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* ramips: add support for ALFA Network Quad-E4GPiotr Dymacz2019-11-241-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | ALFA Network Quad-E4G is a universal Wi-Fi/4G platform, which offers three miniPCIe (PCIe, USB 2.0, SIM) and a single M.2 B-key (dual-SIM, USB 3.0) slots, RTC and five Gigabit Ethernet ports with PoE support. Specification: - MT7621A (880 MHz) - 256/512 MB of RAM (DDR3) - 16/32+ MB of FLASH (SPI NOR) - optional second SPI flash (8-pin WSON/SOIC) - 1x microSD (SDXC) flash card reader - 5x 10/100/1000 Mbps Ethernet, with passive PoE support (24 V) in LAN1 - optional 802.3at/af PoE module for WAN - 3x miniPCIe slot (with PCIe and USB 2.0 buses, micro SIM and 5 V) - 1x M.2/NGFF B-key 3042 (USB 3.0/2.0, mini + micro SIM) - RTC (TI BQ32002, I2C bus) with backup battery (CR2032) - external hardware watchdog (EM Microelectronic EM6324) - 1x USB 2.0 Type-A - 1x micro USB Type-B for system serial console (Holtek HT42B534) - 11x LED (5 for Ethernet, 5 driven by GPIO, 1x power indicator) - 3x button (reset, user1, user2) - 1x I2C (4-pin, 2.54 mm pitch) header on PCB - 4x SIM (6-pin, 2.00 mm pitch) headers on PCB - 2x UART2/3 (4-pin, 2.54 mm pitch) headers on PCB - 1x mechanical power switch - 1x DC jack with lock (24 V) Other: - U-Boot selects default SIM slot, based on value of 'default_sim' env variable: '1' or unset -> SIM1 (mini), '2' -> SIM2 (micro). This board has additional logic circuit for M.2 SIM switching. The 'sim-select' will work only if both SIM slots are occupied. Otherwise, always slot with SIM inside is selected, no matter 'sim-select' value. - U-Boot enables power in all three miniPCIe and M.2 slots before loading the kernel - this board supports 'dual image' feature (controlled by 'dual_image' U-Boot environment variable) - all three miniPCIe slots have additional 5 V supply on pins 47 and 49 - the board allows to install up to two oversized miniPCIe cards (vendor has dedicated MediaTek MT7615N/D cards for this board) - this board has additional logic circuit controlling PERSTn pins inside miniPCIe slots. By default, PERSTn (GPIO19) is routed to all miniPCIe slots but setting GPIO22 to high allows PERSTn control per slot, using GPIO23-25 (value is inverted) Flash instructions: You can use the 'sysupgrade' image directly in vendor firmware which is based on OpenWrt (make sure to not preserve settings - use 'sysupgrade -n -F ...' command). Alternatively, use web recovery mode in U-Boot: 1. Power the device with reset button pressed, the modem LED will start blinking slowly and after ~3 seconds, when it starts blinking faster, you can release the button. 2. Setup static IP 192.168.1.2/24 on your PC. 3. Go to 192.168.1.1 in browser and upload 'sysupgrade' image. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com> (backported from commit e68539aca43a560077364de27eb220f1d85ca3ef)
* ramips: add support for ALFA Network R36M-E4GPiotr Dymacz2019-11-241-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | ALFA Network R36M-E4G is a dual-SIM, N300 Wi-Fi, compact size platform based on MediaTek MT7620A WiSoC. This product is designed for operation with 4G modem (can be bought in bundle with Quectel EC25, EG25 or EP06) but supports also Wi-Fi modules (miniPCIe slot has USB and PCIe buses). Specification: - MT7620A (580 MHz) - 64/128/256 MB of RAM (DDR2) - 16/32+ MB of FLASH (SPI NOR) - 2x 10/100 Mbps Ethernet, with passive PoE support (24 V) - 2T2R 2.4 GHz (MT7620A), with ext. LNA (RFFM4227) - 1x miniPCIe slot (with PCIe and USB 2.0 buses and optional 5 V) - 2x SIM slot (mini, micro) with detect and switch driven by GPIO - 2x u.fl antenna connectors (for Wi-Fi) - 8x LED (7 driven by GPIO) - 2x button (reset, wifi) - 2x UART (4-pin/2.54 mm pitch, 10-pin/1.27 mm pitch) headers on PCB - 1x I2C (4-pin, 1.27 mm pitch) header on PCB - 1x LED (8-pin, 1.27 mm pitch) header on PCB - 1x DC jack with lock (12 V) Other: - there is a dedicated, 4-pin connector for optional RTC module (Holtek HT138x) with 'enable' input, not available at the time of preparing support for this board - miniPCIe slot supports additional 5 V supply on pins 47 and 49 but a jumper resistor (R174) is not installed by default - U-Boot selects default SIM slot, based on value of 'default_sim' env variable: '1' or unset -> SIM1 (mini), '2' -> SIM2 (micro). This will work only if both slots are occupied, otherwise U-Boot will always select slot with SIM card inside (user can override it later, in user-space) - U-Boot resets the modem, using PERSTn signal, before starting kernel - this board supports 'dual image' feature (controlled by 'dual_image' U-Boot environment variable) Flash instruction: You can use the 'sysupgrade' image directly in vendor firmware which is based on OpenWrt (make sure to not preserve settings - use 'sysupgrade -n -F ...' command). Alternatively, use web recovery mode in U-Boot: 1. Power the device with reset button pressed, the modem LED will start blinking slowly and after ~3 seconds, when it starts blinking faster, you can release the button. 2. Setup static IP 192.168.1.2/24 on your PC. 3. Go to 192.168.1.1 in browser and upload 'sysupgrade' image. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com> (backported from commit dfecf94c2059998411f95067de3866aa7cdf5ec9)
* ramips: support dual image feature on ALFA Network boardsPiotr Dymacz2019-11-241-0/+17
| | | | | | | | | | | | | | | | | | | | | | | | | | New U-Boot version for MediaTek MT76x8/MT762x based ALFA Network boards includes support for a 'dual image' feature. Users can enable it using U-Boot environment variable 'dual_image' ('1' -> enabled). When 'dual image' feature is enabled, U-Boot will modify DTB and divide the original 'firmware' flash area into two, equal in size and aligned to 64 KB partitions: 'firmware' and 'backup'. U-Boot will also adjust size of 'firmware' area to match installed flash chip size. U-Boot will load kernel from active partition which is marked with env variable 'bootactive' ('1' -> first partition, '2' -> second partition) and rename both partitions accordingly ('firmware' <-> 'backup'). There are 3 additional env variables used to control 'dual image' mode: - bootlimit - maximum number of unsuccessful boot tries (default: '3') - bootcount - current number of boot tries - bootchanged - flag which informs that active partition was changed; if it is set and 'bootcount' reaches 'bootlimit' value, U-Boot will start web-based recovery which then updates both partitions with provided image Signed-off-by: Piotr Dymacz <pepe2k@gmail.com> (backported from commit bc173ddd8381b03dde8cc2e6c66d0cd392c62bbd)
* treewide: sysupgrade: don't use $ARGV in platform_do_upgrade()Rafał Miłecki2019-09-071-4/+4
| | | | | | | | | | stage2 passes image path to platform_do_upgrade() as an argument so it can be simply accessed using $1 Signed-off-by: Rafał Miłecki <rafal@milecki.pl> (cherry picked from commit 8b4bc7abe073489a3595eeb2d81818852319c148) [rmilecki: dropping ARGV without this change broke sysupgrade] Fixes: 6ac62c4b6cae ("base-files: don't set ARGV and ARGC")
* ramips: Xiaomi MIR3G: detect board name from DTSOzgur Can Leonard2019-03-212-4/+1
| | | | | | | | | | | | | | | | - Former "mir3g" board name becomes "xiaomi,mir3g". - Reorder some entries to maintain alphabetical order. - Change DTS so status LEDs (yellow/red/blue) mimic Xiaomi stock firmware: (Section Indicator) <http://files.xiaomi-mi.co.uk/files/router_pro/router%20PRO%20EN.pdf> <http://files.xiaomi-mi.co.uk/files/Mi_WiFi_router_3/MiWiFi_router3_EN.pdf> |Yellow: Update (LED flickering), the launch of the system (steady light); |Blue: during normal operation (steady light); |Red: Safe mode (display flicker), system failure (steady light); Signed-off-by: Ozgur Can Leonard <ozgurcan@gmail.com> [Added link to similar Router 3 model] Signed-off-by: Christian Lamparter <chunkeey@gmail.com>
* ramips: add support for Xiaomi Mi Router 3 ProOzgur Can Leonard2019-03-131-1/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Hardware: CPU: MediaTek MT7621AT (2x880MHz) RAM: 512MB DDR3 FLASH: 256MB NAND WiFi: 2.4GHz 4x4 MT7615 b/g/n (Needs driver, See Issues!) WiFI: 5GHz 4x4 MT7615 a/n/ac (Needs driver, See Issues!) USB: 1x 3.0 ETH: 1x WAN 10/100/1000 3x LAN 10/100/1000 LED: Power/Status BTN: RESET UART: 115200 8n1 Partition layout and boot: Stock Xiaomi firmware has the MTD split into (among others) - kernel0 (@0x200000) - kernel1 (@0x600000) - rootfs0 - rootfs1 - overlay (ubi) Xiaomi uboot expects to find kernels at 0x200000 & 0x600000 referred to as system 1 & system 2 respectively. a kernel is considered suitable for handing control over if its linux magic number exists & uImage CRC are correct. If either of those conditions fail, a matching sys'n'_fail flag is set in uboot env & a restart performed in the hope that the alternate kernel is okay. If neither kernel checksums ok and both are marked failed, system 2 is booted anyway. Note uboot's tftp flash install writes the transferred image to both kernel partitions. Installation: Similar to the Xiaomi MIR3G, we keep stock Xiaomi firmware in kernel0 for ease of recovery, and install OpenWRT into kernel1 and after. The installation file for OpenWRT is a *squashfs-factory.bin file that contains the kernel and a ubi partition. This is flashed as follows: nvram set flag_try_sys1_failed=1 nvram set flag_try_sys2_failed=0 nvram commit dd if=factory.bin bs=1M count=4 | mtd write - kernel1 dd if=factory.bin bs=1M skip=4 | mtd write - rootfs0 reboot Reverting to stock: The part of stock firmware we've kept in kernel0 allows us to run stock recovery, which will re-flash stock firmware from a *.bin file on a USB. For this we do the following: fw_setenv flag_try_sys1_failed 0 fw_setenv flag_try_sys2_failed 1 reboot After reboot the LED status light will blink red, at which point pressing the 'reset' button will cause stock firmware to be installed from USB. Issues: OpenWRT currently does not have support for the MT7615 wifi chips. There is ongoing work to add mt7615 support to the open source mt76 driver. Until that support is in place, there are closed-source kernel modules that can be used. See: https://forum.openwrt.org/t/support-for-xiaomi-wifi-r3p-pro/20290/170 Signed-off-by: Ozgur Can Leonard <ozgurcan@gmail.com> Signed-off-by: Christian Lamparter <chunkeey@gmail.com> [02_network remaps, Added link to notes]
* 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 support for Archer C50 v4David Bauer2019-01-261-0/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This adds support for the TP-Link Archer C50 v4. It uses the same hardware as the v3 variant, sharing the same FCC-ID. CPU: MediaTek MT7628 (580MHz) RAM: 64M DDR2 FLASH: 8M SPI WiFi: 2.4GHz 2x2 MT7628 b/g/n integrated WiFI: 5GHz 2x2 MT7612 a/n/ac ETH: 1x WAN 4x LAN LED: Power, WiFi2, WiFi5, LAN, WAN, WPS BTN: WPS/WiFi, RESET UART: Near ETH ports, 115200 8n1, TP-Link pinout Create Factory image -------------------- As all installation methods require a U-Boot to be integrated into the Image (and we do not ship one with the image) we are not able to create an image in the OpenWRT build-process. Download a TP-Link image from their Wesite and a OpenWRT sysupgrade image for the device and build yourself a factory image like following: TP-Link image: tpl.bin OpenWRT sysupgrade image: owrt.bin > dd if=tpl.bin of=boot.bin bs=131584 count=1 > cat owrt.bin >> boot.bin Installing via Web-UI --------------------- Upload the boot.bin via TP-Links firmware upgrade tool in the web-interface. Installing via Recovery ----------------------- Activate Web-Recovery by beginning the upgrade Process with a Firmware-Image from TP-Link. After starting the Firmware Upgrade, wait ~3 seconds (When update status is switching to 0%), then disconnect the power supply from the device. Upgrade flag (which activates Web-Recovery) is written before the OS-image is touched and removed after write is succesfull, so this procedure should be safe. Plug the power back in. It will come up in Recovery-Mode on 192.168.0.1. When active, all LEDs but the WPS LED are off. Remeber to assign yourself a static IP-address as DHCP is not active in this mode. The boot.bin can now be uploaded and flashed using the web-recovery. Installing via TFTP ------------------- Prepare an image like following (Filenames from factory image steps apply here) > dd if=/dev/zero of=tp_recovery.bin bs=196608 count=1 > dd if=tpl.bin of=tmp.bin bs=131584 count=1 > dd if=tmp.bin of=boot.bin bs=512 skip=1 > cat boot.bin >> tp_recovery.bin > cat owrt.bin >> tp_recovery.bin Place tp_recovery.bin in root directory of TFTP server and listen on 192.168.0.66/24. Connect router LAN ports with your computer and power up the router while pressing the reset button. The router will download the image via tftp and after ~1 Minute reboot into OpenWRT. U-Boot CLI ---------- U-Boot CLI can be activated by holding down '4' on bootup. Dual U-Boot ----------- This is the first TP-Link MediaTek device to feature a split-uboot design. The first (factory-uboot) provides recovery via TFTP and HTTP, jumping straight into the second (firmware-uboot) if no recovery needs to be performed. The firmware-uboot unpacks and executed the kernel. Web-Recovery ------------ TP-Link integrated a new Web-Recovery like the one on the Archer C7v4 / TL-WR1043v5. Stock-firmware sets a flag in the "romfile" partition before beginning to write and removes it afterwards. If the router boots with this flag set, bootloader will automatically start Web-recovery and listens on 192.168.0.1. This way, the vendor-firmware or an OpenWRT factory image can be written. By doing the same while performing sysupgrade, we can take advantage of the Web-recovery in OpenWRT. It is important to note that Web-Recovery is only based on this flag. It can't detect e.g. a crashing kernel or other means. Once activated it won't boot the OS before a recovery action (either via TFTP or HTTP) is performed. This recovery-mode is indicated by an illuminated WPS-LED on boot. Signed-off-by: David Bauer <mail@david-bauer.net>
* ramips: add RB750Gr3 native supportAnton Arapov2019-01-052-3/+1
| | | | | | | | | | | | | | | | | 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: add support for Netgear R6350NOGUCHI Hiroshi2018-12-161-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Netgear R6350 is a wireless router, aka Netgear AC1750. Specification: - SoC: Mediatek MT7621AT (2 CPU cores, 4 threads) - RAM: 128MiB (Nanya NT5CC64M16GP-DI) - ROM: 128MiB NAND Flash (Macronix MX30LF1G18AC-TI) - Wireless: for 11b/g/n (upto 300Mbps): MT7603 for 11a/ac (upto 1450Mbps) : MT7615, is not avaliable now - Ethernet LAN speed: up to 1000Mbps - Ethernet LAN ports: 4 - Ethernet WAN speed: up to 1000Mbps - Ethernet WAN ports: 1 - USB ports: 1 (USB 2.0) - LEDs: 4 (all can be controlled by SoC's GPIO) - buttons: 2 - serial ports: unknown Installation through telnet: - Copy kernel.bin and rootfs.bin to a USB flash disk, plug to usb port on the router. - Enable telnet with link: http://192.168.1.1/setup.cgi?todo=debug (login if required, default: admin password) - You will see "Debug Enabled!" - Telnet 192.168.1.1 and login with "root" - ls /mnt/shares/ to find out path of your USB disk. 'myUdisk' for example. - cd /mnt/shares/myUdisk - mtd_write write rootfs.bin Rootfs - mtd_write write kernel.bin Kernel - reboot recovery when bricked: nmrpflash can be used to recover to the netgear firmware if a broken image was flashed. The SC_PART_MAP partition suggests that an on flash partition table exists. After implementing a partition parser/builder for the sercom partition format, the definitions don't match the flash layout used by the stock firmware. It either means the partition format has not yet been completely understood or it isn't used by the stock firmware. For now, use fixed partitions instead. Signed-off-by: NOGUCHI Hiroshi <drvlabo@gmail.com> [apply latest ramips changes and document the on flash partition map issues] Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: drop old image validation codeMathias Kresin2018-12-121-329/+1
| | | | | | | Due to the enforced image metadata we ensure that the correct image is uploaded. Checks based on a magic arn't required any more. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: enforce image metadata verificationMathias Kresin2018-12-121-0/+1
| | | | | | | Now that we got rid of all legacy images, we can enforce image metadata verification. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: drop support for ALLNET ALL0239-3G and Sitecom WL-341 v3Mathias Kresin2018-12-122-8/+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: add support for D-Link DWR-118-A1Pawel Dembicki2018-12-031-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The DWR-118-A1 Wireless Router is based on the MT7620A SoC. Specification: - MediaTek MT7620A (580 Mhz) - 64 MB of RAM - 16 MB of FLASH - 1x 802.11bgn radio - 1x 802.11ac radio (MT7610EN) - 3x 10/100 Mbps Ethernet (3 LAN) - 2x 10/100/1000 Mbps ICPlus IP1001 Ethernet PHY (1 WAN AND 1 LAN) - 1x internal, non-detachable antenna - 2x external, non-detachable antennas - 1x USB 2.0 - UART (J1) header on PCB (57600 8n1) - 7x LED (5x GPIO-controlled), 2x button - JBOOT bootloader Known issues: - WIFI 5G LED not working - flash is very slow The status led has been assigned to the dwr-118-a1:green:internet led. At the end of the boot it is switched off and is available for other operation. Work correctly also during sysupgrade operation. Installation: Apply factory image via http web-gui or JBOOT recovery page How to revert to OEM firmware: - push the reset button and turn on the power. Wait until LED start blinking (~10sec.) - upload original factory image via JBOOT http (IP: 192.168.123.254) Signed-off-by: Pawel Dembicki <paweldembicki@gmail.com>
* ramips: add support for MTC Wireless Router WR1201Valentín Kivachuk2018-11-301-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | MTC Wireless Router WR1201 is the OEM name of the board. It is also sold rebranded as STRONG Dual Band Gigabit Router 1200. Specification: - SoC: MediaTek MT7621A (880 MHz) - Flash: 16 MiB - RAM: 128 MiB - Wireless: 2.4Ghz(MT7602EN) and 5Ghz (MT7612EN) - Ethernet speed: 10/100/1000 - Ethernet ports: 4+1 - 1x USB 3.0 - 1x microSD reader - Serial baud rate of Bootloader and factory firmware: 57600 The OEM webinterface writes only as much bytes as listed in the uImage header field to the flash. Also, the OEM webinterface evaluates the name field of uImage header before flashing (the string "WR1201_8_128") To flash via webinterface, is mandatory to use first initramfs.bin and after (from the OpenWrt) the sysupgrade.bin Some notes: - Some microSD will not work: mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising SDIO card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising MMC card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising SDIO card mtk-sd 1e130000.sdhci: card claims to support voltages below defined range mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising MMC card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising SDIO card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising MMC card Signed-off-by: Valentín Kivachuk <vk18496@gmail.com>
* ramips: add support for UniElec U7621-06-512M-64M variantNishant Sharma2018-11-281-0/+1
| | | | | | | | | | | | | | | | | | | | | | Add support for UniElec U7621-06 variant with 512MB RAM and 64MB flash. Additional specs are below: CPU: MT7621 (880Mhz) Bootloader: Ralink U-Boot Flash: 64MB - U-Boot identifies as Macronix MX66L51235F - kernel identifies as MX66L51235l (65536 Kbytes) RAM: 512MB Rest of the details as per commit 46ab81e405d2 ("ramips add support for UniElec U7621-06") Signed-off-by: Nishant Sharma <nishant@unmukti.in> [use generic board detection, add firmware partition compatible, extend firmware partition to use all of the remaining flash space, add a maximum image size matching the firmware partition size] Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: use generic board detection for Unielec u7621-06Mathias Kresin2018-11-282-4/+1
| | | | | | | | 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: add support for Wavlink WL-WN570HA1Thomas Vincent-Cross2018-11-281-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for the Wavlink WL-WN570HA1, a dual-band PoE wireless router with the following specifications: - CPU: MediaTek MT7688AN 580MHz - Flash: 8MB - RAM: 64MB - Ethernet: 1x 10/100Mbps - 2.4 GHz: 802.11b/g/n SoC, 1T1R, 27 dBm - 5 GHz: 802.11a/n/ac MT7610E, 1T1R, 25 dBm - Antennas: 2x external (1 per radio), detachable - LEDs: 3 programmable + Wi-Fi, WAN/LAN, Power - Buttons: Reset Flashing instructions: Factory U-boot launches a TFTP client if reset button is pressed during power-on. Rename the sysupgrade file and configure TFTP as follows: - Client (WL-WN570HA1) IP: 192.168.10.101 - Server IP: 192.168.10.100 - Filename: firmware.bin Signed-off-by: Thomas Vincent-Cross <me@tvc.id.au> [use generic board detection, add firmware partition compatible] Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: improve BDCOM WAP2100-SK supportMathias Kresin2018-11-262-4/+1
| | | | | | | | | | | | | | | | | | | | | 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 Kresin2018-11-262-4/+1
| | | | | | | | | | | | | | | | 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 Lava LR-25G001Pawel Dembicki2018-11-261-1/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The Lava LR-25G001 Wireless Router is based on the MT7620A SoC. Specification: - MediaTek MT7620A (580 Mhz) - 64 MB of RAM - 16 MB of FLASH - 1x 802.11bgn radio - 1x 802.11ac radio (MT7610EN) - 5x 10/100/1000 Mbps AR8337 Switch (1 WAN AND 4 LAN) - 2x external, detachable antennas - 1x USB 2.0 - UART (J3) header on PCB (57600 8n1) - 8x LED (3x GPIO-controlled), 2x button - JBOOT bootloader Known issues: - Work only three Gigabit ports (3/5, 1 WAN and 2LAN) Installation: Apply factory image via http web-gui or JBOOT recovery page How to revert to OEM firmware: - push the reset button and turn on the power. Wait until LED start blinking (~10sec.) - upload original factory image via JBOOT http (IP: 192.168.123.254) Signed-off-by: Pawel Dembicki <paweldembicki@gmail.com>
* ramips: Add support for ZTE ZXECS EBG3130 aka BDCOM WAP2100-SKPetr Štetiar2018-11-262-1/+5
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | 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 Senior2018-11-262-0/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | 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: add support for TP-Link TL-MR3020 v3Carlo Nel2018-09-061-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link TL-MR3020 v3 is a pocket-size router based on MediaTek MT7628N. This PR is based on the work of @meyergru[1], with his permission. Specification: - MediaTek MT7628N/N (575 Mhz) - 64 MB of RAM - 8 MB of FLASH - 2T2R 2.4 GHz - 1x 10/100 Mbps Ethernet Flash instruction: The only way to flash the image in TL-MR3020 v3 is to use tftp recovery mode in U-Boot: 1. Configure PC with static IP 192.168.0.225/24 and tftp server. 2. Rename "openwrt-ramips-mt76x8-tplink_tl-mr3020-v3-squashfs-tftp-recovery.bin" to "tp_recovery.bin" and place it in tftp server directory. 3. Connect PC with the LAN port, 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. [1] https://github.com/meyergru/lede-source/commits/TL-MR3020-V3 Signed-off-by: Carlo Nel <carlojnel@gmail.com>
* ramips: add support for ELECOM WRC-1900GSTNOGUCHI Hiroshi2018-08-231-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | ELECOM WRC-1900GST is a wireless router, based on Mediatek MT7621A. This is almost same as WRC-2533GST except wireless specs. Specifications: - SoC : MT7621A (four logical CPU cores) - RAM : 128MiB - ROM : 16MiB of SPI NOR-FLASH - wireless : 5GHz : 3T3R up to 1300Mbps/11ac with MT7615 2.4GHz : 3T3R up to 600Mbps/11n with MT7615 - Ethernet : 5 ports, all ports is capable of 1000base-T - Ether switch : MT7530 (MT7621A built-in) - LEDs : 4 LEDs - buttons : 2 buttons and 1 slide-switch - UART : header is on PCB, 57600bps Flash instruction using factory image: 1. Connect the computer to the LAN port of WRC-1900GST 2. Connect power cable to WRC-1900GST and turn on it 3. Access to "https://192.168.2.1/" and open firmware update page ("ファームウェア更新") 4. Select the OpenWrt factory image and click apply ("適用") button 5. Wait ~150 seconds to complete flashing Signed-off-by: NOGUCHI Hiroshi <drvlabo@gmail.com>
* treewide: consolidate upgrade state setMathias Kresin2018-08-161-6/+0
| | | | | | | | | | Set the (sys)upgrade state when sourcing the stage2 script instead of setting the state for each target individual. This change fixes the, due to a missing state set, not working upgrade led on ath79 and apm821xx. Signed-off-by: Mathias Kresin <dev@kresin.me>
* ramips: add support for D-Link DWR-118-A2Cezary Jackiewicz2018-08-151-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The DWR-118-A2 Wireless Router is based on the MT7620A SoC. Specification: - MediaTek MT7620A (580 Mhz) - 128 MB of RAM - 16 MB of FLASH - 1x 802.11bgn radio - 1x 802.11ac radio (MT7612EN) - 4x 10/100 Mbps Ethernet (1 WAN and 3 LAN) - 1x 10/100/1000 Mbps Marvell Ethernet PHY (1 LAN) - 2x external, non-detachable antennas - 1x USB 2.0 - UART (J1) header on PCB (57600 8n1) - 7x LED (5x GPIO-controlled), 2x button - JBOOT bootloader Known issues: - GELAN not working - flash is very slow The status led has been assigned to the dwr-118-a2:green:internet led. At the end of the boot it is switched off and is available for other operation. Work correctly also during sysupgrade operation. Installation: Apply factory image via http web-gui or JBOOT recovery page How to revert to OEM firmware: - push the reset button and turn on the power. Wait until LED start blinking (~10sec.) - upload original factory image via JBOOT http (IP: 192.168.123.254) Signed-off-by: Cezary Jackiewicz <cezary@eko.one.pl> Signed-off-by: Pawel Dembicki <paweldembicki@gmail.com>
* ramips: add support for HiWiFi HC5861Bold-masterDeng Qingfang2018-08-141-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | HiWiFi "Gee Enjoy1200" HC5861B is a dual-band router based on MediaTek MT7628AN https://www.hiwifi.com/enjoy-view Specifications: - MediaTek MT7628AN 580MHz - 128 MB DDR2 RAM - 16 MB SPI Flash - 2.4G MT7628AN 802.11bgn 2T2R 300Mbps - 5G MT7612EN 802.11ac 2T2R 867Mbps - 5x 10/100 Mbps Ethernet Flash instruction: 1. Get SSH access to the router 2. SSH to router with `ssh -p 1022 root@192.168.199.1`, The SSH password is the same as the webconfig one 3. Upload OpenWrt sysupgrade firmware into the router's `/tmp` folder with SCP 4. Run `mtd write /tmp/<filename> firmware` 5. reboot Everything is working Signed-off-by: Deng Qingfang <dengqf6@mail2.sysu.edu.cn>
* ramips: fix BR-6478ACv2 supportDaniel Gimpelevich2018-08-132-4/+1
| | | | | | | | | | | | | | | | | 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 Netgear R6120Ludwig Thomeczek2018-08-131-0/+1
| | | | | | | | | | | | | | | | | | | | This patch adds support for the Netgear R6120, aka Netgear AC1200. Specification: - SoC: MediaTek MT7628 (580 MHz) - Flash: 16 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 - Serial baud rate of Bootloader and factory firmware: 57600 To flash use nmrpflash with the provided factory.img. Flashing via webinterface will not work, for now. Signed-off-by: Ludwig Thomeczek <ledesrc@wxorx.net>
* ramips: add support for Edimax BR-6478AC v2Daniel Gimpelevich2018-08-062-1/+5
| | | | | | | | | | | | | | | | | | | | | | | | 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: add support for ELECOM WRC-2533GSTINAGAKI Hiroshi2018-07-301-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | ELECOM WRC-2533GST is a 2.4/5 GHz band 11ac rotuer, based on MediaTek MT7621A. Specification: - MT7621A (2-Core, 4-Threads) - 128 MB of RAM (DDR3) - 16 MB of Flash (SPI) - 4T4R 2.4/5 GHz wifi - MediaTek MT7615 - 5x 10/100/1000 Mbps Ethernet - 4x LEDs, 6 keys (2x buttons, 1x slide switch) - UART header on PCB - Vcc, GND, TX, RX from ethernet port side - baudrate: 57600 bps Flash instruction using factory image: 1. Connect the computer to the LAN port of WRC-2533GST 2. Connect power cable to WRC-2533GST and turn on it 3. Access to "https://192.168.2.1/" and open firmware update page ("ファームウェア更新") 4. Select the OpenWrt factory image and click apply ("適用") button 5. Wait ~150 seconds to complete flashing Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
* ramips: add support for Blueendless Kimax U35WFAdemar Arvati Filho2018-07-071-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | Blueendless Kimax U35WF is a 3,5" HDD Enclosure with Wi-Fi and Ethernet Patch rewritten from: https://forum.openwrt.org/viewtopic.php?id=66908 Based on: https://github.com/lede-project/source/pull/965 Specification: - SoC: MediaTek MT7620N - CPU/Speed: 580 MHz - Flash-Chip: KH25L12835F Spi Flash - Flash size: 16 MiB - RAM: 64 MiB - LAN: 1x 100 Mbps Ethernet - WiFi SoC-integrated: 802.11bgn - 1x USB 2.0 - UART: for serial console Installation: 1. Download sysupgrade.bin 2. Open vendor web interface 3. Choose to upgrade firmware 3. After reboot connect via ethernet at 192.168.1.1 Signed-off-by: Ademar Arvati Filho <arvati@hotmail.com>
* ramips: add support for I-O DATA WN-AX1167GRINAGAKI Hiroshi2018-07-071-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | I-O DATA WN-AX1167GR is a 2.4/5 GHz band 11ac router, based on MediaTek MT7621A. Specification: - MT7621A (2-Cores, 4-Threads) - 64 MB of RAM (DDR2) - 16 MB of Flash (SPI) - 2T2R 2.4/5 GHz - 5x 10/100/1000 Mbps Ethernet - 2x LEDs, 4x keys (2x buttons, 1x slide switch) - UART header on PCB - Vcc, GND, TX, RX from ethernet port side - baudrate: 115200 bps (U-Boot, OpenWrt) Stock firmware: In the stock firmware, WN-AX1167GR has two os images each composed of Linux kernel and rootfs. These images are stored in "Kernel" and "app" partition of the following partitions, respectively. (excerpt from dmesg): MX25L12805D(c2 2018c220) (16384 Kbytes) mtd .name = raspi, .size = 0x01000000 (16M) .erasesize = 0x00010000 (64K) .numeraseregions = 0 Creating 10 MTD partitions on "raspi": 0x000000000000-0x000001000000 : "ALL" 0x000000000000-0x000000030000 : "Bootloader" 0x000000030000-0x000000040000 : "Config " 0x000000040000-0x000000050000 : "Factory" 0x000000050000-0x000000060000 : "iNIC_rf" 0x000000060000-0x0000007e0000 : "Kernel" 0x000000800000-0x000000f80000 : "app" 0x000000f90000-0x000000fa0000 : "Key" 0x000000fa0000-0x000000fb0000 : "backup" 0x000000fb0000-0x000001000000 : "storage" The flag for boot partition is stored in "Key" partition, and U-Boot reads this and determines the partition to boot. If the image that U-Boot first reads according to the flag is "Bad Magic Number", U-Boot then tries to boot from the other image. If the second image is correct, change the flag to the number corresponding to that image and boot from that image. (example): ## Booting image at bc800000 ... Bad Magic Number,FFFFFFFF Boot from KERNEL 1 !! ## Booting image at bc060000 ... Image Name: MIPS OpenWrt Linux-4.14.50 Image Type: MIPS Linux kernel Image (lzma compressed) Data Size: 1865917 Bytes = 1.8 MB Load Address: 80001000 Entry Point: 80001000 Verifying Checksum ... OK Uncompressing Kernel Image ... OK raspi_erase_write: offs:f90000, count:34 . . Done! Starting kernel ... Flash instruction using factory image: 1. Connect the computer to the LAN port of WN-AX1167GR 2. Connect power cable to WN-AX1167GR and turn on it 3. Access to "192.168.0.1" on the web browser and open firmware update page ("ファームウェア") 4. Select the OpenWrt factory image and perform firmware update 5. On the initramfs image, execute "mtd erase firmware" to erase stock firmware and execute sysupgrade with sysupgrade image for WN-AX1167GR 6. Wait ~180 seconds to complete flasing Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
* ramips: add support for TL-WA801ND v5Romain MARIADASSOU2018-07-041-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | Specification: - System-On-Chip: MediaTek MT7628NN - CPU/Speed: 580 MHz - Flash-Chip: ELM Technology GD25Q64 - Flash size: 8192 KiB - RAM: 64 MiB - Wireless No1: SoC-integrated: MT7628N 2.4GHz 802.11bgn Currently the only method to install openwrt for the first time is via TFTP recovery. After first install you can use regular updates. Flash instructions: 1) To flash the recovery image, start a TFTP server with IP address 192.168.0.66 and serve the recovery image named tp_recovery.bin. 2) Connect your device to the LAN port, then press the WPS and Reset button and power it up. Keep pressing the WPS/Reset button for 10 seconds or until the lock LED is lighting up. It will try to download the recovery image and flash it. It can take up to 2-3 minutes to finish. When it reaches 100%, the router will reboot itself. Signed-off-by: Romain MARIADASSOU <roms2000@free.fr>
* ramips: add support for ZyXEL Keenetic Extra IIMaxim Anisimov2018-07-041-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Specification: - System-On-Chip: MT7628N/N - CPU/Speed: 580 MHz - Flash-Chip: Winbond w25q256 - Flash size: 32768 KiB - RAM: 128 MiB - 5x 10/100 Mbps Ethernet - 4x external, non-detachable antennas - UART (J1) header on PCB (57600 8n1) - Wireless No1 (2T2R): SoC-integrated: MT7628N 2.4GHz 802.11bgn - Wireless No2 (2T2R): On-board chip: MT7612EN 5GHz 802.11ac - USB: Yes 1 x 2.0 - 4x LED, 3x button The device supports dual boot mode. So we use only first half of flash. Flash instruction: The only way to flash OpenWrt image is to use tftp recovery mode in U-Boot: 1. Configure PC with static IP 192.168.1.2/24 and tftp server. 2. Rename "openwrt-ramips-mt76x8-zyxel_keenetic-extra-ii-squashfs-factory.bin" to "kextra2_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 until power led start blinking. 4. 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 MikroTik RouterBOARD RBM11gTobias Schramm2018-07-041-0/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for the MikroTik RouterBOARD RBM11g. =Hardware= The RBM11g is a mt7621 based device featuring one GbE port and one miniPCIe slot with a sim card socket and USB 2.0. ==Switch== The single onboard Ethernet port is connected the CPU directly. The internal switch of the mt7621 SoC is disabled. ==Flash== The device has one spi nor flash chip. It is a 128 Mbit winbond 25Q128FVS connected to CS0. ==PCIe== The board features a single miniPCIe slot. It has a dedicated mini SIM socket and a USB 2.0 port. Power to the miniPCIe slot is controlled via GPIO9. ==USB== There are no external USB ports. ==Power== The board can accept both, passive PoE and external power via a 2.1 mm barrel jack (center-positive). The input voltage range is 11-32 V. ==Serial port== The device does have an onboard UART on an unpopulated header next to the flash chip: GND: pin 2 TX: pin 7 RX: pin 6 Settings: 115200, 8N1 See below illustration for positioning of the header. 0 = screw hole * = some pin T = TX pin R = RX pin G = GND pin Pinout: +--------------- |O | __ | / \ | \__/ | | | | +---+ | |RAM| | +--+ | | | |**| <- unpopulated header with UART | |*T| +---+ | |R*| +--------+ | |**| | | | |G*| | CPU | | +--+ | | | +--+ | | | | | +--------+ | +--+ <- flash chip |O | +-----+ | | | |+--+ | | || | | | +--------------------- =Installation= To install an OpenWRT image to the device two components must be built: 1. A openwrt initramfs image 2. A openwrt sysupgrade image ===initramfs & sysupgrade image=== Select target devices "Mikrotik RBM11G" in openwrt menuconfig and build the images. This will create the images "openwrt-ramips-mt7621-mikrotik_rbm11g-initramfs-kernel.bin" and "openwrt-ramips-mt7621-mikrotik_rbm11g-squashfs-sysupgrade.bin" in the output directory. ==Installing== **Make sure to back up your RouterOS license in case you do ever want to go back to RouterOS using "/system license output" and back up the created license file.** When rebooted the board will try booting via ethernet first. If your board does not boot via ethernet automatically you will have to attach to the serial port and set ethernet as boot device within RouterBOOT. 1. Set up a dhcp server that points the bootfile to tftp server serving the "openwrt-ramips-mt7621-mikrotik_rbm11g-initramfs-kernel.bin" initramfs image 2. Connect to ethernet port on board 3. Power on the board 4. Wait for OpenWrt to boot Right now OpenWrt will be running with a SSH server listening. Now OpenWrt must be flashed to the devices flash: 1. Copy "openwrt-ramips-mt7621-mikrotik_rbm11g-squashfs-sysupgrade.bin" to the device using scp. 2. Write openwrt to flash using "sysupgrade openwrt-ramips-mt7621-mikrotik_rbm11g-squashfs-sysupgrade.bin" Once the flashing completes the board will reboot. Disconnect from the devices ethernet port or stop the DHCP/TFTP server to prevent the device from booting via ethernet again. The device should now boot straight to OpenWrt. Signed-off-by: Tobias Schramm <tobleminer@gmail.com>
* ramips: add support for TP-Link Archer C2Franz Flasch2018-06-251-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Specification: - System-On-Chip: MT7620A - CPU/Speed: 580 MHz - Flash-Chip: Winbond 25Q64BVSIG - Flash size: 8192 KiB - RAM: 64 MiB - Wireless No1: SoC-integrated: MT7620A 2.4GHz 802.11bgn - Wireless No2: On-board chip: MT7610EN 5GHz 802.11ac - Switch: RTL8367RB Gigabit Switch - USB: Yes 1 x 2.0 Preparing a TFTP recovery image for initial flashing: Currently the only method to install openwrt for the first time is via TFTP download in u-boot. After first install you can use regular updates. WARNING: This method also overwrites the bootloader partition! Create a TFTP recovery image: 1) Download a stock TP-Link Firmware file here: https://www.tp-link.com/en/download/Archer-C2_V1.html#Firmware 2) Extract u-boot from the binary file: #> dd if=c2v1_stock_firmware.bin of=c2v1_uboot.bin bs=1 skip=512 count=131072 3) Now merge the sysupgrade image and the u-boot into one binary: #> cat c2v1_uboot.bin openwrt-squashfs-sysupgrade.bin > ArcherC2V1_tp_recovery.bin The resulting image can be flashed via TFTP recovery mode. Flash instructions: 1) To flash the recovery image, start a TFTP server from IP address 192.168.0.66 and serve the recovery image named ArcherC2V1_tp_recovery.bin. 2) Connect your device to the LAN port, then press the WPS/Reset button and power it up. Keep pressing the WPS/Reset button for 10 seconds. It will try to download the recovery image and flash it. It can take up to 20-25 minutes to finish. When it reaches 100%, the router will reboot itself. Signed-off-by: Serge Vasilugin <vasilugin@yandex.ru> Signed-off-by: Franz Flasch <franz.flasch@gmx.at>
* ramips: Add support for Phicomm K2GChuanhong Guo2018-06-211-0/+1
| | | | | | | | | | | | | | | | | | | | | | Specification: - SoC: MediaTek MT7620A - Flash: 8 MB - RAM: 64 MB - Ethernet: 4 FE ports and 1 GE port (RTL8211F on port 5) - Wireless radio: MT7620 for 2.4G and MT7612E for 5G, both equipped with external PA. - UART: 1 x UART on PCB - 57600 8N1 Flash instruction: 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. 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: Chuanhong Guo <gch981213@gmail.com>
* ramips: Add support for Mikrotik RouterBOARD RBM33gTobias Schramm2018-06-211-0/+11
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for the Mikrotik RouterBOARD RBM33g. =Hardware= The RBM33g is a mt7621 based device featuring three gigabit ports, 2 miniPCIe slots with sim card sockets, 1 M.2 slot, 1 USB 3.0 port and a male onboard RS-232 serial port. Additionally there are a lot of accessible GPIO ports and additional buses like i2c, mdio, spi and uart. ==Switch== The three Ethernet ports are all connected to the internal switch of the mt7621 SoC: port 0: Ethernet Port next to barrel jack with PoE printed on it port 1: Innermost Ethernet Port on opposite side of RS-232 port port 2: Outermost Ethernet Port on opposite side of RS-232 port port 6: CPU ==Flash== The device has two spi flash chips. The first flash chips is rather small (512 kB), connected to CS0 by default and contains only the RouterBOOT bootloader and some factory information (e.g. mac address). The second chip has a size of 16 MB, is by default connected to CS1 and contains the firmware image. ==PCIe== The board features three PCIe-enabled slots. Two of them are miniPCIe slots (PCIe0, PCIe1) and one is a M.2 (Key M) slot (PCIe2). Each of the miniPCIe slots is connected to a dedicated mini SIM socket on the back of the board. Power to all three PCIe-enabled slots is controlled via GPIOs on the mt7621 SoC: PCIe0: GPIO9 PCIe1: GPIO10 PCIe2: GPIO11 ==USB== The board has one external USB 3.0 port at the rear. Additionally PCIe port 0 has a permanently enabled USB interface. PCIe slot 1 shares its USB interface with the rear USB port. Thus only either the rear USB port or the USB interface of PCIe slot 1 can be active at the same time. The jumper next to the rear USB port controls which one is active: open: USB on PCIe 1 is active closed: USB on rear USB port is active ==Power== The board can accept both, passive PoE and external power via a 2.1 mm barrel jack. The input voltage range is 11-32 V. =Installation= ==Prerequisites== A USB -> RS-232 Adapter and a null modem cable are required for installation. To install an OpenWRT image to the device two components must be built: 1. A openwrt initramfs image 2. A openwrt sysupgrade image ===initramfs & sysupgrade image=== Select target devices "Mikrotik RBM33G" in openwrt menuconfig and build the images. This will create the images "openwrt-ramips-mt7621-mikrotik_rbm33g-initramfs-kernel.bin" and "openwrt-ramips-mt7621-mikrotik_rbm33g-squashfs-sysupgrade.bin" in the output directory. ==Installing== **Make sure to back up your RouterOS license in case you do ever want to go back to RouterOS using "/system license output" and back up the created license file.** Serial settings: 115200 8N1 The installation is a two-step process. First the "openwrt-ramips-mt7621-mikrotik_rbm33g-initramfs-kernel.bin" must be booted via tftp: 1. Set up a dhcp server that points the bootfile to tftp server serving the "openwrt-ramips-mt7621-mikrotik_rbm33g-initramfs-kernel.bin" initramfs image 2. Connect to WAN port (left side, next to sys-LED and power indicator) 3. Connect to serial port of board 4. Power on board and enter RouterBOOT setup menu 5. Set boot device to "boot over ethernet" 6. Set boot protocol to "dhcp protocol" (can be omitted if DHCP server allows dynamic bootp) 6. Save config 7. Wait for board to boot via Ethernet On the serial port you should now be presented with the OpenWRT boot log. The next steps will install OpenWRT persistently. 1. Copy "openwrt-ramips-mt7621-mikrotik_rbm33g-squashfs-sysupgrade.bin" to the device using scp. 2. Write openwrt to flash using "sysupgrade openwrt-ramips-mt7621-mikrotik_rbm33g-squashfs-sysupgrade.bin" Once the flashing completes reboot the router and let it boot from flash. It should boot straight to OpenWRT. Signed-off-by: Tobias Schramm <tobleminer@gmail.com>
* ramips: add support for ELECOM WRC-1167GHBK2-SINAGAKI Hiroshi2018-06-191-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | ELECOM WRC-1167GHBK2-S is a 2.4/5 GHz band 11ac router, based on MediaTek MT7621A. Specification: - MT7621A (2-Cores, 4-Threads) - 128 MB of RAM (DDR3) - 16 MB of Flash (SPI) - 2T2R 2.4/5 GHz - MediaTek MT7615D - 5x 10/100/1000 Mbps Ethernet - 6x LEDs, 2x keys - UART header on PCB - Vcc, GND, TX, RX from ethernet port side - baudrate: 57600 bps Flash instruction using factory image: 1. Rename the factory image to "wrc-1167ghbk2-s_v0.00.bin" 2. Connect the computer to the LAN port of WRC-1167GHBK2-S 3. Connect power cable to WRC-1167GHBK2-S and turn on it 4. Access to "http://192.168.2.1/details.html" and open firmware update page ("手動更新(アップデート)") 5. Select the factory image and click apply ("適用") button 6. Wait ~150 seconds to complete flashing Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
* ramips: add support for TP-Link TL-WR842N v5Maxim Anisimov2018-06-161-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link TL-WR842N v5 are simple N300 router with 5-port FE switch and non-detachable antennas. Its very similar to TP-Link TL-MR3420 V5. 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 - USB 2.0 Port - UART (J1) header on PCB (115200 8n1) - 7x LED, 2x button, power input switch Flash instruction: The only way to flash OpenWrt image in wr842nv5 is to use tftp recovery mode in U-Boot: 1. Configure PC with static IP 192.168.0.225/24 and tftp server. 2. Rename "lede-ramips-mt7628-tplink_tl-wr842n-v5-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. Signed-off-by: Maxim Anisimov <maxim.anisimov.ua@gmail.com>
* ramips: add support for I-O DATA WN-GX300GRINAGAKI Hiroshi2018-06-081-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | I-O DATA WN-GX300GR is a 2.4 GHz band 11n router, based on MediaTek MT7621S. Specification: - MT7621S (1-Core, 2-Threads) - 64 MB of RAM - 8 MB of Flash (SPI) - 2T2R 2.4 GHz - 5x 10/100/1000 Mbps Ethernet - 2x LEDs, 4x keys (2x buttons, 1x slide switch) - UART header on PCB - Vcc, GND, TX, RX from ethernet port side - baudrate: 115200 bps (U-Boot, OpenWrt) Flash instruction using initramfs image: 1. Connect serial cable to UART header 2. Rename OpenWrt initramfs image for WN-GX300GR to "uImageWN-GX300GR" and place it in the TFTP directory 3. Set the IP address of the computer to 192.168.99.8, connect to the LAN port of WN-GX300GR, and start the TFTP server on the computer 4. Connect power cable to WN-GX300GR and turn on the router 5. Press "1" key on the serial console to interrupt boot process on U-Boot, press Enter key 3 times and start firmware download via TFTP 6. WN-GX300GR downloads initramfs image and boot with it 7. On the initramfs image, execute "mtd erase firmware" to erase stock firmware and execute sysupgrade with sysupgrade image for WN-GX300GR 8. Wait ~150 seconds to complete flasing Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
* ramips: Use generic board detect for GnuBee devicesRosen Penev2018-05-302-4/+1
| | | | | | | | | | | 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. BOCCOYuheiOKAWA2018-05-182-0/+4
| | | | | | | | | | | | | 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 Ammirata2018-05-072-4/+2
| | | | | | | | | | | | 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: add support for Ravpower WD03Matthias Badaire2018-05-071-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The RavPower WD03 is a battery powered SD card reader and a USB port. Specifications: SOC: MediaTek MT7620N BATTERY: 6000mah WLAN: 802.11bgn LAN: 1x 10/100 Mbps Ethernet USB: 1x USB 2.0 (Type-A) RAM: PM Tech PMD708416CTR-5CN 32 MB FLASH: Holtek HT66F40 - 8 MB Flash LED: Power button and 4 leds to indicate power level of the battery (could not get control of that) INPUT: Power, reset button OTHER: USB SD-Card reader with card detect on GPIO#42 Tested and working: - Ethernet - 2.4 GHz WiFi (Correct MAC-address) - installation from tftp - OpenWRT sysupgrade (Preserving and non-preserving) - LEDs - Buttons Installation: - Download the sysupgrade image - Place it in the root of a clean TFTP server running on your computer. - Rename the image to "kernel" — be sure there is no file extension. - Plug the WD03 into your computer via ethernet. - Set your computer to use 10.10.10.254 as its IP address. - With your WD03 shut down, hold down the power button until the first white LED lights up. - Push and hold the reset button and release the power button. Continue holding the reset button for 30 seconds or until it begins searching for files on your TFTP server, whichever comes first. - The WD03 (10.10.10.128) will look for your computer at 10.10.10.254 and install the kernel file. Once it has finished installation of the kernel file, it will search for a (nonexistent) rootfs file — when it begins searching for this file, shut down the WD03 by holding the power button normally. - Start up your WD03 normally. Signed-off-by: Matthias Badaire <mbadaire@gmail.com>
* ramips: add support for Zorlik ZL5900V2Vianney le Clément de Saint-Marcq2018-04-081-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | The Zorlik ZL5900V2 is an unbranded clone of HAME MPR-A1/2. It is marketed as "3G Wi-Fi Router". Only the PCB has the model name "ZL5900V2" printed on it. Specifications: - Ralink RT5350F (360 MHz) - 32 MB RAM - 8 MB Flash - 802.11bgn 1T1R - 1x 10/100 Mbps Ethernet - 1x USB 2.0 (Type-A) - 5200 mAh battery The ramdisk image (not the squashfs sysupgrade image) can be flashed through the web interface (named "GoAhead") of the factory firmware. However, as the factory firmware does not cleanly unmount the rootfs before flashing, the device may hang instead of rebooting after successful write. Power cycling the device gets you in OpenWrt where the squashfs image may be flashed through normal sysupgrade procedure. Signed-off-by: Vianney le Clément de Saint-Marcq <code@quartic.eu>
* ramips: add support for the YouHua WR1200JSZheng Qian2018-04-081-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | YouHua tech WR1200JS is an AC1200 router with 5 1Gb ports (4 Lan, 1 Wan) and 1 USB 2.0 port. Devices is base on MediaTek MT7621AT + MT7603E + MT7612E. Specification: - MT7612AT (880 MHz) - 128 MB of RAM - 16 MB of FLASH (SPI NOR) - 5x 10/100/1000 Mbps Ethernet - 2T2R 2.4 GHz (MT7603E) - 2T2R 5 GHz (MT7612E) - 1x USB 2.0 - 10x LED (Power 2G 5G WPS Internet LAN4-1 USB) - 3x button (reset wifi wps) - DC jack for main power input (12V) Installation: 1.) Press reset key 5 sec and restore the factory default 2.) Login webUI and change username to root and set a new password 3.) Visit http://192.168.2.254/adm/telnetd.shtml and turn on the telnet service 4.) Copy openwrt-ramips-mt7621-youhua_wr1200js-initramfs-kernel.bin to a usb pan 5.) Plug the usb pan to the router, telnet to the router and login by root 6.) cd /media/sda1 and check the initramfs file is there 7.) exec command: mtd_write write openwrt-ramips-mt7621-youhua_wr1200js-initramfs-kernel.bin Kernel 8.) reboot and visit 192.168.1.1 Signed-off-by: Zheng Qian <sotux82@gmail.com>
* ramips: add dwr-512 jboot firmware configurationGiuseppe Lippolis2018-04-081-2/+2
| | | | | | | | | | | | | | | | | | | | | The previous fw version require the replacement of the stock bootloader with u-boot. This prevent an easy stock restore of the original fw. Now a proper fw util has been developed to manage the stock jboot bootloader. Therefore make sense have a fw image for the stock bootloader. The old fw configuration (u-boot) is not compatible with the new one and will not be supported anymore. So at the end 2 image can be generated: 1) factory image with jboot bootloader openwrt-ramips-rt305x-dwr-512-b-squashfs-factory.bin 2) sysupgrade image with jboot bootloader openwrt-ramips-rt305x-dwr-512-b-squashfs-sysupgrade.bin Signed-off-by: Giuseppe Lippolis <giu.lippolis@gmail.com>