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The Buffalo LinkStation LS220DE is a dual bay NAS, based on Marvell Armada 370 Hardware: SoC: Marvell Armada 88F6707 CPU: Cortex-A9 800 MHz, 1 core Flash 1: SPI-NOR 1 MiB (U-Boot) Flash 2: NAND 512 MiB (OS) RAM: DDR3 256 MiB Ethernet: 1x 1GbE USB: 1x 2.0 SATA: 2x 3Gb/s LEDs/Input: 5x / 2x (1x button, 1x slide-switch) Fan: 1x casing Flash instructions, from hard drive: 1. Get access to the "boot" partition at the hard drive where the stock firmware is installed. It can be done with acp-commander or by plugging the hard drive to a computer. 2. Backup the stock uImage: mv /boot/uImage.buffalo /boot/uImage.buffalo.bak 3. Move and rename the Openwrt initramfs image to the boot partition: mv openwrt-initramfs-kernel.bin /boot/uImage.buffalo 4. Power on the Linkstation with the hardrive inside. Now Openwrt will boot, but still not installed. 5. Connect via ssh to OpenWrt: ssh root@192.168.1.1 6. Rename boot files inside boot partition mount -t ext3 /dev/sda1 /mnt mv /mnt/uImage.buffalo /mnt/uImage.buffalo.openwrt.bak mv /mnt/initrd.buffalo /mnt/initrd.buffalo.bak 7. Format ubi partitions at the NAND flash ("kernel_ubi" and "ubi"): ubiformat /dev/mtd0 -y ubidetach -p /dev/mtd1 ubiformat /dev/mtd1 -y 8. Flash the sysupgrade image: sysupgrade -n openwrt-squashfs-sysupgrade.bin 9. Wait until it finish, the device will reboot with OpenWrt installed on the NAND flash. Restore the stock firmware: 1. Take the hard drive used for the installation and restore boot backup files to their original names: mount -t ext3 /dev/sda1 /mnt mv /mnt/uImage.buffalo.bak /mnt/uImage.buffalo mv /mnt/initrd.buffalo.bak /mnt/initrd.buffalo 2. Boot from the hard drive and perform a stock firmware update using the Buffalo utility. The NAND will be restored to the original state. Signed-off-by: Daniel González Cabanelas <dgcbueu@gmail.com>
208 lines
6.5 KiB
Makefile
208 lines
6.5 KiB
Makefile
# SPDX-License-Identifier: GPL-2.0-only
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#
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# Copyright (C) 2012-2016 OpenWrt.org
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# Copyright (C) 2016 LEDE-project.org
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JFFS2_BLOCKSIZE = 128k
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include $(TOPDIR)/rules.mk
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include $(INCLUDE_DIR)/image.mk
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DEVICE_VARS += BOOT_SCRIPT UBOOT
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KERNEL_LOADADDR := 0x00008000
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define Build/boot-scr
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rm -f $@-boot.scr
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sed \
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-e 's#@ROOT@#$(IMG_PART_SIGNATURE)#g' \
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-e 's#@DTB@#$(firstword $(DEVICE_DTS))#g' \
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$(BOOT_SCRIPT).bootscript > $@-new.bootscript
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mkimage -A arm -O linux -T script -C none -a 0 -e 0 -d $@-new.bootscript $@-boot.scr
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endef
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define Build/boot-img
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rm -f $@.boot
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mkfs.fat -C $@.boot $$(( $(CONFIG_TARGET_KERNEL_PARTSIZE) * 1024 ))
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$(foreach dts,$(DEVICE_DTS), mcopy -i $@.boot $(KDIR)/image-$(dts).dtb ::$(dts).dtb;)
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mcopy -i $@.boot $(IMAGE_KERNEL) ::$(KERNEL_NAME)
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-mcopy -i $@.boot $@-boot.scr ::boot.scr
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endef
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define Build/boot-img-ext4
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rm -fR $@.boot
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mkdir -p $@.boot
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$(foreach dts,$(DEVICE_DTS), $(CP) $(KDIR)/image-$(dts).dtb $@.boot/$(dts).dtb;)
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$(CP) $(IMAGE_KERNEL) $@.boot/$(KERNEL_NAME)
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-$(CP) $@-boot.scr $@.boot/boot.scr
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make_ext4fs -J -L kernel -l $(CONFIG_TARGET_KERNEL_PARTSIZE)M \
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$(if $(SOURCE_DATE_EPOCH),-T $(SOURCE_DATE_EPOCH)) \
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$@.bootimg $@.boot
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endef
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define Build/buffalo-kernel-jffs2
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rm -rf $(KDIR)/kernel_jffs2 $@.fakerd
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mkdir -p $(KDIR)/kernel_jffs2
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dd if=/dev/zero of=$@.fakerd bs=131008 count=1 conv=sync
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$(STAGING_DIR_HOST)/bin/mkimage \
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-T ramdisk -A $(LINUX_KARCH) -O linux -C gzip -n 'fake initrd' \
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-d $@.fakerd $(KDIR)/kernel_jffs2/initrd.buffalo
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cp $@ $(KDIR)/kernel_jffs2/uImage.buffalo
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$(STAGING_DIR_HOST)/bin/mkfs.jffs2 \
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--little-endian -v --squash-uids -q -f -n -x lzma -x rtime -m none \
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--eraseblock=128KiB --pad=$(KERNEL_SIZE) -d $(KDIR)/kernel_jffs2 -o $@
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rm -rf $(KDIR)/kernel_jffs2 $@.fakerd
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endef
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define Build/buffalo-kernel-ubifs
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rm -rf $@-ubidir
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mkdir -p $@-ubidir
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mv $@ $@-ubidir/uImage.buffalo
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touch $@
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$(call Build/append-uImage-fakehdr, ramdisk)
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mv $@ $@-ubidir/initrd.buffalo
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$(STAGING_DIR_HOST)/bin/mkfs.ubifs $(KERNEL_UBIFS_OPTS) -r $@-ubidir $@
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endef
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# Some info about Ctera firmware:
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# 1. It's simple tar file (GNU standard), but it must have ".firm" suffix.
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# 2. It contains two images: kernel and romdisk. Both are required.
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# 3. Every image has header and trailer file.
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# 4. The struct of tar firmware is: header kernel trailer header romdisk trailer
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# 5. In header file are some strings used to describe image. It was decoded from
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# factory image.
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# 6. Version format in header file is restricted by Original FW.
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# 7. Trailer file contains MD5 sum string of header and image file.
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# 8. Firmware file must have <=24MB size.
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define Build/ctera-firmware
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mkdir -p $@.tmp
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# Prepare header and trailer file for kernel
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echo "# CTera firmware information file" > $@.tmp/header
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echo "image_type=kernel" >> $@.tmp/header
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echo "arch=ARM" >> $@.tmp/header
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echo "board=2Drive_A" >> $@.tmp/header
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echo "version=5.5.165.61499" >> $@.tmp/header
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echo "kernel_cmd=console=ttyS0,115200 earlycon" >> $@.tmp/header
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echo "date=$$(date $(if $(SOURCE_DATE_EPOCH),-d@$(SOURCE_DATE_EPOCH)))" \
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>> $@.tmp/header
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cp $@ $@.tmp/kernel
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echo "MD5=$$(cat $@.tmp/header $@.tmp/kernel | $(MKHASH) md5)" \
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> $@.tmp/trailer
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tar $(if $(SOURCE_DATE_EPOCH),--mtime="@$(SOURCE_DATE_EPOCH)") \
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-H gnu -C $@.tmp -cf $@.tar header kernel trailer
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# Prepare header and trailer file for fake romdisk
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echo "# CTera firmware information file" > $@.tmp/header
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echo "image_type=romdisk" >> $@.tmp/header
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echo "initrd=yes" >> $@.tmp/header
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echo "arch=ARM" >> $@.tmp/header
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echo "board=2Drive_A" >> $@.tmp/header
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echo "version=5.5.165.61499" >> $@.tmp/header
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echo "date=$$(date $(if $(SOURCE_DATE_EPOCH),-d@$(SOURCE_DATE_EPOCH)))" \
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>> $@.tmp/header
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rm -f $@
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touch $@
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$(call Build/append-uImage-fakehdr, ramdisk)
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cp $@ $@.tmp/romdisk
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echo "MD5=$$(cat $@.tmp/header $@.tmp/romdisk | $(MKHASH) md5)" \
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> $@.tmp/trailer
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tar $(if $(SOURCE_DATE_EPOCH),--mtime="@$(SOURCE_DATE_EPOCH)") \
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-H gnu -C $@.tmp -rf $@.tar header romdisk trailer
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mv $@.tar $@
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rm -rf $@.tmp
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endef
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define Build/sdcard-img
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SIGNATURE="$(IMG_PART_SIGNATURE)" \
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./gen_mvebu_sdcard_img.sh $@ \
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$(if $(UBOOT),$(STAGING_DIR_IMAGE)/$(UBOOT)) \
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c $(CONFIG_TARGET_KERNEL_PARTSIZE) $@.boot \
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83 $(CONFIG_TARGET_ROOTFS_PARTSIZE) $(IMAGE_ROOTFS)
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endef
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define Build/sdcard-img-ext4
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SIGNATURE="$(IMG_PART_SIGNATURE)" \
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./gen_mvebu_sdcard_img.sh $@ \
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$(if $(UBOOT),$(STAGING_DIR_IMAGE)/$(UBOOT)) \
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83 $(CONFIG_TARGET_KERNEL_PARTSIZE) $@.bootimg \
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83 $(CONFIG_TARGET_ROOTFS_PARTSIZE) $(IMAGE_ROOTFS)
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endef
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define Build/omnia-medkit-initramfs
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$(TAR) -c -T /dev/null -f $@
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rm -rf $(dir $(IMAGE_KERNEL))boot
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mkdir -p $(dir $(IMAGE_KERNEL))boot/boot/
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cp $(KDIR)/zImage-initramfs $(dir $(IMAGE_KERNEL))boot/boot/zImage
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cp $(KDIR)/image-$(DEVICE_DTS).dtb $(dir $(IMAGE_KERNEL))boot/boot/dtb
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$(TAR) -rp --numeric-owner --owner=0 --group=0 --sort=name \
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$(if $(SOURCE_DATE_EPOCH),--mtime="@$(SOURCE_DATE_EPOCH)") \
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--file=$@ -C $(dir $(IMAGE_KERNEL))boot/ .
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endef
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define Build/uDPU-firmware
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(rm -fR $@-fw; mkdir -p $@-fw)
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$(CP) $(BIN_DIR)/$(DEVICE_IMG_PREFIX)-initramfs.itb $@-fw/recovery.itb
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$(CP) $@-boot.scr $@-fw/boot.scr
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$(TAR) -cvzp --numeric-owner --owner=0 --group=0 --sort=name \
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$(if $(SOURCE_DATE_EPOCH),--mtime="@$(SOURCE_DATE_EPOCH)") \
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-f $@-fw/rootfs.tgz -C $(TARGET_DIR) .
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$(TAR) -cvzp --numeric-owner --owner=0 --group=0 --sort=name \
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$(if $(SOURCE_DATE_EPOCH),--mtime="@$(SOURCE_DATE_EPOCH)") \
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-f $@-fw/boot.tgz -C $@.boot .
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$(TAR) -cvzp --numeric-owner --owner=0 --group=0 --sort=name \
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$(if $(SOURCE_DATE_EPOCH),--mtime="@$(SOURCE_DATE_EPOCH)") \
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-f $(KDIR_TMP)/$(DEVICE_IMG_PREFIX)-firmware.tgz -C $@-fw .
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endef
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define Device/Default
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PROFILES := Default
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DEVICE_DTS = $$(SOC)-$(lastword $(subst _, ,$(1)))
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DEVICE_DTS_DIR := $(DTS_DIR)
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BOARD_NAME = $$(DEVICE_DTS)
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KERNEL_NAME := zImage
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KERNEL := kernel-bin | append-dtb | uImage none
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IMAGES := sysupgrade.bin
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IMAGE/sysupgrade.bin := sysupgrade-tar | append-metadata
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UBINIZE_OPTS := -E 5
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UBOOT :=
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BOOT_SCRIPT :=
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endef
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define Device/Default-arm64
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BOOT_SCRIPT := generic-arm64
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DEVICE_DTS_DIR := $(DTS_DIR)/marvell
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IMAGES := sdcard.img.gz
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IMAGE/sdcard.img.gz := boot-scr | boot-img-ext4 | sdcard-img-ext4 | gzip | append-metadata
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KERNEL_NAME := Image
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KERNEL := kernel-bin
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endef
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define Device/NAND-128K
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BLOCKSIZE := 128k
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PAGESIZE := 2048
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SUBPAGESIZE := 512
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VID_HDR_OFFSET := 2048
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endef
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define Device/NAND-256K
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BLOCKSIZE := 256k
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PAGESIZE := 4096
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endef
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define Device/NAND-512K
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BLOCKSIZE := 512k
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PAGESIZE := 4096
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endef
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include $(SUBTARGET).mk
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$(eval $(call BuildImage))
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