aboutsummaryrefslogtreecommitdiffstats
path: root/target/linux/ar71xx/base-files/etc/board.d/01_leds
Commit message (Collapse)AuthorAgeFilesLines
* ar71xx: ubnt-rocket-m-ti: fix RSSI LED definitionsLech Perczak2020-01-211-6/+7
| | | | | | | | | | | | | | | | When mapping for RSSI LEDs was defined for interface wlan0 on Ubiquiti Rocket M Titanium, it missed connection to actual interface. Therefore create the mapping to interface, so RSSI LEDs work without additional configuration, after starting rssileds service. While at that, split RSSI into ~equal intervals for 6 LEDs, and remove coefficients needed for PWM LEDs, as this board does not support PWM LEDs. Finally, for complete support, enable 'rssileds' package in per-device rootfs, so the indicator works out of box. Signed-off-by: Lech Perczak <lech.perczak@gmail.com>
* ar71xx: improve support for TP-Link CPE510 v2Adrian Schmutzler2019-10-211-1/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | This fixes commit bae927c551fd ("ar71xx: add support for TP-LINK CPE510 V2.0") where the support for this device wasn't optimal. Device support for the CPE510v2 so far has been a hack to enable flashing with CPE510v1 images. Those even have different hardware (e.g. additional ethernet port). With this patch, we provide proper support for this device in ar71xx. Installation: - Flash factory image through stock firmware WEB UI or through TFTP - To get to TFTP recovery just hold reset button while powering on for around 4-5 seconds and release. - Rename factory image to recovery.bin - Stock TFTP server IP: 192.168.0.100 - Stock device TFTP address: 192.168.0.254 Fixes: bae927c551fd ("ar71xx: add support for TP-LINK CPE510 V2.0") Signed-off-by: Andrew Cameron <apcameron@softhome.net> [Rebased onto revert commit, changed comments in mach-cpe510.c, changed commit title and description, fixed eth0 MAC address, removed eth1 initialization] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de> [squashed revert, added fixes tag] Signed-off-by: Petr Štetiar <ynezz@true.cz>
* ar71xx: WNDR4300: fix WAN LED behaviourMichal Cieslakiewicz2019-10-211-2/+1
| | | | | | | | | Change WAN LED behaviour to be consistent with other Netgear routers running OpenWrt. Instead of link speed, use amber colour to indicate link status. Green LED should be used when Internet connection is up and running. Signed-off-by: Michal Cieslakiewicz <michal.cieslakiewicz@wp.pl>
* ar71xx: fix WLAN LED names for Archer C7Tomislav Požega2019-07-251-2/+2
| | | | | | Update WLAN LED colour identifier for both interfaces on Archer C7 Signed-off-by: Tomislav Požega <pozega.tomislav@gmail.com>
* ar71xx: add support for Mikrotik RouterBOARD 2011UiAS-2HnD r2Koen Vandeputte2019-04-231-1/+2
| | | | | | This board got a new hardware revision, without any change in functionality. Signed-off-by: Koen Vandeputte <koen.vandeputte@ncentric.com>
* ar71xx: Add support for Ubiquity Bullet M (XW)Petr Štetiar2019-04-081-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | CPU: AR9342 SoC RAM: 64 MB DDR2 Flash: 8 MB NOR SPI Ports: 100 MBit (24V PoE in) WLAN: 2.4/5 GHz UART: 1 UART on PCB marked as J1 with 115200 8N1 config LEDs: Power, Ethernet, 4x RSSI LEDs (orange, red, 2x green) Buttons: Reset UART connection details .---------------------------------. | | [ETH] J1 [ANT] | o VCC o RX o TX o GND | `---------------------------------' Flashing instructions using recovery method over TFTP 1. Unplug the ethernet cable from the router. 2. Using paper clip press and hold the router's reset button. Make sure you can feel it depressed by the paper clip. Do not release the button until step 4. 3. While keeping the reset button pressed in, plug the ethernet cable back into the AP. Keep the reset button depressed until you see the device's LEDs flashing in upgrade mode (alternating LED1/LED3 and LED2/LED4), this may take up to 25 seconds. 4. You may release the reset button, now the device should be in TFTP transfer mode. 5. Set a static IP on your Computer's NIC. A static IP of 192.168.1.25/24 should work. 6. Plug the PoE injector's LAN cable directly to your computer. 7. Start tftp client and issue following commands: tftp> binary tftp> connect 192.168.1.20 tftp> put openwrt-ar71xx-generic-ubnt-bullet-m-xw-squashfs-factory.bin Tested only on Bullet M2HP. Signed-off-by: Petr Štetiar <ynezz@true.cz>
* ar71xx: Add support for TP-Link CPE210 v3Robert Marko2019-04-021-1/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | Looks identical to the v2. This PR adds support for a popular low-cost 2.4GHz N based AP Specifications: - SoC: Qualcomm Atheros QCA9533 (650MHz) - RAM: 64MB - Storage: 8 MB SPI NOR - Wireless: 2.4GHz N based built into SoC 2x2 - Ethernet: 1x 100/10 Mbps, integrated into SoC, 24V POE IN Installation: Flash factory image through stock firmware WEB UI or through TFTP To get to TFTP recovery just hold reset button while powering on for around 4-5 seconds and release. Rename factory image to recovery.bin Stock TFTP server IP:192.168.0.100 Stock device TFTP adress:192.168.0.254 Tested-by: Adrian Schmutzler <freifunk@adrianschmutzler.de> Signed-off-by: Robert Marko <robimarko@gmail.com> [Rebased, adjusted for separate tplink-safeloader entry, dynamic partitioning] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ar71xx: Change led trigger from usbdev to usbportDavid Santamaría Rogado2019-02-281-46/+46
| | | | | | | | | | | | | This patch changes all the legacy usbdev leds triggers to the use usbport. The problem is that the usbdev triggers get applied as usbport in sysfs but LuCI gets confused and is not able to show the configuration with usbdev. More information can be found in the PR: <https://github.com/openwrt/openwrt/pull/1819> Signed-off-by: David Santamaría Rogado <howl.nsp@gmail.com> Signed-off-by: Christian Lamparter <chunkeey@gmail.com> [extended commit message]
* ar71xx: GL.iNet AR300M family: correct LED definitionsAndreas Ziegler2019-02-261-0/+1
| | | | | | | | remove USB as this is no LED but power control rename WiFi LED with correct color red (like in stock firmware) set middle LED to be used for LAN link/activity Signed-off-by: Andreas Ziegler <dev@andreas-ziegler.de>
* ar71xx: ubnt-(xm,xw): fix LED RSSI indicationLech Perczak2019-02-081-4/+5
| | | | | | | | | | | | | | | | | When mapping for RSSI LEDs was defined for interface wlan0 on Ubiquiti XM and XW family, it missed connection to actual interface. Therefore create the mapping to interface, so RSSI LEDs work without additional configuration, after starting rssileds service. Also add the required package for this. While at that, remove coefficients needed for PWM LEDs, as XM and XW boards do not support PWM LEDs. Tested-by: Petr Štetiar <ynezz@true.cz> Signed-off-by: Lech Perczak <lech.perczak@gmail.com> [Squashed commits + remove custom device_packages + slighty rewrite the commit msg] Signed-off-by: Koen Vandeputte <koen.vandeputte@ncentric.com>
* ar71xx: fix TP-Link Archer C7 v5 switch LEDsRinki Kumari2018-11-171-3/+15
| | | | Signed-off-by: Rinki Kumari <rinki13@gmail.com>
* ar71xx: add support for TP-Link Archer C59 v2Keith Maika2018-07-301-1/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link Archer C59v2 is a dual-band AC1350 router based on Qualcomm/Atheros QCA9561+QCA9886 chips. Specification: - 775/650/258 MHz (CPU/DDR/AHB) - 128 MB of RAM (DDR2) - 16 MB of FLASH (SPI NOR) - 3T3R 2.4 GHz - 2T2R 5 GHz - 5x 10/100 Mbps Ethernet - USB 2.0 port - UART header on PCB Flash instruction: - via web UI: 1. Download openwrt-ar71xx-generic-archer-c59-v2-squashfs-factory.bin 2. Login to router and open the Advanced tab 3. Navigate to System Tools -> Firmware Upgrade 4. Upload firmware using the Manual Upgrade form - via TFTP: 1. Set PC to fixed ip address 192.168.0.66 2. Download openwrt-ar71xx-generic-archer-c59-v2-squashfs-factory.bin and rename it to tp_recovery.bin 3. Start a tftp server with the file tp_recovery.bin in its root directory 4. Turn off the router 5. Press and hold Reset button 6. Turn on router with the reset button pressed and wait ~15 seconds 7. Release the reset button and after a short time the firmware should be transferred from the tftp server 8. Wait ~30 second to complete recovery. Signed-off-by: Keith Maika <keithm@aoeex.com>
* ar71xx:add support for E750G v8张鹏2018-07-301-2/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Qxwlan E750G v8 is based on Qualcomm QCA9344. Specification: - 560/450/225 MHz (CPU/DDR/AHB) - 128 MB of RAM (DDR2) - 8/16 MB of FLASH (SPI NOR) - 2T2R 2.4G GHz (AR9344) - 2x 10/100 Mbps Ethernet (PoE support) - 2x 10/100/1000 Mbps Ethernet - 7x LED (6 driven by GPIO) - 1x button (reset) - 1x DC jack for main power input (9-48 V) - UART (J23) and LEDs (J2) headers on PCB Flash instruction (using U-Boot CLI and tftp server): - Configure PC with static IP 192.168.1.10 and tftp server. - Rename "sysupgrade" filename to "firmware.bin" and place it in tftp server directory. - Connect PC with one of RJ45 ports, power up the board and press "enter" key to access U-Boot CLI. - Use the following command to update the device to OpenWrt: "run lfw". Flash instruction (using U-Boot web-based recovery): - Configure PC with static IP 192.168.1.xxx(2-254)/24. - Connect PC with one of RJ45 ports, press the reset button, power up the board and keep button pressed for around 6-7 seconds, until LEDs start flashing. - Open your browser and enter 192.168.1.1, select "sysupgrade" image and click the upgrade button. Signed-off-by: 张鹏 <sd20@qxwlan.com>
* ar71xx:add support for E750A v4张鹏2018-07-301-1/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Qxwlan E750A v4 is based on Qualcomm QCA9344. Specification: - 560/450/225 MHz (CPU/DDR/AHB) - 128 MB of RAM (DDR2) - 8/16 MB of FLASH (SPI NOR) - 2T2R 5G GHz (AR9344) - 2x 10/100 Mbps Ethernet (one port with PoE support) - 1x miniPCIe slot (USB 2.0 bus only) - 7x LED (6 driven by GPIO) - 1x button (reset) - 1x DC jack for main power input (9-48 V) - UART (J23) and LEDs (J2) headers on PCB Flash instruction (using U-Boot CLI and tftp server): - Configure PC with static IP 192.168.1.10 and tftp server. - Rename "sysupgrade" filename to "firmware.bin" and place it in tftp server directory. - Connect PC with one of RJ45 ports, power up the board and press "enter" key to access U-Boot CLI. - Use the following command to update the device to OpenWrt: "run lfw". Flash instruction (using U-Boot web-based recovery): - Configure PC with static IP 192.168.1.xxx(2-254)/24. - Connect PC with one of RJ45 ports, press the reset button, power up the board and keep button pressed for around 6-7 seconds, until LEDs start flashing. - Open your browser and enter 192.168.1.1, select "sysupgrade" image and click the upgrade button. Signed-off-by: 张鹏 <sd20@qxwlan.com>
* ar71xx:add support for E558 v2张鹏2018-07-301-0/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Qxwlan E558 v2 is based on Qualcomm QCA9558 + AR8327. Specification: - 720/600/200 MHz (CPU/DDR/AHB) - 128 MB of RAM (DDR2) - 8/16 MB of FLASH (SPI NOR) - 2T2R 2.4 GHz (QCA9558) - 3x 10/100/1000 Mbps Ethernet (one port with PoE support) - 4x miniPCIe slot (USB 2.0 bus only) - 1x microSIM slot - 5x LED (4 driven by GPIO) - 1x button (reset) - 1x 3-pos switch - 1x DC jack for main power input (9-48 V) - UART (JP5) and LEDs (J8) headers on PCB Flash instruction (using U-Boot CLI and tftp server): - Configure PC with static IP 192.168.1.10 and tftp server. - Rename "sysupgrade" filename to "firmware.bin" and place it in tftp server directory. - Connect PC with one of RJ45 ports, power up the board and press "enter" key to access U-Boot CLI. - Use the following command to update the device to OpenWrt: "run lfw". Flash instruction (using U-Boot web-based recovery): - Configure PC with static IP 192.168.1.xxx(2-254)/24. - Connect PC with one of RJ45 ports, press the reset button, power up the board and keep button pressed for around 6-7 seconds, until LEDs start flashing. - Open your browser and enter 192.168.1.1, select "sysupgrade" image and click the upgrade button. Signed-off-by: 张鹏 <sd20@qxwlan.com>
* ar71xx: improve MikroTik wAP R supportThibaut VARÈNE2018-07-301-0/+3
| | | | | | | | | | | | | 81d446b045176e3e25bb0ef74e3d060b51a0a353 introduced incomplete support for this device. This patch attempts to correct the situation based on OEM source code. LED1-3 are GSM mode on OFW (2G/3G/4G) hence unassigned here. Signed-off-by: Thibaut VARÈNE <hacks@slashdirt.org> Tested-by: David Ehrmann <ehrmann@gmail.com>
* ar71xx: add support for MikroTik RB931-2nDThibaut VARÈNE2018-07-161-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This patch adds support for the MikroTik RB931-2nD (hAP mini): https://mikrotik.com/product/RB931-2nD Specifications: * SoC: Qualcomm QCA9533 (650MHz) * RAM: 32MiB * Storage: 16MiB SPI NOR flash * Ethernet: 3x100M * Wireless: QCA9533 built-in, dual-chain 802.11b/g/n Installation: 1. Setup a DHCP/BOOTP Server with the following parameters: * DHCP-Option 66 (TFTP server name): pointing to a local TFTP server within the same subnet of the DHCP range * DHCP-Option 67 (Bootfile-Name): matching the initramfs filename of the to be booted image. The usable intramfs files are: - openwrt-ar71xx-mikrotik-vmlinux-initramfs.elf - openwrt-ar71xx-mikrotik-vmlinux-initramfs-lzma.elf - openwrt-ar71xx-mikrotik-rb-nor-flash-16M-initramfs-kernel.bin 2. Press the reset button on the board and keep that pressed. 3. Connect the board to your local network via its Internet port. 4. Release the button after the LEDs on the board are turned off. Now the board should load and start the initramfs image from the TFTP server. 5. Now connect the board via either of its LAN ports (2 or 3). 6. Upload the sysupgrade image to the board with scp: $ scp openwrt-ar71xx-mikrotik-rb-nor-flash-16M-squashfs-sysupgrade.bin root@192.168.1.1:/tmp/fw.bin 7. Log in to the running system listening on 192.168.1.1 via ssh as root (without password): $ ssh root@192.168.1.1 8. Flash the uploaded firmware file from the ssh session via the sysupgrade command: root@OpenWrt:~# sysupgrade /tmp/fw.bin Signed-off-by: Thibaut VARÈNE <hacks@slashdirt.org>
* ar71xx: Add support for TP-Link CPE210 v2Adrian Schmutzler2018-06-231-2/+11
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This PR adds support for a popular low-cost 2.4GHz N based AP Specifications: - SoC: Qualcomm Atheros QCA9533 (650MHz) - RAM: 64MB - Storage: 8 MB SPI NOR - Wireless: 2.4GHz N based built into SoC 2x2 - Ethernet: 1x 100/10 Mbps, integrated into SoC, 24V POE IN Installation: Flash factory image through stock firmware WEB UI or through TFTP To get to TFTP recovery just hold reset button while powering on for around 4-5 seconds and release. Rename factory image to recovery.bin Stock TFTP server IP:192.168.0.100 Stock device TFTP adress:192.168.0.254 Notes: TP-Link does not use bootstrap registers so without this patch reference clock detects as 40MHz while it is actually 25MHz. This is due to messed up bootstrap resistor configuration on the PCB. Provided GPL code just forces 25MHz reference clock. That causes booting with completely wrong clocks, for example, CPU tries to boot at 1040MHz while the stock is 650MHz. So this PR depends on PR #672 to remove 40MHz reference clock. Thanks to Sven Eckelmann <sven@narfation.org> for properly patching that. Signed-off-by: Robert Marko <robimarko@gmail.com> Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
* ar71xx: add support for Fritz!WLAN Repeater 450EDavid Bauer2018-06-181-0/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for the AVM Fritz!WLAN Repeater 450E SOC: Qualcomm QCA9556 (Scorpion) 560MHz MIPS74Kc RAM: 64MB Zentel A3R12E40CBF DDR2 FLASH: 16MiB Winbond W25Q128 SPI NOR WLAN1: QCA9556 2.4 GHz 802.11b/g/n 3x3 INPUT: WPS button LED: Power, WiFi, LAN, RSSI indicator Serial: Header Next to Black metal shield Pinout is 3.3V - RX - TX - GND (Square Pad is 3.3V) The Serial setting is 115200-8-N-1. Tested and working: - Ethernet - 2.4GHz WiFi (correct MAC) - Installation via EVA bootloader - OpenWRT sysupgrade - Buttons - Most LEDs Not working: - 2 RSSI LEDs AVM used for RSSI{0,1} two of the Ethernet PHYs LEDs which they control over MDIO. Our driver doesn't expose these LEDs as GPIOs. While it is possible to implement this feature, it would require an additional kernel patch for a minor functionality. Installation via EVA: In the first seconds after Power is connected, the bootloader will listen for FTP connections on 192.168.178.1. Firmware can be uploaded like following: ftp> quote USER adam2 ftp> quote PASS adam2 ftp> binary ftp> debug ftp> passive ftp> quote MEDIA FLSH ftp> put openwrt-sysupgrade.bin mtd1 Note that this procedure might take up to two minutes. You need to powercycle the Device afterwards to boot OpenWRT. Signed-off-by: David Bauer <mail@david-bauer.net>
* ar71xx: use Power-LED as Diag-LED on FRITZBox 4020David Bauer2018-06-091-1/+0
| | | | | | | This commit makes use of the Power-LED as Diag-LED, allowing the LED to work as a status indicator. Signed-off-by: David Bauer <mail@david-bauer.net>
* ar71xx: add support for OCEDO KoalaDavid Bauer2018-06-071-0/+5
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for the OCEDO Koala SOC: Qualcomm QCA9558 (Scorpion) RAM: 128MB FLASH: 16MiB WLAN1: QCA9558 2.4 GHz 802.11bgn 3x3 WLAN2: QCA9880 5 GHz 802.11nac 3x3 INPUT: RESET button LED: Power, LAN, WiFi 2.4, WiFi 5, SYS Serial: Header Next to Black metal shield Pinout is 3.3V - GND - TX - RX (Arrow Pad is 3.3V) The Serial setting is 115200-8-N-1. Tested and working: - Ethernet - 2.4 GHz WiFi - 5 GHz WiFi - TFTP boot from ramdisk image - Installation via ramdisk image - OpenWRT sysupgrade - Buttons - LEDs Installation seems to be possible only through booting an OpenWRT ramdisk image. Hold down the reset button while powering on the device. It will load a ramdisk image named 'koala-uImage-initramfs-lzma.bin' from 192.168.100.8. Note: depending on the present software, the device might also try to pull a file called 'koala-uimage-factory'. Only the name differs, it is still used as a ramdisk image. Wait for the ramdisk image to boot. OpenWRT can be written to the flash via sysupgrade or mtd. Due to the flip-flop bootloader which we not (yet) support, you need to set the partition the bootloader is selecting. It is possible from the initramfs image with > fw_setenv bootcmd run bootcmd_1 Afterwards you can reboot the device. Signed-off-by: David Bauer <mail@david-bauer.net>
* ar71xx: add support for GL.iNet GL-AR750SLuo chongjun2018-05-271-0/+4
| | | | | | | | | | | | | | | | | | | This patch adds supports for GL-AR750S. Specification: - SOC: QCA9563 (775MHz) - Flash: 16 MiB (W25Q128FVSG) - RAM: 128 MiB DDR2 - Ethernet: 2x 1Gbps LAN + 1x 1Gbps WAN - Wireless: 2.4GHz (bgn) and 5GHz (ac) - USB: 1x USB 2.0 port - Button: 1x switch button, 1x reset button - LED: 3x LEDS (green) Flash instruction: Apply factory image via web-gui. Signed-off-by: Luo chongjun <luochongjun@gl-inet.com>
* ar71xx: add support for Fritz!Box 4020David Bauer2018-05-071-0/+6
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This commit adds support for the AVM Fritz!Box 4020 WiFi-router. SoC: Qualcomm Atheros QCA9561 (Dragonfly) 750MHz RAM: Winbond W971GG6KB-25 FLASH: Macronix MX25L12835F WiFi: QCA9561 b/g/n 3x3 450Mbit/s USB: 1x USB 2.0 IN: WPS button, WiFi button OUT: Power LED green, Internet LED green, WLAN LED green, LAN LED green, INFO LED green, INFO LED red UART: Header Next to Black metal shield Pinout is 3.3V - RX - TX - GND (Square Pad is 3.3V) The Serial setting is 115200-8-N-1. Tested and working: - Ethernet (LAN + WAN) - WiFi (correct MAC) - Installation via EVA bootloader - OpenWRT sysupgrade - Buttons - LEDs Not working: - USB port Installation via EVA: In the first seconds after Power is connected, the bootloader will listen for FTP connections on 169.254.157.1 (Might also be 192.168.178.1). Firmware can be uploaded like following: ftp> quote USER adam2 ftp> quote PASS adam2 ftp> binary ftp> debug ftp> passive ftp> quote MEDIA FLSH ftp> put openwrt-sysupgrade.bin mtd1 Note that this procedure might take up to two minutes. After transfer is complete you need to powercycle the device to boot OpenWRT. Signed-off-by: David Bauer <mail@david-bauer.net>
* ar71xx: Add userspace support for Mikrotik rb-2011iLSSimon Paterson2018-04-301-0/+1
| | | | | | | | | | Kernel support already present. Patch adds userspace for the 'iLS' suffix model of the RB2011 family. Enables correct initial switch settings, sysupgrade, etc. https://mikrotik.com/product/RB2011iLS-IN Signed-off-by: Simon Paterson <simon.paterson.nz@gmail.com>
* ar71xx: add support for TP-Link Archer C60 v2Henryk Heisig2018-04-071-1/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | TP-Link Archer C60 v2 is a dual-band AC1350 router, based on Qualcomm/Atheros QCA9561 + QCA9886. Specification: - 775/650/258 MHz (CPU/DDR/AHB) - 64 MB of RAM (DDR2) - 8 MB of FLASH (SPI NOR) - 3T3R 2.4 GHz - 2T2R 5 GHz - 5x 10/100 Mbps Ethernet - 7x LED, 2x button - UART header on PCB Flash instruction (web): Download lede-ar71xx-generic-archer-c60-v2-squashfs-factory.bin and use OEM System Tools - Firmware Upgrade site. Flash instruction (recovery): 1. Set PC to fixed IP address 192.168.0.66 2. Download lede-ar71xx-generic-archer-c60-v2-squashfs-factory.bin and rename it to tp_recovery.bin 3. Start a tftp server with the file tp_recovery.bin in its root directory 4. Turn off the router 5. Press and hold reset button 6. Turn on router with the reset button pressed and wait ~15 seconds 7. Release the reset button and after a short time the firmware should be transferred from the tftp server 8. Wait ~30 second to complete recovery Flash instruction (under U-Boot, using UART): tftp 0x81000000 lede-ar71xx-...-sysupgrade.bin erase 0x9f030000 +$filesize cp.b $fileaddr 0x9f030000 $filesize reset Signed-off-by: Henryk Heisig <hyniu@o2.pl>
* ar71xx: add support for TP-Link TL-WR940N v6Robert Marko2018-04-061-0/+3
| | | | | | | | | Add support for TL-WR940N v6 board. It is pretty much the same as v5 except they only left WAN LED and removed other ones. Installation: flash factory image through WEB UI or use TFTP. Signed-off-by: Robert Marko <robimarko@gmail.com>
* ar71xx: Add support for D-Link DAP-1330 a1Nicolò Veronese2018-04-051-0/+7
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | D-Link DAP-1330 rev. A1 is a wall-plug N300 Wi-Fi range extender, based on Qualcomm/Atheros QCA9533 v2. Short specification: - 650/393/216 MHz (CPU/DDR/AHB) - 1x 10/100 Mbps Ethernet - 64 MB of RAM (DDR1) - 8 MB of FLASH - 2T2R 2.4 GHz - 2x external antennas - 6x LED (2 are bi-color), 2x button - 4 pin on pcb (looking from eth port and from left to right tx,rx,gnd,vcc) Flash instruction: use "factory" image directly in vendor GUI. This device has a recovery system that assign the ip addr of env variable "serverip" via dhcp to a pc, and the "ipaddr" value to itself. The recovery it's triggered by a not bootable firmware, or pressing the reset button during the bootloader startup (first 30 seconds). The recovery uses a http page to restore the firmware, and it's checking the firmware image header, so use the "factory" image to restore or the original firmware. You can access vendor firmware over serial using: - login: root - password: linuxrocks Image was tested only in EU version of the device, but should work also with the same device version sold in other countries. Signed-off-by: Nicolò Veronese <nicveronese@gmail.com>
* ar71xx: add support for Ubiquiti Litebeam M5Arne Zachlod2018-03-151-0/+4
| | | | | | | | | | | | | | | | | Specification: - SoC: Atheros AR9342 - Flash: 8 MiB - RAM: 64 MiB - UART: 1x UART on PCB - 115200 8N1 - Ethernet: 1 x 100 Mbit with passive PoE (24V/0.2A) Doesn't work: * Flash via TFTP with Ubiquiti Uboot Installation via vendor firmware: - upload factory image via webinterface Signed-off-by: Arne Zachlod <arne@nerdkeller.org>
* ar71xx: add support for AR9331 based Hak5 devicesSebastian Kinne2018-02-221-0/+6
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This adds support for AR9331 based Hak5 penetration testing tools: - WiFi Pineapple NANO - LAN Turtle - Packet Squirrel WiFi Pineapple NANO specifications: - SoC: Atheros AR9331 (400 MHz) - RAM: 64 MB (DDR2) - FLASH: 16 MB - WiFi: 1T1R AR9331 (built-in), 1T1R AR9271 (built-in via USB bus) - Ethernet: 1x FE over USB (ASIX AX88772A) - Ports: 2x RP-SMA for antennas, 1x USB 2.0 (host), 1x micro SD - Power: USB 5 V, 1.5 A - Other: status LED, reset button LAN Turtle specifications: - SoC: Atheros AR9331 (400 MHz) - RAM: 64 MB (DDR2) - FLASH: 16 MB - WiFi: none - Ethernet: 1x FE (AR9331), 1x FE over USB (Realtek RTL8152B) - Ports: 1x RJ45, version dependent: micro SD or 3G SIM slot - Power: USB 5 V, 0.5 A - Other: status LED, reset button (inside, on PCB) Packet Squirrel specifications: - SoC: Atheros AR9331 (400 MHz) - RAM: 64 MB (DDR2) - FLASH: 16 MB - WiFi: none - Ethernet: 2x FE (AR9331) - Ports: 2x RJ45, 1x USB 2.0 - Power: USB 5 V, 0.12 A - Other: status LED, reset button, 4-way switch Flash instructions for all 3 devices: Original firmware is based on OpenWrt. Use sysupgrade via SSH to flash. Signed-off-by: Sebastian Kinne <contact@sebkinne.com> [squashed commits, combined and reworked mach files, aligned board naming with general convention, fixed minor issues, tested on real hardware, reworded commit subject and description] Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: add support for YunCore T830Piotr Dymacz2018-02-221-0/+7
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | YunCore T830 is a simple N300 router with 5-port FE switch, detachable antennas and USB 2.0 port. Specification: - 650/597/216 MHz (CPU/DDR/AHB) - 128 MB of RAM (DDR2) - 16 MB of FLASH (SPI NOR) - 5x 10/100 Mbps Ethernet - 2T2R 2.4 GHz (QCA9531), with ext. PA (SKY65174-21) and LNA - two external, detachable antennas (RP-SMA) - 1x USB 2.0 - 8x LED (7 driven by GPIO) - 1x button (reset) - DC jack for main power input (12 V) - UART and JTAG headers on PCB Flash instruction: 1. First, gain root access to the device, following below steps: - Login into web gui (default password/IP: admin/192.168.188.253). - Go to "Advanced" -> "Management" -> "System" and download backup of configuration (bakfile.bin). - Open the file as tar.gz archive, edit/update "shadow" file and change hash of root password to something known. - Repack the archive, rename it back to "bakfile.bin" and use to restore configuration of the device. - After that, device will reboot and can be accessed over SSH. 2. Then, install OpenWrt: - Login over SSH and issue command: fw_setenv bootcmd "bootm 0x9f050000 || bootm 0x9fe80000" - Upload "sysupgrade" image and install it (only if previous command succeeded) with command: "sysupgrade -n -F openwrt-...". Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: add support for Samsung WAM250Piotr Dymacz2018-02-221-0/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Samsung WAM250 is a dual-band (selectable, not simultaneous) wireless hub, dedicated for Samsung Shape Wireless Audio System. The device is based on Atheros AR9344. FCC ID: A3LWAM250. Specification: - 560/450/225 MHz (CPU/DDR/AHB) - 64 MB of RAM (DDR2) - 16 MB of FLASH (SPI NOR) - 2x 10/100 Mbps Ethernet - 2T2R 2.4/5 GHz (AR9344), with ext. PA (SE2598L, SE5003L) and LNA - 1x USB 2.0 - 4x LED (all are driven by GPIO) - 2x button (reset, wps/speaker add) - DC jack for main power input (14 V) - UART header on PCB (J4, RX: 3, TX: 5) Flash instruction: This device uses dual-image (switched between upgrades) with a common jffs2 config partition. Fortunately, there is a way to disable this mode so that more flash space can be used by OpenWrt image. You can easily access this device over telnet, using root/root credentials (the same also work for serial console access). 1. Make sure that your device uses second (bootpart=2) image using command: "fw_printenv bootpart". 2. If your device uses first image (bootpart=1), perform upgrade to the latest vendor firmware (after the update, device should boot from second partition) using web gui (default login: admin/1234567890). 3. Rename "sysupgrade" image to "firmware.bin", download it (you can use wget, tftp or ftpget) to "/tmp" and issue below commands: mtd_debug erase /dev/mtd3 0 $(wc -c /tmp/firmware.bin | awk -F' ' '{print $1}') mtd_debug write /dev/mtd3 0 $(wc -c /tmp/firmware.bin) fw_setenv bootpart fw_setenv bootcmd "bootm 0x9f070000" reboot Revert to vendor firmware instruction: 1. Download vendor firmware to "/tmp" device and issue below commands: fw_setenv bootpart 1 sysupgrade -n -F SS_BHUB_v2.2.05.bin Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: fix COMFAST CF-E375AC supportPiotr Dymacz2018-02-221-5/+2
| | | | Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: add support for COMFAST CF-E385ACPiotr Dymacz2018-02-221-2/+11
| | | | | | | | | | | | | | | | | | | | | | | | | | COMFAST CF-E385AC is an AC2200 ceiling mount AP with PoE support, based on Qualcomm/Atheros QCA9558 + QCA9984 + QCA8337N. Specification: - 720/600/200 MHz (CPU/DDR/AHB) - 256 MB of RAM (DDR2) - 16 MB of FLASH (SPI NOR) - 2x 10/100/1000 Mbps Ethernet, with PoE support - 3T3R 2.4 GHz (QCA9558), with external LNA and PA (SE2576L) - 4T4R 5 GHz (QCA9984), with external FEM (SKY85728-11) - 7x internal antennas - 1x RGB LED (driven by GPIO) - 1x button (reset) - UART, LEDs/GPIO and USB headers on PCB - external watchdog (Pericon Technology PT7A7514) Flash instruction: Original firmware is based on OpenWrt. Use sysupgrade image directly in vendor GUI. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: rename COMFAST CF-E355AC to CF-E355AC v1Piotr Dymacz2018-02-221-6/+2
| | | | | | | | There are now supported two versions of the CF-E355AC board which differ in 802.11ac radio chip. Include version number in board, model, image filename, etc., also for the v1. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: add support for COMFAST CF-E355AC v2Ding Tengfei2018-02-221-0/+5
| | | | | | | | | | | | | | | | | | | | | | | | | | COMFAST CF-E355AC v2 is a ceiling mount AP with PoE support, based on Qualcomm/Atheros QCA9531 + QCA9886. Short specification: - 2x 10/100 Mbps Ethernet, with PoE support - 128MB of RAM (DDR2) - 16 MB of FLASH - 2T2R 2.4 GHz, 802.11b/g/n - 2T2R 5 GHz, 802.11ac/n/a, WAVE 2 - built-in 4x 3 dBi antennas - output power (max): 500 mW (27 dBm) - 1x RGB LED, 1x button - built-in watchdog chipset Flash instruction: Original firmware is based on OpenWrt. Use sysupgrade image directly in vendor GUI. Signed-off-by: Ding Tengfei <dtf@comfast.cn> [updated kernel config for both boards] Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: add support for WHQX E1700AC/E600G/E600GAC v2Peng Zhang2018-02-221-1/+7
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | WHQX E1700AC v2 is based on Qualcomm QCA9563 + QCA9880 + QCA8334. Specification: - 750/400/250 MHz (CPU/DDR/AHB) - 128 MB of RAM (DDR2) - 8/16 MB of FLASH (SPI NOR) - 3T3R 2.4 GHz (QCA9563) with external FEM (SKY85309-11) - 3T3R 5 GHz (QCA9880) with external FEM (SKY85728-11) - 2x 10/100/1000 Mbps Ethernet (one port with PoE support) - 1x miniPCIe slot (USB 2.0 bus only) - 1x microSIM slot - 1x USB 2.0 - 5x LED (4 driven by GPIO) - 1x button (reset) - 1x 2-pos switch - 1x DC jack for main power input (9-48 V) - UART (J5) and LEDs (J13) headers on PCB WHQX E600G is based on Qualcomm QCA9531. Specification: - 650/391/216 MHz (CPU/DDR/AHB) - 64/128 MB of RAM (DDR2) - 8/16 MB of FLASH (SPI NOR) - 2T2R 2.4 GHz (QCA9531) with external PA (LXK-6601) - 2x 10/100 Mbps Ethernet (one port with PoE support) - 1x miniPCIe slot (with PCIe and USB 2.0 buses) - 1x microSIM slot - 5x LED (4 driven by GPIO) - 1x button (reset) - 1x DC jack for main power input (9-48 V) - UART (J100), SIM (J34), JTAG (J5) and LEDs (J7) headers on PCB WHQX E600GAC is based on Qualcomm QCA9531 + QCA9887. Specification: - 650/391/216 MHz (CPU/DDR/AHB) - 64/128 MB of RAM (DDR2) - 8/16 MB of FLASH (SPI NOR) - 2T2R 2.4 GHz (QCA9531) - 1T1R 5 GHz (QCA9887) with external FEM (SKY85703-11) - 2x 10/100 Mbps Ethernet - 6x LED (1x RGB, 5 driven by GPIO) - 1x button (reset) - 1x DC jack for main power input (9-12 V) - UART (J100), USB (J102), JTAG (J5) and LEDs (J7) header on PCB Important notice: First version of these boards are using different mtd layout, with ART data at the end. You should not use v2 images on v1 board because it will result in lost of ART data! Flash instruction (using U-Boot CLI and tftp server): 1. Configure PC with static IP 192.168.1.10 and tftp server. 2. Rename "sysupgrade" filename to "firmware.bin" and place it in tftp server directory. 3. Connect PC with one of RJ45 ports, power up the board and press "enter" key to access U-Boot CLI. 4. Use the following command to update the device to OpenWrt: "run lfw". Flash instruction (using U-Boot web-based recovery): 1. Configure PC with static IP 192.168.1.xxx(2-254)/24. 2. Connect PC with one of RJ45 ports, press the reset button, power up the board and keep button pressed for around 6-7 seconds, until LEDs start flashing. 3. Open your browser and enter 192.168.1.1, select "sysupgrade" image and click the upgrade button. Signed-off-by: Peng Zhang <sd20@qxwlan.com> [reworked: image generation code, mach-* files, commit description, fixed minor code style issues, rebased on master] Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: Add eTactica EG-200 supportKarl Palsson2018-02-131-0/+6
| | | | | | | | | | | | | | EG-200 is a DIN rail mountable device with one ethernet port, wifi, an RS-485 port, and an internal USB attached uSD card reader. Two leds, "modbus" and "etactica" are managed by userspace applications in factory firmware. Flash instruction: Original firmware is based on OpenWrt. Use sysupgrade image directly in vendor GUI. Signed-off-by: Karl Palsson <karlp@etactica.com>
* ar71xx: add support for TP-Link RE355Henryk Heisig2018-02-131-0/+1
| | | | | | | | | | | | | | | | | | | | | | | | This device is identical as TP-Link RE450 RE355 is a dual-band AC1200 router, based on Qualcomm/Atheros QCA9558+QCA9880. Specification: 720/600/200 MHz (CPU/DDR/AHB) 64/128 MB of RAM (DDR2) 8 MB of FLASH (SPI NOR) 3T3R 2.4 GHz 3T3R 5 GHz 1x 10/100/1000 Mbps Ethernet 7x LED, 3x button UART header on PCB Flash instruction: Web: Download lede-ar71xx-generic-archer-c60-v2-squashfs-factory.bin and use OEM System Tools - Firmware Upgrade site. Signed-off-by: Henryk Heisig <hyniu@o2.pl>
* ar71xx:add support for COMFAST CF-E375ACDing Tengfei2018-02-111-0/+5
| | | | | | | | | | | | | | | | | | | | | | | | COMFAST CF-E375AC is a ceiling mount AP with PoE support, based on Qualcomm/Atheros QCA9563 + QCA9886 + QCA8337. Short specification: 2x 10/100/1000 Mbps Ethernet, with PoE support 128MB of RAM (DDR2) 16 MB of FLASH 3T3R 2.4 GHz, 802.11b/g/n 2T2R 5 GHz, 802.11ac/n/a, wave 2 built-in 5x 3 dBi antennas output power (max): 500 mW (27 dBm) 1x RGB LED, 1x button built-in watchdog chipset Flash instruction: Original firmware is based on OpenWrt. Use sysupgrade image directly in vendor GUI. Signed-off-by: Ding Tengfei <dtf@comfast.cn>
* ar71xx: Orders the names of the devices alphabetically.Arne Zachlod2018-02-111-150/+150
| | | | Signed-off-by: Arne Zachlod <arne@nerdkeller.org>
* ar71xx: add support for the MikroTik RB911-2Hn/5Hn boardsGabor Juhos2018-01-221-0/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The patch adds support for the MikroTik RB911-2Hn (911 Lite2) and the RB911-5Hn (911 Lite5) boards: https://mikrotik.com/product/RB911-2Hn https://mikrotik.com/product/RB911-5Hn The two boards are using the same hardware design, the only difference between the two is the supported wireless band. Specifications: * SoC: Atheros AR9344 (600MHz) * RAM: 64MiB * Storage: 16 MiB SPI NOR flash * Ethernet: 1x100M (Passive PoE in) * Wireless: AR9344 built-in wireless MAC, single chain 802.11b/g/n (911-2Hn) or 802.11a/g/n (911-5Hn) Notes: * Older versions of these boards might be equipped with a NAND flash chip instead of the SPI NOR device. Those boards are not supported (yet). * The MikroTik RB911-5HnD (911 Lite5 Dual) board also uses the same hardware. Support for that can be added later with little effort probably. Installation: 1. Setup a DHCP/BOOTP Server with the following parameters: * DHCP-Option 66 (TFTP server name): pointing to a local TFTP server within the same subnet of the DHCP range * DHCP-Option 67 (Bootfile-Name): matching the initramfs filename of the to be booted image. The usable intramfs files are: - openwrt-ar71xx-mikrotik-vmlinux-initramfs.elf - openwrt-ar71xx-mikrotik-vmlinux-initramfs-lzma.elf - openwrt-ar71xx-mikrotik-rb-nor-flash-16M-initramfs-kernel.bin 2. Press the reset button on the board and keep that pressed. 3. Connect the board to your local network via its ethernet port. 4. Release the button after the LEDs on the board are turned off. Now the board should load and start the initramfs image from the TFTP server. 5. Upload the sysupgrade image to the board with scp: $ scp openwrt-ar71xx-mikrotik-rb-nor-flash-16M-squashfs-sysupgrade.bin root@192.168.1.1:/tmp/fw.bin 5. Log in to the running system listening on 192.168.1.1 via ssh as root (without password): $ ssh root@192.168.1.1 7. Flash the uploaded firmware file from the ssh session via the sysupgrade command: root@OpenWrt:~# sysupgrade /tmp/fw.bin Signed-off-by: Gabor Juhos <juhosg@freemail.hu>
* ar71xx: fix TP-Link Archer C7 v4 switch LEDsDavid Bauer2018-01-151-8/+12
| | | | | | | | Match mapping of the switch LEDs according to the TP-Link firmware behavior. LAN port 1 triggers the most right LAN LED, LAN port 2 the second LAN LED from the right and so on. Signed-off-by: David Bauer <mail@david-bauer.net>
* ar71xx: add support for GL.iNet GL-AR750Piotr Dymacz2018-01-151-0/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | GL.iNet GL-AR750 is a small size, dual-band (AC750) router, based on Qualcomm/Atheros QCA9531 v2 + QCA9887. FCC ID: 2AFIW-AR750. Specification: - 650/597/216 MHz (CPU/DDR/AHB) - 128 MB of RAM (DDR2) - 16 MB of FLASH (SPI NOR) - 3x 10/100 Mbps Ethernet - 2T2R 2.4 GHz (QCA9531) - 1T1R 5 GHz (QCA9887) - 1x USB 2.0 (power controlled by GPIO) - 1x microSD (GL857L) - 3x LED (all driven by GPIO) - 1x button (reset) - 1x 2-pos switch - header for optional PoE module - 1x micro USB for main power input - UART + I2C header on PCB Flash instruction: Vendor firmware is based on OpenWrt/LEDE. GUI or sysupgrade can be used to flash OpenWrt/LEDE firmware. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: add support for ALFA Network R36APiotr Dymacz2018-01-151-0/+6
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | ALFA Network R36A is a successor of the previous model, the R36 (Ralink RT3050F based). New version is based on Qualcomm/Atheros QCA9531 v2. Specification: - 650/400/200 MHz (CPU/DDR/AHB) - 64 MB of RAM (DDR2) - 16 MB of FLASH (SPI NOR) - 2x 10/100 Mbps Ethernet, with passive PoE support (24 V) - 2T2R (QCA9531) 2.4 GHz, 2x u.fl connectors on PCB - 1x USB 2.0 (power controlled by GPIO) - 6x LED (5 of them are driven by GPIO) - 2x button (reset, wifi/wps) - external h/w watchdog (EM6324QYSP5B, disabled and not used) - DC jack for main power input (12 V) - UART header on PCB Flash instruction: You can use sysupgrade image directly in vendor firmware which is based on LEDE/OpenWrt. Alternatively, you can use web recovery mode in U-Boot: 1. Configure PC with static IP 192.168.1.2/24. 2. Connect PC with one of RJ45 ports, press the reset button, power up device, wait for first blink of all LEDs (indicates network setup), then keep button for 3 following blinks and release it. 3. Open 192.168.1.1 address in your browser and upload sysupgrade image. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: add support for Teltonika RUT900Piotr Dymacz2018-01-151-0/+6
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Teltonika RUT900 is an industrial 3G router based on Atheros AR9344. There are available 3 other models in RUT9xx series: RUT905, RUT950 and RUT955, which differ in availability of additional I/O ports, built-in GSM modem type, GPS antenna and other features. FCC ID of the RUT950 model (LTE module built-in): 2AET4-RUT950. This patch adds support for the RUT900 model only but can be easily extended to cover whole series. Also, as there are several different 3/4G modules (Huawei, Quectel, Telit) used in whole series, packages required for WWAN support are not included by default. It is up to the user to install required software for built-in modem. Specification: - 550/400/200 MHz (CPU/DDR/AHB) - 128 MB of RAM (DDR2) - 16 MB of FLASH (SPI NOR) - 4x 10/100 Mbps Ethernet, with passive PoE support on LAN1 - 2T2R 2,4 GHz (AR9344), with ext. PA (MGA-22103) and LNA - built-in 3G module (example: Telit HE910-D) - 2x miniSIM slot - 2x RP-SMA/F (Wi-Fi), 2x SMA/F (3G) - PCA9539 16-bit GPIO I2C expander - 12x LED (4 are driven by AR9344, 7 by PCA9539) - 1x button (reset) - DC jack for main power input (9-30 V) - UART available on PCB edge connector Serial console pinout: - RX: pin1 (square) on top side of the main PCB (AR9344 is on top) - TX: pin1 (square) on bottom side Flash instruction: Vendor firmware is based on OpenWrt CC release. Use the "factory" image directly in GUI (make sure to uncheck "keep settings") or in U-Boot web based recovery. To avoid any problems, make sure to first update vendor firmware to latest version - "factory" image was successfully tested on device running "RUT9XX_R_00.03.960" firmware and U-Boot "3.0.1". Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: add support for ALFA Network N5QPiotr Dymacz2018-01-141-1/+9
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | ALFA Network N5Q is a successor of previous model, the N5 (outdoor CPE/AP, based on Atheros AR7240 + AR9280). New version is based on Atheros AR9344. Specification: - 550/400/200 MHz (CPU/DDR/AHB) - 64 MB of RAM (DDR2) - 16 MB of FLASH (SPI NOR) - 2x 10/100 Mbps Ethernet, with passive PoE support (24 V) - 2T2R 5 GHz (AR9344), with ext. PA (RFPA5542) and LNA, up to 27 dBm - 8x LED (7 are driven by GPIO) - 1x button (reset) - external h/w watchdog (EM6324QYSP5B, disabled and not used) - header for optional 802.3at/af PoE module - DC jack for main power input (optional, not installed by default) - UART header on PCB Flash instruction: You can use sysupgrade image directly in vendor firmare which is based on OpenWrt/LEDE. Alternatively, you can use web recovery mode in U-Boot: 1. Configure PC with static IP 192.168.1.2/24. 2. Connect PC with one of RJ45 ports, press the reset button, power up device, wait for first blink of all LEDs (indicates network setup), then keep button for 3 following blinks and release it. 3. Open 192.168.1.1 address in your browser and upload sysupgrade image. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: add support for ALFA Network AP91-5GPiotr Dymacz2018-01-141-0/+8
| | | | | | | | | | | | | | | | | | | | | | | | | | | | ALFA Network AP91-5G is a 5 GHz outdoor AP/CPE board, based on Atheros AR7240 + AR9280. Specification: - 400/400/200 MHz (CPU/DDR/AHB) - 32 MB of RAM (DDR1) - 8 MB of FLASH (SPI NOR) - 1x 10/100 Mbps Ethernet, with passive PoE support (24 V) - 1T1R 5 GHz (AR9280), with ext. PA (SE5004L) and LNA, up to 27 dBm - 6x LED (5 are driven by GPIO) - 1x button (reset) - external h/w watchdog (EM6324QYSP5B, disabled and not used) - header for optional 802.3at/af PoE module - DC jack for main power input (optional, not installed by default) - UART and LEDs headers on PCB Flash instruction: Use "factory" image in vendor GUI (in case of problems, make sure your board has up to date firmware). Alternatively, TFTP in U-Boot can be used: select option "2. Load system code then write to Flash via TFTP" during early boot and use "sysupgrade" image. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
* ar71xx: add support for TP-Link TL-WR1043N v5Tim Thorpe2017-11-141-1/+7
| | | | | | | | | | | | | | | | | | | | | TP-Link TL-WR1043N v5 appears to be identical to the TL-WR1043ND v4, except that the USB port has been removed and there is no longer a removable antenna option. The software is more in line with the Archer series in that it uses a nested bootloader scheme. Specifications: - QCA9563 at 775 MHz - 64 MB RAM - 16 MB flash - 3 (non-detachable) Antennas / 450 Mbit - 1x/4x WAN/LAN Gbps Ethernet (QCA8337) - reset and Wi-Fi buttons Signed-off-by: Tim Thorpe <tim@tfthorpe.net> Signed-off-by: Ludwig Thomeczek <ledesrc@wxorx.net>
* ar71xx: add support for TP-Link TL-WA901ND v5Paul Wassi2017-11-141-1/+2
| | | | | | | | The TL-WA901ND v5 has the same hardware as v4, although the PCB has a different layout. Installation from factory is done via TFTP. (rename -factory image to wa901ndv4_tp_recovery.bin for tftp) Signed-off-by: Paul Wassi <p.wassi@gmx.at>
* ar71xx: complete support for RB mAP 2nDRobert Marko2017-11-141-0/+6
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This patch adds support for the MikroTik RouterBOARD mAP 2nD https://mikrotik.com/product/RBmAP2nD Specifications: - SoC: Qualcomm QCA9531 (650 MHz) - RAM: 64 MB - Storage: 16 MB NOR SPI flash - Wireless: builtin QCA9531, 2x2:2 - Ethernet: 2x100M (802.3af/at POE in and passive POE out on ETH2) - USB: microUSB type AB port This patch adds missing code to fully support mAP. Machfile already contained configuration for mAP 2nD, but device specific configuration like LEDs etc., was missing. Note: The POE LED works but doesn't turn on when POE passthrough is enabled, despite being configured with GPIO trigger. Installation 1. Login to the Mikrotik WebUI to backup your licence keys 2. Setup a DHCP/BOOTP server with: - DHCP-Option 66 (TFTP server name) pointing to a local TFTP server within the same subnet of the DHCP range - DHCP-Option 67 (Bootfile-Name) matching the initramfs filename of the to be booted image 3. Connect the port labeled internet to your local network 4. Keep the reset button pushed down and power on the board The board should load and start the initramfs image from the TFTP server. Login as root/without password to the started LEDE via SSH listing on IPv4 address 192.168.1.1. Use sysupgrade to install LEDE. Revert to RouterOS Use the "rbcfg" package on in LEDE: - rbcfg set boot_protocol bootp - rbcfg set boot_device ethnand - rbcfg apply Open Netinstall and reboot routerboard. Now Netinstall sees RouterBOARD and you can install RouterOS. If NetInstall gets stuck on Sending offer just wait for it to timeout and then close and open Netinstall again. Click on install again. In order for RouterOS to function properly, you need to restore license for the device. You can do that by including license in NetInstall. Signed-off-by: Robert Marko <robimarko@gmail.com>