main
33 Commits
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785492e4c1 |
qualcommax: ipq807x: add Zyxel NWA110AX support
The Zyxel NWA110AX is a dual band 2x2:2 802.11ax wireless access point with PoE. The device is very similar to the NWA210AX except for being 2x2 instead of 4x4 in the 5GHz band and not having the 2.5GbE ethernet port. This commit factors out a common DTS and device definition and reuses it for both devices. Hardware: * SoC: Qualcomm IPQ8070A * RAM: 1GiB 1x Samsung K4A8G165WC-BCTD * Flash: 8MiB Winbond W25Q64DW SPI-NOR, 256MiB Winbond W29N02GZ SPI-NAND * WLAN 2.4GHz: QCN5024 2x2:2 802.11b/g/n/ax * WLAN 5GHz: QCN5054 2x2:2 802.11n/ac/ax * Ethernet: 1x 1GbE with AR8033 PHY * Serial Config: 3.3V TTL 115200-8-N-1, externally accessible * Serial Layout: GND TX RX 3.3V (don't connect, marked with triangle) * LEDs: 1x red, 1x green, 1x blue, 1x white * Buttons: 1x reset MAC addresses: * Uplink: base address on label * 2.4GHz WLAN: base + 1 * 5GHZ WLAN: base + 2 Flashing Notes: The device uses a dual-image setup and OpenWrt can only be installed as image 0. When the currently running stock firmware is image 0, OpenWrt will be installed as image 1, fail to boot and the device returns to stock firmware. If this happens, install any version of stock firmware so that it runs as image 1, before installing OpenWrt. Alternatively, if there already is a valid stock firmware in image 1, the "debug dual-image show" and "debug dual-image set boot-image image1" commands can be used in the stock CLI via serial/SSH/telnet to switch to image 1. Flashing with Stock Web Interface: * Get the OpenWrt factory image and rename it to a shorter name, for example "openwrt.bin" (the stock firmware has a character limit) * In the web interface, go to "Maintenance" -> "File Manager" -> "Firmware Package" (or click the link next to "Firmware Version" under "Device Information" on the dashboard) * Under "Upload File" browse to the renamed OpenWrt factory image and click on "Upload" Switch Boot Image: * OpenWrt to stock: "zyxel-bootconfig-ipq807x set image1" * Stock to OpenWrt: "debug dual-image set boot-image image0" Unbrick / Revert to Stock with the Boot Module: * Disconnect the device from power * Configure your machine to 192.168.1.103/24 and start a TFTP server * Put the stock firmware image into the TFTP server root and rename it to "ZLD-current" * Establish a serial connection to the device through the console port * Connect the device to power * When prompted, press a key to abort automatic boot and enter debug mode * Use the "atnz" command to flash the firmware image * Use the "atgo" command to boot from the newly flashed image Signed-off-by: Michael Lotz <mmlr@mlotz.ch> Link: https://github.com/openwrt/openwrt/pull/21849 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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d0bd7ad1a2 |
qualcommax: ipq807x: add Netgear RBx750 support
Netgear RBx750 are tri band, 2.4GHz and 2x 5GHz, 8 stream 802.11ax mesh devices from the Orbi series. The RBR750 is a router with a WAN and 3 LAN ports. The RBS750 is a satellite without WAN port, only 2 LAN ports and half the flash. The hardware is otherwise identical. They were sold in kits as RBK752-RBK757, with one router and 1-6 satellites. Hardware: * SoC: Qualcomm IPQ8074 * RAM: 1GiB 1x Samsung * Flash: 512MiB Winbond W29N04GZ or 256MiB Winbond W29N02GZ * WLAN 2.4GHz: QCN5024 2x2:2 b/g/n/ax * WLAN 5GHz Low Band: QCN5054 2x2:2 a/n/ac/ax 5180-5320MHz * WLAN 5GHz High Band: QCN5054 4x4:4 a/n/ac/ax 5500-5700MHz * Ethernet: QCA8075 switch with 1 WAN and 3 LAN ports or 2 LAN ports * Serial Config: 3.3V TTL 115200-8-N-1, internal populated header * Serial Layout: Bottom <- RX, TX, GND, 3.3V (don't connect) -> Top * LEDs: green/red power, white/red/green/blue status * Buttons: 1x Reset, 1x WPS MAC addresses: LAN1: base address on label LAN2: base + 1 LAN3: base + 2 WAN: base + 1 2.4GHz: base + 2 5GHz-Low: base + 3 5GHz-High: base + 4 Flashing Notes: The stock firmware images are signed. Both the bootloader and the stock web interface check the signature and will fail to boot/flash. The bootloader automatically does NMRP when a gigabit LAN connection is present. The stock and factory images contain a U-Boot script that is executed when flashing using NMRP. This is used to alter and persist the U-Boot env with a boot command that works with unsigned firmware. Install OpenWrt: * Get the nmrpflash utility [0] and OpenWrt factory image * Find network interface to use: nmrpflash -L * Start nmrpflash: nmrpflash -i interface -f openwrt-...-factory.img * Connect the device LAN port closest to the power jack to the same network using gigabit * Plug the device in and wait for the bootloader to flash * Unplug and replug the device once the power LED blinks amber Revert to Stock: The boot command needs to be reverted before flashing the stock firmware, otherwise it will fail to boot and get stuck in recovery mode (red power LED flashing). * Run: fw_setenv bootcmd bootipq * Restart the device * Flash the stock firmware RBx750-Va.b.c.d.img using nmrpflash [0]: https://github.com/jclehner/nmrpflash Signed-off-by: Michael Lotz <mmlr@mlotz.ch> Link: https://github.com/openwrt/openwrt/pull/21938 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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ac8b5526bc |
qualcommax: ipq807x: add support for TCL LINKHUB HH500V
TCL LINKHUB HH500V also known as Vodafone Gigacube B157 is a dual band 802.11ax 5G NR CPE with an FXS port. Specifications: * SoC: Qualcomm IPQ8072A * RAM: 1024 MB * NAND flash: 256MB NAND (MT29F2G08ABBGAH4) * NOR flash: 64MB NOR (MX25U25635F) - only in some variants * WiFi 5G: Qualcomm QCN5054 * WiFi 2.4G: Qualcomm QCN5024 * Ethernet 2.5G: Qualcomm QCA8081 * Ethernet 1G: Qualcomm QCA8075 * Modem: GosunCn GM800 (Qualcomm Snapdragon X55) * SIM: 1 nano-SIM card slot * Buttons: Power, Reset, WPS * LEDs: Power (B/R), WiFi (B), 4G (B/Y/R), 5G (B/Y/R) * VoIP: 1 FXS RJ11 port (not supported in OpenWrt) * Power: 12V, 3A UART serial console: * 115200,8N1,1.8V * Three unmarked test points next to QJ2012A: +---------+ | QJ2012A | +---------+ o TX o GND o RX o o o Installation via OEM firmware: * Use the following process to obtain root ssh access https://forum.openwrt.org/t/150371/24 * Connect using root with no password on port 42000 * Optionally for serial bootloader access run : fw_setenv bootdelay=3 * SCP factory.bin to /tmp * Run: sysupgrade -n /tmp/factory.bin Installation via serial console and OEM firmware:: * Use console to access OEM firmware shell * Proceed with SCP & sysupgrade as described above Other notes: * This device uses active partition rotation * Some versions (TCL branded?) have a NOR chip in addition to NAND * The above is supported by u-boot patching DT partitions * DT patching does NOT occur on tftpboot/bootm * Modem is detected as foxconn-sdx55 by kernel (same VID/PID) * This works OK-ish and should be improved if we can get OEM modem details Signed-off-by: Milan Krstic <milan.krstic@gmail.com> Link: https://github.com/openwrt/openwrt/pull/19182 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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401c0a03f1 |
qualcommax: ipq807x: add support for Zyxel NWA210AX
The Zyxel NWA210AX is a wall- and ceiling-mountable access point (AP). Hardware specifications: - SoC: Qualcomm IPQ8071A - RAM: 1 GB (Samsung K4A8G165WC-BCTD) - Flash: 8 MB (Winbond W25Q64DW), 256 MB (Winbond W29N02GZ) - Ethernet: 1x 2.5 Gbps RJ45 port (QCA8081), 1x 1 Gbps RJ45 port (AR8033) - WiFi: 2.4 GHz 802.11ax/b/g/n (QCN5024), 5 GHz 802.11 ac/ax/n (QCN5054) - Power: DC 12V/PoE 802.3at - Button: Reset - LEDs: Multicolour red/green/blue/white via LP5562 Installation/flashing instructions: 1. In OEM web interface navigate to gear icon → System → SSH and enable SSH. 2. Log in via SSH (username/password are the same as for the web interface). 3. Run "debug dual-image show". 4. Verify that output is "Current Image num: 1". 5. If this is not the case (i.e. if the output is "Current Image num: 0"): a. Either flash a fresh version of factory firmware, or b. run "debug dual-image set boot-image image1" and then run "reboot". 6. Log in via SSH again and verify that output is "Current Image num: 1". 7. Rename "openwrt-qualcommax-ipq807x-zyxel_nwa210ax-squashfs-factory.bin" to "openwrt.bin" to avoid upload errors in the OEM web interface. 8. Reopen OEM web interface, navigate to wrench icon → File Manager → Firmware Package and upload the bin file. Once the upgrade process is finished and OpenWrt has booted, the LED will light up green. Switching between OpenWrt and OEM firmware: - OpenWrt → Zyxel via ssh command "zyxel-bootconfig-ipq807x set image1". - Zyxel → OpenWrt via ssh command "debug dual-image set boot-image image0". This commit is based on the work of Pascal Beleiu <pascal@beleiu.de>: 93ca21f3 (qualcommax: ipq807x: add support for Zyxel NWA210AX, 2025-03-17) Signed-off-by: Eric Schäfer <eric@es86.de> Link: https://github.com/openwrt/openwrt/pull/19828 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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415a0d54c9 |
qualcommax: ipq807x: use label MAC to set addresses for wireless interfaces
Use label MAC to set addresses for wireless interfaces for Linksys MX4200v2 and MX4300. Signed-off-by: Paweł Owoc <frut3k7@gmail.com> Link: https://github.com/openwrt/openwrt/pull/18759 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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8da24b1109 |
Qualcommax: IPQ807x: Add support for TP-Link Deco X80-5G
The TP-link Deco X80-5G is a AX WIFI router with a single 1G (LAN) and 1 2.5G (WAN) port with a built in Quectel 5G modem. Specifications: Architecture ARMv8-A (aarch64 Cortex A53, 4 cores) Vendor Qualcomm Bootloader U-Boot (2016) System-On-Chip Qualcomm IPQ8074A (Networking Pro 1210 platform) CPU/Speed 2.2GHZ Flash-Chip ESMT F59D1G81MB-45TI 1G-bit NAND Flash MB 128MB (1Gbit) RAM-chip 2* ESMT M15T4G16256A-DEBG2G 2Gb DDR3L (32bit) RAM MB 512MB (4Gbit) WLan System-On-Chip (5g) Qualcomm QCN5054 WLan Front end modules (5g) 8* Qorvo QPF4588 WLAN (5G) A/N/AC/AX WLAN Antenna (int) 8* (4 shared with 2.5G) WLan System-On-Chip (2.4G) Qualcomm QCN5024 WLan Front end modules (2.4G) 4* Skyworks SKY85340-11 WLAN (2.4G) B/G/N/AX WLAN Antenna (int) 4* (shared with 5g) Eithernet-phy (1Gbit) Qualcomm (Atheros) AR8033-AL1A Ethernet (1Gbit) 1* Eithernet-phy (2.5Gbit) Qualcomm QCA8081 Ethernet (2.5Gbit) 1* Switch Embedded in the SOC? Serial 1.8v 8n1 (testpoints) Modem System-On-Chip Qualcomm 5G RG50xQ (Snapdragon X55 platform) 5G modem capability 5000Mbps down 900Mbps up 5G modem bands N1/N3/N5/N7/N8/N20/N28/N38/N40/N41/N77/N78/N79 4G modem capability 4.5G LTE-Advanced Pro (Cat20 down 2Gbps) (Cat18 up 200Mbps) 4G modem FDD bands B1/B3/B5/B7/B8/B18/B19/B20/B26/B28 4G modem TDD bands B34/B38/B39/B40/B41/B42/B43 Modem antenna (int) 8* (5G/4G use) Modem antenna (ext) 2* SMA connectors (5G/4G use) SIM type 1* Nano SIM Telephony 1* POTS RJ11 (see wiki for more info:) https://openwrt.org/inbox/toh/tp-link/x80-5g_v1 Notes: Installation Instructions: Between antennas 7 and 8 on the PCB with the RGB harness there are three test pads labelled TP1 TP2 and TP3 connections are as follows: |TP2|-- RX |TP1|-- TX |TP3|-- GND RX requires an external pullup to operate somewhere around 5 K ohm but your luck may vary the Uart is 1.8v Set a static IP and set up a tftpserver and terminal. power the router and quickly type the magic string “tpl” and press enter to break into u-boot in the shell set the environment variables to enable tftp booting setenv ipaddr (routerIP) setenv serverip (server IP) load you initramfs: tftpboot 0x44000000 (serverIP):openwrt-qualcommax-ipq807x-tplink_x80-5g-initramfs-uImage.itb boot your initramfs bootm upload your factory image to /tmp format and install the factory image: ubiformat /dev/mtd12 -y -f /tmp/openwrt-qualcommax-ipq807x-tplink_x80-5g-squashfs-factory.ubi Note as this device swaps root partitions upon update your boot partition may be set as mtd13 Update script to mount factory tplink partition's for MAC recovery and device data. Capture Labelmac from Factory_data partition. Patch LAN from Labelmac. Patch ART from Labelmac. Set GPIO to make modem operational from boot. GPIO fan tables work like the stock device with three fan maps high active idle with a top fan speed of 6800 RPM. High temp 70 deg speeds 6-8 Active temp 50 deg speeds 2-5 low temp 25 degree speed 0-1 Signed-off-by: jonathan brophy <professor_jonny@hotmail.com> Link: https://github.com/openwrt/openwrt/pull/16329 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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51d485ef31 |
qualcommax: add support for Aliyun AP8220
Aliyun AP8220 is an AP manufactured by Edgecore.
(Very similar to Edgecore EAP102)
Hardware specifications:
SoC: Qualcomm IPQ8071A
RAM: 1GB of DDR4 600MHz
Flash1: MX25U3235F 4MB
Flash2: MX30UF1G18AC 128MB
Ethernet: 2x 2.5G RJ45 port
USB: 2x USB-A 2.0 port
WiFi1: QCN5024 2.4GHz
WiFi2: QCN5054 5GHz
Power: DC 12V / PoE
Flash instructions:
1. Connect the router via serial port
2. Keep pressing @ until uboot is interrupted
3. Download the initramfs image, rename it to
initramfs.bin, host it with tftp server
4. Run these commands:
tftpboot initramfs.bin
bootm
5. After openwrt boots up, use scp or luci
to upload sysupgrade.bin to upgrade.
Signed-off-by: Chukun Pan <amadeus@jmu.edu.cn>
Link: https://github.com/openwrt/openwrt/pull/17970
Signed-off-by: Robert Marko <robimarko@gmail.com>
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07f8319d2d |
qualcommax: ipq807x: add support for Linksys HomeWRK
Hardware specification: ======== SoC: Qualcomm IPQ8174 Flash: 1GB (Micron MT29F8G08ABBCAH4 or AMD/Spansion S34MS08G2) RAM: 2GB (2x Kingston B5116ECMDXGJD or ESMT M15T2G16128A DDR3L) Ethernet: 4x 10/100/1000Mbps (Qualcomm QCA8075) WiFi1: 5GHz ax 2x2 (Qualcomm QCN5054 + Skyworks SKY85755-11) - channels 36-64 (low band) WiFi2: 2.4GHz ax 2x2 (Qualcomm QCN5024 + Skyworks SKY85340-11) WiFi3: 5GHz ax 4x4 (Qualcomm QCN5054 + Skyworks SKY85755-11) - channels 100-177 (high band) LED: 1x RGB status (NXP PCA9633) USB: 1x USB 3.0 Button: WPS, Reset Flash instructions: ======== 1. Installation from initramfs image using USB drive: Put the initramfs image on the USB drive: - dd bs=1M if=openwrt-qualcommax-ipq807x-linksys_homewrk-initramfs-uImage.itb of=/dev/sdX Connect serial console (JST PH 6-pin connector): - 1 - GND, 2 - TX, 4 - RX (115200, 8N1, 3.3V) Stop u-boot and run: - usb start && usbboot 44000000 0 && bootm 44000000 Write firmware to the flash from initramfs: - sysupgrade -n openwrt-qualcommax-ipq807x-linksys_homewrk-squashfs-sysupgrade.bin or - ubiformat /dev/mtd22 -y -f openwrt-qualcommax-ipq807x-linksys_homewrk-squashfs-factory.ubi 2. USB recovery: Put the initramfs image on the USB: - dd bs=1M if=openwrt-qualcommax-ipq807x-linksys_homewrk-initramfs-uImage.itb of=/dev/sdX Set u-boot env: - fw_setenv bootusb 'usb start && usbboot 44000000 0 && bootm 44000000' - fw_setenv bootcmd 'run bootusb; bootipq' Signed-off-by: Paweł Owoc <frut3k7@gmail.com> Link: https://github.com/openwrt/openwrt/pull/17463 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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adfb1b7696 |
qualcommax: ipq807x: add support for Linksys MX4300 (LN1301)
Hardware specification: ======== SoC: Qualcomm IPQ8174 Flash: 1GB (Micron MT29F8G08ABBCAH4 or AMD/Spansion S34MS08G2) RAM: 2GB (2x Kingston B5116ECMDXGJD or ESMT M15T2G16128A DDR3L) Ethernet: 4x 10/100/1000Mbps (Qualcomm QCA8075) WiFi1: 5GHz ax 2x2 (Qualcomm QCN5054 + Skyworks SKY85755-11) - channels 36-64 (low band) WiFi2: 2.4GHz ax 2x2 (Qualcomm QCN5024 + Skyworks SKY85340-11) WiFi3: 5GHz ax 4x4 (Qualcomm QCN5054 + Skyworks SKY85755-11) - channels 100-177 (high band) LED: 1x RGB status (NXP PCA9633) USB: 1x USB 3.0 Button: WPS, Reset Flash instructions: ======== 1. Manually upgrade firmware using openwrt-qualcommax-ipq807x-linksys_mx4300-squashfs-factory.bin image. More details can be found here: https://support.linksys.com/kb/article/6564-en/ After first boot check actual partition: - fw_printenv -n boot_part and install firmware on second partition using command in case of 2: - mtd -r -e kernel -n write openwrt-qualcommax-ipq807x-linksys_mx4300-squashfs-factory.bin kernel and in case of 1: - mtd -r -e alt_kernel -n write openwrt-qualcommax-ipq807x-linksys_mx4300-squashfs-factory.bin alt_kernel 2. Installation using serial connection from OEM firmware (default login: root, password: admin): - fw_printenv -n boot_part In case of 2: - flash_erase /dev/mtd21 0 0 - nandwrite -p /dev/mtd21 openwrt-qualcommax-ipq807x-linksys_mx4300-squashfs-factory.bin or in case of 1: - flash_erase /dev/mtd23 0 0 - nandwrite -p /dev/mtd23 openwrt-qualcommax-ipq807x-linksys_mx4300-squashfs-factory.bin After first boot install firmware on second partition: - mtd -r -e kernel -n write openwrt-qualcommax-ipq807x-linksys_mx4300-squashfs-factory.bin kernel or: - mtd -r -e alt_kernel -n write openwrt-qualcommax-ipq807x-linksys_mx4300-squashfs-factory.bin alt_kernel 3. Installation from initramfs image using USB drive: Put the initramfs image on the USB drive: - dd bs=1M if=openwrt-qualcommax-ipq807x-linksys_mx4300-initramfs-uImage.itb of=/dev/sdX Stop u-boot and run: - usb start && usbboot $loadaddr 0 && bootm $loadaddr Write firmware to the flash from initramfs: - mtd -e kernel -n write openwrt-qualcommax-ipq807x-linksys_mx4300-squashfs-factory.bin kernel and: - mtd -r -e alt_kernel -n write openwrt-qualcommax-ipq807x-linksys_mx4300-squashfs-factory.bin alt_kernel 4. Back to the OEM firmware: - mtd -e kernel -n write FW_MX4300_1.0.4.215382_prod.img kernel and: - mtd -r -e alt_kernel -n write FW_MX4300_1.0.4.215382_prod.img alt_kernel 5. USB recovery: Put the initramfs image on the USB: - dd bs=1M if=openwrt-qualcommax-ipq807x-linksys_mx4300-initramfs-uImage.itb of=/dev/sdX Set u-boot env: - fw_setenv bootusb 'usb start && usbboot $loadaddr 0 && bootm $loadaddr' - fw_setenv bootcmd 'run bootusb; if test $auto_recovery = no; then bootipq; elif test $boot_part = 1; then run bootpart1; else run bootpart2; fi' Co-authored-by: Qiyuan Zhang <zhang.github@outlook.com> Signed-off-by: Paweł Owoc <frut3k7@gmail.com> Link: https://github.com/openwrt/openwrt/pull/16070 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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4b6e7da0f7 |
ipq807x: add support for TP-Link EAP620 HD v1
Specifications:
* SoC: Qualcomm IPQ8072A (64-bit Quad-core Arm Cortex-A53 @ 1.4 GHz)
* Memory: 2x ESMT M15T4G16256A-DEBG2G (1 GiB DDR3-1866 13-13-13)
* Serial Port: 3v3 TTL 115200n8
* Wi-Fi: QCA5054 (4x4 5 GHz 802.11ax)
* Wi-Fi: QCN5024 (2x2 2.4 GHz 802.11b/g/n/ax)
* Ethernet: AR8031 (10/100/1000BASE-T)
* Flash: Winbond W29N01HZSINF (128 MiB)
* LEDs: 1x Blue Status (GPIO 42 Active High)
* Buttons: 1x Reset (GPIO 50 Active Low)
Installation Instructions (Serial+TFTP):
1. Solder 4 pin header to JP1 and bridge pads of R58 and R62.
2. Connect 3V3 TTL port to TX, RX, and GND, which are positions 1, 2, and 3 respectively.
Be sure to crossover TX and RX.
3. Copy RAM firmware
openwrt-qualcommax-ipq807x-tplink_eap620hd-v1-initramfs-uImage.itb
to a TFTP server's root that is in the same subnet as your AP.
4. Power up the AP hold Ctrl+B in the serial console (115200n8) until autoboot is halted.
5. Run the following commands in the U-boot prompt:
# setenv serverip <TFTP server addr>
# setenv ipaddr <addr of AP>
# tftpboot 0x44000000 openwrt-qualcommax-ipq807x-tplink_eap620hd-v1-initramfs-uImage.itb
# bootm
You may need to type Ctrl+C and Enter before running these commands
to clear invisible characters from the buffer.
6. Run the following command in a terminal to copy the sysupgrade image
to be installed (check IP address):
$ scp -O openwrt-qualcommax-ipq807x-tplink_eap620hd-v1-squashfs-sysupgrade.bin root@192.168.1.1:/tmp/
7. Activate the OpenWrt serial console and run the following commands:
# cd /tmp
# sysupgrade -n openwrt-qualcommax-ipq807x-tplink_eap620hd-v1-squashfs-sysupgrade.bin
8. The AP will reboot and OpenWrt will be successfully installed.
Known Issues:
* 5GHz radio instability (upstream current ath11k build bug maybe?)
Device support directly followed from EAP660HDv1 support
Links: #15832
Signed-off-by: Shymon Samsel <ssamsel@umass.edu>
Link: https://github.com/openwrt/openwrt/pull/17254
Signed-off-by: Robert Marko <robimarko@gmail.com>
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9b33645566 |
ipq807x: add support for TP-Link EAP660 HD v1
Specifications: * SoC: Qualcomm IPQ8072A (64-bit Quad-core Arm Cortex-A53 @ 2200MHz) * Memory: 2x ESMT M15T4G16256A-DEBG2G (1 GiB DDR3-1866 13-13-13) * Serial Port: 3v3 TTL 115200n8 * Wi-Fi: QCN5054 (4x4 5 GHz 802.11ax) * Wi-Fi: QCN5024 (4x4 2.4 GHz 802.11b/g/n/ax) * Ethernet: QCA8081 (10/100/1000/2.5GBASE-T) * Flash: Winbond W29N01HZSINF (128 MiB) * LEDs: 1x Blue Status (GPIO 42 Active High) * Buttons: 1x Reset (GPIO 50 Active Low) Installation Instructions (Serial+TFTP): 1. Solder 4 pin header to JP1 and bridge pads of R58 and R62. 2. Connect 3V3 TTL port to TX, RX, and GND, which are positions 1, 2, and 3 respectively. Be sure to crossover TX and RX. 3. Copy RAM firmware image openwrt-qualcommax-ipq807x-tplink_eap660hd-v1-initramfs-uImage.itb to TFTP server root, available at 192.168.10.1. 4. Connect PoE ethernet cable to the RJ45 port and hold Ctrl+B in the serial console (115200 baud) until autoboot is halted. 5. Run the following commands in the U-boot prompt: # tftpboot 0x44000000 openwrt-qualcommax-ipq807x-tplink_eap660hd-v1-initramfs-uImage.itb # bootm You may need to type Ctrl+C and Enter before running these commands to clear invisible characters from the buffer. 6. Run the following command in a terminal to copy the sysupgrade image to be installed (check IP address): $ scp openwrt-qualcommax-ipq807x-tplink_eap660hd-v1-squashfs-sysupgrade.bin root@192.168.1.1:/tmp/ 7. Activate the OpenWrt serial console and run the following commands: # cd /tmp # sysupgrade -n openwrt-qualcommax-ipq807x-tplink_eap660hd-v1-squashfs-sysupgrade.bin 8. The AP will reboot and OpenWrt will be successfully installed. Signed-off-by: George Witt <george.witt@nltsproject.org> Link: https://github.com/openwrt/openwrt/pull/15832 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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3d7cb14211 |
qualcommax: ipq807x: add Asus RT-AX89X BX revision
This commit adds support for Asus RT-AX89X BX revision. WARNING: Only the BX revision boards (So B1, B2 etc) are supported because AX revision boards use IPQ8074 v1 SoC which is unsupported. Specifications: --------------- * CPU: Qualcomm IPQ8074A Quad core Cortex-A53 @ 2.2GHz * RAM: 1024MB * Storage: 256MB SLC NAND (Macronix MX30UF2G18AC) * Ethernet: * 5x 1G RJ45 ports via QCA8337 switch * 3x 1G RJ45 ports via internal switch (QCA8075 PHY) * 1x 10G RJ45 via internal switch (AQR113C PHY) * 1x 10G SFP+ slot via internal switch * WLAN: * 2.4GHz 4x4 * 5GHz 8x8 * 8 external antennas * USB: 2x USB 3.0 Type-A * Buttons: * Power switch * WPS * Reset * Wireless ON/OFF * LED ON/OFF LED-s: * Power * Wi-Fi * WAN * 10G * SFP+ Power: * 19.5V via DC jack Installation instructions: -------------------------- 1. Flash temporary OpenWrt initramfs: * Flash openwrt-qualcommax-ipq807x-asus_rt-ax89x-initramfs-factory.trx via the stock firmware. Administration -> Firmware Upgrade -> Manual Firmware update (Upload) After flashing the device will reboot with OpenWrt initramfs and it can be accesed via any of the LAN ports via SSH with the usual OpenWrt default credentials. 2. Sysupgrade from OpenWrt initramfs: * Copy openwrt-qualcommax-ipq807x-asus_rt-ax89x-squashfs-sysupgrade.bin to /tmp/openwrt-qualcommax-ipq807x-asus_rt-ax89x-squashfs-sysupgrade.bin of the running initramfs image. * Simply sysupgrade -n /tmp/openwrt-qualcommax-ipq807x-asus_rt-ax89x-squashfs-sysupgrade.bin After flashing the device will reboot with OpenWrt initramfs and it can be accesed via any of the LAN ports via SSH with the usual OpenWrt default credentials. Link: https://github.com/openwrt/openwrt/pull/15840 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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9745de82d5 |
qualcommax: ipq807x: use ath11k_patch_mac for SXK80
Use ath11k_patch_mac and ath11k_set_macflag functions for SXK80 Signed-off-by: Andrew Smith <gul.code@outlook.com> Link: https://github.com/openwrt/openwrt/pull/15732 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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75a76355cb |
qualcommax: ipq807x: wax620 and wax630: fix wifi mac address
The wifi radios on wax620 and wax630 got a random mac address on boot. So fix this by using ath11k_patch_mac and give a static mac address from label-mac-device. Tested and working on wax620 and wax630. Signed-off-by: Kristian Skramstad <kristian+github@83.no> Link: https://github.com/openwrt/openwrt/pull/15597 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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29faf53b8c |
qualcommax: use ath11k_patch_mac for ZBT-Z800AX
Use ath11k_patch_mac and ath11k_set_macflag functions instead of fix_wifi_mac script. Signed-off-by: Chukun Pan <amadeus@jmu.edu.cn> Link: https://github.com/openwrt/openwrt/pull/15580 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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0f5c28b96b |
qualcommax: ipq807x support Netgear Orbi Pro SXK80
This commit adds support for Netgear Orbi Pro SXR80 and SXS80 (collectively known as SXK80)
Specifications:
---------------
* CPU: Qualcomm IPQ8074A Quad core Cortex-A53
* RAM: 1024MB
* Storage: SPI-NAND 512 MiB (Winbond W29N04GZ)
* Ethernet: 4x 1G RJ45 ports (QCA8075) 1x 2.5G RJ45 LAN/WAN (QCA8081)
* WLAN:
- 2.4 GHz: Qualcomm QCN5024 4x4
- 2x 5 GHz: Qualcomm QCN5054 4x4 (second radio high channels only)
* LEDs:
- Power: (Green and red)
- Front: (Blue, green, red and white)
* Buttons:
- 1x Soft reset
- 1x Sync/WPS
* Power: 12V DC Jack
Installation instructions (Telnet):
-----------------------------------
*Note, this guide assumes SXR80, for SXS80 change the firmware file name as appropriate
1. Put firmware file openwrt-qualcommax-ipq807x-netgear_sxr80-initramfs-uImage.itb in root of TFTP server available at 192.168.1.10.
2. Enable telnet by going to http://[ip of device]/debug.htm and clicking on the tickbox 'Enable telnet'
3. Telnet into the device and login using the same username and password as the web interface:
4. Run the following command:
`fw_setenv bootcmd 'env default -a; saveenv; reset'`
5. Reboot the router, once the web interface is available again re-enable telnet via http://[ip of device]/debug.htm and telnet into the device.
6. Run the following command:
`fw_printenv`
It should look similar to the below:
```
baudrate=115200
bootargs=console=ttyMSM0,115200n8
bootcmd=mii write 0x0 0x0 0x800; sleep 1; nmrp; bootdni; boot_DNI_secureboot
bootdelay=2
ipaddr=192.168.1.1
netmask=255.255.255.0
serverip=192.168.1.10
soc_version_major=2
soc_version_minor=0
```
**If you see the message:**
`Warning: Bad CRC, using default environment`
**DO NOT CONTINUE, YOU WILL BRICK YOUR DEVICE**
7. Run the following command:
`fw_setenv originalboot 'mii write 0x0 0x0 0x800; sleep 1; nmrp; bootdni; boot_DNI_secureboot'`
(This should match what's in the bootcmd variable displayed in step 6)
8. Run the following commands:
```
fw_setenv wrttftp 'mii write 0x0 0x0 0x800; sleep 1; nmrp; if tftpboot openwrt-qualcommax-ipq807x-netgear_sxr80-initramfs-uImage.itb; then bootm; fi; bootdni; boot_DNI_secureboot'
fw_setenv wrtboot 'mii write 0x0 0x0 0x800; sleep 1; nmrp; nand read 0x40000000 0x1980000 0x06d00000; bootm 0x40000000'
fw_setenv bootcmd 'run wrttftp'
```
9. Ensure SXR/S device is attached via ethernet (LAN port) to the same ethernet segment as the TFTP server.
10. Reboot the device, it should reboot into OpenWrt and be available on 192.168.1.1
11. Once OpenWrt has booted, update the bootcmd using the following command:
`fw_setenv bootcmd 'run wrtboot'`
12. Flash the sysupgrade image
13. It should boot into OpenWrt
References to SXK80 GPL source:
https://www.downloads.netgear.com/files/GPL/SXK80-V3.2.0.108_gpl_src.tar.bz2.zip
Signed-off-by: Flole Systems <flole@flole.de>
Signed-off-by: Andrew Smith <gul.code@outlook.com>
Link: https://github.com/openwrt/openwrt/pull/14939
Signed-off-by: Robert Marko <robimarko@gmail.com>
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9bdaebaff3 |
qualcommax: ipq807x: add support for Linksys MX8500
Hardware specification: ======== SoC: Qualcomm IPQ8072A Flash: 512MB (Fidelix FMND4G08S3J-ID) RAM: 1GB (2x Kingston DDR3L D2516ECMDXGJD) Ethernet: 1x 10/100/1000/2500/5000Mbps (Marvell AQR114C) Ethernet: 4x 10/100/1000Mbps (Qualcomm QCA8075) WiFi1: 6GHz ax 4x4 (Qualcomm QCN9024 + Skyworks SKY85784-11) - channels 33-229 WiFi2: 5GHz ax 4x4 (Qualcomm QCN5054 + Skyworks SKY85755-11) - channels 36-177 WiFi3: 2.4GHz ax 4x4 (Qualcomm QCN5024 + Skyworks SKY8340-11) IoT: Bluetooth 5, Zigbee and Thread (NXP K32W041) LED: 1x RGB status (NXP PCA9633) USB: 1x USB 3.0 Button: WPS, Reset Flash instructions: ======== 1. Manually upgrade firmware using openwrt-qualcommax-ipq807x-linksys_mx8500-squashfs-factory.bin image. More details can be found here: https://www.linksys.com/support-article?articleNum=47547 After first boot check actual partition: - fw_printenv -n boot_part and install firmware on second partition using command in case of 2: - mtd -r -e kernel -n write openwrt-qualcommax-ipq807x-linksys_mx8500-squashfs-factory.bin kernel and in case of 1: - mtd -r -e alt_kernel -n write openwrt-qualcommax-ipq807x-linksys_mx8500-squashfs-factory.bin alt_kernel 2. Installation using serial connection from OEM firmware (default login: root, password: admin): - fw_printenv -n boot_part In case of 2: - flash_erase /dev/mtd21 0 0 - nandwrite -p /dev/mtd21 openwrt-qualcommax-ipq807x-linksys_mx8500-squashfs-factory.bin or in case of 1: - flash_erase /dev/mtd23 0 0 - nandwrite -p /dev/mtd23 openwrt-qualcommax-ipq807x-linksys_mx8500-squashfs-factory.bin After first boot install firmware on second partition: - mtd -r -e kernel -n write openwrt-qualcommax-ipq807x-linksys_mx8500-squashfs-factory.bin kernel or: - mtd -r -e alt_kernel -n write openwrt-qualcommax-ipq807x-linksys_mx8500-squashfs-factory.bin alt_kernel 3. Installation from initramfs image using USB drive: Put the initramfs image on the USB drive: - dd bs=1M if=openwrt-qualcommax-ipq807x-linksys_mx8500-initramfs-uImage.itb of=/dev/sda Stop u-boot and run: - usb start && usbboot $loadaddr 0 && bootm $loadaddr Write firmware to the flash from initramfs: - mtd -e kernel -n write openwrt-qualcommax-ipq807x-linksys_mx8500-squashfs-factory.bin kernel and: - mtd -r -e alt_kernel -n write openwrt-qualcommax-ipq807x-linksys_mx8500-squashfs-factory.bin alt_kernel 4. Back to the OEM firmware: - mtd -e kernel -n write FW_MX8500_1.0.11.208937_prod.img kernel and: - mtd -r -e alt_kernel -n write FW_MX8500_1.0.11.208937_prod.img alt_kernel 5. USB recovery: Put the initramfs image on the USB: - dd bs=1M if=openwrt-qualcommax-ipq807x-linksys_mx8500-initramfs-uImage.itb of=/dev/sda Set u-boot env: - fw_setenv bootusb 'usb start && usbboot $loadaddr 0 && bootm $loadaddr' - fw_setenv bootcmd 'run bootusb; if test $auto_recovery = no; then bootipq; elif test $boot_part = 1; then run bootpart1; else run bootpart2; fi' AQR firmware: ======== 1. Firmware loading: To properly load the firmware and initialize AQR PHY, we must use the u-boot aq_load_fw function. To do this, you need to modify u-boot env: With USB recovery: - fw_setenv bootcmd 'aq_load_fw; run bootusb; if test $auto_recovery = no; then bootipq; elif test $boot_part = 1; then run bootpart1; else run bootpart2; fi' and without: - fw_setenv bootcmd 'aq_load_fw; if test $auto_recovery = no; then bootipq; elif test $boot_part = 1; then run bootpart1; else run bootpart2; fi' 2. Firmware updating: Newer firmware (AQR-G4_v5.6.5-AQR_WNC_SAQA-L2_GT_ID45287_VER24005.cld) is available in the latest OEM firmware. To load this firmware via u-boot, we need to add the MBN header and update 0:ethphyfw partition. For MBN header we can use script from this repository: https://github.com/testuser7/aqr_mbn_tool - python aqr_mbn_tool.py AQR-G4_v5.6.5-AQR_WNC_SAQA-L2_GT_ID45287_VER24005.cld To update partition we need to install kmod-mtd-rw package first: - insmod mtd-rw.ko i_want_a_brick=1 - mtd -e /dev/mtd26 -n write aqr_fw.mbn /dev/mtd26 Signed-off-by: Paweł Owoc <frut3k7@gmail.com> Link: https://github.com/openwrt/openwrt/pull/14883 Signed-off-by: Robert Marko <robimarko@gmail.com> |
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7cb161ae84 |
qualcommax: IPQ807x: ZyXEL NBG7815: Fix random Wifi MAC
For this particualar device we get random MAC's for Wifi on each (re-)boot. This is because art partition/pre caldata do not contain valid MAC addresses. As we have now a new/better approach with ath11k_patch_mac we can use it for this device too. I'm using this approach for like two weeks and its working flawlessly. Signed-off-by: Ulrich Stark <pwned-pixel@posteo.de> qualcommax: IPQ807x: ZyXEL NBG7815: Fix random Wifi MAC Changing order to 3/phy0/5G-1, 2/phy1/2G, 4/phy2/5G-2. Signed-off-by: Ulrich Stark <pwned-pixel@posteo.de> |
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48daac25ce |
qualcommax: ipq807x: use ath11k_patch_mac for RAX120v2
Use ath11k_patch_mac and ath11k_set_macflag functions for RAX120v2 (pre-caldata does not contain valid MAC addresses) Signed-off-by: Paweł Owoc <frut3k7@gmail.com> |
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682393cd1a |
qualcommax: ipq807x: use ath11k_patch_mac and ath11k_remove_regdomain for MX4200
Use ath11k_patch_mac, ath11k_remove_regdomain and ath11k_set_macflag functions for MX4200 (only v2 variant requires MAC patching) Signed-off-by: Paweł Owoc <frut3k7@gmail.com> |
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3569b37b15 |
ipq807x: add Spectrum SAX1V1K
Spectrum SAX1V1K is a AX WIFI router with 3 1G and 1 2.5G ports. The router is provided to Spectrum customers. It is OEM of Askey RT5010W https://forum.openwrt.org/t/spectrum-sax1v1k-askey-rt5010w-openwrt-support/149923 It continues the original work by @MeisterLone to get this device supported. Specifications: ``` • CPU: Qualcomm IPQ8072A Quad core Cortex-A53 2.2GHz • RAM: 2048MB of DDR3 • Storage: 1024MB eMMC • Ethernet: 3x 1G RJ45 ports (QCA8075) + 1 2.5G Port (QCA8081) • WLAN: • 2.4GHz: Qualcomm QCN5024 4x4 802.11b/g/n/ax 1174 Mbps PHY rate • 5GHz: Qualcomm QCN5054 4x4 802.11a/b/g/n/ac/ax 2402 PHY rate • LED: 1 gpio-controlled dual color led (blue/red) • Buttons: 1x reset • Power: 12V DC jack ``` Notes: ``` • This commit adds only single partition support, that means sysupgrade is upgrading the current rootfs partition. • Installation can be done by serial connection only. • A poulated serial header is onboard https://forum.openwrt.org/t/spectrum-sax1v1k-askey-rt5010w-openwrt-support/149923/6 • RX/TX is working, u-boot bootwait is active, secure boot is enabled. ``` Installation Instructions: **Most part of the installation is performed from an initramfs image.** Boot initramfs : Using serial connection 1. Boot up the device and wait till it displays "VERIFY_IB: Success. verify IB ok" 2. Once that message appears, login with username 'root' password serial number of your router in uppercase. 3. Use vi to paste the 'open.sh' script from @MeisterLone github on your device https://github.com/MeisterLone/Askey-RT5010W-D187-REV6/blob/master/Patch/open.sh 4. chmod 755 open.sh 5. ./open.sh 6. Set your ip to 192.168.0.1 7. Run a TFTP server and host the initramfs image on the TFTP server and name it "recovery.img" 8. Reboot device. On boot it will try TFTP. Install OpenWrt from initramfs image: 1. Use SCP (or other way) to transfer OpenWrt factory image 2. Connect to device using SSH (on a LAN port) 3. Flash firmware: sysupgrade # sysupgrade -n -v /tmp/openwrt_sysupgrade.bin 4. Set U-boot env variable: bootcmd # fw_setenv bootcmd "run fix_uboot; run setup_and_boot" 5. Reboot the device # reboot 6. Once device is booted, residue of previous firmware will prevent openwrt to work properly. Factory Reset is MUST required # Once serial console is displaying to login, hold reset button for 10 sec 7. Now everything should be operational. Note: this PR adds only single partition support, that means sysupgrade is upgrading the current rootfs partition Signed-off-by: Connor Yoon <j_connor@taliaent.com> |
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9cef2bc224 |
ipq807x: add support for Zbtlink ZBT-Z800AX
Hardware specifications: SoC: Qualcomm IPQ8072A RAM: 1GB of DDR4 600MHz Flash1: Winbond W25Q64DW 8MB Flash2: MX30UF2G28AD 256MB WiFi1: QCN5024 2.4GHz AX 4x4 WiFi2: QCN5054 5GHz AX 4x4 Ethernet: 5x 1G RJ45 port USB: 2x USB 3.0 (1x M.2) Button: Reset, WPS Flash instructions: Upload factory.bin in stock firmware's upgrade page, do not preserve settings. Signed-off-by: Chukun Pan <amadeus@jmu.edu.cn> |
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70fd815e57 |
qualcommax: ipq807x: add support for Linksys MX5300
Hardware specification: ======== SoC: Qualcomm IPQ8072A Flash: 512MB (Winbond W29N04GZBIBA) RAM: 1GB (2x Nanya DDR3L NT5CC256M16ER-EK) Ethernet: 5x 10/100/1000Mbps (Qualcomm QCA8075) WiFi1: 5GHz ac 4x4 (Qualcomm QCA9984 + Skyworks SKY85746-11) - channels 100-169 WiFi2: 5GHz ax 4x4 (Qualcomm QCN5054 + Skyworks SKY85755-11) - channels 36-64 WiFi3: 2.4GHz ax 4x4 (Qualcomm QCN5024 + Skyworks SKY8340-11) IoT: Bluetooth 5, Zigbee and Thread (Qualcomm QCA4024 + Skyworks SE2433T-R) IoT Flash: 4MB (Macronix MX25R3235F) RTC: ST M41T00S LED: 1x RGB status (NXP PCA9633) USB: 1x USB 3.0 Button: WPS, Reset Flash instructions: ======== 1. Manually upgrade firmware using openwrt-qualcommax-ipq807x-linksys_mx5300-squashfs-factory.bin image. More details can be found here: https://www.linksys.com/hk/support-article?articleNum=274497 After first boot check actual partition: - fw_printenv -n boot_part and install firmware on second partition using command in case of 2: - mtd -r -e kernel -n write openwrt-qualcommax-ipq807x-linksys_mx5300-squashfs-factory.bin kernel and in case of 1: - mtd -r -e alt_kernel -n write openwrt-qualcommax-ipq807x-linksys_mx5300-squashfs-factory.bin alt_kernel 2. Installation using serial connection from OEM firmware (default login: root, password: admin): - fw_printenv -n boot_part In case of 2: - flash_erase /dev/mtd21 0 0 nandwrite -p /dev/mtd21 openwrt-qualcommax-ipq807x-linksys_mx5300-squashfs-factory.bin or in case of 1: - flash_erase /dev/mtd23 0 0 nandwrite -p /dev/mtd23 openwrt-qualcommax-ipq807x-linksys_mx5300-squashfs-factory.bin After first boot install firmware on second partition: - mtd -r -e kernel -n write openwrt-qualcommax-ipq807x-linksys_mx5300-squashfs-factory.bin kernel or: - mtd -r -e alt_kernel -n write openwrt-qualcommax-ipq807x-linksys_mx5300-squashfs-factory.bin alt_kernel 3. Installation from initramfs image using USB FAT32 formatted drive: Stop u-boot and run: - usb start && fatload usb 0:1 $loadaddr openwrt-qualcommax-ipq807x-linksys_mx5300-initramfs-uImage.itb && bootm $loadaddr Write firmware to the flash from initramfs: - mtd -e kernel -n write openwrt-qualcommax-ipq807x-linksys_mx5300-squashfs-factory.bin kernel and: - mtd -r -e alt_kernel -n write openwrt-qualcommax-ipq807x-linksys_mx5300-squashfs-factory.bin alt_kernel 4. Back to the OEM firmware: - mtd -e kernel -n write FW_MX5300_1.1.9.200251_prod.img kernel and: - mtd -r -e alt_kernel -n write FW_MX5300_1.1.9.200251_prod.img alt_kernel 5. USB recovery: - fw_setenv usbimage 'openwrt-qualcommax-ipq807x-linksys_mx5300-initramfs-uImage.itb' fw_setenv bootusb 'usb start && fatload usb 0:1 $loadaddr $usbimage && bootm $loadaddr' fw_setenv bootcmd 'run bootusb; aq_load_fw && if test $auto_recovery = no; then bootipq; elif test $boot_part = 1; then run bootpart1; else run bootpart2; fi' Notes: ======== IoT device is accesible over spi. Not yet supported. Signed-off-by: Paweł Owoc <frut3k7@gmail.com> Reviewed-by: Robert Marko <robimarko@gmail.com> |
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b61ecb7d75 |
ipq807x: add support for CMCC RM2-6
Hardware specifications: SoC: Qualcomm IPQ8070A RAM: 512MB of DDR3 Flash: 256MB Micron NAND Ethernet: 2x 1G RJ45 port WiFi1: QCN5024 2x2 2.4GHz WiFi2: QCN5054 2x2 5GHz Fan: 1x GPIO controlled Button: Reset, WPS Flash instructions: Upload factory.bin in stock firmware's upgrade page. Signed-off-by: Chukun Pan <amadeus@jmu.edu.cn> Reviewed-by: Robert Marko <robimarko@gmail.com> |
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46a2490e8f |
ipq807x: add support for Linksys MX4200 V1 and V2
Linksys MX4200 is a 802.11ax Tri-band router/AP. Specifications: * CPU: Qualcomm IPQ8174 Quad core Cortex-A53 1.4GHz * RAM: 512MB of DDR3 * Storage: 512Mb NAND * Ethernet: 4x1G RJ45 ports (QCA8075) * WLAN: * 2.4GHz: Qualcomm QCN5024 2x2 802.11b/g/n/ax 574 Mbps PHY rate * 5GHz: Qualcomm QCN5054 2x2@80MHz or 2x2@160MHz 802.11a/b/g/n/ac/ax 2402 PHY rate * 5GHz: Qualcomm QCN5054 4x4@80MHz or 2x2@160MHz 802.11a/b/g/n/ac/ax 2402 PHY rate * LED-s: * RGB system led * Buttons: 1x Soft reset 1x WPS * Power: 12V DC Jack Installation instructions: Open Linksys Web UI - http://192.168.1.1/ca or http://10.65.1.1/ca depending on your setup. Login with your admin password. The default password can be found on a sticker under the device. To enter into the support mode, click on the “CA” link and the bottom of the page. Open the “Connectivity” menu and upload the squash-factory image with the “Choose file” button. Click start. Ignore all the prompts and warnings by click “yes” in all the popups. The Wifi radios are turned off by default. To configure the router, you will need to connect your computer to the LAN port of the device. Then you would need to write openwrt to the other partition for it to work - First Check booted partition fw_printenv -n boot_part - Then install Openwrt to the other partition if booted in slot 1: mtd -r -e alt_kernel -n write openwrt-qualcommax-ipq807x-linksys_mx4200v(X)-squashfs-factory.bin alt_kernel - If in slot 2: mtd -r -e kernel -n write openwrt-qualcommax-ipq807x-linksys_mx4200v(X)-squashfs-factory.bin kernel Replace (X) with your model version either 1 or 2 Signed-off-by: Mohammad Sayful Islam <sayf.mohammad01@gmail.com> Reviewed-by: Robert Marko <robimarko@gmail.com> |
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c22aa0be3e |
ipq807x: add support for ZTE MF269
Hardware specifications:
SoC: Qualcomm IPQ8071A
RAM: 512MB of DDR3
Flash1: Eon EN25S64 8MB
Flash2: MX30UF2G18AC 256MB
Ethernet: 2x 2.5G RJ45 port
Phone: 1x RJ11 port (SPI)
USB: 1x Type-C 2.0 port
WiFi1: QCN5024 2.4GHz
WiFi2: QCN5054 5GHz
Button: Reset, WPS
Flash instructions:
1. Connect the router via serial port (115200 8N1 1.8V)
2. Download the initramfs image, rename it to initramfs.bin,
and host it with the tftp server.
3. Interrupt U-Boot and run these commands:
tftpboot initramfs.bin
bootm
4. After openwrt boots up, use scp or luci web
to upload sysupgrade.bin to upgrade.
Signed-off-by: Chukun Pan <amadeus@jmu.edu.cn>
Reviewed-by: Robert Marko <robimarko@gmail.com>
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fbcda3616e
|
ipq807x: add Arcadyan AW1000 support
Hardware specification:
SoC: Qualcomm IPQ8072A
Flash: Toshiba NAND 1GiB
RAM: 1 GiB of DDR3 466 MHz
Ethernet: 4x 1Gbps + 1x 2.5Gbps
WiFi1: QCN5024 2.4GHz ax 4x4
WiFi2: QCN5054 5GHz ax 4x4
Button: WiFi, WPS, Reset
Modem: RG500Q-EA
USB: 1 x USB 3.0
Power: DC 12V 4A
Flash instructions:
1. Download the initramfs image, rename it to
initramfs.bin, and host it with tftp server.
2. Interrupt U-Boot and run these commands:
tftpboot initramfs.bin
bootm
3. After openwrt boots up, use scp or luci web
to upload sysupgrade.bin to upgrade.
Signed-off-by: Chukun Pan <amadeus@jmu.edu.cn>
Reviewed-by: Robert Marko <robimarko@gmail.com>
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ab6a029573
|
qualcommax: cleanup whitespace and sort-order
Replace blanks with tabs, also sort base-files alphabetically. Signed-off-by: Chukun Pan <amadeus@jmu.edu.cn> Reviewed-by: Robert Marko <robimarko@gmail.com> |
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3763a6a075
|
ipq807x: add support for Yuncore AX880
SPECIFICATION:
- Chipset: IPQ8072A +QCN5054+QCN5024+QCA8081*2
- Flash NOR-8MB AND NAND-128MB
- RAM 1Gb DDR
- IEEE 802.11: 802.11ax/ac/b/g/n
- 4*4 2.4G Wi-Fi standard 802.11b/g/n/ax
- 4*4 5.8G Wi-Fi Standard 802.11 a/n/ac/ax
- 2x 1 Gbps Ethernet (QCA8081) with 802.3at PoE input support
- 1x Reset
- 1x Bluetooth(optional)
- 1x DC Port 12V 3A
- 4x Antenna IPEX Connector, 3dBi omni antennas
- Data Rate: 3657Mbps ( 2.4G: 1182Mbps (11ax 4x4); 5.8G: 2475Mbps (11ax 4x4))
- RF Power: 2.4g ≤ 20dBm; 5.8g ≤ 19dBm
- LED light: Sys; 5.8G wifi; 2.4G wifi; WAN; LAN
- Max Power Consumption: ≤ 22W
- Size: 198mm * 198mm * 41.02mm
BACKUP YOUR STOCK FIRMWARE:
```
export device=ax880
mkdir -p /tmp/fw_dump_$device
cd /tmp/fw_dump_$device
dmesg > dmesg_$device.log
dtc -I fs /sys/firmware/devicetree/base > $device.dts
cat /proc/device-tree/model > model
cat /proc/mtd > proc_mtd
while read p; do
mtd_dev=$(echo $p | cut -d: -f1)
echo $mtd_dev
dd if=/dev/$mtd_dev of=$mtd_dev
done < proc_mtd
md5sum * > md5sum.log
tar -cvzf ../$device.tar.gz .
export sum=$(md5sum /tmp/$device.tar.gz | cut -d' ' -f1)
mv ../$device.tar.gz /tmp/${device}_${sum}.tar.gz
echo fw backup saved to: /tmp/${device}_${sum}.tar.gz
```
Upload your backup via tftp to the safe place.
INSTALLATION:
1. stock firmware web ui
Rename factory.bin fw image file to factory.ubin. Flash this image
like ordinary stock fw upgrade.
2. stock firmware telnet method
Enter telnet cli (login: root, password: 476t*_f0%g09y) and upload
factory.bin fw image and rename it to factory.ubin
`cd /tmp && wget <your_web_server_ip>/factory.ubin`
`sysupgrade factory.ubin
3. initramfs method
Put openwrt-ipq807x-generic-yuncore_ax880-initramfs-uImage.itb to your
TFTP server and rename it to ax880.initram
Enable serial console and enter to the u-boot cli.
Exec these commands:
`tftpboot <your_tftp_server_ip>:ax880.initram`
`dhcp`
When downloading is finished:
`bootm`
After booting the device, you need to upload to the device factory.ubi fw image.
```
cd /tmp && wget <your_web_server_ip>/factory.ubi`
export rootfs=$(cat /proc/mtd | grep rootfs | cut -d: -f1)
export rootfs_1=$(cat /proc/mtd | grep rootfs_1 | cut -d: -f1)
ubiformat /dev/${rootfs} -y -f factory.ubi
ubiformat /dev/${rootfs_1} -y -f factory.ubi
reboot
```
4. u-boot factory.ubi image method
Put openwrt-ipq807x-generic-yuncore_ax880-squashfs-factory.ubi to your
TFTP server and rename it to ax880.ubi
Enter u-boot cli and exec these commands:
`tftpboot <your_tftp_server_ip>:ax880.ubi`
`dhcp`
After downloading is finished:
`flash rootfs`
`flash rootfs_1`
`reset`
5. u-boot factory.bin method
Put openwrt-ipq807x-generic-yuncore_ax880-squashfs-factory.bin to your
TFTP server and rename it to ax880.bin
Enter u-boot cli and exec these commands:
`tftpboot <your_tftp_server_ip>:ax880.bin`
`dhcp`
After downloading is finished:
`imgaddr=$fileaddr && nand device 0`
Erase rootfs memory:
`nand erase 0x00000000 0x03400000`
Write rootfs:
`nand write $fileaddr 0x00000000 $filesize`
Erase rootfs_1 memory:
`nand erase 0x3c00000 0x3400000`
Write rootfs_1
`nand write $fileaddr 0x3c00000 $filesize`
`reset`
STOCK FIRMWARE RECOVERY:
Boot initramfs image.
Upload your rootfs mtd partition to the device using scp or download
it from the device using wget.
Enter device ssh cli and exec:
```
cd /tmp && wget <your_web_server_ip>/mtd21`
export rootfs=$(cat /proc/mtd | grep rootfs | cut -d: -f1)
export rootfs_1=$(cat /proc/mtd | grep rootfs_1 | cut -d: -f1)
ubiformat /dev/${rootfs} -y -f /tmp/mtd21
ubiformat /dev/${rootfs_1} -y -f /tmp/mtd21
reboot
```
Signed-off-by: Isaev Ruslan <legale.legale@gmail.com>
Reviewed-by: Robert Marko <robimarko@gmail.com>
|
||
|
|
5e33fdfc47 |
qualcommax: ipq807x: add support for Netgear WAX630
```
Specifications:
* CPU: Qualcomm IPQ8074A, SoC Version: 2.0, Quad core 1651 MHz
* RAM: 1 GiB of DDR3 466 MHz
* Flash: NAND 512 MiB (Winbond W29N04GZ)
* 6 RGB LEDs: Power, LAN1, LAN2, 2.4GHz, 5GHz H and 5GHz L
* UART: One 4-pin populated header next to the heatsink and a chip.
GND RXD TXD, beginning from the external antennas. 115200n8.
Lan:
* One 100/1000/2.5GBASE-T Gigabit Ethernet 802.3bt/at
* One 100/1000 Gigabit Ethernet
Wlan:
* 4x4 in 2.4GHz : 802.11b/g/n/ax
* 4x4 in 5.0GHz L: 802.11a/n/ac/ax
* 4x4 in 5.0GHz H: 802.11a/n/ac/ax
* OFDM and OFDMA
* Bidir and MU-MIMO
* Internal antenna 2.86/4.41/4.98 dBi (2.4GHz/5GHz L/5GHz H)
Power:
* 802.3bt/at 30.1W
* DC 12V/3.5A
Mounting: Wall and ceiling
```
```
1. Download the OpenWrt initramfs image. Copy the image to a TFTP server
2. Connect to the console on the AP, and connect the LAN port to your LAN
3. Stop auto boot to get to U-boot shell, interrupt the autoboot process by pressing '0' when prompted
4. Set active_fw in env
4. Set active_fw in env
# setenv active_fw 1
5. Transfer the initramfs image with TFTP
# setenv serverip 192.168.1.10 (IP of TFTP server host)
# setenv ipaddr 192.168.1.1 (IP used by the router for getting the image, must be in the same subnet as the TFTP host)
# tftpboot openwrt-qualcommax-ipq807x-netgear_wax630-initramfs-uImage.itb
6. Reboot and load the image
# bootm
7. SCP factory image to the AP
# scp openwrt-qualcommax-ipq807x-netgear_wax630-squashfs-factory.ubi root@192.168.1.1:/tmp/
8. Connect to device using SSH (use the LAN port)
9. Flash squashfs-factory.ubi from within the initramfs instance of OpenWRT
Before you flash, please check your mtd partitions where mtdX is the right mtd rootfs partition.
# cat /proc/mtd (To check MTD partitions)
# ubiformat /dev/mtd18 -y -f /tmp/openwrt-qualcommax-ipq807x-netgear_wax630-squashfs-factory.ubi
10. Set active_fw to 0
# /usr/sbin/fw_setenv active_fw 0
11. Reboot the AP and your done
# reboot
```
Reviewed-by: Robert Marko <robimarko@gmail.com>
Signed-off-by: Kristian Skramstad <kristian+github@83.no>
|
||
|
|
76e419288f |
ipq807x: add support for Netgear WAX620
```
Specifications:
* CPU: Qualcomm IPQ8072A, SoC Version: 2.0, Quad core Cortex-A53 1.6896 GHz
* RAM: 1 GiB of DDR4 600 MHz
* Flash: NAND 2x256 MiB (Macronix MX30UF2G18AC)
* 4 RGB LEDs: Power, LAN, 2.4GHz and 5GHz
* UART: Two 4-pin unpopulated headers under the LEDs.
Use the header closest to LED 4 and 5.
They are marked with a white stroke.
TX RX GND, beginning from "4". 115200n8.
Lan:
* One 100/1000/2.5GBASE-T Gigabit Ethernet (QCA8081)
Wlan:
* 4x4 in 2.4GHz: 802.11b/g/n/ax
* 4x4 in 5.0GHz: 802.11a/n/ac/ax
* OFDM and OFDMA
* Bidir and MU-MIMO
* Internal antenna 3.1/4.3 dBi (2.4GHz/5GHz)
Power:
* PoE+ 802.3at/af 25.5W
* DC 12V 2.5A
```
```
Note: The OpenWrt image is setup with DHCP and not a static IP.
1. Download the OpenWrt initramfs image. Copy the image to a TFTP server
2. Connect to console on the AP, and connect the LAN port to your LAN
3. Stop auto boot to get to U-boot shell, interrupt the autoboot process by pressing '0' when prompted
4. Set active_fw in env
# setenv active_fw 1
5. Transfer the initramfs image with TFTP
# setenv serverip 192.168.1.10 (IP of TFTP server host)
# setenv ipaddr 192.168.1.1 (IP used by the router for getting the image, must be in the same subnet as the TFTP host)
# tftpboot openwrt-qualcommax-ipq807x-netgear_wax620-initramfs-uImage.itb
6. Reboot and load the image
# bootm
7. SCP factory image to the AP
# scp openwrt-qualcommax-ipq807x-netgear_wax620-squashfs-factory.ubi root@192.168.1.1:/tmp/
8. Connect to device using SSH (use the LAN port)
9. Flash squashfs-factory.ubi from within the initramfs instance of OpenWRT
Before you flash, please check your mtd partitions where mtdX is the right mtd rootfs partition.
# cat /proc/mtd (To check MTD partitions)
# ubiformat /dev/mtd19 -y -f /tmp/openwrt-qualcommax-ipq807x-netgear_wax620-squashfs-factory.ubi
10. Set active_fw to 0
# /usr/sbin/fw_setenv active_fw 0
11. Reboot the AP and your done
# reboot
```
Signed-off-by: Kristian Skramstad <kristian+github@83.no>
|
||
|
|
4d79a65d60 |
ipq807x: add support for Netgear RAX120v2
Netgear Nighthawk RAX120v2 AX WIFI router with 5 1G and 1 5G ports. The majority of the code is based on @jewwest's PR #11830. Specifications: * CPU: Qualcomm IPQ8074 Quad core Cortex-A53 2.2GHz * RAM: 1024MB of DDR3 (Nanya NT5CC256M16EP-EK × 2) * Flash: SPI-NAND 512 MiB (Winbond W29N04GZBIBA) * Ethernet: 4x 10/100/1000 Mbps LAN, 1x 10/100/1000 Mbps WAN (Qualcomm QCA8075), 1x 10/100/1000/2500/5000 Mbps LAN/WAN (Aquantia AQR111B0 PHY) * Wi-Fi: * 2.4 GHz: Qualcomm QCN5024 4x4 * 2x 5 GHz: Qualcomm QCN5054 4x4 * USB: 2x USB 3.0 * LEDs: Power, 2.4GHz & 5GHz Radio, WPS, WAN, USB1 & USB2, 5G LAN * Keys: LEDs On/Off, Power, Reset, RFKILL, WPS * UART: Marked J9003 VCC TX RX GND, beginning from "1". 3.3v, 115200n8 * Power: 19 VDC, 3.1 A Installation: * Flashing OpenWrt is done in two steps: a) Flash *-squashfs-web-ui-factory.img from stock UI (thanks to @wangyu-). This writes an initramfs based OpenWrt image onto the RAX120v2 b) From OpenWrt flash the *-squashfs-sysupgrade.bin using LuCI or the commandline * U-Boot allows booting an initramfs image via TFTP: - Set ip of your PC to 192.168.1.100 - At the serial console interrupt boot at "Hit any key to stop autoboot:" - In u-boot run `tftpsrv` - On your PC send the OpenWrt initramfs image: tftp 192.168.1.1 -m binary -c put openwrt-ipq807x-generic-netgear_rax120v2-initramfs-uImage.itb Make 5G Aquantia phy work: For the 5G port labeled 'lan5' to work a firmware is needed. This can be loaded in u-boot by writing the firmware to the correct mtd partition. The firmware file found in the Netgear stock firmware under /lib/firmware/ named 'AQR-G3_v4.3.C-AQR_DNI_DR-EQ35AX8-R-prov1_ID23888_VER1311.cld' is needed and has to be converted to a MBN file. The `mkheader.py` script used here can be found in the Netgear V1.2.8.40 GPL source, under 'git_home/u-boot.git/tools/mkheader.py' Convert the CLD file to MBN using: $ python2 mkheader.py 0x44000000 0x13 <*.cld file> aqr_4.3.C.mbn This MBN file can then be flashed to the MTD partition to be used by u-boot. The necessary files can also be found in https://github.com/boretom/openwrt-fork/tree/rax120v2/aquantia-firmware * Write MBN file to MTD partition to be loaded automatically by u-boot: U-boot automatically tries to load the firmware from nand at address 0x7e00000 which corresponds to `/dev/mtd25` in OpenWrt. - find ETHPHYFW partition while running OpenWrt (expected: /dev/mtd25) $ fgrep -i 'ethphyfw' /proc/mtd mtd25: 00080000 00020000 "ethphyfw - copy mbn file to /tmp/ folder of the router $ scp aqr-v4.3.C.mbn 192.168.1.1:/tmp/ - write mbn file to ethphyfw partition $ mtd write /tmp/aqr_v4.3.C.mbn /dev/mtd25 Revert to stock firmware: * Flash the stock firmware to the bootloader using TFTP/NMRP. References to RAX120v2 GPL source: https://www.downloads.netgear.com/files/GPL/RAX120-V1.2.8.40_gpl_src.zip Reviewed-by: Robert Marko <robimarko@gmail.com> Signed-off-by: Thomas Kupper <thomas.kupper@gmail.com> |
||
|
|
83314c13d0
|
qualcommax: move ipq807x support to subtarget
Now that qualcommax exists as a target and dependencies have been updated let move ipq807x support to subtarget of qualcommax. This is mostly copy/paste with the exception of having to update SSDK and NSS-DP to use CONFIG_TARGET_SUBTARGET. This is a preparation for later addition of IPQ60xx and IPQ50xx support. Signed-off-by: Robert Marko <robimarko@gmail.com> |