips: add support for Wavlink WL-WN578A2Thomas Aldrian2021-05-281-0/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for the Wavlink WL-WN578A2 dual-band wall-plug wireless router. This device is also sold under the name SilverCrest SWV 733 A2. Device Specifications: - CPU: MediaTek MT7628AN (580MHz) - Flash: 8MB - RAM: 64MB - Bootloader: U-Boot - Ethernet: 2x 10/100 Mbps - 2.4 GHz: 802.11b/g/n SoC - 5 GHz: 802.11a/n/ac MT7610E - Antennas: internal - 4 green LEDs: WPS/Power, LAN, WAN, wifi-low, wifi-med, wifi-high - Buttons: Reset, WPS - Sliding mode switch: AP, repeater, client - Small sliding power switch Flashing instructions: U-Boot launches TFTP client if WPS button is pressed during power-on. Configure as follows: - Server IP: 192.168.10.100 - Filename (rename sysupgrade file to this): firmware.bin Flashing should not take more than a minute, device will reboot automatically. Signed-off-by: Thomas Aldrian <dev.aldrian@gmail.com>
* ramips: fix SUPPORTED_DEVICES for ALFA Network devicesPiotr Dymacz2021-05-161-0/+1
| | | | | | | | Vendor firmware expects model name without manufacturer name inside 'supported_devices' part of metadata. This allows direct upgrade to OpenWrt from vendor's GUI. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* treewide: make AddDepends/usb-serial selectiveAdrian Schmutzler2021-03-061-2/+2
| | | | | | | Make packages depending on usb-serial selective, so we do not have to add kmod-usb-serial manually for every device. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for ELECOM WRC-1167FSINAGAKI Hiroshi2021-02-111-0/+27
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | ELECOM WRC-1167FS is a 2.4/5 GHz band 11ac (WiFi-5) router, based on MT7628AN. Specification: - SoC : MediaTek MT7628AN - RAM : DDR2 64 MiB (NT5TU32M16FG-AC) - Flash : SPI-NOR 16 MiB (W25Q128JVSIQ) - WLAN : 2.4/5 GHz 2T2R - 2.4 GHz : MediaTek MT7628AN (SoC) - 5 GHz : MediaTek MT7612E - Ethernet : 10/100 Mbps x2 - Switch : MT7628AN (SoC) - LEDs/Keys : 6x, 3x (2x buttons, 1x slide-switch) - UART : through-hole on PCB - J1: 3.3V, GND, TX, RX from "J1" marking - 57600n8 - Power : 12 VDC, 1 A Flash instruction using factory image: 1. Boot WRC-1167FS normally 2. Access to "http://192.168.2.1/" and open firmware update page ("ファームウェア更新") 3. Select the OpenWrt factory image and click apply ("適用") button to perform firmware update 4. Wait ~120 seconds to complete flashing Notes: - Last 0x800000 (8 MiB) in SPI-NOR flash is not used on stock firmware - Additional padding in factory image is required to avoid incomplete flashing on stock firmware MAC addresses: - LAN : BC:5C:4C:xx:xx:68 (Config, ethaddr (text) / Factory, 0x28 (hex)) - WAN : BC:5C:4C:xx:xx:69 (Config, wanaddr (text) / Factory, 0x22 (hex)) - 2.4GHz: BC:5C:4C:xx:xx:6A (Config, rmac (text) / Factory, 0x4 (hex)) - 5GHz : BC:5C:4C:xx:xx:6B (Config, rmac2 (text) / Factory, 0x8004 (hex)) Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
* ramips: add support for Hi-Link HLK-7688AEwan Parker2021-02-051-0/+8
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Specifications: - SoC: MediaTek MT7688AN - RAM: 128 MB - Flash: 32 MB - Ethernet: 5x 10/100 (1x WAN, 4x LAN) - Wireless: built in 2.4GHz (bgn) - USB: 1x USB 2.0 port - Buttons: 1x Reset - LEDs: 1x (WiFi) Flash instructions: - Configure TFTP server with IP address 10.10.10.3 - Name the firmware file as firmware.bin - Connect any Ethernet port to the TFTP server's LAN - Choose option 2 in U-Boot - Alternatively choose option 7 to upload firmware to the built-in web server MAC addresses as verified by OEM firmware: use address source 2g *:XX factory 0x4 LAN *:XX+1 factory 0x28 WAN *:XX+1 factory 0x2e Notes: This board is ostensibly a module containing the MediaTek MT7688AN SoC, 128 MB DDR2 SDRAM and 32 MB flash storage. The SoC can be operated in IoT Gateway Mode or IoT Device Mode. From some vendors the U-Boot that comes installed operates on UART 2 which is inaccessible in gateway mode and operates unreliably in the Linux kernel when using more than 64 MB of RAM. For those, updating U-Boot is recommended. Signed-off-by: Ewan Parker <ewan@ewan.cc> [add WLAN to 01_leds] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: use full names for Xiaomi Mi Router devicesAdrian Schmutzler2020-12-081-2/+3
| | | | | | | | | | This aligns the device/image names of the older Xiaomi Mi Router devices with their "friendly" model and DEVICE_MODEL properties. This also reintroduces consistency with the newer devices already following that scheme. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for Xiaomi Mi Router 4CAtaberk Özen2020-11-251-0/+8
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for Xiaomi's Mi Router 4C device. Specifications: - CPU: MediaTek MT7628AN (580MHz) - Flash: 16MB - RAM: 64MB DDR2 - 2.4 GHz: IEEE 802.11b/g/n with Integrated LNA and PA - Antennas: 4x external single band antennas - WAN: 1x 10/100M - LAN: 2x 10/100M - LEDs: 2x yellow/blue. Programmable (labelled as power on case) - Non-programmable (shows WAN activity) - Button: Reset How to install: 1- Use OpenWRTInvasion to gain telnet and ftp access. 2- Push openwrt firmware to /tmp/ using ftp. 3- Connect to router using telnet. (IP: 192.168.31.1 - Username: root - No password) 4- Use command "mtd -r write /tmp/firmware.bin OS1" to flash into the router.. 5- It takes around 2 minutes. After that router will restart itself to OpenWrt. Signed-off-by: Ataberk Özen <ataberkozen123@gmail.com> [wrap commit message, bump PKG_RELEASE for uboot-envtools, remove dts-v1 from DTS, fix LED labels] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for TP-Link MR6400 v5Filip Moc2020-11-251-0/+16
| | | | | | | | | | | | | | | | | | | | | | | | | | | | TL-MR6400v5 is very similar to TL-MR6400v4. Main differences are: - smaller form factor - different LED GPIOs - different switch connections You can flash via tftp recovery: - serve tftp-recovery image as /tp_recovery.bin on 192.168.0.225/24 - connect to any ethernet port - power on the device while holding the reset button - wait at least 8 seconds before releasing reset button Flashing via OEM web interface does not work. LTE module does not support DHCP so it must be configured via QMI. Hardware Specification (v5.0 EU): - SoC: MT7628NN - Flash: Winbond W25Q64JVS (8MiB) - RAM: ESMT M14D5121632A (64MiB) - Wireless: SoC platform only (2.4GHz b/g/n, 2x internal antenna) - Ethernet: 1NIC (4x100M) - WWAN: TP-LINK LTE MODULE (2x external detachable antenna) - Power: DC 9V 0.85A Signed-off-by: Filip Moc <lede@moc6.cz>
* ramips: add support for TP-Link MR6400 v4Filip Moc2020-11-231-0/+16
| | | | | | | | | | | | | | | | | | | | | | | You can flash via tftp recovery: - serve tftp-recovery image as /tp_recovery.bin on 192.168.0.225/24 - connect to any ethernet port - power on the device while holding the reset button - wait at least 8 seconds before releasing reset button Flashing via OEM web interface does not work. LTE module does not support DHCP so it must be configured via QMI. Hardware Specification (v4.0 EU): - SoC: MT7628NN - Flash: Winbond W25Q64JVS (8MiB) - RAM: ESMT M14D5121632A (64MiB) - Wireless: SoC platform only (2.4GHz b/g/n, 2x internal antenna) - Ethernet: 1NIC (4x100M) - WWAN: TP-LINK LTE MODULE (2x external detachable antenna) - Power: DC 9V 0.85A Signed-off-by: Filip Moc <lede@moc6.cz>
* ramips: add support for the Hak5 WiFi Pineapple Mark 7Marc Egerton2020-11-181-0/+9
| | | | | | | | | | | | | | | | | | | | | | | | | | | | This patch adds support for the WiFi Pineapple Mark 7, a wireless penetration testing tool. Specifications: * SoC: MediaTek MT7628 (580MHz) * RAM: 256MiB (DDR2) * Storage 1: 32MiB NOR (SPI) * Storage 2: 2GB eMMC * Wireless 1: 802.11b/g/n 2.4GHz (Built In) * Wireless 2: 802.11b/g/n 2.4GHz (MT7601) * Wireless 3: 802.11b/g/n 2.4GHz (MT7601) * USB: 1x USB Type-A 2.0 Host Port * Ethernet: 1x USB Type-C AX88772C Ethernet * UART: 57600 8N1 on PCB * Inputs: 1x Reset Button * Outputs: 1x RGB LED * FCCID: 2AA52MK7 Flash Instructions: Original firmware is based on OpenWRT. Use sysupgrade via SSH to flash. Signed-off-by: Marc Egerton <foxtrot@realloc.me> [pepe2k@gmail.com: set only required/used gpio groups to gpio function] Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ramips: add support for TP-Link RE200 v4Richard Fröhning2020-10-201-0/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link RE200 v4 is a wireless range extender with Ethernet and 2.4G and 5G WiFi with internal antennas. It's based on MediaTek MT7628AN+MT7610EN like the v2/v3. Specifications -------------- - MediaTek MT7628AN (580 Mhz) - 64 MB of RAM - 8 MB of FLASH - 2T2R 2.4 GHz and 1T1R 5 GHz - 1x 10/100 Mbps Ethernet - 8x LED (GPIO-controlled), 2x button - UART connection holes on PCB (57600 8n1) There are 2.4G and 5G LEDs in red and green which are controlled separately. MAC addresses ------------- The MAC address assignment matches stock firmware, i.e.: LAN : *:8E 2.4G: *:8D 5G : *:8C MAC address assignment has been done according to the RE200 v2. The label MAC address matches the OpenWrt ethernet address. Installation ------------ Web Interface ------------- It is possible to upgrade to OpenWrt via the web interface. Simply flash the -factory.bin from OEM. In contrast to a stock firmware, this will not overwrite U-Boot. Recovery -------- Unfortunately, this devices does not offer a recovery mode or a tftp installation method. If the web interface upgrade fails, you have to open your device and attach serial console. Instructions for serial console and recovery may be checked out in commit 6d6f36ae787c ("ramips: add support for TP-Link RE200 v2") or on the device's Wiki page. Signed-off-by: Richard Fröhning <misanthropos@gmx.de> [removed empty line, fix commit message formatting] Signed-off-by: David Bauer <mail@david-bauer.net>
* ramips: move ravpower-wd009-factory recipe to mt76x8.mkAdrian Schmutzler2020-09-111-0/+8
| | | | | | | The recipe is only used for a single device, so put it in the subtarget file. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for TP-Link TL-WR850N v2Andrew Freeman2020-08-271-0/+13
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This patch adds support for the TP-Link TL-WR850N v2. This device is very similar to TP-Link TL-WR840 v4 and TP-Link TL-WR841 v13. Specifications: SOC: MediaTek MT7628NN Flash: 8 MiB SPI RAM: 64 MiB WLAN: MediaTek MT7628NN Ethernet: 5 ports (100M) Installation Using the integrated tftp capability of the router: 1. Turn off the router. 2. Connect pc to one of the router LAN ports. 3. Set your PC IPv4 address to 192.168.0.66/24. 4. Run any TFTP server on the PC. 5. Put the recovery firmware on the root directory of TFTP server and name the file tp_recovery.bin 6. Start the router by pressing power button while holding the WPS/Reset button (or both WPS/Reset and WIFI buttons) 7. Router connects to your PC with IPv4 address 192.168.0.2, downloads the firmware, installs it and reboots. LEDs are flashing. Now you have OpenWrt installed. 8. Change your IPv4 PC address to something in 192.168.1.0/24 network or use DHCP to get an address from your OpenWrt router. 9. Done! You can login to your router via ssh. Forum link: https://forum.openwrt.org/t/add-support-for-tp-link-tl-wr850n-v2/66899 Signed-off-by: Andrew Freeman <labz56@gmail.com> [squash an tidy up commits, sort nodes] Signed-off-by: Darsh Patel <darshkpatel@gmail.com> [minor commit message adjustments] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add common definition netgear_sercomm_norAdrian Schmutzler2020-08-061-15/+6
| | | | | | | | Like NAND-based devices, SPI-NOR based Netgear devices also share a common setup for their images. This creates a common defition for them in image/Makefile, so it can be reused across subtargets. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: enable flashing WizFi630S via OEM firmwareTobias Welz2020-08-051-0/+1
| | | | | | | | | | | WIZnet WizFi630s board name is written slightly different it its OEM OpenWrt firmware. This causes an incompatibility warning during flashing with sysupgrade. This patch is adding the vendor board name to the supported devices list to avoid this warning. For initial flashing you can use sysupgrade via command line or luci beside of TFTP. Do not keep the OEM configuration during sysupgrade. Signed-off-by: Tobias Welz <tw@wiznet.eu>
* ramips: add support for TP-Link RE200 v3Richard Fröhning2020-08-031-0/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link RE200 v3 is a wireless range extender with Ethernet and 2.4G and 5G WiFi with internal antennas. It's based on MediaTek MT7628AN+MT7610EN like the v2. Specifications -------------- - MediaTek MT7628AN (580 Mhz) - 64 MB of RAM - 8 MB of FLASH - 2T2R 2.4 GHz and 1T1R 5 GHz - 1x 10/100 Mbps Ethernet - 8x LED (GPIO-controlled), 2x button Unverified: - UART header on PCB (57600 8n1) There are 2.4G and 5G LEDs in red and green which are controlled separately. MAC addresses ------------- MAC address assignment has been done according to the RE200 v2. The label MAC address matches the OpenWrt ethernet address. Installation ------------ Web Interface ------------- It is possible to upgrade to OpenWrt via the web interface. Simply flash the -factory.bin from OEM. In contrast to a stock firmware, this will not overwrite U-Boot. Recovery -------- Unfortunately, this devices does not offer a recovery mode or a tftp installation method. If the web interface upgrade fails, you have to open your device and attach serial console. The device has not been opened for adding support. However, it is expected that the behavior is similar to the RE200 v2. Instructions for serial console and recovery may be checked out in commit 6d6f36ae787c ("ramips: add support for TP-Link RE200 v2") or on the device's Wiki page. Signed-off-by: Richard Fröhning <misanthropos@gmx.de> [adjust commit title/message, sort support list] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: fix/tidy up 4M tplink-v2-image flash layoutsAdrian Schmutzler2020-08-031-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | For the TP-Link 4M devices with tplink-v2-image recipe (mktplinkfw2.c), there are two different flash layouts based on the size of the (u)boot partition: device uboot OEM firmware OpenWrt (incl. config) tl-wr840n-v5 0x20000 0x3c0000 0x3d0000 tl-wr841n-v14 0x10000 0x3d0000 0x3e0000 In both cases, the 0x10000 config partition is used for the firmware partition as well due to the limited space available and since it's recreated by the OEM firmware anyway. However, the TFTP flashing process will only copy data up to the size of the initial (OEM) firmware size. Therefore, while we can use the bigger partition to have additional erase blocks on the device, we have to limit the image sizes to the TFTP limits. So far, only one layout definition has been set up in mktplinkfw2.c for 4M mediatek devices. This adds a second one and assigns them to the devices so the image sizes are correctly restrained. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for JS76x8 series DEV boardsRobinson Wu2020-07-311-0/+27
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for the Jotale JS76x8 series development boards. These devices have the following specifications: - SOC: MT7628AN/NN, MT7688AN, MT7628DAN - RAM of MT7628AN/NN and MT7688AN: 64/128/256 MB (DDR2) - RAM of MT7628DAN: 64 MB (DDR2) - FLASH:8/16/32 MB (SPI NOR) - Ethernet:3x 10/100 Mbps ethernet ports (MT76x8 built-in switch) - WIFI:1x 2T2R 2.4 GHz Wi-Fi - LEDs:1x system status green LED, 1x wifi green LED, 3x ethernet green LED - Buttons:1x reset button - 1x microSD slot - 4x USB 2.0 port - 1x mini-usb debug UART - 1x DC jack for main power (DC 5V) - 1x TTL/RS232 UART - 1x TTL/RS485 UART - 13x GPIO header - 1x audio codec(wm8960) Installation via OpenWrt: The original firmware is OpenWrt, so both LuCI and sysupgrade can be used. Installation via U-boot web: 1. Power on board with reset button pressed, release it after wifi led start blinking. 2. Setup static IP 192.168.1.123/4 on your PC. 3. Go to 192.168.1.8 in browser and upload "sysupgrade" image. Installation via U-boot tftp: 1. Connect to serial console at the mini usb, which has been connected to UART0 on board (115200 8N1) 2. Setup static IP 192.168.1.123/4 on your PC. 3. Place openwrt-firmware.bin on your PC tftp server (192.168.1.123). 3. Connect one of LAN ports on board to your PC. 4. Start terminal software (e.g. screen /dev/ttyUSB0 115200) on PC. 5. Apply power to board. 6. Interrupt U-boot with keypress of "2". 7. At u-boot prompts: Warning!! Erase Linux in Flash then burn new one. Are you sure?(Y/N) Y Input device IP (192.168.1.8) ==:192.168.1.8 Input server IP (192.168.1.123) ==:192.168.1.123 Input Linux Kernel filename (root_uImage) ==:openwrt-firmware.bin 8. board will download file from tftp server, write it to flash and reboot. Signed-off-by: Robinson Wu <wurobinson@qq.com> [add license to DTS files, fix state_default and reduce to the mimimum, move phy0tpt trigger to DTS, drop ucidef_set_led_timer, fix network ports] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* Revert "ramips: fix flash layout for TP-Link TL-WR841N v14"Adrian Schmutzler2020-07-221-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | This reverts commit 1623defbdbb852a4018329d07673b4b8f66225a8. As already stated in the reverted patch, the OEM firmware will properly recreate the config partition if it is overwritten by OpenWrt. The main reason for adding the partition was the image size restriction imposed by the 0x3d0000 limitation of the TFTP flashing process. Addressing this by shrinking the firmware partition is not a good solution to that problem, though: 1. For a working image, the size of the content has to be smaller than the available space, so empty erase blocks will remain. 2. Conceptually, the restriction is on the image, so it makes sense to implement it in the same way, and not via the partitioning. Users could e.g. do initial flash with TFTP restriction with an older image, and then sysupgrade into a newer one, so TFTP restriction does not apply. 3. The (content) size of the recovery image is enforced to 0x3d0000 by the tplink-v2-image command in combination with TPLINK_FLASHLAYOUT (flash layout in mktplinkfw2.c) anyway. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: fix flash layout for TP-Link TL-WR841N v14Alexander Müller2020-07-191-1/+1
| | | | | | | | | | | | | | | | The config partition was missing from the flash layout of the device. Although the stock firmware resets a corrupted config partition to the default values, the TFTP flash with an image bigger than 0x3d0000 will truncate the image as the bootloader only copies 0x3d0000 bytes to flash during TFTP flashing. Fixed by adding the config partition and shrinking the firmware partition. Fixes: 3fd97c522bb7 ("ramips: add support for TP-Link TL-WR841n v14") Signed-off-by: Alexander Müller <donothingloop@gmail.com>
* ramips: consolidate Netgear devices for mt7628Adrian Schmutzler2020-07-131-27/+18
| | | | | | | | | | | | | | | This creates a common DTSI and shared image definition for the relatively similar Netgear devices for mt7628 platform. As a side effect, this raises SPI flash frequency for the R6120, as it's expected to work there as well if it works for R6080 and R6020. Based on the data from the other devices, it also seems probable the 5g MAC address for R6120 could be extracted from the caldata, and the mtd-mac-address there could be dropped. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for Netgear R6020Tim Thorpe2020-07-101-0/+19
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This adds support for the Netgear R6020, aka Netgear AC750. The R6020 appears to be the same hardware as the Netgear R6080, aka Netgear AC1000, but it has a slightly different flash layout, and no USB ports. Specification: SoC: MediaTek MT7628 (580 MHz) Flash: 8 MiB RAM: 64 MiB Wireless: 2.4Ghz (builtin) and 5Ghz (MT7612E) LAN speed: 10/100 LAN ports: 4 WAN speed: 10/100 WAN ports: 1 UART (57600 8N1) on PCB MAC addresses based on vendor firmware: LAN *:88 0x4 WAN *:89 WLAN2 *:88 0x4 WLAN5 *:8a 0x8004 The factory partition might have been corrupted beforehand. However, the comparison of vendor firmware and OpenWrt still allowed to retrieve a meaningful assignment that also matches the other similar devices. Installation: Flashing OpenWRT from stock firmware requires nmrpflash. Use an ethernet cable to connect to LAN port 1 of the R6020, and power the R6020 off. From the connected workstation, run `nmrpflash -i eth0 -f openwrt-ramips-mt76x8-netgear_r6020-squashfs-factory.img`, replacing eth0 with the appropriate interface (can be identified by running `nmrpflash -L`). Then power on the R6020. After flashing has finished, power cycle the R6020, and it will boot into OpenWRT. Once OpenWRT has been installed, subsequent flashes can use the web interface and sysupgrade files. Signed-off-by: Tim Thorpe <timfthorpe@gmail.com> [slightly extend commit message, fix whitespaces in DTS, align From: with Signed-off-by] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for TP-Link RE220 v2Rowan Border2020-06-301-0/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link RE220 v2 is a wireless range extender with Ethernet and 2.4G and 5G WiFi with internal antennas. It's based on MediaTek MT7628AN+MT7610EN. This port of OpenWRT leverages work done by Andreas Böhler <dev@aboehler.at> for the TP-Link RE200 v2 as both devices share the same SoC, flash layout and GPIO pinout. Specifications MediaTek MT7628AN (580 Mhz) 64 MB of RAM 8 MB of FLASH 2T2R 2.4 GHz and 1T1R 5 GHz 1x 10/100 Mbps Ethernet UART header on PCB (57600 8n1) 8x LED (GPIO-controlled), 2x button There are 2.4G and 5G LEDs in red and green which are controlled separately. Web Interface Installation It is possible to upgrade to OpenWrt via the web interface. Simply flash the -factory.bin from OEM. In contrast to a stock firmware, this will not overwrite U-Boot. Signed-off-by: Rowan Border <rowanjborder@gmail.com>
* package: add ravpower-mcu packageDavid Bauer2020-06-291-1/+2
| | | | | | | This package allows to read battery status information and control the power state of the RAVPower RP-WD009 power management IC. Signed-off-by: David Bauer <mail@david-bauer.net>
* ramips: add support for RAVPower RP-WD009David Bauer2020-06-291-0/+11
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The RAVPower RP-WD009 is a batter-powered pocket sized router with SD card lot and USB port. Hardware -------- CPU: MediaTek MT7628AN RAM: 64M DDR2 FLASH: 16M GigaDevices SPI-NOR WLAN: MediaTek MT7628AN 2T2R b/g/n MediaTek MT7610E 1T1R n/ac ETH: 1x FastEthernet SD: SD Card slot USB: USB 2.0 Custom PMIC on the I2C bus (address 0x0a). Installation ------------ 1. Press and hold down the reset button. 2. Power up the Device. Keep pressing the reset button for 10 more seconds until the Globe LED lights up. 3. Attach your Computer to the Ethernet port. Assign yourself the address 10.10.10.1/24. 4. Access the recovery page at 10.10.10.128 and upload the OpenWrt factory image. 5. The flashing will take around 1 minute. The device will reboot automatically into OpenWrt. Signed-off-by: David Bauer <mail@david-bauer.net>
* ramips: add support for WAVLINK WL-WN577A2Lars Wessels2020-06-291-0/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for the Wavlink WL-WN577A2 (black case) dual-band wall-plug wireless router. In Germany this device is sold under the brand name Maginon WL-755 (white case): Device specifications: - CPU: MediaTek MT7628AN (580MHz) - Flash: 8MB - RAM: 64MB - Bootloader: U-Boot - Ethernet: 2x 10/100 Mbps (Ralink RT3050) - 2.4 GHz: 802.11b/g/n SoC - 5 GHz: 802.11a/n/ac MT7610E - Antennas: internal - 4 green LEDs: 1 programmable (WPS) + LAN, WAN, POWER - Buttons: Reset, WPS - Small sliding power switch Flashing instructions (U-boot): - Configure a TFTP server on your PC/Laptop and set its IP to 192.168.10.100 - Rename the OpenWrt image to firmware.bin and place it in the root folder of the TFTP server - Power off (using the small sliding power switch on the left side) the device and connect an ethernet cable from its LAN or WAN port to your PC/Laptop - Press the WPS button (and keep it pressed) - Power on the device (using the small power switch) - After a few seconds, when the WAN/LAN LED stops blinking very fast, release the WPS button - Flashing OpenWrt takes less than a minute, system will reboot automatically - After reboot the WPS LED will indicate the current OpenWrt running status Signed-off-by: Lars Wessels <software@bytebox.org> [removed unused labels - fix whitespace errors - wrap commit message] Signed-off-by: David Bauer <mail@david-bauer.net>
* ramips: add support for Netgear R6080Alex Lewontin2020-06-271-0/+19
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This adds support for the Netgear R6080, aka Netgear AC1000. The R6080 has almost the same hardware as the Netgear R6120, aka Netgear AC1200, but it lacks the USB port, has only 8 MiB flash and uses a different SERCOMM_HWID. Specification: SoC: MediaTek MT7628 (580 MHz) Flash: 8 MiB RAM: 64 MiB Wireless: 2.4Ghz (builtin) and 5Ghz (MT7612E) LAN speed: 10/100 LAN ports: 4 WAN speed: 10/100 WAN ports: 1 UART (57600 8N1) on PCB Installation: Flashing OpenWRT from stock firmware requires nmrpflash. Use an ethernet cable to connect to LAN port 1 of the R6080, and power the R6080 off. From the connected workstation, run `nmrpflash -i eth0 -f openwrt-ramips-mt76x8-netgear_r6080-squashfs-factory.img`, replacing eth0 with the appropriate interface (can be identified by running `nmrpflash -L`). Then power on the R6080. After flashing has finished, power cycle the R6080, and it will boot into OpenWRT. Once OpenWRT has been installed, subsequent flashes can use the web interface and sysupgrade files. Signed-off-by: Alex Lewontin <alex.c.lewontin@gmail.com> [rebase and adjust for 5.4] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: clean up Netgear R6120 code formattingAlex Lewontin2020-06-231-1/+1
| | | | | | | This commit performs minor janitorial work to clean up some code formatting for the Netgear R6120. Signed-off-by: Alex Lewontin <alex.c.lewontin@gmail.com>
* ramips: add support for Asus RT-N10P V3 / RT-N11P B1 / RT-N12 VP B1Ernst Spielmann2020-05-241-0/+24
| | | | | | | | | | | | | | | | | | | | | | | | Specifications: - MT7628NN @ 580 MHz - 32 MB RAM - 8 MB Flash - 5x 10/100 Mbps Ethernet (built-in switch) - 2.4 GHz WLAN - 2x external, non-detachable antennas (1x for RT-N10P V3) Flash instructions: 1. Set PC network interface to 192.168.1.75/24. 2. Connect PC to the router via LAN. 3. Turn router off, press and hold reset button, then turn it on. 4. Keep the button pressed till power led starts to blink. 5. Upload the firmware file via TFTP. (Any filename is accepted.) 6. Wait until the router reboots. Signed-off-by: Ernst Spielmann <endspiel@disroot.org> [fix node/property name for state_default] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: tidy up image subtarget MakefilesSungbo Eo2020-05-081-4/+2
| | | | | | | | | - use tab indent in image build recipes for consistency - harmonize line wrapping Signed-off-by: Sungbo Eo <mans0n@gorani.run> [use different line wrapping for one recipe] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: fix SUPPORTED_DEVICES for Mercury MAC1200R v2Sungbo Eo2020-04-261-1/+0
| | | | | | | | Currently SUPPORTED_DEVICES only contains the old device string. Fix it by removing the first assignment. Fixes: c2334ad60dc8 ("ramips/mt76x8: Synchronize Makefiles with DTS compatible") Signed-off-by: Sungbo Eo <mans0n@gorani.run>
* ramips: disable images for 4M devicesChuanhong Guo2020-04-121-0/+2
| | | | | | | | | default initramfs for 5.4 kernel is larger than 4M, causing build error for oversized initramfs image. disable these images because we have no mechanism for ignoring initramfs errors and the squashfs image will be larger than initramfs anyway. Signed-off-by: Chuanhong Guo <gch981213@gmail.com>
* treewide: omit IMAGE_SIZE argument from check-sizeSungbo Eo2020-03-211-3/+3
| | | | | | | | | Now that check-size uses IMAGE_SIZE by default, we can skip the argument from image recipes to reduce redundancy. Signed-off-by: Sungbo Eo <mans0n@gorani.run> [do not touch ar71xx] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: add support for TOTOLINK A3Sungbo Eo2020-03-131-0/+9
| | | | | | | | | | | | | | | | | | | | | | | | | TOTOLINK A3 is a clone of ipTIME A3. The only difference is the model name. Specifications: - SoC: MT7628AN - RAM: DDR2 64MB - Flash: SPI NOR 8MB - WiFi: - 2.4GHz: SoC internal - 5GHz: MT7612EN - Ethernet: 3x 10/100Mbps - Switch: SoC internal Installation via web interface: 1. Flash **initramfs** image through the stock web interface. 2. Boot into OpenWrt and perform sysupgrade with sysupgrade image. Revert to stock firmware: 1. Perform sysupgrade with stock image. Tested on device by JasonHCH <hsuan670629@gmail.com> Signed-off-by: Sungbo Eo <mans0n@gorani.run>
* ramips: add support for TP-Link RE200 v2Andreas Böhler2020-02-011-0/+10
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link RE200 v2 is a wireless range extender with Ethernet and 2.4G and 5G WiFi with internal antennas. It's based on MediaTek MT7628AN+MT7610EN. Specifications -------------- - MediaTek MT7628AN (580 Mhz) - 64 MB of RAM - 8 MB of FLASH - 2T2R 2.4 GHz and 1T1R 5 GHz - 1x 10/100 Mbps Ethernet - UART header on PCB (57600 8n1) - 8x LED (GPIO-controlled), 2x button There are 2.4G and 5G LEDs in red and green which are controlled separately. MAC addresses ------------- The MAC address assignment matches stock firmware, i.e.: LAN : *:0D 2.4G: *:0E 5G : *:0F Installation ------------ Web Interface ------------- It is possible to upgrade to OpenWrt via the web interface. Simply flash the -factory.bin from OEM. In contrast to a stock firmware, this will not overwrite U-Boot. Serial console -------------- Opening the case is quite hard, since it is welded together. Rename the OpenWrt factory image to "test.bin", then plug in the device and quickly press "2" to enter flash mode (no line feed). Follow the prompts until OpenWrt is installed. Unfortunately, this devices does not offer a recovery mode or a tftp installation method. If the web interface upgrade fails, you have to open your device and attach serial console. Additonal notes --------------- It is possible to flash back to stock by using tplink-safeloader to create a sysupgrade image based on a stock update. After the first boot, it is necessary upgrade to another stock image, otherwise subsequent boots fail with LZMA ERROR 1 and you have to attach serial to recover the device. Signed-off-by: Andreas Böhler <dev@aboehler.at> [remove DEVICE_VARS change] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ramips: collect and harmonize TP-Link image variants in common fileAdrian Schmutzler2020-02-011-70/+38
| | | | | | | | | | | | This moves the various variants of common device definitions for TP-Link devices to a common Makefile common-tp-link.mk. This provides the opportunity to reorganize and move parameters between individual device definitions and the common ones. While at it, also use the common definitions for previously independent definitions where appropriate. Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>