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ath79: Add support for OpenMesh OM2P v4
Device specifications: ====================== * Qualcomm/Atheros QCA9533 v2 * 650/600/217 MHz (CPU/DDR/AHB) * 64 MB of RAM * 16 MB of SPI NOR flash - 2x 7 MB available; but one of the 7 MB regions is the recovery image * 2x 10/100 Mbps Ethernet * 1T1R 2.4 GHz Wi-Fi * 6x GPIO-LEDs (3x wifi, 2x ethernet, 1x power) * 1x GPIO-button (reset) * external h/w watchdog (enabled by default) * TTL pins are on board (arrow points to VCC, then follows: GND, TX, RX) * 2x fast ethernet - eth0 + Label: Ethernet 1 + 24V passive POE (mode B) - eth1 + Label: Ethernet 2 + 802.3af POE + builtin switch port 1 * 12-24V 1A DC * external antenna Flashing instructions: ====================== Various methods can be used to install the actual image on the flash. Two easy ones are: ap51-flash ---------- The tool ap51-flash (https://github.com/ap51-flash/ap51-flash) should be used to transfer the image to the u-boot when the device boots up. initramfs from TFTP ------------------- The serial console must be used to access the u-boot shell during bootup. It can then be used to first boot up the initramfs image from a TFTP server (here with the IP 192.168.1.21): setenv serverip 192.168.1.21 setenv ipaddr 192.168.1.1 tftpboot 0c00000 <filename-of-initramfs-kernel>.bin && bootm $fileaddr The actual sysupgrade image can then be transferred (on the LAN port) to the device via scp <filename-of-squashfs-sysupgrade>.bin root@192.168.1.1:/tmp/ On the device, the sysupgrade must then be started using sysupgrade -n /tmp/<filename-of-squashfs-sysupgrade>.bin Signed-off-by: Sven Eckelmann <sven@narfation.org> [wrap two very long lines, fix typo in comment] Signed-off-by: Adrian Schmutzler <freifunk@adrianschmutzler.de>
This commit is contained in:
parent
e1938d3397
commit
dd1d95cb03
@ -10,7 +10,7 @@ include $(TOPDIR)/rules.mk
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PKG_NAME:=uboot-envtools
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PKG_DISTNAME:=u-boot
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PKG_VERSION:=2020.04
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PKG_RELEASE:=9
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PKG_RELEASE:=10
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PKG_SOURCE:=$(PKG_DISTNAME)-$(PKG_VERSION).tar.bz2
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PKG_SOURCE_URL:= \
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@ -85,6 +85,7 @@ netgear,wndr4300tn|\
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netgear,wndr4300sw)
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ubootenv_add_uci_config "/dev/mtd1" "0x0" "0x40000" "0x20000"
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;;
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openmesh,om2p-v4|\
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plasmacloud,pa300|\
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plasmacloud,pa300e)
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ubootenv_add_uci_config "/dev/mtd1" "0x0" "0x40000" "0x40000"
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8
target/linux/ath79/dts/qca9533_openmesh_om2p-v4.dts
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8
target/linux/ath79/dts/qca9533_openmesh_om2p-v4.dts
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@ -0,0 +1,8 @@
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// SPDX-License-Identifier: GPL-2.0-or-later OR MIT
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#include "qca9533_openmesh_om2p-v4.dtsi"
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/ {
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compatible = "openmesh,om2p-v4", "qca,qca9533";
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model = "OpenMesh OM2P v4";
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};
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157
target/linux/ath79/dts/qca9533_openmesh_om2p-v4.dtsi
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157
target/linux/ath79/dts/qca9533_openmesh_om2p-v4.dtsi
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@ -0,0 +1,157 @@
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// SPDX-License-Identifier: GPL-2.0-or-later OR MIT
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#include "qca953x.dtsi"
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#include <dt-bindings/gpio/gpio.h>
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#include <dt-bindings/input/input.h>
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/ {
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chosen {
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/delete-property/ bootargs;
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};
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aliases {
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led-boot = &led_power_blue;
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led-failsafe = &led_power_blue;
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led-running = &led_power_blue;
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led-upgrade = &led_power_blue;
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label-mac-device = ð0;
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};
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keys {
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compatible = "gpio-keys";
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pinctrl-names = "default";
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pinctrl-0 = <&jtag_disable_pins>;
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reset {
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label = "reset";
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linux,code = <KEY_RESTART>;
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gpios = <&gpio 1 GPIO_ACTIVE_LOW>;
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};
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};
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leds {
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compatible = "gpio-leds";
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led_power_blue: power_blue {
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label = "blue:power";
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gpios = <&gpio 0 GPIO_ACTIVE_LOW>;
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default-state = "on";
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};
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wifi_green {
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label = "green:wifi";
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gpios = <&gpio 2 GPIO_ACTIVE_LOW>;
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linux,default-trigger = "phy0tpt";
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};
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wifi_yellow {
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label = "yellow:wifi";
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gpios = <&gpio 3 GPIO_ACTIVE_LOW>;
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};
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wifi_red {
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label = "red:wifi";
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gpios = <&gpio 4 GPIO_ACTIVE_LOW>;
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};
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wan_blue {
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label = "blue:wan";
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gpios = <&gpio 13 GPIO_ACTIVE_LOW>;
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};
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lan_blue {
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label = "blue:lan";
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gpios = <&gpio 14 GPIO_ACTIVE_LOW>;
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};
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};
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watchdog {
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compatible = "linux,wdt-gpio";
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gpios = <&gpio 12 GPIO_ACTIVE_LOW>;
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hw_algo = "toggle";
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/* hw_margin_ms is actually 300s but driver limits it to 60s */
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hw_margin_ms = <60000>;
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always-running;
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};
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};
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&uart {
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status = "okay";
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};
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&spi {
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status = "okay";
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flash@0 {
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compatible = "jedec,spi-nor";
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reg = <0>;
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spi-max-frequency = <25000000>;
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/* partitions are passed via bootloader */
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partitions {
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compatible = "fixed-partitions";
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#address-cells = <1>;
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#size-cells = <1>;
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partition@0 {
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label = "u-boot";
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reg = <0x000000 0x040000>;
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read-only;
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};
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partition@40000 {
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label = "u-boot-env";
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reg = <0x040000 0x040000>;
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};
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partition@80000 {
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label = "custom";
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reg = <0x080000 0x140000>;
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read-only;
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};
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partition@1c0000 {
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label = "inactive";
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reg = <0x1c0000 0x700000>;
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};
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partition@8c0000 {
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label = "inactive2";
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reg = <0x8c0000 0x700000>;
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};
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art: partition@fc0000 {
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label = "ART";
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reg = <0xfc0000 0x040000>;
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read-only;
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};
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};
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};
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};
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ð0 {
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status = "okay";
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phy-handle = <&swphy4>;
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mtd-mac-address = <&art 0x0>;
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};
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ð1 {
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/* Workaround: keep the Ethernet interfaces order/mapping correct
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* (GMAC0 -> eth0, GMAC1 -> eth1, same as in old ar71xx target)
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*/
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compatible = "qca,qca9530-eth", "syscon", "simple-mfd";
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mtd-mac-address = <&art 0x6>;
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};
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&wmac {
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status = "okay";
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mtd-cal-data = <&art 0x1000>;
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mtd-mac-address = <&art 0x0>;
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mtd-mac-address-increment = <2>;
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};
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@ -230,6 +230,10 @@ netgear,wnr2200-16m)
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ucidef_set_led_switch "lan3amber" "LAN3 (amber)" "amber:lan3" "switch0" "0x08" "0x02"
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ucidef_set_led_switch "lan4amber" "LAN4 (amber)" "amber:lan4" "switch0" "0x10" "0x02"
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;;
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openmesh,om2p-v4)
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ucidef_set_led_netdev "wan" "WAN" "blue:wan" "eth0"
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ucidef_set_led_switch "lan" "LAN" "blue:lan" "switch0" "0x02"
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;;
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pcs,cr3000)
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ucidef_set_led_netdev "wan" "WAN" "blue:wan" "eth1"
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ucidef_set_led_switch "lan1" "LAN1" "blue:lan1" "switch0" "0x04"
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@ -152,6 +152,7 @@ ath79_setup_interfaces()
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comfast,cf-e120a-v3|\
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comfast,cf-e314n-v2|\
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compex,wpj531-16m|\
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openmesh,om2p-v4|\
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plasmacloud,pa300|\
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plasmacloud,pa300e|\
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tplink,cpe210-v1|\
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112
target/linux/ath79/generic/base-files/lib/upgrade/openmesh.sh
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112
target/linux/ath79/generic/base-files/lib/upgrade/openmesh.sh
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@ -0,0 +1,112 @@
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# The U-Boot loader of the OpenMesh devices requires image sizes and
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# checksums to be provided in the U-Boot environment.
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# The OpenMesh devices come with 2 main partitions - while one is active
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# sysupgrade will flash the other. The boot order is changed to boot the
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# newly flashed partition. If the new partition can't be booted due to
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# upgrade failures the previously used partition is loaded.
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cfg_value_get()
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{
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local cfg=$1 cfg_opt
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local section=$2 our_section=0
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local param=$3 our_param=
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for cfg_opt in $cfg; do
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[ "$cfg_opt" = "[$section]" ] && our_section=1 && continue
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[ "$our_section" = "1" ] || continue
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our_param=${cfg_opt%%=*}
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[ "$param" = "$our_param" ] && echo ${cfg_opt##*=} && break
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done
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}
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platform_do_upgrade_openmesh()
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{
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local img_path="$1"
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local restore_backup
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local setenv_script="/tmp/fw_env_upgrade"
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local inactive_mtd="$(find_mtd_index $PART_NAME)"
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local inactive_offset="$(cat /sys/class/mtd/mtd${inactive_mtd}/offset)"
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local total_size="$(cat /sys/class/mtd/mtd${inactive_mtd}/size)"
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local flash_start_mem=0x9f000000
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local data_offset=$((64 * 1024))
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# detect to which flash region the new image is written to.
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#
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# 1. check what is the mtd index for the first flash region on this
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# device
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# 2. check if the target partition ("inactive") has the mtd index of
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# the first flash region
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#
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# - when it is: the new bootseq will be 1,2 and the first region is
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# modified
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# - when it isn't: bootseq will be 2,1 and the second region is
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# modified
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#
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# The detection has to be done via the hardcoded mtd partition because
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# the current boot might be done with the fallback region. Let us
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# assume that the current bootseq is 1,2. The bootloader detected that
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# the image in flash region 1 is corrupt and thus switches to flash
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# region 2. The bootseq in the u-boot-env is now still the same and
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# the sysupgrade code can now only rely on the actual mtd indexes and
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# not the bootseq variable to detect the currently booted flash
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# region/image.
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#
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# In the above example, an implementation which uses bootseq ("1,2") to
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# detect the currently booted image would assume that region 1 is booted
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# and then overwrite the variables for the wrong flash region (aka the
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# one which isn't modified). This could result in a device which doesn't
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# boot anymore to Linux until it was reflashed with ap51-flash.
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local next_boot_part="1"
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local primary_kernel_mtd="3"
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[ "$inactive_mtd" = "$primary_kernel_mtd" ] || next_boot_part="2"
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local cfg_size=$(dd if="$img_path" bs=2 skip=35 count=4 2>/dev/null)
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local cfg_length=$((0x$cfg_size))
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local cfg_content=$(dd if="$img_path" bs=1 skip=$data_offset count=$cfg_length 2>/dev/null)
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local kernel_size=$(dd if="$img_path" bs=2 skip=71 count=4 2>/dev/null)
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local kernel_length=$((0x$kernel_size))
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local kernel_md5=$(cfg_value_get "$cfg_content" "vmlinux" "md5sum")
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local rootfs_size=$(dd if="$img_path" bs=2 skip=107 count=4 2>/dev/null)
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local rootfs_length=$((0x$rootfs_size))
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local rootfs_md5=$(cfg_value_get "$cfg_content" "rootfs" "md5sum")
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local rootfs_checksize=$(cfg_value_get "$cfg_content" "rootfs" "checksize")
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# take care of restoring a saved config
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[ -n "$UPGRADE_BACKUP" ] && restore_backup="${MTD_CONFIG_ARGS} -j ${UPGRADE_BACKUP}"
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# write image parts
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mtd -q erase inactive
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dd if="$img_path" bs=1 skip=$((data_offset + cfg_length + kernel_length)) count=$rootfs_length 2>&- | \
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mtd -n -p $kernel_length $restore_backup write - $PART_NAME
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dd if="$img_path" bs=1 skip=$((data_offset + cfg_length)) count=$kernel_length 2>&- | \
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mtd -n write - $PART_NAME
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# prepare new u-boot env
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if [ "$next_boot_part" = "1" ]; then
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echo "bootseq 1,2" > $setenv_script
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else
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echo "bootseq 2,1" > $setenv_script
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fi
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printf "kernel_size_%i %i\n" $next_boot_part $((kernel_length / 1024)) >> $setenv_script
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printf "vmlinux_start_addr 0x%08x\n" $((flash_start_mem + inactive_offset)) >> $setenv_script
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printf "vmlinux_size 0x%08x\n" ${kernel_length} >> $setenv_script
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printf "vmlinux_checksum %s\n" ${kernel_md5} >> $setenv_script
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printf "rootfs_size_%i %i\n" $next_boot_part $(((total_size-kernel_length) / 1024)) >> $setenv_script
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printf "rootfs_start_addr 0x%08x\n" $((flash_start_mem+inactive_offset+kernel_length)) >> $setenv_script
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printf "rootfs_size %s\n" $rootfs_checksize >> $setenv_script
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printf "rootfs_checksum %s\n" ${rootfs_md5} >> $setenv_script
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# store u-boot env changes
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mkdir -p /var/lock
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fw_setenv -s $setenv_script || {
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echo "failed to update U-Boot environment"
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return 1
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}
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}
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jjplus,ja76pf2)
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redboot_fis_do_upgrade "$1" linux
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;;
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openmesh,om2p-v4)
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PART_NAME="inactive"
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platform_do_upgrade_openmesh "$1"
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;;
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plasmacloud,pa300|\
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plasmacloud,pa300e)
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PART_NAME="inactive"
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@ -1557,6 +1557,26 @@ define Device/ocedo_ursus
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endef
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TARGET_DEVICES += ocedo_ursus
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define Device/openmesh_om2p-common
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DEVICE_VENDOR := OpenMesh
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DEVICE_PACKAGES := uboot-envtools
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IMAGE_SIZE := 7168k
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BLOCKSIZE := 256k
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KERNEL := kernel-bin | append-dtb | lzma | uImage lzma | \
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pad-to $$(BLOCKSIZE)
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IMAGE/sysupgrade.bin := append-rootfs | pad-rootfs | \
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openmesh-image ce_type=OM2P | append-metadata
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endef
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define Device/openmesh_om2p-v4
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$(Device/openmesh_om2p-common)
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SOC := qca9533
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DEVICE_MODEL := OM2P
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DEVICE_VARIANT := v4
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SUPPORTED_DEVICES += om2pv4
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endef
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TARGET_DEVICES += openmesh_om2p-v4
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define Device/openmesh_om5p-ac-v2
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SOC := qca9558
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DEVICE_VENDOR := OpenMesh
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