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board/hardkernel/odroidc2: remove unused files
Commit b80712a16a
("configs/odroidc2:
remove the defconfig") has removed the odroidc2 defconfig, but left
behind a number of files in board/hardkernel/odroidc2, which are now
unused. Let's remove them.
Signed-off-by: Dagg Stompler <daggs@gmx.com>
Signed-off-by: Thomas Petazzoni <thomas.petazzoni@bootlin.com>
This commit is contained in:
parent
2ba890bff7
commit
197da62866
@ -1,176 +0,0 @@
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ODROIDC2-UBOOT-CONFIG
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########################################################################
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# Changes made to this are overwritten every time there's a new upgrade
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# To make your changes permanent change it on
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# boot.ini.default
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# After changing it on boot.ini.default run the bootini command to
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# rewrite this file with your personal permanent settings.
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# Documentation: http://odroid.com/dokuwiki/doku.php?id=en:c2_persistent_bootini
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########################################################################
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# Possible screen resolutions
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# Uncomment only a single Line! The line with setenv written.
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# At least one mode must be selected.
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# Custom modeline!
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# To use custom modeline you need to disable all the below resolutions
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# and setup your own!
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# For more information check our wiki:
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# http://odroid.com/dokuwiki/doku.php?id=en:c2_hdmi_autosetting
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# Example below:
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# setenv m "custombuilt"
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# setenv modeline "1920,1200,154000,74040,60,1920,1968,2000,2080,1200,1202,1208,1235,1,0,1"
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# 480 Lines (720x480)
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# setenv m "480i60hz" # Interlaced 60Hz
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# setenv m "480i_rpt" # Interlaced for Rear Projection Televisions 60Hz
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# setenv m "480p60hz" # 480 Progressive 60Hz
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# setenv m "480p_rpt" # 480 Progressive for Rear Projection Televisions 60Hz
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# 576 Lines (720x576)
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# setenv m "576i50hz" # Interlaced 50Hz
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# setenv m "576i_rpt" # Interlaced for Rear Projection Televisions 50Hz
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# setenv m "576p50hz" # Progressive 50Hz
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# setenv m "576p_rpt" # Progressive for Rear Projection Televisions 50Hz
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# 720 Lines (1280x720)
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# setenv m "720p50hz" # 50Hz
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# setenv m "720p60hz" # 60Hz
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# 1080 Lines (1920x1080)
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# setenv m "1080i60hz" # Interlaced 60Hz
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setenv m "1080p60hz" # Progressive 60Hz
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# setenv m "1080i50hz" # Interlaced 50Hz
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# setenv m "1080p50hz" # Progressive 50Hz
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# setenv m "1080p24hz" # Progressive 24Hz
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# 4K (3840x2160)
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# setenv m "2160p30hz" # Progressive 30Hz
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# setenv m "2160p25hz" # Progressive 25Hz
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# setenv m "2160p24hz" # Progressive 24Hz
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# setenv m "smpte24hz" # Progressive 24Hz SMPTE
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# setenv m "2160p50hz" # Progressive 50Hz
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# setenv m "2160p60hz" # Progressive 60Hz
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# setenv m "2160p50hz420" # Progressive 50Hz with YCbCr 4:2:0 (Requires TV/Monitor that supports it)
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# setenv m "2160p60hz420" # Progressive 60Hz with YCbCr 4:2:0 (Requires TV/Monitor that supports it)
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### VESA modes ###
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# setenv m "640x480p60hz"
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# setenv m "800x480p60hz"
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# setenv m "480x800p60hz"
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# setenv m "800x600p60hz"
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# setenv m "1024x600p60hz"
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# setenv m "1024x768p60hz"
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# setenv m "1280x800p60hz"
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# setenv m "1280x1024p60hz"
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# setenv m "1360x768p60hz"
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# setenv m "1440x900p60hz"
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# setenv m "1600x900p60hz"
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# setenv m "1680x1050p60hz"
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# setenv m "1600x1200p60hz"
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# setenv m "1920x1200p60hz"
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# setenv m "2560x1080p60hz"
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# setenv m "2560x1440p60hz"
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# setenv m "2560x1600p60hz"
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# setenv m "3440x1440p60hz"
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# HDMI BPP Mode
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setenv m_bpp "32"
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# setenv m_bpp "24"
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# setenv m_bpp "16"
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# HDMI DVI/VGA modes
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# By default its set to HDMI, if needed change below.
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# Uncomment only a single Line.
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# setenv vout "dvi"
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# setenv vout "vga"
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# HDMI HotPlug Detection control
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# Allows you to force HDMI thinking that the cable is connected.
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# true = HDMI will believe that cable is always connected
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# false = will let board/monitor negotiate the connection status
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setenv hpd "true"
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# setenv hpd "false"
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# Monitor output
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# Controls if HDMI PHY should output anything to the monitor
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setenv monitor_onoff "false" # true or false
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# Server Mode (aka. No Graphics)
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# Setting nographics to 1 will disable all video subsystem
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# This mode is ideal of server type usage. (Saves ~300Mb of RAM)
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setenv nographics "0"
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# Meson Timer
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# 1 - Meson Timer
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# 0 - Arch Timer
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# Using meson_timer improves the video playback however it breaks KVM (virtualization).
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# Using arch timer allows KVM/Virtualization to work however you'll experience poor video
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setenv mesontimer "1"
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# UHS (Ultra High Speed) MicroSD mode enable/disable
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setenv disableuhs "false"
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# MicroSD Card Detection enable/disable
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# Force the MMC controlled to believe that a card is connected.
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setenv mmc_removable "true"
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# USB Multi WebCam tweak
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# Only enable this if you use it.
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setenv usbmulticam "false"
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# Default Console Device Setting
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setenv condev "console=ttyS0,115200n8 console=tty0" # on both
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# CPU Frequency / Cores control
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###########################################
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### WARNING!!! WARNING!!! WARNING!!!
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# Before changing anything here please read the wiki entry:
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# http://odroid.com/dokuwiki/doku.php?id=en:c2_set_cpu_freq
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#
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# MAX CPU's
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# setenv maxcpus "1"
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# setenv maxcpus "2"
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# setenv maxcpus "3"
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setenv maxcpus "4"
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# MAX Frequency
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# setenv max_freq "2016" # 2.016GHz
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# setenv max_freq "1944" # 1.944GHz
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# setenv max_freq "1944" # 1.944GHz
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# setenv max_freq "1920" # 1.920GHz
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# setenv max_freq "1896" # 1.896GHz
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# setenv max_freq "1752" # 1.752GHz
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# setenv max_freq "1680" # 1.680GHz
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# setenv max_freq "1656" # 1.656GHz
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setenv max_freq "1536" # 1.536GHz
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###########################################
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# Boot Arguments
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if test "${m}" = "custombuilt"; then setenv cmode "modeline=${modeline}"; fi
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setenv bootargs "root=/dev/mmcblk0p2 rootwait ro ${condev} no_console_suspend hdmimode=${m} ${cmode} m_bpp=${m_bpp} vout=${vout} fsck.repair=yes net.ifnames=0 elevator=noop disablehpd=${hpd} max_freq=${max_freq} maxcpus=${maxcpus} monitor_onoff=${monitor_onoff} disableuhs=${disableuhs} mmc_removable=${mmc_removable} usbmulticam=${usbmulticam}"
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# Booting
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setenv loadaddr "0x11000000"
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setenv dtb_loadaddr "0x1000000"
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setenv initrd_loadaddr "0x13000000"
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fatload mmc 0:1 ${loadaddr} Image
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fatload mmc 0:1 ${dtb_loadaddr} meson64_odroidc2.dtb
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fdt addr ${dtb_loadaddr}
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if test "${mesontimer}" = "0"; then fdt rm /meson_timer; fdt rm /cpus/cpu@0/timer; fdt rm /cpus/cpu@1/timer; fdt rm /cpus/cpu@2/timer; fdt rm /cpus/cpu@3/timer; fi
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if test "${mesontimer}" = "1"; then fdt rm /timer; fi
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if test "${nographics}" = "1"; then fdt rm /reserved-memory; fdt rm /aocec; fi
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if test "${nographics}" = "1"; then fdt rm /meson-fb; fdt rm /amhdmitx; fdt rm /picdec; fdt rm /ppmgr; fi
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if test "${nographics}" = "1"; then fdt rm /meson-vout; fdt rm /mesonstream; fdt rm /meson-fb; fi
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if test "${nographics}" = "1"; then fdt rm /deinterlace; fdt rm /codec_mm; fi
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booti ${loadaddr} - ${dtb_loadaddr}
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@ -1,27 +0,0 @@
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image boot.vfat {
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vfat {
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files = {
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"boot.ini",
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"Image",
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"meson64_odroidc2.dtb"
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}
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}
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size = 32M
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}
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image sdcard.img {
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hdimage {
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}
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partition vfat {
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partition-type = 0xC
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image = "boot.vfat"
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offset = 1048576
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}
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partition rootfs {
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partition-type = 0x83
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image = "rootfs.ext4"
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size = 512M
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}
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}
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#!/bin/sh
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BOARD_DIR="$(dirname $0)"
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GENIMAGE_CFG="${BOARD_DIR}/genimage.cfg"
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GENIMAGE_TMP="${BUILD_DIR}/genimage.tmp"
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cp ${BOARD_DIR}/boot.ini ${BINARIES_DIR}/
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rm -rf "${GENIMAGE_TMP}"
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genimage \
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--rootpath "${TARGET_DIR}" \
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--tmppath "${GENIMAGE_TMP}" \
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--inputpath "${BINARIES_DIR}" \
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--outputpath "${BINARIES_DIR}" \
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--config "${GENIMAGE_CFG}"
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dd if=${BINARIES_DIR}/u-boot.bin of=${BINARIES_DIR}/sdcard.img bs=1 count=442 conv=sync,notrunc
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dd if=${BINARIES_DIR}/u-boot.bin of=${BINARIES_DIR}/sdcard.img bs=512 skip=1 seek=1 conv=fsync,notrunc
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ODROID-C2
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Intro
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=====
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To be able to use ODROID-C2 board with the images generated by
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Buildroot, you have to prepare the SDCard or eMMC.
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How to build it
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===============
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$ make odroidc2_defconfig
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Then you can edit the build options using
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$ make menuconfig
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Compile all and build rootfs image:
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$ make
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Note: you will need to have access to the network, since Buildroot will
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download the packages' sources.
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Result of the build
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-------------------
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After building, you should obtain this tree:
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output/images/
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+-- Image
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+-- boot.ini [1]
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+-- boot.vfat
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+-- meson64_odroidc2.dtb
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+-- rootfs.ext2
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+-- rootfs.ext4
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+-- rootfs.tar
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+-- sdcard.img
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`-- u-boot.bin
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[1] This is the ODROID-C2 configuration file used in u-boot.
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How to write the SD card or eMMC
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================================
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Once the build process is finished you will have an image called "sdcard.img"
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in the output/images/ directory.
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Copy the bootable "sdcard.img" onto an SD card or eMMC with "dd":
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$ sudo dd if=output/images/sdcard.img of=/dev/sdX
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Insert the SDcard into your ODROID-C2, and power it up. Your new system
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should come up now.
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