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* ramips: use generic board detection for Wavlink WL-WN575A3Thomas Vincent-Cross2019-02-281-3/+0
| | | | | | Bring Wavlink WL-WN575A3 in line with other Wavlink ramips devices. Signed-off-by: Thomas Vincent-Cross <me@tvc.id.au>
* ramips: add RB750Gr3 native supportAnton Arapov2019-01-051-3/+0
| | | | | | | | | | | | | | | | | This patch adds support of MikroTik RouterBOARD 750Gr3, without the need to reflashing the bootloader. Installation through RouterBoot follows the usual MikroTik method https://openwrt.org/toh/mikrotik/common Since the image isn't compatible with RouterBOARD 750Gr3 installations which have replaced the bootloader, the former used userspace boardname is not added to the SUPPORTED_DEVICES, to prevent a brick while trying to upgrade to the image with native support. Signed-off-by: Anton Arapov <arapov@gmail.com> Signed-off-by: Thibaut VARÈNE <hacks@slashdirt.org> Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: drop support for ALLNET ALL0239-3G and Sitecom WL-341 v3Mathias Kresin2018-12-121-6/+0
| | | | | | | | | | | | Beside one exception, no one took care of these two remaining boards still using the legacy image build code during the last two years. Since OpenWrt 14.07 the ALLNET ALL0239-3G image building is broken. The Sitecom WL-341 v3 image build code looks pretty hackish and broken. It's questionable if the legacy image works as all. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: use generic board detection for Unielec u7621-06Mathias Kresin2018-11-281-3/+0
| | | | | | | | Use the generic board detection for the board instead of the target specific one. Mark the sysupgrade image compatible with the former used userspace boardname to allow an upgrade from earlier versions. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: improve BDCOM WAP2100-SK supportMathias Kresin2018-11-261-3/+0
| | | | | | | | | | | | | | | | | | | | | Use the generic board detection instead of the target specific one as all recent additions are doing. Setup the USB led via devicetree (a58535771f11) and include the required driver by default. Merge the led userspace setting with an existing identical case. Use the wps led for boot status indication. Move the partitions into a partition table node (6031ab345df8) and drop needless labels. Drop misplaced cells properties (53624c1702e6). Cleanup the pinmux and only switch pins to gpio functions which a referenced as gpio in the dts. Match the maximum image size with the size of the firmware partition. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: improve Skylab SKW92A supportMathias Kresin2018-11-261-3/+0
| | | | | | | | | | | | | | | | Use the generic board detection instead of the target specific one as all recent additions are doing. Add the wireless led according the gpio number from the datasheet. Rename the board part of the leds to match the name used for the compatible string. Finally, do not hijack the wps led for boot status indication longer than necessary. Merge userspace config into existing cases. Include the manufacture Name in the dts model string. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: Add support for ZTE ZXECS EBG3130 aka BDCOM WAP2100-SKPetr Štetiar2018-11-261-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | On the bottom sticker it's branded as ZTE ZXECS EBG3130 device, but in factory OpenWrt image it's referenced as BDCOM WAP2100-SK device. Specifications: - SoC: MediaTek MT7620A - RAM: 128 MB - Flash: 16 MB - Ethernet: 5 FE ports - Wireless radio: 2T2R 2.4 GHz and 1T1R 5 GHz (MT7610EN, unsupported) - UART: 1 x UART on PCB marked as J2 (R=RX, T=TX, G=GND) with 115200 8N1 config - LEDs: Power, FE ports 1-5, WPS, USB, RF 2.4G, RF 5G - Other: USB port, SD card slot and 2x external antennas (non-detachable) Flashing instructions: A) The U-Boot has HTTP based firmware upgrade A1) Flashing notes We've identified so far two different batches of units, unfortunately each batch has different U-Boot bootloader flashed with different default environment variables, thus each batch has different IP address for accessing web based firmware updater. * First batch has web based bootloader IP address 1.1.1.1 * Second batch has web based bootloader IP address 192.168.1.250 In case you can't connect to either of those IPs, you can try to get the default IP address via two methods: A1.1) Serial console, then the IP address is visible during the boot ... HTTP server is starting at IP: 1.1.1.1 raspi_read: from:40004 len:6 HTTP server is ready! ... A1.2) Over telnet/SSH using this command: root@bdcom:/# grep ipaddr= /dev/mtd0 ipaddr=1.1.1.1 A2) Flashing with browser * Change IP address of PC to 1.1.1.2 with 255.255.255.0 netmask * Reboot the device and try to reach web based bootloader in the browser with the following URL http://1.1.1.1 * Quickly select the firmware sysupgrade file and click on the `Update firmware` button, this all has to be done within 10 seconds, bootloader doesn't wait any longer If done correctly, the web page should show UPDATE IN PROGRESS page with progress indicator. Once the flashing completes (it takes roughly around 1 minute), the device will reboot to the OpenWrt firmware A3) Flashing with curl sudo ip addr add 1.1.1.2/24 dev eth0 curl \ --verbose \ --retry 3 \ --retry-delay 1 \ --retry-max-time 30 \ --connect-timeout 30 \ --form "firmware=@openwrt-ramips-mt7620-BDCOM-WAP2100-SK-squashfs-sysupgrade.bin" \ http://1.1.1.1 Now power on the router. B) The U-boot is based on Ralink SDK so we can flash the firmware using UART. 1. Configure PC with a static IP address and setup an TFTP server. 2. Put the firmware into the tftp directory. 3. Connect the UART line as described on the PCB (G=GND, R=RX, T=TX) 4. Power up the device and press 2, follow the instruction to set device and tftp server IP address and input the firmware file name. U-boot will then load the firmware and write it into the flash. Signed-off-by: Petr Štetiar <ynezz@true.cz>
* ramips: add support for Skylab SKW92A in EVBRussell Senior2018-11-261-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Specifically, SKW92A_E16, described here: http://www.skylabmodule.com/wp-content/uploads/SkyLab_SKW92A_V1.04_datasheet.pdf Specification: - MediaTek MT7628N/N (580 Mhz) - 64 MB of RAM - 16 MB of FLASH - 2T2R 2.4 GHz - 5x 10/100 Mbps Ethernet - 2x u.FL - Power by micro-USB connector at USB1 on EVB - UART via micro-USB connector at USB3 on EVB (57600 8n1) - 5x Ethernet LEDs - 1x WLAN LEDs - 1x WPS LED connected by jumper wire from I2S_CK on J20 to WPS_LED pin hole next to daughter board on EVB - WPS/Reset button (S2 on EVB) - RESET button (S1 on EVB) is *not* connected to RST hole next to daughter board Flash instruction: >From Skylab firmware: 1. Associate with SKYLAP_AP 2. In a browser, load: http://10.10.10.254/ 3. Username/password: admin/admin 4. In web admin interface: Administration / Upload Firmware, browse to sysupgrade image, apply, flash will fail with a message: Not a valid firmware. *** Warning: "/var/tmpFW" has corrupted data! 5. Telnet to 10.10.10.254, drops you into a root shell with no credentials 6. # cd /var 7. # mtd_write -r write tmpFW mtd4 Unlocking mtd4 ... Writing from tmpFW to mtd4 ... [e] 8. When flash has completed, you will have booted into your firmware. >From U-boot via TFTP and initramfs: 1. Place openwrt-ramips-mt76x8-skw92a-initramfs-kernel.bin on a TFTP server 2. Connect to serial console at USB3 on EVB 3. Connect ethernet between port 1 (not WAN) and your TFTP server (e.g. 192.168.11.20) 4. Start terminal software (e.g. screen /dev/ttyUSB0 57600) on PC 5. Apply power to EVB 6. Interrupt u-boot with keypress of "1" 7. At u-boot prompts: Input device IP (10.10.10.123) ==:192.168.11.21 Input server IP (10.10.10.3) ==:192.168.11.20 Input Linux Kernel filename (root_uImage) ==:openwrt-ramips-mt76x8-skw92a-initramfs-kernel.bin 8. Move ethernet to port 0 (WAN) on EVB 9. At new OpenWrt console shell, fetch squashfs-sysupgrade image and flash with sysupgrade. >From U-boot via TFTP direct flash: 1. Place openwrt-ramips-mt76x8-skw92a-squashfs-sysupgrade.bin on a TFTP server 2. Connect to serial console at USB3 on EVB (57600 8N1) 3. Connect ethernet between port 1 (not WAN) an your TFTP server (e.g. 192.168.11.20) 4. Start terminal software (e.g. screen /dev/ttyUSB0 57600) on PC 5. Apply power to EVB 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 (10.10.10.123) ==:192.168.11.21 Input server IP (10.10.10.3) ==:192.168.11.20 Input Linux Kernel filename (root_uImage) ==:openwrt-ramips-mt76x8-skw92a-squashfs-sysupgrade.bin 8. When transfer is complete or as OpenWrt begins booting, move ethernet to port 0 (WAN). Signed-off-by: Russell Senior <russell@personaltelco.net>
* ramips: fix BR-6478ACv2 supportDaniel Gimpelevich2018-08-131-3/+0
| | | | | | | | | | | | | | | | | The wholesale changes introduced in commit f9b8328 missed this DTS file because it hadn't been merged yet. This patch brings it in line to match the other mt7620a devices' DTS files. Additionally, the Internet LED is now labeled correctly and set to unused by default, since the WAN interface is not known in every configuration. Using sysupgrade between images before and after this commit will require the -F flag. Tested-by: Rohan Murch <rohan.murch@gmail.com> Signed-off-by: Daniel Gimpelevich <daniel@gimpelevich.san-francisco.ca.us> [drop internet led default setting] Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for Edimax BR-6478AC v2Daniel Gimpelevich2018-08-061-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | Roll-up of patches by Rohan Murch, Hans Ulli Kroll, and James McKenzie. Taken from https://forum.openwrt.org/viewtopic.php?id=67192 and updated. Specification: - System-On-Chip: MT7620A - CPU/Speed: 580 MHz - Flash-Chip: Macronix MX25L6405D - Flash size: 8192 KiB - RAM: 64 MiB - Wireless No1: SoC-integrated: MT7620A 2.4GHz 802.11bgn - Wireless No2: On-board chip: MT7612E 5GHz 802.11ac - Switch: Mediatek MT7530W Gigabit Switch - USB: Yes 1 x 2.0 Installation: 1. Download sysupgrade.bin 2. Open vendor web interface 3. Choose to upgrade firmware 4. After reboot connect via ethernet at 192.168.1.1 Signed-off-by: Daniel Gimpelevich <daniel@gimpelevich.san-francisco.ca.us>
* ramips: Use generic board detect for GnuBee devicesRosen Penev2018-05-301-3/+0
| | | | | | | | | | | This is a port of an old commit from mkresin's tree: 09260cdf3e9332978c2a474a58e93a6f2b55f4a8 This has the potential to break sysupgrade but it should be fine as there is no stable release of LEDE or OpenWrt that support these devices. Signed-off-by: Rosen Penev <rosenp@gmail.com>
* ramips: add support for YUKAI Engineering Inc. BOCCOYuheiOKAWA2018-05-181-0/+3
| | | | | | | | | | | | | BOCCO is a communication robot provided by YUKAI Engineering Inc. SoC: MT7620A MEM: 256MB Flash: 8MB NAND: 512MB (non support) Include Sound DAC and AMP. No Wired Ethernet. Signed-off-by: YuheiOKAWA <tochiro.srchack@gmail.com>
* ramips: add support for mqmaker witi 512mb versionDavide Ammirata2018-05-071-3/+0
| | | | | | | | | | | | Splitted out the dts file and create the new dts for the 256 MByte RAM and the 512 MB RAM version. Migrate both versions to the common board detection. The install the 512 MByte Version on a board running the 256 MByte image, a forceful sysupgrade with the -F flag is required. Signed-off-by: Davide Ammirata <list@davidea.it>
* ramips: improve GnuBee Personal Cloud Two supportMathias Kresin2018-02-201-3/+0
| | | | | | | | | | | | | | | | | | Use the generic board detection for the GnuBee Personal Cloud Two instead of the target specific one as all recent additions are doing. Fixup the pinmux to set all pins used as GPIO to the function GPIO. Request pins where used. Drop the i2c from the dts. There is nothing connected. While at it fix an indentation issue and use references instead of duplicating the whole node path. Use the same switch config as for the GB-PC1 and drop the led trigger for the not supported IP1001 phy connected to second rgmii. Fixes: c60a21532bc9 ("ramips: Add support for the GnuBee Personal Cloud Two") Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: use generic board detection for D-Link DAP-1522 A1Mathias Kresin2018-02-201-3/+0
| | | | | | | Use the generic board detection for the D-Link DAP-1522 A1 instead of the target specific one as all recent additions are doing. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for D-Link DAP-1522 A1George Hopkins2018-02-131-0/+3
| | | | | | | | | | | | | | | | | | D-Link DAP-1522 is a wireless bridge/access point with 4 LAN ports and a dual-band wireless chipset. Specifications: - Ralink RT2880 - 32 MB of RAM - 4 MB of Flash - 4x 10/100/1000 Mbps Ethernet (RTL8366SR) - 802.11abgn (RT2850) Flash Instructions: 1. Download lede-ramips-rt288x-dap-1522-a1-squashfs-factory.bin 2. Open the web interface and upload the image Signed-off-by: George Hopkins <george-hopkins@null.net>
* ramips: Add support for the GnuBee Personal Cloud TwoRosen Penev2018-02-131-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The GnuBee Personal Cloud Two crowdfunded on https://www.crowdsupply.com It is a low-cost, low-power, network-attached storage device. Specifications: - SoC: MediaTek MT7621AT - RAM: DDR3 512 MB - Flash: 32 MB - Six SATA ports for 3.5" Drives - One SDcard - One USB 3.0 - Two USB 2.0 - Gigabit Ethernet: Three Ports - UART 3.5mm Audio Jack or 3 pin header - 57600 8N1 - Three GPIOs available on a pin header Flash instructions: The GnuBee Personal Cloud Two ships with libreCMC installed. libreCMC is a Free Software Foundation approved fork of LEDE/OpenWrt. As such one can upgrade using the webinterface or sysupgrade. Das U-Boot has multiple options for recovery or updates including : - USB - http - tftp Errata: - While there are three ethernet ports, the third requires support for the second GMAC. This will come in kernel 4.14. - The first hard drive slot has a clearance issue with the two fan headers. Workaround is to pull the headers out and connect the pins to jumper wires. - Using this device as a NAS is problematic with the 4.9 kernel as many /dev/sdX reads throw silent errors. The current theory behind this is some kind of unhandled DMA mapping error in the kernel. This is not an issue with kernel 4.4. Signed-off-by: L. D. Pinney <ldpinney@gmail.com> Signed-off-by: Rosen Penev <rosenp@gmail.com>
* ramips: various fixes for zbt-we1226Daniel Golle2018-02-061-3/+0
| | | | | | | | | | | Convert userspace code to use generic device-tree compatible board detection method. Users of the existing code will have to use sysupgrade -F once to switch to the new generic board naming. Properly setup pinctrl fixing the switch port LEDs. Fixes commit 9c4fe103cb (ramips: add support for ZBT-WE1226) Reported-by: Mathias Kresin <dev@kresin.me> Signed-off-by: Daniel Golle <daniel@makrotopia.org>
* ramips: add flash size postfix to Widora neoMathias Kresin2018-01-231-3/+0
| | | | | | | | | | Rename the Widora neo by adding a flash size prefix. Move the common parts into a dtsi to be prepare everything for upcomming support of the 32MB version. Migrate the Widora neo to the generic board detection as well. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for ZBT-WE1226Daniel Golle2018-01-231-0/+3
| | | | | | | | MT7628NN (580MHz), 8MB SPI NOR, 64MB DDR2 RAM Everything except for the switch LEDs works great. Signed-off-by: Daniel Golle <daniel@makrotopia.org>
* ramips: rename TP-Link Archer C20 to TP-Link Archer C20 v1Maxim Anisimov2018-01-151-3/+0
| | | | | | | | This changes device name from "TP-Link Archer C20" to "TP-Link Archer C20 v1" because of TPLINK released new TP-Link Archer C20 v4. Additionally migration to the generic board detection has been made. Signed-off-by: Maxim Anisimov <maxim.anisimov.ua@gmail.com>
* ramips: fallback to generic board detectMathias Kresin2017-12-211-12/+4
| | | | | | | Fallback to the generic board detection if no case for the current board exists. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: drop LinkIt Smart 7688 Duo userspace supportMathias Kresin2017-12-211-7/+1
| | | | | | | | | | The LinkIt Smart 7688/LinkIt Smart 7688 Duo are identical beside the extra ATmega32U4 - accessible via UART - on the the Duo. Since all relevant hardware is identical, drop the Duo special handling in userspace. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for Asus RT-N11P / RT-N12+ / RT-N12E b1Zoltan HERPAI2017-12-061-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | This is a variant of the MT7620N-based Asus routers. Specifications: - MT7620N (580 MHz) - 32 MB RAM - 8 MB Flash - 5x 10/100Mbps Ethernet (built-in switch) - 2.4 GHz WLAN - 2x external, non-detachable antennas - UART (J2) header on PCB (115200 8n1) Flash instructions: 1. Configure PC with static IP 192.168.1.75/24 2. Connect PC with one of LAN ports, press the reset button, power up the router and keep button pressed for around 6-7 seconds. All 4 LEDs will start to blink, which is when the router will accept firmware files via TFTP. No known limitations on firmware filenames, just send it with a TFTP client to 192.168.1.1. 3. Router will download file from server, write it to flash and reboot. Signed-off-by: Zoltan HERPAI <wigyori@uid0.hu>
* ramips: extract board name from device tree as a fallbackFelix Fietkau2017-11-161-1/+3
| | | | | | | This makes it possible to avoid more duplication when adding support for a new board Signed-off-by: Felix Fietkau <nbd@nbd.name>
* ramips: add support for UniElec U7628-01Piotr Dymacz2017-11-141-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | UniElec U7628-01 is a router platform board based on MediaTek MT7628AN. The device has the following specifications: - MT7628AN (580MHz) - 64/128/256 MB of RAM (DDR2) - 8/16 MB of flash (SPI NOR) - 5x 10/100 Mbps Ethernet (MT7628 built-in switch) - 1x 2T2R 2.4 GHz Wi-Fi (MT7628) - 1x miniPCIe slot (with PCIe and USB 2.0 buses) - 1x miniSIM slot - 1x microSD slot - 1x USB 2.0 port - 7x single-color LEDs (GPIO-controlled) - 1x bi-color LED (green GPIO-controlled, red -> LED_WLAN# in miniPCIe) - 1x reset button - 1x UART header (4-pins) - 1x SDXC/GPIO header (10-pins, connected with microSD slot) - 1x DC jack for main power (12 V) The following has been tested and is working: - Ethernet switch - miniPCIe slot (tested with modem and Wi-Fi card) - miniSIM slot - sysupgrade - reset button - USB 2.0 port* Due to a missing driver (MMC over GPIO) this is not supported: - microSD card reader * Warning: USB buses in miniPCIe and regular A-type socket are connected together, without any proper analog switch or USB HUB. Installation: This board might come with a different firmware versions (MediaTek SDK, PandoraBox, Padavan, etc.). If your board comes with PandoraBox, you can install LEDE using sysupgrade. Just SSH to the router and perform forced sysupgrade (due to a board name mismatch). The default IP of this board should be: 192.168.1.1 and username/password: root/admin. In case of a different firmware, you can use web based recovery described below. Use the following command to perform the sysupgrade (for the 128MB RAM/16MB flash version): sysupgrade -n -F lede-ramips-mt76x8-u7628-01-128M-16M-squashfs-sysupgrade.bin Recovery: This board contains a Chinese, closed-source bootloader called Breed (Boot and Recovery Environment for Embedded Devices). Breed supports web recovery and to enter it, you keep the reset button pressed for around 5 seconds during boot. Your machine will be assigned an IP through DHCP and the router will use IP address 192.168.1.1. The recovery website is in Chinese, but is easy to use. Click on the second item in the list to access the recovery page, then the second item on the next page is where you select the firmware. In order to start the recovery, you click the button at the bottom. SDXC/GPIO header (J3): 1. SDXC_D3 / I2C_SCLK 2. SDXC_D2 / I2C_SD 3. SDXC_D1 / I2S_DI 4. SDXC_D0 / I2S_WS 5. SDXC_CMD / I2S_CLK 6. SDXC_CLK / GPIO0 7. SDXC_CD / UART_RXD1 8. UART_TXD1 9. 3V3 10. GND Other notes: 1. The board is available with different amounts of RAM and flash. We have only added support for the 128/16 MB configuration, as that seems to be the default. However, all the required infrastructure is in place for making support for the other configurations easy. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com> Signed-off-by: Kristian Evensen <kristian.evensen@gmail.com>
* ramips: add support for UniElec U7621-06Piotr Dymacz2017-11-141-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | UniElec U7621-06 is a router platform board based on MediaTek MT7621AT. The device has the following specifications: - MT7621AT (880 MHz) - 256/512 MB of RAM (DDR3) - 8/16/32/64 MB of FLASH (SPI NOR) - 5x 1 Gbps Ethernet (MT7621 built-in switch) - 1x ASMedia ASM1061 (for mSATA and SATA) - 2x miniPCIe slots (PCIe bus only) - 1x mSATA slot (with USB 2.0 bus for modem) - 1x SATA - 1x miniSIM slot - 1x microSD slot - 1x USB 3.0 - 12x LEDs (3 GPIO-controlled) - 1x reset button - 1x UART header (4-pins) - 1x GPIO header (30-pins) - 1x FPC connector for LEDs (20-pin, 0.5 mm pitch) - 1x DC jack for main power (12 V) The following has been tested and is working: - Ethernet switch - miniPCIe slots (tested with Wi-Fi cards) - mSATA slot (tested with modem and mSATA drive) - miniSIM slot - sysupgrade - reset button - microSD slot Installation: This board might come with a different firmware versions (MediaTek SDK, PandoraBox, Padavan, etc.). If your board comes with PandoraBox, you can install LEDE using sysupgrade. Just SSH to the router and perform forced sysupgrade (due to a board name mismatch). The default IP of this board should be: 192.168.1.1 and username/password: root/admin. In case of a different firmware, you can use web based recovery described below. Use the following command to perform the sysupgrade (for the 256MB RAM/16MB flash version): sysupgrade -n -F lede-ramips-mt7621-u7621-06-256M-16M-squashfs-sysupgrade.bin Recovery: This board contains a Chinese, closed-source bootloader called Breed (Boot and Recovery Environment for Embedded Devices). Breed supports web recovery and to enter it, you keep the reset button pressed for around 5 seconds during boot. Your machine will be assigned an IP through DHCP and the router will use IP address 192.168.1.1. The recovery website is in Chinese, but is easy to use. Click on the second item in the list to access the recovery page, then the second item on the next page is where you select the firmware. In order to start the recovery, you click the button at the bottom. LEDs list (top row, left to right): - LED_WWAN# (connected with pin 42 in LTE/mSATA slot) - Power (connected directly to 3V3) - CTS2_N (GPIO10, configured as "status" LED) - TXD2 (GPIO11, configured as "led4", without default trigger) - RXD2 (GPIO12, configured as "led5", without default trigger) - LED_WLAN# (connected with pin 44 in wifi0 slot) LEDs list (bottom row, left to right): - ESW_P0_LED_0 - ESW_P1_LED_0 - ESW_P2_LED_0 - ESW_P3_LED_0 - ESW_P4_LED_0 - LED_WLAN# (connected with pin 44 in wifi1 slot) Other notes: 1. The board is available with different amounts of RAM and flash. We have only added support for the 256/16 MB configuration, as that seems to be the default. However, all the required infrastructure is in place for making support for the other configurations easy. 2. The manufacturer offers five different wireless cards with MediaTek chipsets, based on MT76x2, MT7603 and MT7615. Images of the board all show that the miniPCIe slots are dedicated to specific Wi-Fi cards. However, the slots are generic. 3. All boards we got access to had the same EEPROM content. The default firmware reads the Ethernet MAC from offset 0xe000 in factory partition. This offset only contains 0xffs, so a random MAC will be generated on every boot of the router. There is a valid MAC stored at offset 0xe006 and this MAC is shown as the WAN MAC in the bootloader. However, it is the same on all boards we have checked. Based on information provided by the vendor, all boards sold in small quantities are considered more as samples for development purposes. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com> Signed-off-by: Kristian Evensen <kristian.evensen@gmail.com>
* ramips: add support for TP-Link TL-WR840N v5Robert Marko2017-11-081-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link TL-WR840N v5 is simple N300 router with 5-port FE switch and non-detachable antennas, based on MediaTek MT7628NN (aka MT7628N) WiSoC. Specification: - MT7628N/N (580 MHz) - 64 MB of RAM (DDR2) - 4 MB of FLASH - 2T2R 2.4 GHz - 5x 10/100 Mbps Ethernet - 2x external, non-detachable antennas - UART (J1) header on PCB (115200 8n1) - 1x LED (GPIO-controlled), 1x button * LED in TL-WR840N v5 is a dual-color, dual-leads type which isn't (fully) supported by gpio-leds driver. This type of LED requires both GPIOs state change at the same time to select color or turn it off. For now, we support/use only the green part of the LED. Orange LED is registered so you can later use it for your own purposes. Flash instruction: Unlike TL-WR840N v4 flashing through WEB UI works in v5. 1. Download lede-ramips-mt76x8-tl-wr840n-v5-squashfs-sysupgrade.bin image. 2. Go to 192.168.0.1 3. Flash the sysupgrade image through Firmware upgrade section of WEB UI. 4. Wait until green LED stops flashing and use the router. Notes: TFTP recovery is broken since TP-Link reused bootloader code for v4 and that does not take into account only 4 MB of flash and bricks the device. So do not use TFTP Recovery or you will have to rewrite SPI flash. They fixed it in later GPL code,but it is unknown which version of bootloader you have. After manually compiling and flashing bootloader from GPL sources TFTP recovery works properly. Signed-off-by: Robert Marko <robimarko@gmail.com>
* ramips: add support for Kimax U25AWF-H1Daniel Kucera2017-10-141-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | Kimax U-25AWF-H1 is is a 2,5" HDD Enclosure with Wi-Fi/Eth conection and battery, based on MediaTek MT7620A. Patch rewritten from: https://forum.openwrt.org/viewtopic.php?pid=305643 Specification: - MT7620A CPU - 64 MB of RAM - 16 MB of FLASH - 802.11bgn WiFi - 1x 10/100 Mbps Ethernet - USB 2.0 Host - UART for serial console Flash instruction: 1. Download lede-ramips-mt7620-u25awf-h1-squashfs-sysupgrade.bin 2. Open webinterface a upgrade 3. After boot connect via ethernet to ip 192.168.1.1 Signed-off-by: Daniel Kucera <daniel.kucera@gmail.com> [fix reset button gpio, don't add a lan/wan vlan config for single port board, add -H1 suffix do make sure that this revision of the board is supported/tested] Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for TP-Link Archer C20 v1Maxim Anisimov2017-09-131-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link Archer C20 v1 is a router with 5-port FE switch and non-detachable antennas. It's very similiar to TP-Link Archer C50. Also it's based on MediaTek MT7620A+MT7610EN. Specification: - MediaTek MT7620A (580 Mhz) - 64 MB of RAM - 8 MB of FLASH - 2T2R 2.4 GHz and 1T1R 5 GHz - 5x 10/100 Mbps Ethernet - 2x external, non-detachable antennas - UART (J1) header on PCB (115200 8n1) - 8x LED (GPIO-controlled*), 2x button, power input switch - 1 x USB 2.0 port * WAN LED in this devices is a dual-color, dual-leads type which isn't (fully) supported by gpio-leds driver. This type of LED requires both GPIOs state change at the same time to select color or turn it off. For now, we support/use only the blue part of the LED. * MT7610EN ac chip isn't not supported by LEDE. Therefore 5Ghz won't work. Factory image notes: These devices use version 3 of TP-Link header, fortunately without RSA signature (at least in case of devices sold in Europe). The difference lays in the requirement for a non-zero value in "Additional Hardware Version" field. Ideally, it should match the value stored in vendor firmware header on device. We are able to prepare factory firwmare file which is accepted and (almost) correctly flashed from the vendor GUI. As it turned out, it accepts files without U-Boot image with second header at the beginning but due to some kind of bug in upgrade routine, flashed image gets corrupted before it's written to flash. So, to flash this device we must to prepare image using original firmware from tp-link site with uboot. Flash instruction: Until (if at all) TP-Link fixes described problem, the only way to flash LEDE image in these devices is to use tftp recovery mode in U-Boot. There are two ways to flash the device to LEDE: 1) Using tftp mode with UART connection and original LEDE image - Place lede-ramips-mt7620-ArcherC20-squashfs-factory.bin in tftp server directory - Configure PC with static IP 192.168.0.66/24 and tftp server. - Connect PC with one of LAN ports, power up the router and press key "4" to access U-Boot CLI. - Use the following commands to update the device to LEDE: setenv serverip 192.168.0.66 tftp 0x80060000 lede-ramips-mt7620-ArcherC20-squashfs-factory.bin erase tplink 0x20000 0x7a0000 cp.b 0x80060000 0x20000 0x7a0000 reset - After that the device will reboot and boot to LEDE 2) Using tftp mode without UART connection but require some manipulations with target image - Download and unpack TP-Link Archer C20 v1 firmware from original web site - Split uboot.bin from original firmware by this command (example): dd if=Archer_C20v1_0.9.1_4.0_up_boot(160427)_2016-04-27_13.53.59.bin of=uboot.bin bs=512 count=256 skip=1 - Create ArcherC20V1_tp_recovery.bin using this command: cat uboot.bin lede-ramips-mt7620-ArcherC20-squashfs-factory.bin > ArcherC20V1_tp_recovery.bin - Place ArcherC20V1_tp_recovery.bin in tftp server directory. - Configure PC with static IP 192.168.0.66/24 and tftp server. - Connect PC with one of LAN ports, press the reset button, power up the router and keep button pressed for around 6-7 seconds, until device starts downloading the file. - Router will download file from server, write it to flash and reboot. Signed-off-by: Maxim Anisimov <maxim.anisimov.ua@gmail.com>
* ramips: Add support for ZBT WE1026-5GKristian Evensen2017-09-111-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The ZBT WE1026-5G (http://www.zbtlink.com/products/router/WE1026-5G.html) is the follow-up to the ZBT WE1026 and is based on MT7620. For the previous WE1026, the ZBT WE826 image could be used. However, as the name implies, the -5G comes equipped with a 5GHz wifi radio. As the WE826 only has a 2.4GHz radio, the addition of 5GHz means that a separate image is needed for the WE1026-5G. I suspect that this image will also work on the previous WE1026, but I don't have a device to test with. The WE1026-5G has following specifications: * CPU: MT7620A * 1x 10/100Mbps Ethernet. * 16 MB Flash. * 64 MB RAM. * 1x USB 2.0 port. * 1x mini-PCIe slots. * 1x SIM slots. * 1x 2.4Ghz WIFI. * 1x 5GHz wifi (MT7612) * 1x button. * 3x controllable LEDs. Works: * Wifi. * Switch. * mini-PCIe slot. Only tested with a USB device (a modem). * SIM slot. * Sysupgrade. * Button (reset). Not working: * The 5GHz WIFI LED is completely dead. I suspect the issue is the same as on other devices with Mediatek 5Ghz wifi-cards/chips. The LED is controlled by the driver, and mt76 (currently) does not support this. Not tested: * SD card reader. Notes: * The modem (labeled 3G/4G) and power LEDs are controlled by the hardware. * There is a 32MB version of this device available, but I do not have access to it. I have therefor only added support for the 16MB version, but added all the required infrastructure to make adding support for the 32MB version easy. Installation: The router comes pre-installed with OpenWRT, including a variant of Luci. The initial firmware install can be done through this UI, following normal procedure. I.e., access the UI and update the firmware using the sysupgrade-image. Remember to select that you do not want to keep existing settings. Recovery: If you brick the device, the WE1026-5G supports recovery using HTTP. Keep the reset button pressed for ~5sec when booting to start the web server. Set the address of the network interface on your machine to 192.168.1.2/24, and point your browser to 192.168.1.1 to access the recovery UI. From the recovery UI you can upload a firmware image. Signed-off-by: Kristian Evensen <kristian.evensen@gmail.com>
* ramips: add support for the HNET C108Kristian Evensen2017-09-091-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The HNET C108 (http://www.szhwtech88.com/Product-product-cid-100-id-4374.html) is a mifi based on MT7602A, which has the following specifications: * CPU: MT7620A * 1x 10/100Mbps Ethernet. * 16 MB Flash. * 64 MB RAM. * 1x USB 2.0 port. Only power is connected, this port is meant for charging other devices. * 1x mini-PCIe slots. * 1x SIM slots. * 1x 2.4Ghz WIFI. * 1x button. * 6000 mAh battery. * 5x controllable LEDs. Works: * Wifi. * Switch. * mini-PCIe slot. Only tested with a USB device (a modem). * SIM slot. * Sysupgrade. * Button (reset). Not working (also applies to the factory firmware): * Wifi LED. It is always switched on, there is no relation to the up/down state or activity of the wireless interface. Not tested: * SD card reader. Notes: * The C108 has no dedicated status LED. I therefore set the LAN LED as status LED. Installation: The router comes pre-installed with OpenWRT, including a variant of Luci. The initial firmware install can be done through this UI, following normal procedure. I.e., access the UI and update the firmware using the sysupgrade-image. Remember to select that you do not want to keep existing settings. Recovery: If you brick the device, the C108 supports recovery using TFTP. Keep the reset button pressed for ~5sec when booting to trigger TFTP. Set the address of the network interface on your machine to 10.10.10.3/24, and rename your image file to Kernal.bin. Signed-off-by: Kristian Evensen <kristian.evensen@gmail.com>
* ramips: add Xiaomi Mi Router 3G supportPavel Kubelun2017-08-231-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for Xiaomi Mi WiFi Router 3G. Short specification: - MT7621AT + MT7603EN + 7612EN - 256MB DDR3 RAM - 128MB NAND flash - 1+2 x 1000M Ethernet - 1x USB 3.0 port - reset button - yellow, blue, red leds Installation through telnet/ssh: - copy lede-ramips-mt7621-mir3g-squashfs-kernel1.bin and lede-ramips-mt7621-mir3g-squashfs-rootfs0.bin to usb disk or wget it from LEDE download site to /tmp - switch to /extdisks/sda1/ (if copied to USB drive) or to /tmp if wgetted from LEDE download site - run: mtd write lede-ramips-mt7621-mir3g-squashfs-kernel1.bin kernel1 - run: mtd write lede-ramips-mt7621-mir3g-squashfs-rootfs0.bin rootfs0 - run: mtd erase kernel0 - run: reboot Originally stock firmware has following partitions: - ... - kernel0 (primary kernel image) - kernel1 (secondary kernel image, used by u-boot in failsafe routine) - rootfs0 (primary rootfs) - rootfs1 (secondary rootfs in case primary fails) - overlay (used as ubi overlay) This commit squashes rootfs0, rootfs1 and overlay partitions into 1, so it can be used by LEDE fully for package installation, resulting in 117,5MiB. This device lacks hw watchdog, so adding softdog instead (stock does the same). Signed-off-by: Pavel Kubelun <be.dissent@gmail.com>
* ramips: add support for the VoCore2 LiteL. D. Pinney2017-08-111-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | The VoCore2 Lite uses the same PCB as the Vocore2. This patch moves the common VoCore2 parts into dtsi. Removed memory node in the device tree source file. Memory is detected automatically. http://vocore.io/ http://vonger.net/ http://vonger.cn/ Specifications: - SoC: MediaTek MT7688AN - RAM: 64MB DDR2 EtronTech EM68B16CWQH-25H - Flash: 8MB NOR SPI Flash GigaDevice GD25Q64CWIG - Wireless: Built into MT7688AN with onboard IPEX connector Firmware installation: - VoCore2-Lite ships with firmware forked from OpenWrt. - Installation from the bootloader is recommended. - If using luci/sysupgrade use the -n option (do not keep settings) original firmware uses a modified proprietary MediaTek wireless driver. - The wireless is disabled by default in LEDE. - If reverting to factory firmware using the bootloader is recommended. Signed-off-by: L. D. Pinney <ldpinney@gmail.com> Tested by: Noble Pepper <noblepepper@gmail.com>
* ramips: Add support for Netgear EX3800Thibaut VARENE2017-08-031-1/+1
| | | | | | | | | | | | The Netgear EX3800 is essentially an EX3700 with a mains output socket. Both devices use the exact same firmware image (original firmware is named EX3700-EX3800-version.chk). This patch adds suport by renaming the EX3700 device to EX3700/EX3800 and updating the necessary glue. Signed-off-by: Thibaut VARENE <hacks@slashdirt.org>
* ramips: drop AsiaRF AWM003 eval boardMathias Kresin2017-08-031-3/+0
| | | | | | | Everything is identical to the AWM002 8m eval board. No need to duplicate it once more. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: drop Edimax BR-6425 supportMathias Kresin2017-08-031-3/+0
| | | | | | Code to build an image for the Edimax BR-6425 never existed. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: fix Mercury MAC1200R v2.0 board nameMathias Kresin2017-07-291-1/+1
| | | | | | | | | | | | With d2b6bf141662 ("ramips: fix image validation errors") the board name was changed to fix an image validation error. But this change wasn't applied to all other files using the board name, which broke sysupgrade. Revert this change and use the former board name in the metadata instead. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for Loewe WMDR-143NOliver Fleischmann2017-07-271-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The WMDR-143N is a small module originally used as a Wifi client in some Loewe smart TV sets. It is sold cheaply at german surplus shops. The module contains a RT3662 SOC. Specifications: - 500 MHz CPU Clock - 1x 10/100Mbps Ethernet (pin header) - 32 MB of RAM - 8 MB of FLASH - 2T3R 2.4/5 GHz (SOC internal) - 3 Antennas on PCB - UART pads on PCB (J3: 1 = +3.3V, 2 = RX, 3 = TX, 4 = GND), TX and RX are 3,3V only! The square hole is pin 1 - Power supply pads on PCB (J6: 1 and 2 = +5V, 3 and 4 = GND) The square hole is pin 1 The original firmware has two identical kernel/rootfs images and two "Factory" calibration data blocks in flash. The LEDE image leaves only the first "Factory" block in place and uses both "Kernel" blocks and the redundant "Factory" block together to gain enough space for the jffs2 partition. Flash instructions: You need UART and Ethernet connections to flash the board. Use the LEDE "sysupgrade.bin" image with tftp. Apply power to the board and in the first 5 seconds, hit 2 to select TFTP upload. The bootloader asks for board- and server IP addresses and filename. Alternate method: With the vendor firmware running, assign an IP address to the ethernet port, tftp the firmware image to /tmp and write to mtd4 ("KernelA"). Signed-off-by: Oliver Fleischmann <ogf@bnv-bamberg.de> [remove pinctrl node from dts, no pin is used as GPIO] Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for the GnuBee Personal Cloud OneL. D. Pinney2017-07-251-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The GnuBee Personal Cloud One crowdfunded on https://www.crowdsupply.com It is a low-cost, low-power, network-attached storage device. Specifications: - SoC: MediaTek MT7621AT - RAM: DDR3 512 MB - Flash: 32 MB - Six SATA ports for 2.5" Drives - One micro SDcard - One USB 3.0 - Two USB 2.0 - Gigabit Ethernet: 1 x WAN and 1 x LAN - UART 3.5mm Audio Jack or 3 pin header - 57600 8N1 - Four GPIOs available on a pin header Flash instructions: The GnuBee Personal Cloud One ships with libreCMC installed. libreCMC is a Free Software Foundation approved fork of LEDE/OpenWrt. As such one can upgrade using the webinterface or sysupgrade. Das U-Boot has multiple options for recovery or updates including : - USB - http - tftp Signed-off-by: L. D. Pinney <ldpinney@gmail.com> [use switchdev led trigger, all interfaces are in vlan1; rename leds according to board.d setting; remove ge2 group from the pinmux, this group doesn't exist in the driver] Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for TP-Link RE350Alex Maclean2017-07-251-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | The TP-Link RE350 is a wall-wart AC1200 range extender/access point with a single gigabit ethernet port and two non-detachable antennas, based on the MT7621A SoC with MT7603E and MT7612E radios. Firmware wise it is very similar to the QCA based RE450. SoC: MediaTek MT7621A (880MHz) Flash: 8MiB (Winbond W25Q64) RAM: 64MiB (DDR2) Ethernet: 1x 1Gbit Wireless: 2T2R 2.4Ghz (MT7603E) and 5GHz (MT7612E) LEDs: Power, 2.4G, 5G (blue), WPS (red and blue), ethernet link/act (green) Buttons: On/off, LED, reset, WPS Serial header at J1, 57600 8n1: Pin 1 TX Pin 2 RX Pin 3 GND Pin 4 3.3V Factory image can be uploaded directly through the stock UI. Signed-off-by: Alex Maclean <monkeh@monkeh.net>
* ramips: add support for Phicomm K2PChuanhong Guo2017-07-201-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | It uses one MT7615D radio chip with DBDC mode enabled. This mode allows this single chip act as an 2x2 11n radio and an 2x2 11ac radio at the same time. However mt76 doesn't support it currently so there is no wireless available. Specification: - SoC: MediaTek MT7621AT - Flash: 16 MB - RAM: 128 MB - Ethernet: 1 x WAN (10/100/1000Mbps) and 4 x LAN (10/100/1000 Mbps) - Wireless radio: MT7615D on PCIE0 - UART: 1 x UART on PCB - 57600 8N1 Issue: - Wireless radio doesn't work due to the lack of driver. Flash instruction: Using UART: 1. Configure PC with a static IP address and setup an TFTP server. 2. Put the firmware into the tftp directory. 3. Connect the UART line as described on the PCB. 4. Power up the device and press 2,then follow the instruction to set device and tftp server IP address and input the firmware file name.U-boot will then load the firmware and write it into the flash. Signed-off-by: Chuanhong Guo <gch981213@gmail.com>
* treewide: drop target board_name functionsMathias Kresin2017-07-151-9/+0
| | | | | | They are not used any longer. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for TP-Link TL-WR840N v4 and TL-WR841N v13Piotr Dymacz2017-06-291-0/+6
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link TL-WR840N v4 and TL-WR841N v13 are simple N300 routers with 5-port FE switch and non-detachable antennas. Both are very similar and are based on MediaTek MT7628NN (aka MT7628N) WiSoC. The difference between these two models is in number of available LEDs, buttons and power input switch. This work is partially based on GitHub PR#974. Specification: - MT7628N/N (580 MHz) - 64 MB of RAM (DDR2) - 8 MB of FLASH - 2T2R 2.4 GHz - 5x 10/100 Mbps Ethernet - 2x external, non-detachable antennas - UART (J1) header on PCB (115200 8n1) - TL-WR840N v4: 5x LED (GPIO-controlled), 1x button - TL-WR841N v13: 8x LED (GPIO-controlled*), 2x button, power input switch * WAN LED in TL-WR841N v13 is a dual-color, dual-leads type which isn't (fully) supported by gpio-leds driver. This type of LED requires both GPIOs state change at the same time to select color or turn it off. For now, we support/use only the green part of the LED. Factory image notes: These devices use version 3 of TP-Link header, fortunately without RSA signature (at least in case of devices sold in Europe). The difference lays in the requirement for a non-zero value in "Additional Hardware Version" field. Ideally, it should match the value stored in vendor firmware header on device ("0x4"/"0x13" for these devices) but it seems that anything other than "0" is correct. We are able to prepare factory firwmare file which is accepted and (almost) correctly flashed from the vendor GUI. As it turned out, it accepts files without U-Boot image with second header at the beginning but due to some kind of bug in upgrade routine, flashed image gets corrupted before it's written to flash. Tests showed that the GUI upgrade routine copies value of "Additional Hardware Version" from existing firmware into offset "0x2023c" in provided file, _before_ storing it in flash. In case of vendor firmware upgrade files (which all include U-Boot image and two headers), this offset points to the matching field in kernel+rootfs firmware part header. Unfortunately, in case of LEDE factory image file which contains only one header, it points to the offset "0x2023c" in kernel image. This leads to a corrupted kernel and ends up with a "soft-bricked" device. The good news is that U-Boot in these devices contains well known tftp recovery mode, which can be triggered with "reset" button. What's more, in comparison to some of older MediaTek based TP-Link devices, this recovery mode doesn't write whole file at offset "0x0" in flash, without verifying provided file in advance. In case of recovery mode in these devices, first "0x20000" bytes are always skipped and "0x7a0000" bytes from rest of the file are stored in flash at offset "0x20000". Flash instruction: Until (if at all) TP-Link fixes described problem, the only way to flash LEDE image in these devices is to use tftp recovery mode in U-Boot: 1. Configure PC with static IP 192.168.0.66/24 and tftp server. 2. Rename "lede-ramips-mt7628-tl-wr84...-squashfs-tftp-recovery.bin" to "tp_recovery.bin" and place it in tftp server directory. 3. Connect PC with one of LAN ports, press the reset button, power up the router and keep button pressed for around 6-7 seconds, until device starts downloading the file. 4. Router will download file from server, write it to flash and reboot. To access U-Boot CLI, keep pressed "4" key during boot. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ramips: add support for TRENDnet TEW-638APB V2Pavlo Samko2017-06-171-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | This patch add support for the TRENDnet TEW-638APB V2. Specification: - SoC: Ralink SoC RT3052F - Flash: 4MB - RAM: 32MB - Ethernet: 1x LAN (100 Mbps) - Wireless: 2.4GHz b/g/n, 2x external antenna - Buttons: 1x Reset, 1x WPS - LEDs: Power (green), Ethernet (green), WPS (green and orange), Wireless (green) - UART: 1x UART on PCB (3.3V, GND, RX, TX) - 57600 8N1 Installation via vendor firmware: - upload sysupgrade.bin image via TFTP: - stop uboot into tftp-load into option "2" - upload sysupgrade.bin image Signed-off-by: Pavlo Samko <bulldozerbsg@gmail.com>
* ramips: add support for Ubiquiti EdgeRouter X-SFPSven Roederer2017-06-071-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This patch adds support for the Ubiquiti EdgeRouter X-SFP and improves support for the EdgeRouter X (PoE-passthrough). Specification: - SoC: MediaTek MT7621AT - Flash: 256 MiB - RAM: 265 MiB - Ethernet: 5 x LAN (1000 Mbps) - UART: 1 x UART on PCB (3.3V, RX, TX, GND) - 57600 8N1 - EdgeRouter X: - 1 x PoE-Passtrough (Eth4) - powered by Wallwart or passive PoE - EdgeRouter X-SFP: - 5 x PoE-Out (24V, passive) - 1 x SFP (unknown status) - powered by Wallwart (24V) Doesn't work: * SoC has crypto engine but no open driver. * SoC has nat acceleration, but no open driver. * This router has 2MB spi flash soldered in but MT nand/spi drivers do not support pin sharing, so it is not accessable and disabled. Stock firmware could read it and it was empty. Installation via vendor firmware: - build an Initrd-image (> 3MiB) and upload the factory-image - initrd can have luci-mod-failsafe - flash final firmware via LuCI / sysupgrade on rebooted system via TFTP: - stop uboot into tftp-load into option "1" - upload factory.bin image Signed-off-by: Sven Roederer <devel-sven@geroedel.de>
* ramips: add support for GL-inet GL-MT300N-V2Kyson Lok2017-05-261-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | This patch adds supports for the GL-inet GL-MT300N-V2. Specification: - SoC: MediaTek MT7628AN - Flash: 16 MiB (W25Q128FVSG) - RAM: 128 MiB DDR - Ethernet: 1 x WAN (100 Mbps) and 1 x LAN (100 Mbps) - USB: 1 x USB 2.0 port - Button: 1 x switch button, 1 x reset button - LED: 3 x LEDS (system power led is not GPIO controller) - UART: 1 x UART on PCB (JP1: 3.3V, RX, TX, GND) Installation through Luci: - The original firmware is LEDE, so both LuCI or sysupgrade can be used. - Do not keep settings, for sysupgrade please use the -n option. Installation through bootloader webserver: - Plug power and hold reset button until red LED blink to bright. - Install sysupgrade image using web interface on 192.168.1.1. Signed-off-by: Kyson Lok <kysonlok@gmail.com> [match maximum image size with firmware partition] Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for Asus RT-AC51UØrjan Malde2017-05-101-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Specification: - SoC: MediaTek MT7620A (580 MHz) - RAM: 64 MiB (Winbond W9751G6JB-25) - Flash: 16 MiB (Spansion S25FL128SAIF00) - LAN: x4 100M - WAN: x1 100M - Others: USB 2.0, reset button, wps button and 9 LEDs Issues: - 5 GHz band is not functional (missing driver support) 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 sysupgrade image, and press upload 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 lede-ramips-mt7620-rt-ac51u-squashfs-sysupgrade.bin tftp> quit Signed-off-by: Ørjan Malde <foxyred333@gmail.com>
* ramips: add new device ZyXEL Keenetic as knAlexey Belyaev2017-05-101-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This device exactly same as NBG-419N but with USB port and USB Led. Specification: - SoC: Ralink RT3052 (MIPS24Kc) @384MHz - RAM: 32 MiB - Flash: 8 MiB - WLAN: WiSoC 2T2R/300Mbps (2.4GHz) - LAN: 4x100M - WAN: 1x100M - USB: 1x2.0 Installation via serial console (57600 8N1) from TFTP server - rename the firmware to something shorter, for example "sysupgrade.bin" (max. 32 chars) - copy firmware TFTP server's directory - when you power on device, and see U-Boot log, immediatly push "2" once. - You will see this message: 2: System Load Linux Kernel then write to Flash via TFTP. Warning!! Erase Linux in Flash then burn new one. Are you sure? - Push "y", and enter: device IP, then TFTP server's IP, and then image firmware file name. The firmware will be downloaded within ~30 seconds and flashed to the device (It will take about 2 minutes). Signed-off-by: Alexey Belyaev <spider@spider.vc> [squash commits, compact commit message, fix compatible string, remove superfluous pinmuxes] Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add ZBT-WE826 32MB variantMathias Kresin2017-04-251-2/+5
| | | | | | | | The ZBT-WG826 is available with 16 or 32 MByte of flash. Split the device tree source file, rename the currently supported 16 MByte version and add the 32 MByte variant. Signed-off-by: Mathias Kresin <dev@kresin.me>