openwrt/target/linux/ath79/image/generic.mk

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ath79: add support for Buffalo WZR-HP-AG300H Buffalo WZR-HP-AG300H is a dual band router based on Qualcom Atheros AR7161 rev 2 Specification: - 680 MHz CPU (Qualcomm Atheros AR7161) - 128 MiB RAM (2x Samsung K4H511638G-LCCC) - 32 MiB Flash (2x Winbond 25Q128BVFG) - WiFi 5 GHz a/n (Atheros AR9220) - WiFi 2.4 GHz b/g/n (Atheros AR9223) - 1000Base-T WAN (Atheros AR7161) - 4x 1000Base-T Switch (Atheros AR8316) - 1x USB 2.0 - 3 Buttons (AOSS/WPS, Reset, USB Eject) - 2 Slide switches (Router (on/off/auto), Movie Engine (on/off)) - 9 LEDs (Power green, WLAN 2GHz green, WLAN 2GHz amber, WLAN 5GHz green, WLAN 5GHz LED amber, Router green, Diag red, Movie Engine blue, USB green) It is already supported by the ar71xx target. For more information on the device visit the wiki: <https://openwrt.org/toh/buffalo/wzr-hp-ag300h> Serial console: - The UART Header is next to Movie Engine Switch. - Pinout is RX - TX - GND - 3.3V (Square Pad is 3.3V) - The Serial setting is 115200-8-N-1. Installation of OpenWRT from vendor firmware: - Connect to the Web-interface at http://192.168.11.1 - Go to “Administration” → “Firmware Upgrade” - Upload the OpenWrt factory image Tested: - Ethernet (LAN, WAN) - WiFi - Installation - via TFTP rescue - via factory image - on firmware v1.77 (28-05-2012) - on pro firmware v24SP2 r30356 (26-03-2018) - via sysupgrade from ar71xx (wlan devices don't work because of new names) - via sysupgrade from itself - Buttons - LEDS - USB (Power control and device recognition) Signed-off-by: Bernhard Frauendienst <openwrt@nospam.obeliks.de>
2018-08-18 16:28:02 +00:00
include ./common-buffalo.mk
include ./common-netgear.mk
include ./common-yuncore.mk
DEVICE_VARS += ADDPATTERN_ID ADDPATTERN_VERSION
DEVICE_VARS += SEAMA_SIGNATURE SEAMA_MTDBLOCK
DEVICE_VARS += KERNEL_INITRAMFS_PREFIX
define Build/cybertan-trx
@echo -n '' > $@-empty.bin
-$(STAGING_DIR_HOST)/bin/trx -o $@.new \
-f $(IMAGE_KERNEL) -F $@-empty.bin \
-x 32 -a 0x10000 -x -32 -f $@
-mv "$@.new" "$@"
-rm $@-empty.bin
endef
define Build/addpattern
-$(STAGING_DIR_HOST)/bin/addpattern -B $(ADDPATTERN_ID) \
-v v$(ADDPATTERN_VERSION) -i $@ -o $@.new
-mv "$@.new" "$@"
endef
define Build/add-elecom-factory-initramfs
$(eval edimax_model=$(word 1,$(1)))
$(eval product=$(word 2,$(1)))
$(STAGING_DIR_HOST)/bin/mkedimaximg \
-b -s CSYS -m $(edimax_model) \
-f 0x70000 -S 0x01100000 \
-i $@ -o $@.factory
( \
echo -n -e "ELECOM\x00\x00$(product)" | dd bs=40 count=1 conv=sync; \
echo -n "0.00" | dd bs=16 count=1 conv=sync; \
dd if=$@.factory; \
) > $@.factory.new
if [ "$$(stat -c%s $@.factory.new)" -le $$(($(subst k,* 1024,$(subst m, * 1024k,$(IMAGE_SIZE))))) ]; then \
mv $@.factory.new $(BIN_DIR)/$(KERNEL_INITRAMFS_PREFIX)-factory.bin; \
else \
echo "WARNING: initramfs kernel image too big, cannot generate factory image" >&2; \
fi
endef
define Build/nec-enc
$(STAGING_DIR_HOST)/bin/nec-enc \
-i $@ -o $@.new -k $(1)
mv $@.new $@
endef
define Build/nec-fw
( stat -c%s $@ | tr -d "\n" | dd bs=16 count=1 conv=sync; ) >> $@
( \
echo -n -e "$(1)" | dd bs=16 count=1 conv=sync; \
echo -n "0.0.00" | dd bs=16 count=1 conv=sync; \
dd if=$@; \
) > $@.new
mv $@.new $@
endef
define Device/seama
KERNEL := kernel-bin | append-dtb | relocate-kernel | lzma
KERNEL_INITRAMFS := $$(KERNEL) | seama
IMAGES += factory.bin
SEAMA_MTDBLOCK := 1
# 64 bytes offset:
# - 28 bytes seama_header
# - 36 bytes of META data (4-bytes aligned)
IMAGE/default := append-kernel | pad-offset $$$$(BLOCKSIZE) 64 | append-rootfs
IMAGE/sysupgrade.bin := \
$$(IMAGE/default) | seama | pad-rootfs | append-metadata | check-size $$$$(IMAGE_SIZE)
IMAGE/factory.bin := \
$$(IMAGE/default) | pad-rootfs -x 64 | seama | seama-seal | check-size $$$$(IMAGE_SIZE)
SEAMA_SIGNATURE :=
endef
define Device/8dev_carambola2
ATH_SOC := ar9331
DEVICE_TITLE := 8devices Carambola2
DEVICE_PACKAGES := kmod-usb2 kmod-usb-chipidea2
IMAGE_SIZE := 16000k
SUPPORTED_DEVICES += carambola2
endef
TARGET_DEVICES += 8dev_carambola2
define Device/aruba_ap-105
ATH_SOC := ar7161
DEVICE_TITLE := Aruba AP-105
IMAGE_SIZE := 16000k
DEVICE_PACKAGES := kmod-i2c-core kmod-i2c-gpio kmod-tpm-i2c-atmel
endef
TARGET_DEVICES += aruba_ap-105
define Device/avm_fritz300e
ATH_SOC := ar7242
DEVICE_TITLE := AVM FRITZ!WLAN Repeater 300E
KERNEL := kernel-bin | append-dtb | lzma | eva-image
KERNEL_INITRAMFS := $$(KERNEL)
IMAGE_SIZE := 15232k
IMAGE/sysupgrade.bin := append-kernel | pad-to 64k | \
append-squashfs-fakeroot-be | pad-to 256 | \
append-rootfs | pad-rootfs | append-metadata | check-size $$$$(IMAGE_SIZE)
DEVICE_PACKAGES := fritz-tffs rssileds -swconfig
SUPPORTED_DEVICES += fritz300e
endef
TARGET_DEVICES += avm_fritz300e
ath79: add support for Fritz!Box 4020 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 The USB port doesn't work. Both Root Hubs are detected as having 0 Ports: [ 3.670807] kmodloader: loading kernel modules from /etc/modules-boot.d/* [ 3.723267] usbcore: registered new interface driver usbfs [ 3.729058] usbcore: registered new interface driver hub [ 3.734616] usbcore: registered new device driver usb [ 3.744181] ehci_hcd: USB 2.0 'Enhanced' Host Controller (EHCI) Driver [ 3.758357] SCSI subsystem initialized [ 3.766026] ehci-platform: EHCI generic platform driver [ 3.771548] ehci-platform ehci-platform.0: EHCI Host Controller [ 3.777708] ehci-platform ehci-platform.0: new USB bus registered, assigned bus number 1 [ 3.788169] ehci-platform ehci-platform.0: irq 48, io mem 0x1b000000 [ 3.816647] ehci-platform ehci-platform.0: USB 2.0 started, EHCI 0.00 [ 3.824001] hub 1-0:1.0: USB hub found [ 3.828219] hub 1-0:1.0: config failed, hub doesn't have any ports! (err -19) [ 3.835825] ehci-platform ehci-platform.1: EHCI Host Controller [ 3.842009] ehci-platform ehci-platform.1: new USB bus registered, assigned bus number 2 [ 3.852481] ehci-platform ehci-platform.1: irq 49, io mem 0x1b400000 [ 3.886631] ehci-platform ehci-platform.1: USB 2.0 started, EHCI 0.00 [ 3.894011] hub 2-0:1.0: USB hub found [ 3.898190] hub 2-0:1.0: config failed, hub doesn't have any ports! (err -19) [ 3.908928] usbcore: registered new interface driver usb-storage [ 3.915634] kmodloader: done loading kernel modules from /etc/modules-boot.d/* A few words about the shift-register: AVM used a trick to control the shift-register for the LEDs with only 2 pins, SERCLK and MOSI. Q7S, normally used for daisy-chaining multiple shift-registers, pulls the latch, moving the shift register-state to the storage register. It also pulls down MR (normally pulled up) to clear the storage register, so the latch gets released and will not be pulled by the remaining bits in the shift-register. Shift register is all-zero after this. For that we need to make sure output 7 is set to high on driver probe. We accomplish this by using gpio-hogging. 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>
2018-08-18 16:30:46 +00:00
define Device/avm_fritz4020
ATH_SOC := qca9561
DEVICE_TITLE := AVM FRITZ!Box 4020
IMAGE_SIZE := 15232k
KERNEL := kernel-bin | append-dtb | lzma | eva-image
KERNEL_INITRAMFS := $$(KERNEL)
IMAGE/sysupgrade.bin := append-kernel | pad-to 64k | \
append-squashfs-fakeroot-be | pad-to 256 | \
append-rootfs | pad-rootfs | append-metadata | check-size $$$$(IMAGE_SIZE)
DEVICE_PACKAGES := fritz-tffs
SUPPORTED_DEVICES += fritz4020
ath79: add support for Fritz!Box 4020 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 The USB port doesn't work. Both Root Hubs are detected as having 0 Ports: [ 3.670807] kmodloader: loading kernel modules from /etc/modules-boot.d/* [ 3.723267] usbcore: registered new interface driver usbfs [ 3.729058] usbcore: registered new interface driver hub [ 3.734616] usbcore: registered new device driver usb [ 3.744181] ehci_hcd: USB 2.0 'Enhanced' Host Controller (EHCI) Driver [ 3.758357] SCSI subsystem initialized [ 3.766026] ehci-platform: EHCI generic platform driver [ 3.771548] ehci-platform ehci-platform.0: EHCI Host Controller [ 3.777708] ehci-platform ehci-platform.0: new USB bus registered, assigned bus number 1 [ 3.788169] ehci-platform ehci-platform.0: irq 48, io mem 0x1b000000 [ 3.816647] ehci-platform ehci-platform.0: USB 2.0 started, EHCI 0.00 [ 3.824001] hub 1-0:1.0: USB hub found [ 3.828219] hub 1-0:1.0: config failed, hub doesn't have any ports! (err -19) [ 3.835825] ehci-platform ehci-platform.1: EHCI Host Controller [ 3.842009] ehci-platform ehci-platform.1: new USB bus registered, assigned bus number 2 [ 3.852481] ehci-platform ehci-platform.1: irq 49, io mem 0x1b400000 [ 3.886631] ehci-platform ehci-platform.1: USB 2.0 started, EHCI 0.00 [ 3.894011] hub 2-0:1.0: USB hub found [ 3.898190] hub 2-0:1.0: config failed, hub doesn't have any ports! (err -19) [ 3.908928] usbcore: registered new interface driver usb-storage [ 3.915634] kmodloader: done loading kernel modules from /etc/modules-boot.d/* A few words about the shift-register: AVM used a trick to control the shift-register for the LEDs with only 2 pins, SERCLK and MOSI. Q7S, normally used for daisy-chaining multiple shift-registers, pulls the latch, moving the shift register-state to the storage register. It also pulls down MR (normally pulled up) to clear the storage register, so the latch gets released and will not be pulled by the remaining bits in the shift-register. Shift register is all-zero after this. For that we need to make sure output 7 is set to high on driver probe. We accomplish this by using gpio-hogging. 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>
2018-08-18 16:30:46 +00:00
endef
TARGET_DEVICES += avm_fritz4020
define Device/buffalo_bhr-4grv
ATH_SOC := ar7242
DEVICE_TITLE := Buffalo BHR-4GRV
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-usb-ledtrig-usbport
IMAGE_SIZE := 32256k
IMAGES += factory.bin tftp.bin
IMAGE/default := append-kernel | pad-to $$$$(BLOCKSIZE) | append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE)
IMAGE/factory.bin := $$(IMAGE/default) | buffalo-enc BHR-4GRV 1.99 | buffalo-tag BHR-4GRV 3
IMAGE/tftp.bin := $$(IMAGE/default) | buffalo-tftp-header
SUPPORTED_DEVICES += wzr-hp-g450h
endef
TARGET_DEVICES += buffalo_bhr-4grv
ath79: modify mtd partitions for Buffalo BHR-4GRV2 This commit modifies mtd partitions define for Buffalo BHR-4GRV2 and move it to generic subtarget. In Buffalo BHR-4GRV2, "kernel" partition is located behined "rootfs" partition in the stock firmware. This causes the size of the kernel to be limited by the fixed value. 0x50000 0xe80000 0xff0000 +-------------------------------+--------------+ | rootfs | kernel | | (14528k) | (1472k) | +-------------------------------+--------------+ After ar71xx was updated to Kernel 4.14, the kernel size of BHR-4GRV2 exceeded the limit, and it breaks builds on official buildbot. Since this issue was also confirmed in ath79, I modified the mtd partitions to get rid of that limitation. 0x50000 0xff0000 +----------------------------------------------+ | firmware | | (16000k) | +----------------------------------------------+ However, this commit breaks compatibility with ar71xx firmware, so I dropped "SUPPORTED_DEVICES += bhr-4grv2". This commit requires new flash instruction instead of the old one. Flash instruction using initramfs image: 1. Connect the computer to the LAN port of BHR-4GRV2 2. Set the IP address of the computer to 192.168.12.10 3. Rename the OpenWrt initramfs image to "bhr4grv2-uImage-initramfs-gzip.bin" and place it into the TFTP directory 4. Start the tftp server on the computer 5. While holding down the "ECO" button, connect power cable to BHR-4GRV2 and turn on it 6. Flashing (orange) diag LED and release the finger from the button, BHR-4GRV2 downloads the intiramfs image from TFTP server and boot with it 7. On the initramfs image, create "/etc/fw_env.config" file with following contents /dev/mtd1 0x0 0x10000 0x10000 8. Execute following commands to add environment variables for u-boot fw_setenv ipaddr 192.168.12.1 fw_setenv serverip 192.168.12.10 fw_setenv ethaddr 00:aa:bb:cc:dd:ee fw_setenv bootcmd "bootm 0x9f050000 || bootm 0x9fe80000" 9. Perform sysupgrade with squashfs-sysupgrade image 10. Wait ~150 seconds to complete flashing And this commit includes small fix; BHR-4GRV2 has QCA9557 as a SoC, not QCA9558. Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
2018-11-06 13:37:43 +00:00
define Device/buffalo_bhr-4grv2
ATH_SOC := qca9557
DEVICE_TITLE := Buffalo BHR-4GRV2
IMAGE_SIZE := 16000k
endef
TARGET_DEVICES += buffalo_bhr-4grv2
ath79: add support for Buffalo WZR-HP-AG300H Buffalo WZR-HP-AG300H is a dual band router based on Qualcom Atheros AR7161 rev 2 Specification: - 680 MHz CPU (Qualcomm Atheros AR7161) - 128 MiB RAM (2x Samsung K4H511638G-LCCC) - 32 MiB Flash (2x Winbond 25Q128BVFG) - WiFi 5 GHz a/n (Atheros AR9220) - WiFi 2.4 GHz b/g/n (Atheros AR9223) - 1000Base-T WAN (Atheros AR7161) - 4x 1000Base-T Switch (Atheros AR8316) - 1x USB 2.0 - 3 Buttons (AOSS/WPS, Reset, USB Eject) - 2 Slide switches (Router (on/off/auto), Movie Engine (on/off)) - 9 LEDs (Power green, WLAN 2GHz green, WLAN 2GHz amber, WLAN 5GHz green, WLAN 5GHz LED amber, Router green, Diag red, Movie Engine blue, USB green) It is already supported by the ar71xx target. For more information on the device visit the wiki: <https://openwrt.org/toh/buffalo/wzr-hp-ag300h> Serial console: - The UART Header is next to Movie Engine Switch. - Pinout is RX - TX - GND - 3.3V (Square Pad is 3.3V) - The Serial setting is 115200-8-N-1. Installation of OpenWRT from vendor firmware: - Connect to the Web-interface at http://192.168.11.1 - Go to “Administration” → “Firmware Upgrade” - Upload the OpenWrt factory image Tested: - Ethernet (LAN, WAN) - WiFi - Installation - via TFTP rescue - via factory image - on firmware v1.77 (28-05-2012) - on pro firmware v24SP2 r30356 (26-03-2018) - via sysupgrade from ar71xx (wlan devices don't work because of new names) - via sysupgrade from itself - Buttons - LEDS - USB (Power control and device recognition) Signed-off-by: Bernhard Frauendienst <openwrt@nospam.obeliks.de>
2018-08-18 16:28:02 +00:00
define Device/buffalo_wzr-hp-ag300h
ATH_SOC := ar7161
DEVICE_TITLE := Buffalo WZR-HP-AG300H
IMAGE_SIZE := 32256k
IMAGES += factory.bin tftp.bin
IMAGE/default := append-kernel | pad-to $$$$(BLOCKSIZE) | append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE)
IMAGE/factory.bin := $$(IMAGE/default) | buffalo-enc WZR-HP-AG300H 1.99 | buffalo-tag WZR-HP-AG300H 3
ath79: add support for Buffalo WZR-HP-AG300H Buffalo WZR-HP-AG300H is a dual band router based on Qualcom Atheros AR7161 rev 2 Specification: - 680 MHz CPU (Qualcomm Atheros AR7161) - 128 MiB RAM (2x Samsung K4H511638G-LCCC) - 32 MiB Flash (2x Winbond 25Q128BVFG) - WiFi 5 GHz a/n (Atheros AR9220) - WiFi 2.4 GHz b/g/n (Atheros AR9223) - 1000Base-T WAN (Atheros AR7161) - 4x 1000Base-T Switch (Atheros AR8316) - 1x USB 2.0 - 3 Buttons (AOSS/WPS, Reset, USB Eject) - 2 Slide switches (Router (on/off/auto), Movie Engine (on/off)) - 9 LEDs (Power green, WLAN 2GHz green, WLAN 2GHz amber, WLAN 5GHz green, WLAN 5GHz LED amber, Router green, Diag red, Movie Engine blue, USB green) It is already supported by the ar71xx target. For more information on the device visit the wiki: <https://openwrt.org/toh/buffalo/wzr-hp-ag300h> Serial console: - The UART Header is next to Movie Engine Switch. - Pinout is RX - TX - GND - 3.3V (Square Pad is 3.3V) - The Serial setting is 115200-8-N-1. Installation of OpenWRT from vendor firmware: - Connect to the Web-interface at http://192.168.11.1 - Go to “Administration” → “Firmware Upgrade” - Upload the OpenWrt factory image Tested: - Ethernet (LAN, WAN) - WiFi - Installation - via TFTP rescue - via factory image - on firmware v1.77 (28-05-2012) - on pro firmware v24SP2 r30356 (26-03-2018) - via sysupgrade from ar71xx (wlan devices don't work because of new names) - via sysupgrade from itself - Buttons - LEDS - USB (Power control and device recognition) Signed-off-by: Bernhard Frauendienst <openwrt@nospam.obeliks.de>
2018-08-18 16:28:02 +00:00
IMAGE/tftp.bin := $$(IMAGE/default) | buffalo-tftp-header
DEVICE_PACKAGES := kmod-usb-core kmod-usb-ohci kmod-usb2 kmod-usb-ledtrig-usbport kmod-leds-reset kmod-owl-loader
SUPPORTED_DEVICES += wzr-hp-ag300h
endef
TARGET_DEVICES += buffalo_wzr-hp-ag300h
define Device/buffalo_wzr-hp-g302h-a1a0
ATH_SOC := ar7242
DEVICE_TITLE := Buffalo WZR-HP-G302H A1A0
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-usb-ledtrig-usbport
IMAGE_SIZE := 32128k
IMAGES += factory.bin tftp.bin
IMAGE/default := append-kernel | pad-to $$$$(BLOCKSIZE) | append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE)
IMAGE/factory.bin := $$(IMAGE/default) | buffalo-enc WZR-HP-G302H 1.99 | buffalo-tag WZR-HP-G302H 4
IMAGE/tftp.bin := $$(IMAGE/default) | buffalo-tftp-header
SUPPORTED_DEVICES += wzr-hp-g300nh2
endef
TARGET_DEVICES += buffalo_wzr-hp-g302h-a1a0
define Device/buffalo_wzr-hp-g450h
ATH_SOC := ar7242
DEVICE_TITLE := Buffalo WZR-HP-G450H/WZR-450HP
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-usb-ledtrig-usbport
IMAGE_SIZE := 32256k
IMAGES += factory.bin tftp.bin
IMAGE/default := append-kernel | pad-to $$$$(BLOCKSIZE) | append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE)
IMAGE/factory.bin := $$(IMAGE/default) | buffalo-enc WZR-HP-G450H 1.99 | buffalo-tag WZR-HP-G450H 3
IMAGE/tftp.bin := $$(IMAGE/default) | buffalo-tftp-header
SUPPORTED_DEVICES += wzr-hp-g450h
endef
TARGET_DEVICES += buffalo_wzr-hp-g450h
ath79: add support for COMFAST CF-E110N This patch adds support for the COMFAST CF-E110N, an outdoor wireless CPE with two Ethernet ports and a 802.11bgn radio. Specifications: - 650/400/216 MHz (CPU/DDR/AHB) - 2x 10/100 Mbps Ethernet, both with PoE-in support - 64 MB of RAM (DDR2) - 16 MB of FLASH - 2T2R 2.4 GHz, up to 26 dBm - 11 dBi built-in antenna - POWER/LAN/WAN/WLAN green LEDs - 4x RSSI LEDs (2x red, 2x green) - UART (115200 8N1) and GPIO (J9) headers on PCB Flashing instructions: The original firmware is based on OpenWrt so a sysupgrade image can be installed via the stock web GUI. Settings from the original firmware will be saved and restored on the new want, so a factory reset will be needed: once the new firmware is flashed, perform the factory reset by pushing the reset button several times during the boot process, while the WAN LED flashes, until it starts flashing quicker. The U-boot bootloader contains a recovery HTTP server to upload the firmware. Push the reset button while powering the device on and keep it pressed for >10 seconds. The recovery page will be at http://192.168.1.1 Notes: The device is advertised, sold and labeled as "CF-E110N", but the bootloader and the stock firmware identify it as "v2". Acknowledgments: Petr Štetiar <ynezz@true.cz> Sebastian Kemper <sebastian_ml@gmx.net> Chuanhong Guo <gch981213@gmail.com> Signed-off-by: Roger Pueyo Centelles <roger.pueyo@guifi.net> [drop unused labels from devicetree source file] Signed-off-by: Mathias Kresin <dev@kresin.me>
2018-12-10 14:44:56 +00:00
define Device/comfast_cf-e110n-v2
ATH_SOC := qca9533
DEVICE_TITLE := COMFAST CF-E110N v2
DEVICE_PACKAGES := rssileds kmod-leds-gpio -swconfig -uboot-envtools
IMAGE_SIZE := 16192k
endef
TARGET_DEVICES += comfast_cf-e110n-v2
define Device/comfast_cf-e120a-v3
ATH_SOC := ar9344
DEVICE_TITLE := COMFAST CF-E120A v3
DEVICE_PACKAGES := rssileds kmod-leds-gpio -uboot-envtools
IMAGE_SIZE := 8000k
endef
TARGET_DEVICES += comfast_cf-e120a-v3
define Device/comfast_cf-e5
ATH_SOC := qca9531
DEVICE_TITLE := COMFAST CF-E5/E7
DEVICE_PACKAGES := rssileds kmod-leds-gpio kmod-usb-core kmod-usb2 kmod-usb-net \
kmod-usb-net-qmi-wwan -swconfig -uboot-envtools
IMAGE_SIZE := 16192k
endef
TARGET_DEVICES += comfast_cf-e5
define Device/devolo_dvl1200e
ATH_SOC := qca9558
DEVICE_TITLE := devolo WiFi pro 1200e
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca988x-ct
IMAGE_SIZE := 15936k
endef
TARGET_DEVICES += devolo_dvl1200e
define Device/devolo_dvl1200i
ATH_SOC := qca9558
DEVICE_TITLE := devolo WiFi pro 1200i
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca988x-ct
IMAGE_SIZE := 15936k
endef
TARGET_DEVICES += devolo_dvl1200i
define Device/devolo_dvl1750c
ATH_SOC := qca9558
DEVICE_TITLE := devolo WiFi pro 1750c
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca988x-ct
IMAGE_SIZE := 15936k
endef
TARGET_DEVICES += devolo_dvl1750c
define Device/devolo_dvl1750e
ATH_SOC := qca9558
DEVICE_TITLE := devolo WiFi pro 1750e
DEVICE_PACKAGES := kmod-usb2 kmod-ath10k-ct ath10k-firmware-qca988x-ct
IMAGE_SIZE := 15936k
endef
TARGET_DEVICES += devolo_dvl1750e
define Device/devolo_dvl1750i
ATH_SOC := qca9558
DEVICE_TITLE := devolo WiFi pro 1750i
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca988x-ct
IMAGE_SIZE := 15936k
endef
TARGET_DEVICES += devolo_dvl1750i
define Device/devolo_dvl1750x
ATH_SOC := qca9558
DEVICE_TITLE := devolo WiFi pro 1750x
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca988x-ct
IMAGE_SIZE := 15936k
endef
TARGET_DEVICES += devolo_dvl1750x
define Device/dlink_dir-825-b1
ATH_SOC := ar7161
DEVICE_TITLE := D-LINK DIR-825 B1
IMAGE_SIZE := 6208k
IMAGE/sysupgrade.bin := append-kernel | append-rootfs | pad-rootfs | append-metadata | check-size $$$$(IMAGE_SIZE)
DEVICE_PACKAGES := kmod-usb-core kmod-usb-ohci kmod-usb2 kmod-usb-ledtrig-usbport kmod-leds-reset kmod-owl-loader
SUPPORTED_DEVICES += dir-825-b1
endef
TARGET_DEVICES += dlink_dir-825-b1
define Device/dlink_dir-825-c1
ATH_SOC := ar9344
DEVICE_TITLE := D-LINK DIR-825 C1
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-usb-ledtrig-usbport kmod-leds-reset kmod-owl-loader
SUPPORTED_DEVICES += dir-825-c1
IMAGE_SIZE := 15936k
IMAGES := factory.bin sysupgrade.bin
IMAGE/default := append-kernel | pad-to $$$$(BLOCKSIZE) | append-rootfs | pad-rootfs
IMAGE/factory.bin := $$(IMAGE/default) | pad-offset $$$$(IMAGE_SIZE) 26 | \
append-string 00DB120AR9344-RT-101214-00 | check-size $$$$(IMAGE_SIZE)
IMAGE/sysupgrade.bin := $$(IMAGE/default) | append-metadata | check-size $$$$(IMAGE_SIZE)
endef
TARGET_DEVICES += dlink_dir-825-c1
define Device/dlink_dir-835-a1
ATH_SOC := ar9344
DEVICE_TITLE := D-LINK DIR-835 A1
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-leds-reset kmod-owl-loader
SUPPORTED_DEVICES += dir-835-a1
IMAGE_SIZE := 15936k
IMAGES := factory.bin sysupgrade.bin
IMAGE/default := append-kernel | pad-to $$$$(BLOCKSIZE) | append-rootfs | pad-rootfs
IMAGE/factory.bin := $$(IMAGE/default) | pad-offset $$$$(IMAGE_SIZE) 26 | \
append-string 00DB120AR9344-RT-101214-00 | check-size $$$$(IMAGE_SIZE)
IMAGE/sysupgrade.bin := $$(IMAGE/default) | append-metadata | check-size $$$$(IMAGE_SIZE)
endef
TARGET_DEVICES += dlink_dir-835-a1
define Device/dlink_dir-859-a1
$(Device/seama)
ATH_SOC := qca9563
DEVICE_TITLE := D-LINK DIR-859 A1
IMAGE_SIZE := 15872k
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-ath10k-ct-smallbuffers ath10k-firmware-qca988x-ct
SEAMA_SIGNATURE := wrgac37_dlink.2013gui_dir859
endef
TARGET_DEVICES += dlink_dir-859-a1
define Device/elecom_wrc-1750ghbk2-i
ATH_SOC := qca9563
DEVICE_TITLE := ELECOM WRC-1750GHBK2-I/C
IMAGE_SIZE := 15808k
KERNEL_INITRAMFS := $$(KERNEL) | pad-to 2 | \
add-elecom-factory-initramfs RN68 WRC-1750GHBK2
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca988x-ct
endef
TARGET_DEVICES += elecom_wrc-1750ghbk2-i
define Device/elecom_wrc-300ghbk2-i
ATH_SOC := qca9563
DEVICE_TITLE := ELECOM WRC-300GHBK2-I
IMAGE_SIZE := 7616k
KERNEL_INITRAMFS := $$(KERNEL) | pad-to 2 | \
add-elecom-factory-initramfs RN51 WRC-300GHBK2-I
endef
TARGET_DEVICES += elecom_wrc-300ghbk2-i
define Device/embeddedwireless_dorin
ATH_SOC := ar9331
DEVICE_TITLE := Embedded Wireless Dorin
DEVICE_PACKAGES := kmod-usb-chipidea2
IMAGE_SIZE := 16000k
endef
TARGET_DEVICES += embeddedwireless_dorin
define Device/engenius_ecb1750
ATH_SOC := qca9558
DEVICE_TITLE := EnGenius ECB1750
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca988x-ct
IMAGE_SIZE := 15680k
IMAGE/factory.bin := append-kernel | pad-to $$$$(BLOCKSIZE) | \
append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE) | \
senao-header -r 0x101 -p 0x6d -t 2
IMAGE/sysupgrade.bin := append-kernel | append-rootfs | pad-rootfs | append-metadata | check-size $$$$(IMAGE_SIZE)
endef
TARGET_DEVICES += engenius_ecb1750
ath79: add suport for EnGenius EPG5000 EnGenius EPG5000 (v1.0.0, marketed as IoT Gateway) is a dual band wireless router. Specification SoC: Qualcomm Atheros QCA9558 RAM: 256 MB DDR2 Flash: 16 MB SPI NOR WIFI: 2.4 GHz 3T3R integrated 5 GHz 3T3R QCA9880 Mini PCIe card Ethernet: 5x 10/100/1000 Mbps QCA8337N USB: 1x 2.0 LEDS: 4x GPIO controlled Buttons: 2x GPIO controlled UART: 4 pin header, starting count from white triangle on PCB 1. VCC 3.3V, 2. GND, 3. TX, 4. RX baud: 115200, parity: none, flow control: none Installation 1. Connect to one of LAN (yellow) ethernet ports, 2. Open router configuration interface, 3. Go to Tools > Firmware, 4. Select OpenWrt factory image with dlf extension and hit Apply, 5. Wait few minutes, after the Power LED will stop blinking, the router is ready for configuration. Alternative installation 1. Prepare TFTP server with OpenWrt sysupgrade image, 2. Connect to one of LAN (yellow) ethernet ports, 3. Connect to UART port (leaving out VCC pin!), 4. Power on router, 5. When asked to enter a number 1 or 3 hit 2, this will select flashing image from TFTP server option, 6. You'll be prompted to enter TFTP server ip (default is 192.168.99.8), then router ip (default is 192.168.99.9) and for last, image name downloaded from TFTP server (default is uImageESR1200_1750), 7. After providing all information U-Boot will start flashing the image, You can observe progress on console, it'll take few minutes and when the Power LED will stop blinking, router is ready for configuration. Additional information If connected to UART, when prompted for number on boot, one can enter number 4 to open bootloader (U-Boot) command line. OEM firmware shell password is: aigo3d0a0tdagr useful for creating backup of original firmware. When doing upgrade from OpenWrt ar71xx image, it is recomended to not keep the old configuration. Signed-off-by: Tomasz Maciej Nowak <tomek_n@o2.pl>
2019-03-04 14:18:53 +00:00
define Device/engenius_epg5000
ATH_SOC := qca9558
DEVICE_TITLE := EnGenius EPG5000
DEVICE_PACKAGES := ath10k-firmware-qca988x-ct kmod-ath10k-ct kmod-usb2
IMAGE_SIZE := 14656k
IMAGES += factory.dlf
IMAGE/factory.dlf := append-kernel | pad-to $$$$(BLOCKSIZE) | \
append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE) | \
senao-header -r 0x101 -p 0x71 -t 2
SUPPORTED_DEVICES += epg5000
endef
TARGET_DEVICES += engenius_epg5000
define Device/engenius_ews511ap
ATH_SOC := qca9531
DEVICE_TITLE := EnGenius EWS511AP
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca9887-ct
IMAGE_SIZE := 16000k
endef
TARGET_DEVICES += engenius_ews511ap
define Device/etactica_eg200
ATH_SOC := ar9331
DEVICE_TITLE := eTactica EG200
DEVICE_PACKAGES := kmod-usb-chipidea2 kmod-ledtrig-oneshot \
kmod-usb-serial kmod-usb-serial-ftdi kmod-usb-storage kmod-fs-ext4
SUPPORTED_DEVICES += rme-eg200
endef
TARGET_DEVICES += etactica_eg200
define Device/glinet_gl-ar150
ATH_SOC := ar9330
DEVICE_TITLE := GL.iNet GL-AR150
DEVICE_PACKAGES := kmod-usb-chipidea2
IMAGE_SIZE := 16000k
SUPPORTED_DEVICES += gl-ar150
endef
TARGET_DEVICES += glinet_gl-ar150
define Device/glinet_gl-ar300m-common-nor
ATH_SOC := qca9531
DEVICE_PACKAGES := kmod-usb-core kmod-usb2
IMAGE_SIZE := 16000k
SUPPORTED_DEVICES += gl-ar300m
endef
define Device/glinet_gl-ar300m-lite
$(Device/glinet_gl-ar300m-common-nor)
DEVICE_TITLE := GL.iNet GL-AR300M-Lite
endef
TARGET_DEVICES += glinet_gl-ar300m-lite
define Device/glinet_gl-ar300m-nor
$(Device/glinet_gl-ar300m-common-nor)
DEVICE_TITLE := GL.iNet GL-AR300M
endef
#TARGET_DEVICES += glinet_gl-ar300m-nor
define Device/glinet_gl-ar750s
ATH_SOC := qca9563
DEVICE_TITLE := GL.iNet GL-AR750S
DEVICE_PACKAGES := kmod-usb2 kmod-ath10k-ct ath10k-firmware-qca9887-ct block-mount
IMAGE_SIZE := 16000k
SUPPORTED_DEVICES += gl-ar750s
endef
#TARGET_DEVICES += glinet_gl-ar750s
define Device/glinet_gl-x750
ATH_SOC := qca9531
DEVICE_TITLE := GL.iNet GL-X750
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-ath10k-ct ath10k-firmware-qca9887-ct
IMAGE_SIZE := 16000k
endef
TARGET_DEVICES += glinet_gl-x750
define Device/iodata_etg3-r
ATH_SOC := ar9342
DEVICE_TITLE := I-O DATA ETG3-R
IMAGE_SIZE := 7680k
DEVICE_PACKAGES := -iwinfo -kmod-ath9k -wpad-basic
endef
TARGET_DEVICES += iodata_etg3-r
define Device/iodata_wn-ac1167dgr
ATH_SOC := qca9557
DEVICE_TITLE := I-O DATA WN-AC1167DGR
IMAGE_SIZE := 14656k
IMAGES += factory.bin
IMAGE/factory.bin := append-kernel | pad-to $$$$(BLOCKSIZE) | \
append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE) | \
senao-header -r 0x30a -p 0x61 -t 2
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-ath10k-ct ath10k-firmware-qca988x-ct
endef
TARGET_DEVICES += iodata_wn-ac1167dgr
ath79: add support for I-O DATA WN-AC1600DGR I-O DATA WN-AC1600DGR is a 2.4/5 GHz band 11ac router, based on Qualcomm Atheros QCA9557. Specification: - SoC: Qualcomm Atheros QCA9557 - RAM: 128 MB - Flash: 16 MB - WLAN: 2.4/5 GHz - 2.4 GHz: 2T2R (SoC internal) - 5 GHz: 3T3R (QCA9880) - Ethernet: 5x 10/100/1000 Mbps - Switch: QCA8337N - LED/key: 6x/6x(4x buttons, 1x slide switch) - UART: through-hole on PCB - Vcc, GND, TX, RX from ethernet port side - 115200n8 Flash instruction using factory image: 1. Connect the computer to the LAN port of WN-AC1600DGR 2. Connect power cable to WN-AC1600DGR and turn on it 3. Access to "http://192.168.0.1/" and open firmware update page ("ファームウェア") 4. Select the OpenWrt factory image and click update ("更新") button 5. Wait ~150 seconds to complete flashing Alternative flash instruction using initramfs image: 1. Prepare a computer and TFTP server software with the IP address "192.168.99.8" and renamed OpenWrt initramfs image "uImageWN-AC1600DGR" 2. Connect between WN-AC1600DGR and the computer with UART 3. Connect power cable to WN-AC1600DGR, press "4" on the serial console and enter the U-Boot console 4. execute "tftpboot" command on the console and download initramfs image from the TFTP server 5. execute "bootm" command and boot OpenWrt 6. On initramfs image, download the sysupgrade image to the device and perform sysupgrade with it 7. Wait ~150 seconds to complete flashing This commit also removes unnecessary "qca,no-eeprom" property from the ath10k wifi node. Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
2019-02-05 08:23:58 +00:00
define Device/iodata_wn-ac1600dgr
ATH_SOC := qca9557
DEVICE_TITLE := I-O DATA WN-AC1600DGR
IMAGE_SIZE := 14656k
IMAGES += factory.bin
IMAGE/factory.bin := append-kernel | pad-to $$$$(BLOCKSIZE) | \
append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE) | \
senao-header -r 0x30a -p 0x60 -t 2 -v 200
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-ath10k-ct ath10k-firmware-qca988x-ct
endef
TARGET_DEVICES += iodata_wn-ac1600dgr
define Device/iodata_wn-ac1600dgr2
ATH_SOC := qca9557
DEVICE_TITLE := I-O DATA WN-AC1600DGR2
IMAGE_SIZE := 14656k
IMAGES += factory.bin
IMAGE/factory.bin := append-kernel | pad-to $$$$(BLOCKSIZE) | \
append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE) | \
senao-header -r 0x30a -p 0x60 -t 2 -v 200
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-ath10k-ct ath10k-firmware-qca988x-ct
endef
TARGET_DEVICES += iodata_wn-ac1600dgr2
define Device/iodata_wn-ag300dgr
ATH_SOC := ar1022
DEVICE_TITLE := I-O DATA WN-AG300DGR
IMAGE_SIZE := 15424k
IMAGES += factory.bin
IMAGE/factory.bin := append-kernel | pad-to $$$$(BLOCKSIZE) | \
append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE) | \
senao-header -r 0x30a -p 0x47 -t 2
DEVICE_PACKAGES := kmod-usb-core kmod-usb2
endef
TARGET_DEVICES += iodata_wn-ag300dgr
ath79: add support for jjPlus JA76PF2 jjPlus JA76PF2 (marketed as IntellusPro2) is a network embedded board. Specification SoC: Atheros AR7161 RAM: 64 MB DDR Flash: 16 MB SPI NOR Ethernet: 2x 10/100/1000 Mbps AR8316 LAN (CN11), WAN/PoE (CN6 - close to power barrel connector, 48 V) MiniPCI: 2x LEDS: 4x, which 3 are GPIO controlled Buttons: 2x GPIO controlled Reset (SW1, closer to ethernet ports), WPS (SW2) Serial: 1x (only RX and TX are wired) baud: 115200, parity: none, flow control: none Currently there is one caveat compared to ar71xx target images as the MAC addresses are random on every reboot. To remedy this one needs to store the WAN MAC address in RedBoot configuration. OpenWrt on first boot, after flashing, will read out the address and assign proper ones to both WAN and LAN ports. It is iportant to NOT keep the old configuration when doing sysupgrade from ar71xx. Upgrading from OpenWrt ar71xx image 1. Connect to serial port, 2. Download OpenWrt sysupgrade image to /tmp directory and flash it with: sysupgrade -n <openwrt_sysupgrade_image_name> 3. After writing new image OpenWrt will reboot, now interrupt boot process and enter RedBoot (bootloader) command line by pressing Ctrl+C, 4. Enter following commands (replace variable accordingly), set_mac (to view MAC addresses) alias ethaddr <wan_port_mac_adress> (confirm storing the value by inputting y and pressing Enter) reset 5. Now board should restart and boot OpenWrt with proper MAC addresses. Installation 1. Prepare TFTP server with OpenWrt initramfs image, 2. Connect to WAN ethernet port, 3. Connect to serial port, 4. Power on the board and enter RedBoot (bootloader) command line by pressing Ctrl+C, 5. Enter following commands (replace variables accordingly): set_mac (to view MAC addresses) alias ethaddr <wan_port_mac_address> (confirm storing the value by inputting y and pressing Enter) ip_adress -l <board_ip_adress>/24 -h <tftp_server_ip_adress> load -r -b 0x80060000 <openwrt_initramfs_image_name> exec -c "" 6. Now board should boot OpenWrt initramfs image, 7. Download OpenWrt sysupgrade image to /tmp directory and flash it with: sysupgrade <openwrt_sysupgrade_image_name> 8. Wait few minutes, after the D2 LED will stop blinking, the board is ready for configuration. Signed-off-by: Tomasz Maciej Nowak <tomek_n@o2.pl>
2019-03-06 19:15:19 +00:00
define Device/jjplus_ja76pf2
ATH_SOC := ar7161
DEVICE_TITLE := jjPlus JA76PF2
DEVICE_PACKAGES += -kmod-ath9k -swconfig -wpad-mini -uboot-envtools fconfig
IMAGE/sysupgrade.bin := append-rootfs | pad-rootfs | combined-image | append-metadata | check-size $$$$(IMAGE_SIZE)
ath79: add support for jjPlus JA76PF2 jjPlus JA76PF2 (marketed as IntellusPro2) is a network embedded board. Specification SoC: Atheros AR7161 RAM: 64 MB DDR Flash: 16 MB SPI NOR Ethernet: 2x 10/100/1000 Mbps AR8316 LAN (CN11), WAN/PoE (CN6 - close to power barrel connector, 48 V) MiniPCI: 2x LEDS: 4x, which 3 are GPIO controlled Buttons: 2x GPIO controlled Reset (SW1, closer to ethernet ports), WPS (SW2) Serial: 1x (only RX and TX are wired) baud: 115200, parity: none, flow control: none Currently there is one caveat compared to ar71xx target images as the MAC addresses are random on every reboot. To remedy this one needs to store the WAN MAC address in RedBoot configuration. OpenWrt on first boot, after flashing, will read out the address and assign proper ones to both WAN and LAN ports. It is iportant to NOT keep the old configuration when doing sysupgrade from ar71xx. Upgrading from OpenWrt ar71xx image 1. Connect to serial port, 2. Download OpenWrt sysupgrade image to /tmp directory and flash it with: sysupgrade -n <openwrt_sysupgrade_image_name> 3. After writing new image OpenWrt will reboot, now interrupt boot process and enter RedBoot (bootloader) command line by pressing Ctrl+C, 4. Enter following commands (replace variable accordingly), set_mac (to view MAC addresses) alias ethaddr <wan_port_mac_adress> (confirm storing the value by inputting y and pressing Enter) reset 5. Now board should restart and boot OpenWrt with proper MAC addresses. Installation 1. Prepare TFTP server with OpenWrt initramfs image, 2. Connect to WAN ethernet port, 3. Connect to serial port, 4. Power on the board and enter RedBoot (bootloader) command line by pressing Ctrl+C, 5. Enter following commands (replace variables accordingly): set_mac (to view MAC addresses) alias ethaddr <wan_port_mac_address> (confirm storing the value by inputting y and pressing Enter) ip_adress -l <board_ip_adress>/24 -h <tftp_server_ip_adress> load -r -b 0x80060000 <openwrt_initramfs_image_name> exec -c "" 6. Now board should boot OpenWrt initramfs image, 7. Download OpenWrt sysupgrade image to /tmp directory and flash it with: sysupgrade <openwrt_sysupgrade_image_name> 8. Wait few minutes, after the D2 LED will stop blinking, the board is ready for configuration. Signed-off-by: Tomasz Maciej Nowak <tomek_n@o2.pl>
2019-03-06 19:15:19 +00:00
# IMAGE/sysupgrade.bin := append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE) | sysupgrade-tar rootfs=$$$$@ | append-metadata
KERNEL := kernel-bin | append-dtb | lzma | pad-to $$(BLOCKSIZE)
KERNEL_INITRAMFS := kernel-bin | append-dtb
IMAGE_SIZE := 16000k
SUPPORTED_DEVICES += ja76pf2
ath79: add support for jjPlus JA76PF2 jjPlus JA76PF2 (marketed as IntellusPro2) is a network embedded board. Specification SoC: Atheros AR7161 RAM: 64 MB DDR Flash: 16 MB SPI NOR Ethernet: 2x 10/100/1000 Mbps AR8316 LAN (CN11), WAN/PoE (CN6 - close to power barrel connector, 48 V) MiniPCI: 2x LEDS: 4x, which 3 are GPIO controlled Buttons: 2x GPIO controlled Reset (SW1, closer to ethernet ports), WPS (SW2) Serial: 1x (only RX and TX are wired) baud: 115200, parity: none, flow control: none Currently there is one caveat compared to ar71xx target images as the MAC addresses are random on every reboot. To remedy this one needs to store the WAN MAC address in RedBoot configuration. OpenWrt on first boot, after flashing, will read out the address and assign proper ones to both WAN and LAN ports. It is iportant to NOT keep the old configuration when doing sysupgrade from ar71xx. Upgrading from OpenWrt ar71xx image 1. Connect to serial port, 2. Download OpenWrt sysupgrade image to /tmp directory and flash it with: sysupgrade -n <openwrt_sysupgrade_image_name> 3. After writing new image OpenWrt will reboot, now interrupt boot process and enter RedBoot (bootloader) command line by pressing Ctrl+C, 4. Enter following commands (replace variable accordingly), set_mac (to view MAC addresses) alias ethaddr <wan_port_mac_adress> (confirm storing the value by inputting y and pressing Enter) reset 5. Now board should restart and boot OpenWrt with proper MAC addresses. Installation 1. Prepare TFTP server with OpenWrt initramfs image, 2. Connect to WAN ethernet port, 3. Connect to serial port, 4. Power on the board and enter RedBoot (bootloader) command line by pressing Ctrl+C, 5. Enter following commands (replace variables accordingly): set_mac (to view MAC addresses) alias ethaddr <wan_port_mac_address> (confirm storing the value by inputting y and pressing Enter) ip_adress -l <board_ip_adress>/24 -h <tftp_server_ip_adress> load -r -b 0x80060000 <openwrt_initramfs_image_name> exec -c "" 6. Now board should boot OpenWrt initramfs image, 7. Download OpenWrt sysupgrade image to /tmp directory and flash it with: sysupgrade <openwrt_sysupgrade_image_name> 8. Wait few minutes, after the D2 LED will stop blinking, the board is ready for configuration. Signed-off-by: Tomasz Maciej Nowak <tomek_n@o2.pl>
2019-03-06 19:15:19 +00:00
endef
TARGET_DEVICES += jjplus_ja76pf2
define Device/librerouter_librerouter-v1
ATH_SOC := qca9558
DEVICE_TITLE := LibreRouter v1
IMAGE_SIZE := 7936k
DEVICE_PACKAGES := kmod-usb-core kmod-usb2
endef
TARGET_DEVICES += librerouter_librerouter-v1
define Device/nec_wg1200cr
ATH_SOC := qca9563
DEVICE_TITLE := NEC Aterm WG1200CR
IMAGE_SIZE := 7616k
SEAMA_MTDBLOCK := 6
SEAMA_SIGNATURE := wrgac72_necpf.2016gui_wg1200cr
IMAGES += factory.bin
IMAGE/default := \
append-kernel | pad-offset $$$$(BLOCKSIZE) 64 | append-rootfs
IMAGE/sysupgrade.bin := \
$$(IMAGE/default) | seama | pad-rootfs | append-metadata | check-size $$$$(IMAGE_SIZE)
IMAGE/factory.bin := \
$$(IMAGE/default) | pad-rootfs -x 64 | seama | seama-seal | nec-enc 9gsiy9nzep452pad | \
check-size $$$$(IMAGE_SIZE)
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca9888-ct
endef
TARGET_DEVICES += nec_wg1200cr
define Device/nec_wg800hp
ATH_SOC := qca9563
DEVICE_TITLE := NEC Aterm WG800HP
IMAGE_SIZE := 7104k
IMAGES += factory.bin
IMAGE/factory.bin := append-kernel | pad-to $$$$(BLOCKSIZE) | \
append-rootfs | pad-rootfs | check-size $$$$(IMAGE_SIZE) | \
xor-image -p 6A57190601121E4C004C1E1201061957 -x | \
nec-fw LASER_ATERM
DEVICE_PACKAGES := kmod-ath10k-ct-smallbuffers ath10k-firmware-qca9887-ct-htt
endef
TARGET_DEVICES += nec_wg800hp
define Device/ocedo_koala
ATH_SOC := qca9558
DEVICE_TITLE := OCEDO Koala
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca988x-ct
SUPPORTED_DEVICES += koala
IMAGE_SIZE := 7424k
IMAGE/sysupgrade.bin := append-kernel | append-rootfs | pad-rootfs | append-metadata | check-size $$$$(IMAGE_SIZE)
endef
TARGET_DEVICES += ocedo_koala
define Device/ocedo_raccoon
ATH_SOC := ar9344
DEVICE_TITLE := OCEDO Raccoon
IMAGE_SIZE := 7424k
IMAGE/sysupgrade.bin := append-kernel | append-rootfs | pad-rootfs | append-metadata | check-size $$$$(IMAGE_SIZE)
endef
TARGET_DEVICES += ocedo_raccoon
define Device/ocedo_ursus
ATH_SOC := qca9558
DEVICE_TITLE := OCEDO Ursus
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca988x-ct
IMAGE_SIZE := 7424k
IMAGE/sysupgrade.bin := append-kernel | append-rootfs | pad-rootfs | append-metadata | check-size $$$$(IMAGE_SIZE)
endef
TARGET_DEVICES += ocedo_ursus
define Device/openmesh_om5p-ac-v2
ATH_SOC := qca9558
DEVICE_TITLE := OpenMesh OM5P-AC v2
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca988x-ct om-watchdog
IMAGE_SIZE := 7808k
SUPPORTED_DEVICES += om5p-acv2
endef
TARGET_DEVICES += openmesh_om5p-ac-v2
define Device/pcs_cap324
ATH_SOC := ar9344
DEVICE_TITLE := PowerCloud Systems CAP324
IMAGE_SIZE := 16000k
SUPPORTED_DEVICES += cap324
endef
TARGET_DEVICES += pcs_cap324
define Device/pcs_cr3000
ATH_SOC := ar9341
DEVICE_TITLE := PowerCloud Systems CR3000
IMAGE_SIZE := 7808k
SUPPORTED_DEVICES += cr3000
endef
TARGET_DEVICES += pcs_cr3000
define Device/pcs_cr5000
ATH_SOC := ar9344
DEVICE_TITLE := PowerCloud Systems CR5000
DEVICE_PACKAGES := kmod-usb2 kmod-usb-core
IMAGE_SIZE := 7808k
SUPPORTED_DEVICES += cr5000
endef
TARGET_DEVICES += pcs_cr5000
define Device/netgear_wndr3x00
ATH_SOC := ar7161
IMAGE/default := append-kernel | pad-to $$$$(BLOCKSIZE) | netgear-squashfs | append-rootfs | pad-rootfs
DEVICE_PACKAGES := kmod-usb-core kmod-usb-ohci kmod-usb2 kmod-usb-ledtrig-usbport kmod-leds-reset kmod-owl-loader
$(Device/netgear_ath79)
endef
define Device/netgear_ex7300_ex6400
ATH_SOC := qca9558
NETGEAR_KERNEL_MAGIC := 0x27051956
NETGEAR_BOARD_ID := EX7300series
NETGEAR_HW_ID := 29765104+16+0+128
IMAGE_SIZE := 15552k
IMAGE/default := append-kernel | pad-offset $$$$(BLOCKSIZE) 64 | netgear-rootfs | pad-rootfs
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca99x0-ct
$(Device/netgear_ath79)
endef
define Device/netgear_ex6400
$(Device/netgear_ex7300_ex6400)
DEVICE_TITLE := NETGEAR EX6400
endef
TARGET_DEVICES += netgear_ex6400
define Device/netgear_ex7300
$(Device/netgear_ex7300_ex6400)
DEVICE_TITLE := NETGEAR EX7300
endef
TARGET_DEVICES += netgear_ex7300
define Device/netgear_wndr3700
$(Device/netgear_wndr3x00)
DEVICE_TITLE := NETGEAR WNDR3700
NETGEAR_KERNEL_MAGIC := 0x33373030
NETGEAR_BOARD_ID := WNDR3700
IMAGE_SIZE := 7680k
IMAGES += factory-NA.img
IMAGE/factory-NA.img := $$(IMAGE/default) | netgear-dni NA | check-size $$$$(IMAGE_SIZE)
SUPPORTED_DEVICES += wndr3700
endef
TARGET_DEVICES += netgear_wndr3700
define Device/netgear_wndr3700v2
$(Device/netgear_wndr3x00)
DEVICE_TITLE := NETGEAR WNDR3700v2
NETGEAR_KERNEL_MAGIC := 0x33373031
NETGEAR_BOARD_ID := WNDR3700v2
NETGEAR_HW_ID := 29763654+16+64
IMAGE_SIZE := 15872k
SUPPORTED_DEVICES += wndr3700
endef
TARGET_DEVICES += netgear_wndr3700v2
define Device/pisen_wmm003n
$(Device/tplink-8mlzma)
ATH_SOC := ar9331
DEVICE_TITLE := Pisen WMM003N (Cloud Easy Power)
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-usb-chipidea2
TPLINK_HWID := 0x07030101
endef
TARGET_DEVICES += pisen_wmm003n
define Device/netgear_wndr3800
$(Device/netgear_wndr3x00)
DEVICE_TITLE := NETGEAR WNDR3800
NETGEAR_KERNEL_MAGIC := 0x33373031
NETGEAR_BOARD_ID := WNDR3800
NETGEAR_HW_ID := 29763654+16+128
IMAGE_SIZE := 15872k
SUPPORTED_DEVICES += wndr3700
endef
TARGET_DEVICES += netgear_wndr3800
define Device/phicomm_k2t
ATH_SOC := qca9563
DEVICE_TITLE := Phicomm K2T
IMAGE_SIZE := 15744k
IMAGE/sysupgrade.bin := append-kernel | append-rootfs | pad-rootfs | append-metadata | check-size $$$$(IMAGE_SIZE)
DEVICE_PACKAGES := kmod-leds-reset kmod-ath10k-ct-smallbuffers ath10k-firmware-qca9888-ct
endef
TARGET_DEVICES += phicomm_k2t
define Device/rosinson_wr818
ATH_SOC := qca9563
DEVICE_TITLE := ROSINSON WR818
IMAGE_SIZE := 15872k
DEVICE_PACKAGES := kmod-usb-core kmod-usb2 kmod-usb-ledtrig-usbport
endef
TARGET_DEVICES += rosinson_wr818
define Device/wd_mynet-n750
$(Device/seama)
ATH_SOC := ar9344
DEVICE_TITLE := Western Digital My Net N750
IMAGE_SIZE := 15872k
DEVICE_PACKAGES := kmod-usb-core kmod-usb2
SEAMA_SIGNATURE := wrgnd13_wd_av
SUPPORTED_DEVICES += mynet-n750
endef
TARGET_DEVICES += wd_mynet-n750
define Device/wd_mynet-wifi-rangeextender
ATH_SOC := ar9344
DEVICE_TITLE := Western Digital My Net Wi-Fi Range Extender
DEVICE_PACKAGES := rssileds nvram -swconfig
IMAGE_SIZE := 7808k
ADDPATTERN_ID := mynet-rext
ADDPATTERN_VERSION := 1.00.01
IMAGE/sysupgrade.bin := append-rootfs | pad-rootfs | cybertan-trx | \
addpattern | append-metadata
SUPPORTED_DEVICES += mynet-rext
endef
TARGET_DEVICES += wd_mynet-wifi-rangeextender
define Device/winchannel_wb2000
ATH_SOC := ar9344
DEVICE_TITLE := Winchannel WB2000
IMAGE_SIZE := 15872k
DEVICE_PACKAGES := kmod-i2c-core kmod-i2c-gpio kmod-rtc-ds1307 kmod-usb2 kmod-usb-ledtrig-usbport
endef
TARGET_DEVICES += winchannel_wb2000
define Device/xiaomi_mi-router-4q
ATH_SOC := qca9561
DEVICE_TITLE := Xiaomi Mi Router 4Q
IMAGE_SIZE := 14336k
endef
TARGET_DEVICES += xiaomi_mi-router-4q
define Device/yuncore_a770
ATH_SOC := qca9531
DEVICE_TITLE := YunCore A770
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca9887-ct
IMAGE_SIZE := 16000k
IMAGES += tftp.bin
IMAGE/tftp.bin := $$(IMAGE/sysupgrade.bin) | yuncore-tftp-header-16m
endef
TARGET_DEVICES += yuncore_a770
ath79: Add support for ZBT-WD323 ZBT-WD323 is a dual-LTE router based on AR9344. The detailed specifications are: * AR9344 560MHz/450MHz/225MHz (CPU/DDR/AHN). * 128 MB RAM * 16MB of flash(SPI-NOR, 22MHz) * 1x 2.4GHz wifi (Atheros AR9340) * 3x 10/100Mbos Ethernet (AR8229) * 1x USB2.0 port * 2x miniPCIe-slots (USB2.0 only) * 2x SIM slots (standard size) * 4x LEDs (1 gpio controlled) * 1x reset button * 1x 10 pin terminal block (RS232, RS485, 4x GPIO) * 2x CP210x UART bridge controllers (used for RS232 and RS485) * 1x 2 pin 5mm industrial interface (input voltage 12V~36V) * 1x DC jack * 1x RTC (PCF8563) Tested: - Ethernet switch - Wifi - USB port - MiniPCIe-slots (+ SIM slots) - Sysupgrade - Reset button - RS232 Intallation and recovery: The board ships with OpenWRT, but sysupgrade does not work as a different firmware format than what is expected is generated. The easiest way to install (and recover) the router, is to use the web-interface provided by the bootloader (Breed). While the interface is in Chinese, it is easy to use. First, in order to access the interface, you need to hold down the reset button for around five seconds. Then, go to 192.168.1.1 in your browser. Click on the second item in the list on the left to access the recovery page. The second item on the next page is where you select the firmware. Select the menu item containing "Atheros SDK" and "16MB" in the dropdown close to the buttom, and click on the button at the bottom to start installation/recovery. Notes: * RS232 is available on /dev/ttyUSB0 and RS485 on /dev/ttyUSB1 Signed-off-by: Kristian Evensen <kristian.evensen@gmail.com> [removed unused poll-interval from gpio-keys, i2c-gpio 4.19 compat] Signed-off-by: Petr Štetiar <ynezz@true.cz>
2019-05-31 13:43:14 +00:00
ath79: add support for YunCore XD4200 and A782 YunCore XD4200 ('XD4200_W6.0' marking on PCB) is Qualcomm/Atheros based (QCA9563, QCA9886, QCA8334) dual-band, Wave-2 AC1200 ceiling AP with PoE (802.3at) support. A782 model ('T750_V5.1' marking on PCB) is a smaller version of the XD4200, with similar specification but lower TX power. Specification: - QCA9563 (775 MHz) - 128 MB of RAM (DDR2) - 16 MB of FLASH (SPI NOR) - 2x 10/100/1000 Mbps Ethernet (QCA8334), with 802.3at PoE support (WAN) - Wi-Fi 2.4 GHz: - XD4200: 2T2R (QCA9563), with ext. PA (SKY65174-21) and LNA - A782: 2T2R (QCA9563), with ext. FEM (SKY85329-11) - Wi-Fi 5 GHz: - XD4200: 2T2R (QCA9886), with ext. FEM (SKY85728-11) - A782: 2T2R (QCA9886), with ext. FEM (SKY85735-11) - LEDs: - XD4200: 5x (2x driven by SOC, 1x driven by AC radio, 2x Ethernet) - A782: 3x (1x RGB, driven by SOC and radio, 2x Ethernet) - 1x button (reset) - 1x UART (4-pin, 2.54 mm pitch) header on PCB - 1x DC jack (12 V) Flash instructions: If your device comes with generic QSDK based firmware, you can login over telnet (login: root, empty password, default IP: 192.168.188.253), issue first (important!) 'fw_setenv' command and then perform regular upgrade, using 'sysupgrade -n -F ...' (you can use 'wget' to download image to the device, SSH server is not available): fw_setenv bootcmd "bootm 0x9f050000 || bootm 0x9fe80000" sysupgrade -n -F openwrt-...-yuncore_...-squashfs-sysupgrade.bin In case your device runs firmware with YunCore custom GUI, you can use U-Boot recovery mode: 1. Set a static IP 192.168.0.141/24 on PC and start TFTP server with 'tftp' image renamed to 'upgrade.bin' 2. Power the device with reset button pressed and release it after 5-7 seconds, recovery mode should start downloading image from server (unfortunately, there is no visible indication that recovery got enabled - in case of problems check TFTP server logs) Signed-off-by: Piotr Dymacz <pepe2k@gmail.com> (backported from commit e5d4c0966736287c7ade29c5ccaf6f1ad841b7db)
2019-11-12 21:36:28 +00:00
define Device/yuncore_a782
ATH_SOC := qca9563
DEVICE_TITLE := YunCore A782
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca9888-ct
IMAGE_SIZE := 16000k
IMAGES += tftp.bin
IMAGE/tftp.bin := $$(IMAGE/sysupgrade.bin) | yuncore-tftp-header-16m
endef
TARGET_DEVICES += yuncore_a782
define Device/yuncore_xd4200
ATH_SOC := qca9563
DEVICE_TITLE := YunCore XD4200
DEVICE_PACKAGES := kmod-ath10k-ct ath10k-firmware-qca9888-ct
IMAGE_SIZE := 16000k
IMAGES += tftp.bin
IMAGE/tftp.bin := $$(IMAGE/sysupgrade.bin) | yuncore-tftp-header-16m
endef
TARGET_DEVICES += yuncore_xd4200
ath79: Add support for ZBT-WD323 ZBT-WD323 is a dual-LTE router based on AR9344. The detailed specifications are: * AR9344 560MHz/450MHz/225MHz (CPU/DDR/AHN). * 128 MB RAM * 16MB of flash(SPI-NOR, 22MHz) * 1x 2.4GHz wifi (Atheros AR9340) * 3x 10/100Mbos Ethernet (AR8229) * 1x USB2.0 port * 2x miniPCIe-slots (USB2.0 only) * 2x SIM slots (standard size) * 4x LEDs (1 gpio controlled) * 1x reset button * 1x 10 pin terminal block (RS232, RS485, 4x GPIO) * 2x CP210x UART bridge controllers (used for RS232 and RS485) * 1x 2 pin 5mm industrial interface (input voltage 12V~36V) * 1x DC jack * 1x RTC (PCF8563) Tested: - Ethernet switch - Wifi - USB port - MiniPCIe-slots (+ SIM slots) - Sysupgrade - Reset button - RS232 Intallation and recovery: The board ships with OpenWRT, but sysupgrade does not work as a different firmware format than what is expected is generated. The easiest way to install (and recover) the router, is to use the web-interface provided by the bootloader (Breed). While the interface is in Chinese, it is easy to use. First, in order to access the interface, you need to hold down the reset button for around five seconds. Then, go to 192.168.1.1 in your browser. Click on the second item in the list on the left to access the recovery page. The second item on the next page is where you select the firmware. Select the menu item containing "Atheros SDK" and "16MB" in the dropdown close to the buttom, and click on the button at the bottom to start installation/recovery. Notes: * RS232 is available on /dev/ttyUSB0 and RS485 on /dev/ttyUSB1 Signed-off-by: Kristian Evensen <kristian.evensen@gmail.com> [removed unused poll-interval from gpio-keys, i2c-gpio 4.19 compat] Signed-off-by: Petr Štetiar <ynezz@true.cz>
2019-05-31 13:43:14 +00:00
define Device/zbtlink_zbt-wd323
ATH_SOC := ar9344
DEVICE_TITLE := ZBT WD323
IMAGE_SIZE := 16000k
DEVICE_PACKAGES := kmod-usb2 kmod-i2c-core kmod-i2c-gpio kmod-rtc-pcf8563 \
kmod-usb-serial kmod-usb-serial-cp210x uqmi
endef
TARGET_DEVICES += zbtlink_zbt-wd323