2021-02-10 13:52:34 +00:00
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# SPDX-License-Identifier: GPL-2.0-only
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2020-09-13 07:06:13 +00:00
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include $(TOPDIR)/rules.mk
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include $(INCLUDE_DIR)/image.mk
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KERNEL_LOADADDR = 0x80000000
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KERNEL_ENTRY = 0x80000400
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2021-03-22 19:58:16 +00:00
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DEVICE_VARS += ZYXEL_VERS
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realtek: build ZyXEL vendor firmware compatible initramfs
Append a device specific version trailer used by the stock
firmware upgrade application to validate firmwares.
The trailer contains a list of ZyXEL firmware version
numbers, which includes a four letter hardware identifier.
The stock web UI requires that the current hardware matches
one of the listed versions, and that the version number is
larger than a model specific minimum value. The minimum
version varies between V1.00 and V2.60 for the currently
known GS1900 models. The number is not used anywhere else
to our knowlege, and has no direct relation to the version
info in the u-image header. We can therefore use an
arbitrary value larger than V2.60.
The stock firmware upgrade application will only load and
flash the part of the file specified in the u-image header,
regardless of file size. It can therefore not be used to
flash images with an appended rootfs. There is therefore no
need to include the trailer in other images than the
initramfs. This prevents accidentally bricking by attempts
to flash other images from the stock web UI.
Stock images support all models in the series, listing
all of them in the version trailer. OpenWrt provide model
specific images. We therefore only list the single supported
hardware identifier for each image. This eliminates the risk
of flashing the wrong OpenWrt image from stock web UI.
OpenWrt can be installed from stock firmware in two steps:
1) flash OpenWrt initramfs image from stock web gui
2) boot OpenWrt and sysupgrade to a squasfs image
The OpenWrt squashfs image depends on a static partition
map in the DTS. It can only be installed to the "firmware"
partition. This partition is labeled "RUNTIME1" in u-boot
and in stock firmware, and is referred to as "image 0" in
the stock flash management tool. The OpenWrt initramfs
can be installed and run from either partitions. But if
you want to keep stock irmware in the spare system partition,
then you must make sure stock firmware is installed to the
"RUNTIME2" partition referred to as "image 1" in the stock
web UI. And the initial OpenWrt initramfs must be flashed
to "RUNTIME1"/"image 0".
The stock flash management application supports direct
selection of both which partition to flash and which
partition to boot next. This allows software controlled
"dual-boot" between OpenWrt and stock firmware, without
using console access to u-boot. u-boot use the "bootpartition"
variable stored in the second u-boot environment to select
which of the two system partitions to boot. This variable
is set by the stock flash management application, by direct
user input. It can also be set in OpenWrt using e.g
fw_setsys bootpartition 1
to select "RUNTIME2"/"image 1" as default, assuming a
stock firmware version is installed in that partition.
Signed-off-by: Bjørn Mork <bjorn@mork.no>
2021-01-23 10:08:12 +00:00
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define Build/zyxel-vers
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( echo VERS;\
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2021-06-24 21:04:08 +00:00
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for hw in $(ZYXEL_VERS); do\
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realtek: build ZyXEL vendor firmware compatible initramfs
Append a device specific version trailer used by the stock
firmware upgrade application to validate firmwares.
The trailer contains a list of ZyXEL firmware version
numbers, which includes a four letter hardware identifier.
The stock web UI requires that the current hardware matches
one of the listed versions, and that the version number is
larger than a model specific minimum value. The minimum
version varies between V1.00 and V2.60 for the currently
known GS1900 models. The number is not used anywhere else
to our knowlege, and has no direct relation to the version
info in the u-image header. We can therefore use an
arbitrary value larger than V2.60.
The stock firmware upgrade application will only load and
flash the part of the file specified in the u-image header,
regardless of file size. It can therefore not be used to
flash images with an appended rootfs. There is therefore no
need to include the trailer in other images than the
initramfs. This prevents accidentally bricking by attempts
to flash other images from the stock web UI.
Stock images support all models in the series, listing
all of them in the version trailer. OpenWrt provide model
specific images. We therefore only list the single supported
hardware identifier for each image. This eliminates the risk
of flashing the wrong OpenWrt image from stock web UI.
OpenWrt can be installed from stock firmware in two steps:
1) flash OpenWrt initramfs image from stock web gui
2) boot OpenWrt and sysupgrade to a squasfs image
The OpenWrt squashfs image depends on a static partition
map in the DTS. It can only be installed to the "firmware"
partition. This partition is labeled "RUNTIME1" in u-boot
and in stock firmware, and is referred to as "image 0" in
the stock flash management tool. The OpenWrt initramfs
can be installed and run from either partitions. But if
you want to keep stock irmware in the spare system partition,
then you must make sure stock firmware is installed to the
"RUNTIME2" partition referred to as "image 1" in the stock
web UI. And the initial OpenWrt initramfs must be flashed
to "RUNTIME1"/"image 0".
The stock flash management application supports direct
selection of both which partition to flash and which
partition to boot next. This allows software controlled
"dual-boot" between OpenWrt and stock firmware, without
using console access to u-boot. u-boot use the "bootpartition"
variable stored in the second u-boot environment to select
which of the two system partitions to boot. This variable
is set by the stock flash management application, by direct
user input. It can also be set in OpenWrt using e.g
fw_setsys bootpartition 1
to select "RUNTIME2"/"image 1" as default, assuming a
stock firmware version is installed in that partition.
Signed-off-by: Bjørn Mork <bjorn@mork.no>
2021-01-23 10:08:12 +00:00
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echo -n "V9.99($$hw.0) | ";\
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date -d @$(SOURCE_DATE_EPOCH) +%m/%d/%Y;\
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done ) >> $@
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endef
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2020-09-13 07:06:13 +00:00
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define Device/Default
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PROFILES = Default
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KERNEL := kernel-bin | append-dtb | gzip | uImage gzip
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KERNEL_INITRAMFS := kernel-bin | append-dtb | gzip | uImage gzip
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2021-08-11 11:23:06 +00:00
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DEVICE_DTS_DIR := ../dts-$(KERNEL_PATCHVER)
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2020-09-13 07:06:13 +00:00
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DEVICE_DTS = $$(SOC)_$(1)
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IMAGES := sysupgrade.bin
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IMAGE/sysupgrade.bin := append-kernel | pad-to 64k | append-rootfs | pad-rootfs | \
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2021-06-20 16:54:36 +00:00
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check-size | append-metadata
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2020-09-13 07:06:13 +00:00
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endef
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2021-01-09 05:21:15 +00:00
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# "NGE" refers to the uImage magic
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define Device/netgear_nge
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KERNEL := kernel-bin | append-dtb | lzma | uImage lzma
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KERNEL_INITRAMFS := kernel-bin | append-dtb | lzma | uImage lzma
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SOC := rtl8380
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IMAGE_SIZE := 14848k
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UIMAGE_MAGIC := 0x4e474520
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DEVICE_VENDOR := NETGEAR
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endef
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2020-09-13 07:06:13 +00:00
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define Device/allnet_all-sg8208m
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SOC := rtl8382
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IMAGE_SIZE := 7168k
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DEVICE_VENDOR := ALLNET
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DEVICE_MODEL := ALL-SG8208M
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UIMAGE_MAGIC := 0x00000006
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2020-11-04 09:21:17 +00:00
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UIMAGE_NAME := 2.2.2.0
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2020-09-13 07:06:13 +00:00
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endef
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TARGET_DEVICES += allnet_all-sg8208m
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2020-11-04 09:39:42 +00:00
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define Device/d-link_dgs-1210
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2020-10-15 11:36:10 +00:00
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SOC := rtl8382
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IMAGE_SIZE := 13824k
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DEVICE_VENDOR := D-Link
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endef
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2020-10-19 12:47:45 +00:00
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define Device/d-link_dgs-1210-10p
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2020-11-04 09:39:42 +00:00
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$(Device/d-link_dgs-1210)
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2020-10-19 12:47:45 +00:00
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DEVICE_MODEL := DGS-1210-10P
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2020-11-04 09:39:42 +00:00
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DEVICE_PACKAGES += lua-rs232
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2020-10-19 12:47:45 +00:00
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endef
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TARGET_DEVICES += d-link_dgs-1210-10p
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2020-11-04 09:39:42 +00:00
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define Device/d-link_dgs-1210-16
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$(Device/d-link_dgs-1210)
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DEVICE_MODEL := DGS-1210-16
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endef
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TARGET_DEVICES += d-link_dgs-1210-16
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2020-11-04 10:37:42 +00:00
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define Device/d-link_dgs-1210-28
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$(Device/d-link_dgs-1210)
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DEVICE_MODEL := DGS-1210-28
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endef
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TARGET_DEVICES += d-link_dgs-1210-28
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2020-11-26 11:02:21 +00:00
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realtek: add support for INABA Abaniact AML2-17GP
INABA Abaniact AML2-17GP is a 17 port gigabit switch, based on RTL8382.
Specification:
- SoC : Realtek RTL8382
- RAM : DDR3 128 MiB (SK hynix H5TQ1G63EFR)
- Flash : SPI-NOR 32 MiB (Macronix MX25L25635FZ2I-10G)
- Ethernet : 10/100/1000 Mbps x17
- port 1-8 : RTL8218B (SoC)
- port 8-16 : RTL8218D
- port wan : RTL8214FC
- LEDs/Keys : 1x, 1x
- UART : pin header on PCB (Molex 530470410 compatible)
- J14: 3.3V, GND, RX, TX from rear side
- 115200n8
- Power : 100-240 VAC, 50/60 Hz, 0.21 A
- Plug : IEC 60320-C13
Flash instruction using initramfs image:
1. Boot AML2-17GP normally
2. Set the IP address of computer to the range of 192.168.1.0/24, other
than 192.168.1.248 and connect computer to "WAN/CONSOLE" port of
AML2-17GP
3. Access to "http://192.168.1.248" and open firmware setting page
-- UI Language: 日本語 --
"メンテナンス" -> "デュアルイメージ"
-- UI Language: ENGLISH --
"Maintenance" -> "Dual Image"
4. Check "イメージ情報 (en: "Images Information")" and set the first
image to active by choosing "アクティブイメージ" (en: "Active
Image") in the partition "0"
5. open firmware upgrade page
-- UI Language: 日本語 --
"メンテナンス" -> "アップグレードマネージャー"
-- UI Language: ENGLISH --
"Maintenance" -> "Upgrade Manager"
6. Set the properties as follows
-- UI Language: 日本語 --
"アップグレード方式" : "HTTP"
"アップグレードタイプ" : "イメージ"
"イメージ" : "アクティブ"
"ブラウズファイル" : (select the OpenWrt initramfs image)
-- UI Language: ENGLISH --
"Upgrade Method" : "HTTP"
"Upgrade Type" : "Image"
"Image" : "(Active)"
"Browse file" : (select the OpenWrt initramfs image)
7. Press "アップグレード" (en: "Upgrade") button and perform upgrade
8. Wait ~150 seconds to complete flashing
9. After the flashing, the following message is showed and press "OK"
button to reboot
-- UI Language: 日本語 --
"成功!! 今すぐリブートしますか?"
-- UI Language: ENGLISH --
"Success!! Do you want to reboot now?"
10. After the rebooting, reconnect the cable to other port (1-16) and
open the SSH connection, download the sysupgrade image to the device
and perform sysupgrade with it
11. Wait ~120 seconds to complete sysupgrade
Note:
- The uploaded image via WebUI will only be written with the length
embedded in the uImage header. If the sysupgrade image is specified,
only the kernel is flashed and lacks the rootfs, this causes a kernel
panic while booting and bootloops.
To avoid this issue, initramfs image is required for flashing on WebUI
of stock firmware.
- This device has 1x LED named as "POWER", but it's not connected to the
GPIO of SoC and cannot be controlled.
- port 17 is named as "WAN/CONSOLE". This port is for the upstream
connection and console access (telnet/WebUI) on stock firmware.
Back to stock firmware:
1. Set "bootpartition" variable in u-boot-env2 partition to "1" by
fw_setsys
fw_setsys bootpartition 1
2. Reboot AML2-17GP
Signed-off-by: INAGAKI Hiroshi <musashino.open@gmail.com>
2020-09-16 05:11:05 +00:00
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define Device/inaba_aml2-17gp
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SOC := rtl8382
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IMAGE_SIZE := 13504k
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DEVICE_VENDOR := INABA
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DEVICE_MODEL := Abaniact AML2-17GP
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UIMAGE_MAGIC := 0x83800000
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endef
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TARGET_DEVICES += inaba_aml2-17gp
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2021-01-09 05:35:47 +00:00
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define Device/netgear_gs108t-v3
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$(Device/netgear_nge)
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DEVICE_MODEL := GS108T
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DEVICE_VARIANT := v3
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endef
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TARGET_DEVICES += netgear_gs108t-v3
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2020-11-26 11:02:21 +00:00
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define Device/netgear_gs110tpp-v1
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2021-01-09 05:21:15 +00:00
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$(Device/netgear_nge)
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DEVICE_MODEL := GS110TPP
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2020-11-26 11:02:21 +00:00
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DEVICE_VARIANT := v1
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endef
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TARGET_DEVICES += netgear_gs110tpp-v1
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2021-05-05 16:11:44 +00:00
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define Device/netgear_gs308t-v1
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$(Device/netgear_nge)
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DEVICE_MODEL := GS308T
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DEVICE_VARIANT := v1
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UIMAGE_MAGIC := 0x4e474335
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endef
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TARGET_DEVICES += netgear_gs308t-v1
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define Device/netgear_gs310tp-v1
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$(Device/netgear_nge)
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DEVICE_MODEL := GS310TP
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DEVICE_VARIANT := v1
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UIMAGE_MAGIC := 0x4e474335
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DEVICE_PACKAGES += lua-rs232
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endef
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TARGET_DEVICES += netgear_gs310tp-v1
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2021-02-24 21:03:39 +00:00
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define Device/zyxel_gs1900
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2020-12-01 16:13:39 +00:00
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SOC := rtl8380
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IMAGE_SIZE := 6976k
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2021-01-06 21:45:19 +00:00
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DEVICE_VENDOR := ZyXEL
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2021-01-23 10:08:11 +00:00
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UIMAGE_MAGIC := 0x83800000
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2021-06-24 21:04:08 +00:00
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KERNEL_INITRAMFS := kernel-bin | append-dtb | gzip | zyxel-vers | \
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2021-02-24 21:03:39 +00:00
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uImage gzip
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endef
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define Device/zyxel_gs1900-10hp
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$(Device/zyxel_gs1900)
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DEVICE_MODEL := GS1900-10HP
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ZYXEL_VERS := AAZI
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2020-12-01 16:13:39 +00:00
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endef
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TARGET_DEVICES += zyxel_gs1900-10hp
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realtek: Add ZyXEL GS1900-8
The ZyXEL GS1900-8 is a 8 port switch without any PoE functionality or
SFP ports, but otherwise similar to the other GS1900 switches.
Specifications
--------------
* Device: ZyXEL GS1900-8 v1.2
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Nanya NT5TU128M8GE-AC 128 MiB DDR2 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* LEDs: 1 PWR LED (green, not configurable)
1 SYS LED (green, configurable)
8 ethernet port status LEDs (green, SoC controlled)
* Buttons: 1 on-off glide switch at the back (not configurable)
1 reset button at the right side, behind the air-vent
(not configurable)
1 reset button on front panel (configurable)
* Power 12V 1A barrel connector
* UART: 1 serial header (JP2) with populated standard pin connector on
the left side of the PCB, towards the back. Pins are labelled:
+ VCC (3.3V)
+ TX (really RX)
+ RX (really TX)
+ GND
the labelling is done from the usb2serial connector's point of
view, so RX/ TX are mixed up.
Serial connection parameters for both devices: 115200 8N1.
Installation
------------
Instructions are identical to those for the GS1900-10HP and GS1900-8HP.
* Configure your client with a static 192.168.1.x IP (e.g. 192.168.1.10).
* Set up a TFTP server on your client and make it serve the initramfs
image.
* Connect serial, power up the switch, interrupt U-boot by hitting the
space bar, and enable the network:
> rtk network on
* Since the GS1900-10HP is a dual-partition device, you want to keep the
OEM firmware on the backup partition for the time being. OpenWrt can
only boot off the first partition anyway (hardcoded in the DTS). To
make sure we are manipulating the first partition, issue the following
commands:
> setsys bootpartition 0
> savesys
* Download the image onto the device and boot from it:
> tftpboot 0x84f00000 192.168.1.10:openwrt-realtek-generic-zyxel_gs1900-8-initramfs-kernel.bin
> bootm
* Once OpenWrt has booted, scp the sysupgrade image to /tmp and flash it:
> sysupgrade /tmp/openwrt-realtek-generic-zyxel_gs1900-8-squashfs-sysupgrade.bin
Signed-off-by: Hauke Mehrtens <hauke@hauke-m.de>
2021-01-27 21:16:11 +00:00
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define Device/zyxel_gs1900-8
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$(Device/zyxel_gs1900)
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DEVICE_MODEL := GS1900-8
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ZYXEL_VERS := AAHH
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endef
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TARGET_DEVICES += zyxel_gs1900-8
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realtek: add support for ZyXEL GS1900-8HP v1 and v2
The ZyXEL GS1900-8HP is an 8 port gigabit switch with PoE+ support.
There are two versions on the market (v1 & v2) which share similar
specs (same flash size and flash layout, same RAM size, same PoE+ power
envelope) but have a different case and board layout that they each
share with other GS1900 siblings.
The v1 seems to share its PCB and case with non-PoE GS1900-8; as such,
adding support for the GS1900-8 would probably be trivial. The v2 seems
to share its casing and platform with its already supported bigger
brother, the GS1900-10HP - its board looks the same, except for two
holes where the GS1900-10 has its SFP ports.
Like their 10 port sibling, both devices have a dual firmware layout.
Both GS1900-8HP boards have the same 70W PoE+ power budget. In order to
manipulate the PoE+, one needs the rtl83xx-poe package [1].
After careful consideration it was decided to go with separate images
for each version.
Specifications (v1)
-------------------
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Nanya NT5TU128M8HE-AC 128 MiB DDR2 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* PoE+: Broadcom BCM59111KMLG (IEEE 802.3at-2009 compliant, 2x)
* UART: 1 serial header with populated standard pin connector on the
left side of the PCB, towards the bottom. Pins are labeled:
+ VCC (3.3V)
+ TX
+ RX
+ GND
Specifications (v2)
-------------------
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Samsung K4B1G0846G 128 MiB DDR3 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* PoE+: Broadcom BCM59121B0KMLG (IEEE 802.3at-2009 compliant)
* UART: 1 angled serial header with populated standard pin connector
accessible from outside through the ventilation slits on the
side. Pins from top to bottom are clearly marked on the PCB:
+ VCC (3.3V)
+ TX
+ RX
+ GND
Serial connection parameters for both devices: 115200 8N1.
Installation
------------
Instructions are identical to those for the GS1900-10HP and apply both
to the GS1900-8HP v1 and v2 as well.
* Configure your client with a static 192.168.1.x IP (e.g. 192.168.1.10).
* Set up a TFTP server on your client and make it serve the initramfs
image.
* Connect serial, power up the switch, interrupt U-boot by hitting the
space bar, and enable the network:
> rtk network on
* Since the GS1900-10HP is a dual-partition device, you want to keep the
OEM firmware on the backup partition for the time being. OpenWrt can
only boot off the first partition anyway (hardcoded in the DTS). To
make sure we are manipulating the first partition, issue the following
commands:
> setsys bootpartition 0
> savesys
* Download the image onto the device and boot from it:
> tftpboot 0x84f00000 192.168.1.10:openwrt-realtek-generic-zyxel_gs1900-8hp-v{1,2}-initramfs-kernel.bin
> bootm
* Once OpenWrt has booted, scp the sysupgrade image to /tmp and flash it:
> sysupgrade /tmp//tmp/openwrt-realtek-generic-zyxel_gs1900-8hp-v{1,2}-squashfs-sysupgrade.bin
Signed-off-by: Stijn Segers <foss@volatilesystems.org>
[merge PoE case, keep device definitions separate, change all those
hashes in the commit message to something else so they don't get
removed when changing the commit ...]
Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2021-01-08 13:32:48 +00:00
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define Device/zyxel_gs1900-8hp-v1
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2021-02-24 21:03:39 +00:00
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$(Device/zyxel_gs1900)
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realtek: add support for ZyXEL GS1900-8HP v1 and v2
The ZyXEL GS1900-8HP is an 8 port gigabit switch with PoE+ support.
There are two versions on the market (v1 & v2) which share similar
specs (same flash size and flash layout, same RAM size, same PoE+ power
envelope) but have a different case and board layout that they each
share with other GS1900 siblings.
The v1 seems to share its PCB and case with non-PoE GS1900-8; as such,
adding support for the GS1900-8 would probably be trivial. The v2 seems
to share its casing and platform with its already supported bigger
brother, the GS1900-10HP - its board looks the same, except for two
holes where the GS1900-10 has its SFP ports.
Like their 10 port sibling, both devices have a dual firmware layout.
Both GS1900-8HP boards have the same 70W PoE+ power budget. In order to
manipulate the PoE+, one needs the rtl83xx-poe package [1].
After careful consideration it was decided to go with separate images
for each version.
Specifications (v1)
-------------------
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Nanya NT5TU128M8HE-AC 128 MiB DDR2 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* PoE+: Broadcom BCM59111KMLG (IEEE 802.3at-2009 compliant, 2x)
* UART: 1 serial header with populated standard pin connector on the
left side of the PCB, towards the bottom. Pins are labeled:
+ VCC (3.3V)
+ TX
+ RX
+ GND
Specifications (v2)
-------------------
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Samsung K4B1G0846G 128 MiB DDR3 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* PoE+: Broadcom BCM59121B0KMLG (IEEE 802.3at-2009 compliant)
* UART: 1 angled serial header with populated standard pin connector
accessible from outside through the ventilation slits on the
side. Pins from top to bottom are clearly marked on the PCB:
+ VCC (3.3V)
+ TX
+ RX
+ GND
Serial connection parameters for both devices: 115200 8N1.
Installation
------------
Instructions are identical to those for the GS1900-10HP and apply both
to the GS1900-8HP v1 and v2 as well.
* Configure your client with a static 192.168.1.x IP (e.g. 192.168.1.10).
* Set up a TFTP server on your client and make it serve the initramfs
image.
* Connect serial, power up the switch, interrupt U-boot by hitting the
space bar, and enable the network:
> rtk network on
* Since the GS1900-10HP is a dual-partition device, you want to keep the
OEM firmware on the backup partition for the time being. OpenWrt can
only boot off the first partition anyway (hardcoded in the DTS). To
make sure we are manipulating the first partition, issue the following
commands:
> setsys bootpartition 0
> savesys
* Download the image onto the device and boot from it:
> tftpboot 0x84f00000 192.168.1.10:openwrt-realtek-generic-zyxel_gs1900-8hp-v{1,2}-initramfs-kernel.bin
> bootm
* Once OpenWrt has booted, scp the sysupgrade image to /tmp and flash it:
> sysupgrade /tmp//tmp/openwrt-realtek-generic-zyxel_gs1900-8hp-v{1,2}-squashfs-sysupgrade.bin
Signed-off-by: Stijn Segers <foss@volatilesystems.org>
[merge PoE case, keep device definitions separate, change all those
hashes in the commit message to something else so they don't get
removed when changing the commit ...]
Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2021-01-08 13:32:48 +00:00
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DEVICE_MODEL := GS1900-8HP
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DEVICE_VARIANT := v1
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2021-02-24 21:03:39 +00:00
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ZYXEL_VERS := AAHI
|
realtek: add support for ZyXEL GS1900-8HP v1 and v2
The ZyXEL GS1900-8HP is an 8 port gigabit switch with PoE+ support.
There are two versions on the market (v1 & v2) which share similar
specs (same flash size and flash layout, same RAM size, same PoE+ power
envelope) but have a different case and board layout that they each
share with other GS1900 siblings.
The v1 seems to share its PCB and case with non-PoE GS1900-8; as such,
adding support for the GS1900-8 would probably be trivial. The v2 seems
to share its casing and platform with its already supported bigger
brother, the GS1900-10HP - its board looks the same, except for two
holes where the GS1900-10 has its SFP ports.
Like their 10 port sibling, both devices have a dual firmware layout.
Both GS1900-8HP boards have the same 70W PoE+ power budget. In order to
manipulate the PoE+, one needs the rtl83xx-poe package [1].
After careful consideration it was decided to go with separate images
for each version.
Specifications (v1)
-------------------
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Nanya NT5TU128M8HE-AC 128 MiB DDR2 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* PoE+: Broadcom BCM59111KMLG (IEEE 802.3at-2009 compliant, 2x)
* UART: 1 serial header with populated standard pin connector on the
left side of the PCB, towards the bottom. Pins are labeled:
+ VCC (3.3V)
+ TX
+ RX
+ GND
Specifications (v2)
-------------------
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Samsung K4B1G0846G 128 MiB DDR3 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* PoE+: Broadcom BCM59121B0KMLG (IEEE 802.3at-2009 compliant)
* UART: 1 angled serial header with populated standard pin connector
accessible from outside through the ventilation slits on the
side. Pins from top to bottom are clearly marked on the PCB:
+ VCC (3.3V)
+ TX
+ RX
+ GND
Serial connection parameters for both devices: 115200 8N1.
Installation
------------
Instructions are identical to those for the GS1900-10HP and apply both
to the GS1900-8HP v1 and v2 as well.
* Configure your client with a static 192.168.1.x IP (e.g. 192.168.1.10).
* Set up a TFTP server on your client and make it serve the initramfs
image.
* Connect serial, power up the switch, interrupt U-boot by hitting the
space bar, and enable the network:
> rtk network on
* Since the GS1900-10HP is a dual-partition device, you want to keep the
OEM firmware on the backup partition for the time being. OpenWrt can
only boot off the first partition anyway (hardcoded in the DTS). To
make sure we are manipulating the first partition, issue the following
commands:
> setsys bootpartition 0
> savesys
* Download the image onto the device and boot from it:
> tftpboot 0x84f00000 192.168.1.10:openwrt-realtek-generic-zyxel_gs1900-8hp-v{1,2}-initramfs-kernel.bin
> bootm
* Once OpenWrt has booted, scp the sysupgrade image to /tmp and flash it:
> sysupgrade /tmp//tmp/openwrt-realtek-generic-zyxel_gs1900-8hp-v{1,2}-squashfs-sysupgrade.bin
Signed-off-by: Stijn Segers <foss@volatilesystems.org>
[merge PoE case, keep device definitions separate, change all those
hashes in the commit message to something else so they don't get
removed when changing the commit ...]
Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2021-01-08 13:32:48 +00:00
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DEVICE_PACKAGES += lua-rs232
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endef
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TARGET_DEVICES += zyxel_gs1900-8hp-v1
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define Device/zyxel_gs1900-8hp-v2
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2021-02-24 21:03:39 +00:00
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$(Device/zyxel_gs1900)
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realtek: add support for ZyXEL GS1900-8HP v1 and v2
The ZyXEL GS1900-8HP is an 8 port gigabit switch with PoE+ support.
There are two versions on the market (v1 & v2) which share similar
specs (same flash size and flash layout, same RAM size, same PoE+ power
envelope) but have a different case and board layout that they each
share with other GS1900 siblings.
The v1 seems to share its PCB and case with non-PoE GS1900-8; as such,
adding support for the GS1900-8 would probably be trivial. The v2 seems
to share its casing and platform with its already supported bigger
brother, the GS1900-10HP - its board looks the same, except for two
holes where the GS1900-10 has its SFP ports.
Like their 10 port sibling, both devices have a dual firmware layout.
Both GS1900-8HP boards have the same 70W PoE+ power budget. In order to
manipulate the PoE+, one needs the rtl83xx-poe package [1].
After careful consideration it was decided to go with separate images
for each version.
Specifications (v1)
-------------------
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Nanya NT5TU128M8HE-AC 128 MiB DDR2 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* PoE+: Broadcom BCM59111KMLG (IEEE 802.3at-2009 compliant, 2x)
* UART: 1 serial header with populated standard pin connector on the
left side of the PCB, towards the bottom. Pins are labeled:
+ VCC (3.3V)
+ TX
+ RX
+ GND
Specifications (v2)
-------------------
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Samsung K4B1G0846G 128 MiB DDR3 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* PoE+: Broadcom BCM59121B0KMLG (IEEE 802.3at-2009 compliant)
* UART: 1 angled serial header with populated standard pin connector
accessible from outside through the ventilation slits on the
side. Pins from top to bottom are clearly marked on the PCB:
+ VCC (3.3V)
+ TX
+ RX
+ GND
Serial connection parameters for both devices: 115200 8N1.
Installation
------------
Instructions are identical to those for the GS1900-10HP and apply both
to the GS1900-8HP v1 and v2 as well.
* Configure your client with a static 192.168.1.x IP (e.g. 192.168.1.10).
* Set up a TFTP server on your client and make it serve the initramfs
image.
* Connect serial, power up the switch, interrupt U-boot by hitting the
space bar, and enable the network:
> rtk network on
* Since the GS1900-10HP is a dual-partition device, you want to keep the
OEM firmware on the backup partition for the time being. OpenWrt can
only boot off the first partition anyway (hardcoded in the DTS). To
make sure we are manipulating the first partition, issue the following
commands:
> setsys bootpartition 0
> savesys
* Download the image onto the device and boot from it:
> tftpboot 0x84f00000 192.168.1.10:openwrt-realtek-generic-zyxel_gs1900-8hp-v{1,2}-initramfs-kernel.bin
> bootm
* Once OpenWrt has booted, scp the sysupgrade image to /tmp and flash it:
> sysupgrade /tmp//tmp/openwrt-realtek-generic-zyxel_gs1900-8hp-v{1,2}-squashfs-sysupgrade.bin
Signed-off-by: Stijn Segers <foss@volatilesystems.org>
[merge PoE case, keep device definitions separate, change all those
hashes in the commit message to something else so they don't get
removed when changing the commit ...]
Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2021-01-08 13:32:48 +00:00
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DEVICE_MODEL := GS1900-8HP
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DEVICE_VARIANT := v2
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2021-02-24 21:03:39 +00:00
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ZYXEL_VERS := AAHI
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realtek: add support for ZyXEL GS1900-8HP v1 and v2
The ZyXEL GS1900-8HP is an 8 port gigabit switch with PoE+ support.
There are two versions on the market (v1 & v2) which share similar
specs (same flash size and flash layout, same RAM size, same PoE+ power
envelope) but have a different case and board layout that they each
share with other GS1900 siblings.
The v1 seems to share its PCB and case with non-PoE GS1900-8; as such,
adding support for the GS1900-8 would probably be trivial. The v2 seems
to share its casing and platform with its already supported bigger
brother, the GS1900-10HP - its board looks the same, except for two
holes where the GS1900-10 has its SFP ports.
Like their 10 port sibling, both devices have a dual firmware layout.
Both GS1900-8HP boards have the same 70W PoE+ power budget. In order to
manipulate the PoE+, one needs the rtl83xx-poe package [1].
After careful consideration it was decided to go with separate images
for each version.
Specifications (v1)
-------------------
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Nanya NT5TU128M8HE-AC 128 MiB DDR2 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* PoE+: Broadcom BCM59111KMLG (IEEE 802.3at-2009 compliant, 2x)
* UART: 1 serial header with populated standard pin connector on the
left side of the PCB, towards the bottom. Pins are labeled:
+ VCC (3.3V)
+ TX
+ RX
+ GND
Specifications (v2)
-------------------
* SoC: Realtek RTL8380M 500 MHz MIPS 4KEc
* Flash: Macronix MX25L12835F 16 MiB
* RAM: Samsung K4B1G0846G 128 MiB DDR3 SDRAM
* Ethernet: 8x 10/100/1000 Mbit
* PoE+: Broadcom BCM59121B0KMLG (IEEE 802.3at-2009 compliant)
* UART: 1 angled serial header with populated standard pin connector
accessible from outside through the ventilation slits on the
side. Pins from top to bottom are clearly marked on the PCB:
+ VCC (3.3V)
+ TX
+ RX
+ GND
Serial connection parameters for both devices: 115200 8N1.
Installation
------------
Instructions are identical to those for the GS1900-10HP and apply both
to the GS1900-8HP v1 and v2 as well.
* Configure your client with a static 192.168.1.x IP (e.g. 192.168.1.10).
* Set up a TFTP server on your client and make it serve the initramfs
image.
* Connect serial, power up the switch, interrupt U-boot by hitting the
space bar, and enable the network:
> rtk network on
* Since the GS1900-10HP is a dual-partition device, you want to keep the
OEM firmware on the backup partition for the time being. OpenWrt can
only boot off the first partition anyway (hardcoded in the DTS). To
make sure we are manipulating the first partition, issue the following
commands:
> setsys bootpartition 0
> savesys
* Download the image onto the device and boot from it:
> tftpboot 0x84f00000 192.168.1.10:openwrt-realtek-generic-zyxel_gs1900-8hp-v{1,2}-initramfs-kernel.bin
> bootm
* Once OpenWrt has booted, scp the sysupgrade image to /tmp and flash it:
> sysupgrade /tmp//tmp/openwrt-realtek-generic-zyxel_gs1900-8hp-v{1,2}-squashfs-sysupgrade.bin
Signed-off-by: Stijn Segers <foss@volatilesystems.org>
[merge PoE case, keep device definitions separate, change all those
hashes in the commit message to something else so they don't get
removed when changing the commit ...]
Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
2021-01-08 13:32:48 +00:00
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DEVICE_PACKAGES += lua-rs232
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endef
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TARGET_DEVICES += zyxel_gs1900-8hp-v2
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realtek: add ZyXEL GS1900-24HPv2 support
The ZyXEL GS1900-24HPv2 is a 24 port PoE switch with two SFP ports, similar to the other GS1900 switches.
Specifications
--------------
* Device: ZyXEL GS1900-24HPv2
* SoC: Realtek RTL8382M 500 MHz MIPS 4KEc
* Flash: 16 MiB
* RAM: W631GG8MB-12 128 MiB DDR3 SDRAM
(stock firmware is configured to use only 64 MiB)
* Ethernet: 24x 10/100/1000 Mbps, 2x SFP 100/1000 Mbps
* LEDs: 1 PWR LED (green, not configurable)
1 SYS LED (green, configurable)
24 ethernet port link/activity LEDs (green, SoC controlled)
24 ethernet port PoE status LEDs
2 SFP status/activity LEDs (green, SoC controlled)
* Buttons: 1 "RESTORE" button on front panel
1 "RESET" button on front panel
* Power 120-240V AC C13
* UART: 1 serial header (J41) with populated standard pin connector on
the left edge of the PCB, angled towards the side.
The casing has a rectangular cutout on the side that provides
external access to these pins.
Pinout (front to back):
+ GND
+ TX
+ RX
+ VCC
Serial connection parameters for both devices: 115200 8N1.
Installation
------------
OEM upgrade method:
(Possible on master once https://patchwork.ozlabs.org/project/openwrt/patch/20210624210408.19248-1-bjorn@mork.no/ is merged)
* Log in to OEM management web interface
* Navigate to Maintenance > Firmware > Management
* If "Active Image" has the first option selected, OpenWrt will need to be
flashed to the "Active" partition. If the second option is selected,
OpenWrt will need to be flashed to the "Backup" partition.
* Navigate to Maintenance > Firmware > Upload
* Upload the openwrt-realtek-generic-zyxel_gs1900-24hp-v2-initramfs-kernel.bin
file by your preferred method to the previously determined partition.
When prompted, select to boot from the newly flashed image, and reboot the switch.
* Once OpenWrt has booted, scp the sysupgrade image to /tmp and flash it:
> sysupgrade -n /tmp/openwrt-realtek-generic-zyxel_gs1900-24hp-v2-squashfs-sysupgrade.bin
it may be necessary to restart the network (/etc/init.d/network restart) on
the running initramfs image.
U-Boot TFTP method:
* Configure your client with a static 192.168.1.x IP (e.g. 192.168.1.10).
* Set up a TFTP server on your client and make it serve the initramfs image.
* Connect serial, power up the switch, interrupt U-boot by hitting the
space bar, and enable the network:
> rtk network on
* Since the GS1900-24HPv2 is a dual-partition device, you want to keep the OEM
firmware on the backup partition for the time being. OpenWrt can only boot
from the first partition anyway (hardcoded in the DTS). To make sure we are
manipulating the first partition, issue the following commands:
> setsys bootpartition 0
> savesys
* Download the image onto the device and boot from it:
> tftpboot 0x84f00000 192.168.1.10:openwrt-realtek-generic-zyxel_gs1900-24hp-v2-initramfs-kernel.bin
> bootm
* Once OpenWrt has booted, scp the sysupgrade image to /tmp and flash it:
> sysupgrade -n /tmp/openwrt-realtek-generic-zyxel_gs1900-24hp-v2-squashfs-sysupgrade.bin
it may be necessary to restart the network (/etc/init.d/network restart) on
the running initramfs image.
Signed-off-by: Soma Zambelly <zambelly.soma@gmail.com>
2021-08-24 21:46:08 +00:00
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define Device/zyxel_gs1900-24hp-v2
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$(Device/zyxel_gs1900)
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SOC := rtl8382
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DEVICE_MODEL := GS1900-24HP
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DEVICE_VARIANT := v2
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ZYXEL_VERS := ABTP
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endef
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TARGET_DEVICES += zyxel_gs1900-24hp-v2
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2020-09-13 07:06:13 +00:00
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$(eval $(call BuildImage))
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