573 lines
23 KiB
Bash
Executable File
573 lines
23 KiB
Bash
Executable File
#!/bin/bash
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# This is the FriendlyARM NanoPi NEO Plus2 Kali ARM build script - http://nanopi.io/
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# A trusted Kali Linux image created by Offensive Security - http://www.offensive-security.com
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if [[ $EUID -ne 0 ]]; then
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echo "This script must be run as root"
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exit 1
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fi
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if [[ $# -eq 0 ]] ; then
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echo "Please pass version number, e.g. $0 2.0"
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exit 0
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fi
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basedir=`pwd`/nanopineoplus2-$1
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# Custom hostname variable
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hostname=${2:-kali}
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# Custom image file name variable - MUST NOT include .img at the end.
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imagename=${3:-kali-linux-$1-nanopineoplus2}
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# Size of image in megabytes (Default is 14000=14G)
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size=14000
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# Generate a random machine name to be used.
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machine=$(cat /dev/urandom | tr -dc 'a-zA-Z0-9' | fold -w 16 | head -n 1)
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# Make sure that the cross compiler can be found in the path before we do
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# anything else, that way the builds don't fail half way through.
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export CROSS_COMPILE=aarch64-linux-gnu-
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if [ $(compgen -c $CROSS_COMPILE | wc -l) -eq 0 ] ; then
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echo "Missing cross compiler. Set up PATH according to the README"
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exit 1
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fi
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# Unset CROSS_COMPILE so that if there is any native compiling needed it doesn't
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# get cross compiled.
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unset CROSS_COMPILE
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# Package installations for various sections.
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# This will build a minimal XFCE Kali system with the top 10 tools.
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# This is the section to edit if you would like to add more packages.
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# See http://www.kali.org/new/kali-linux-metapackages/ for meta packages you can
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# use. You can also install packages, using just the package name, but keep in
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# mind that not all packages work on ARM! If you specify one of those, the
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# script will throw an error, but will still continue on, and create an unusable
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# image, keep that in mind.
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arm="kali-linux-arm ntpdate"
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base="apt-transport-https apt-utils bash-completion console-setup dialog e2fsprogs ifupdown initramfs-tools inxi iw man-db mlocate netcat-traditional net-tools parted psmisc rfkill screen tmux unrar usbutils vim wget whiptail zerofree"
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#desktop="kali-desktop-xfce kali-root-login xserver-xorg-video-fbdev xfonts-terminus xinput"
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tools="wireshark"
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services="apache2 atftpd haveged"
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extras="alsa-utils bc bison bluez bluez-firmware kali-linux-core libssl-dev triggerhappy"
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packages="${arm} ${base} ${services}"
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architecture="arm64"
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# If you have your own preferred mirrors, set them here.
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# After generating the rootfs, we set the sources.list to the default settings.
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mirror=http.kali.org
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# Set this to use an http proxy, like apt-cacher-ng, and uncomment further down
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# to unset it.
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#export http_proxy="http://localhost:3142/"
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mkdir -p ${basedir}
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cd ${basedir}
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# create the rootfs - not much to modify here, except maybe the hostname.
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debootstrap --foreign --keyring=/usr/share/keyrings/kali-archive-keyring.gpg --include=kali-archive-keyring --arch ${architecture} kali-rolling kali-${architecture} http://${mirror}/kali
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cp /usr/bin/qemu-aarch64-static kali-${architecture}/usr/bin/
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# The machine name is a randomly generated 16 character string.
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LANG=C systemd-nspawn -M ${machine} -D kali-${architecture} /debootstrap/debootstrap --second-stage
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mkdir -p kali-${architecture}/etc/apt/
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cat << EOF > kali-${architecture}/etc/apt/sources.list
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deb http://${mirror}/kali kali-rolling main contrib non-free
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EOF
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echo "${hostname}" > kali-${architecture}/etc/hostname
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cat << EOF > kali-${architecture}/etc/hosts
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127.0.0.1 ${hostname} localhost
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::1 localhost ip6-localhost ip6-loopback
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fe00::0 ip6-localnet
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ff00::0 ip6-mcastprefix
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ff02::1 ip6-allnodes
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ff02::2 ip6-allrouters
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EOF
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mkdir -p kali-${architecture}/etc/network
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cat << EOF > kali-${architecture}/etc/network/interfaces
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auto lo
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iface lo inet loopback
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# This prevents NetworkManager from attempting to use this
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# device to connect to wifi, since NM doesn't show which device is which.
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# Unfortunately, it still SHOWS the device, just that it's not managed.
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iface p2p0 inet manual
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EOF
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cat << EOF > kali-${architecture}/etc/resolv.conf
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nameserver 8.8.8.8
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EOF
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export MALLOC_CHECK_=0 # workaround for LP: #520465
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export LC_ALL=C
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export DEBIAN_FRONTEND=noninteractive
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#mount -t proc proc kali-${architecture}/proc
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#mount -o bind /dev/ kali-${architecture}/dev/
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#mount -o bind /dev/pts kali-${architecture}/dev/pts
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cat << EOF > kali-${architecture}/debconf.set
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console-common console-data/keymap/policy select Select keymap from full list
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console-common console-data/keymap/full select en-latin1-nodeadkeys
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EOF
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mkdir -p kali-${architecture}/usr/lib/systemd/system
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cat << 'EOF' > kali-${architecture}/usr/lib/systemd/system/regenerate_ssh_host_keys.service
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[Unit]
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Description=Regenerate SSH host keys
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Before=ssh.service
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[Service]
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Type=oneshot
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ExecStartPre=-/bin/dd if=/dev/hwrng of=/dev/urandom count=1 bs=4096
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ExecStartPre=-/bin/sh -c "/bin/rm -f -v /etc/ssh/ssh_host_*_key*"
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ExecStart=/usr/bin/ssh-keygen -A -v
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ExecStartPost=/bin/sh -c "for i in /etc/ssh/ssh_host_*_key*; do actualsize=$(wc -c <\"$i\") ;if [ $actualsize -eq 0 ]; then echo size is 0 bytes ; exit 1 ; fi ; done ; /bin/systemctl disable regenerate_ssh_host_keys"
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[Install]
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WantedBy=multi-user.target
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EOF
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chmod 644 kali-${architecture}/usr/lib/systemd/system/regenerate_ssh_host_keys.service
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cat << EOF > kali-${architecture}/usr/lib/systemd/system/smi-hack.service
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[Unit]
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Description=shared-mime-info update hack
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Before=regenerate_ssh_host_keys.service
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[Service]
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Type=oneshot
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Environment=DEBIAN_FRONTEND=noninteractive
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ExecStart=/bin/sh -c "rm -rf /etc/ssl/certs/*.pem && dpkg -i /root/*.deb"
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ExecStart=/bin/sh -c "dpkg-reconfigure shared-mime-info"
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ExecStart=/bin/sh -c "dpkg-reconfigure xfonts-base"
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ExecStart=/bin/sh -c "rm -f /root/*.deb"
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ExecStart=/bin/sh -c 'apt-get --yes -o dpkg::options::="--force-confnew" -o dpkg::options::="--force-overwrite" install kali-linux-default'
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ExecStart=/bin/sh -c "apt-get clean"
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ExecStartPost=/bin/systemctl disable smi-hack
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[Install]
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WantedBy=multi-user.target
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EOF
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chmod 644 kali-${architecture}/usr/lib/systemd/system/smi-hack.service
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cat << EOF > kali-${architecture}/usr/lib/systemd/system/rpiwiggle.service
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[Unit]
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Description=Resize filesystem
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After=regenerate_ssh_host_keys.service
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[Service]
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Type=oneshot
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ExecStart=/root/scripts/rpi-wiggle.sh
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ExecStartPost=/bin/systemctl disable rpiwiggle
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[Install]
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WantedBy=multi-user.target
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EOF
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chmod 644 kali-${architecture}/usr/lib/systemd/system/rpiwiggle.service
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# Eventually this should become a systemd service, but for now, we use the same
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# init.d file that they provide and we let systemd handle the conversion.
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mkdir -p kali-${architecture}/etc/init.d/
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cat << 'EOF' > kali-${architecture}/etc/init.d/brcm_patchram_plus
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#!/bin/bash
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### BEGIN INIT INFO
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# Provides: brcm_patchram_plus
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# Required-Start: $remote_fs $syslog
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# Required-Stop: $remote_fs $syslog
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# Default-Start: 2 3 4 5
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# Default-Stop:
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# Short-Description: brcm_patchram_plus
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### END INIT INFO
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function reset_bt()
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{
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BTWAKE=/proc/bluetooth/sleep/btwake
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if [ -f ${BTWAKE} ]; then
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echo 0 > ${BTWAKE}
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fi
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index=`rfkill list | grep $1 | cut -f 1 -d":"`
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if [[ -n ${index}} ]]; then
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rfkill block ${index}
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sleep 1
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rfkill unblock ${index}
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sleep 1
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fi
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}
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case "$1" in
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start|"")
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index=`rfkill list | grep "sunxi-bt" | cut -f 1 -d":"`
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brcm_try_log=/var/log/brcm/brcm_try.log
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brcm_log=/var/log/brcm/brcm.log
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brcm_err_log=/var/log/brcm/brcm_err.log
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if [ -d /sys/class/rfkill/rfkill${index} ]; then
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rm -rf ${brcm_log}
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reset_bt "sunxi-bt"
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[ -d /var/log/brcm ] || mkdir -p /var/log/brcm
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chmod 0660 /sys/class/rfkill/rfkill${index}/state
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chmod 0660 /sys/class/rfkill/rfkill${index}/type
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chgrp dialout /sys/class/rfkill/rfkill${index}/state
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chgrp dialout /sys/class/rfkill/rfkill${index}/type
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MACADDRESS=`md5sum /sys/class/sunxi_info/sys_info | cut -b 1-12 | sed -r ':1;s/(.*[^:])([^:]{2})/\1:\2/;t1'`
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let TIMEOUT=150
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while [ ${TIMEOUT} -gt 0 ]; do
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killall -9 /bin/brcm_patchram_plus
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/bin/brcm_patchram_plus -d --patchram /lib/firmware/ap6212/ --enable_hci --bd_addr ${MACADDRESS} --no2bytes --tosleep 5000 /dev/ttyS3 >${brcm_log} 2>&1 &
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sleep 30
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TIMEOUT=$((TIMEOUT-30))
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cur_time=`date "+%H-%M-%S"`
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if grep "Done setting line discpline" ${brcm_log}; then
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echo "${cur_time}: bt firmware download ok(${TIMEOUT})" >> ${brcm_try_log}
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if ! grep "fail" ${brcm_try_log}; then
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reset_bt "hci0"
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hciconfig hci0 up
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hciconfig >> ${brcm_try_log}
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#reboot
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fi
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break
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else
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echo "${cur_time}: bt firmware download fail(${TIMEOUT})" >> ${brcm_try_log}
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cp ${brcm_log} ${brcm_err_log}
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reset_bt "sunxi-bt"
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fi
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done
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fi
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;;
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stop)
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kill `ps --no-headers -C brcm_patchram_plus -o pid`
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;;
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*)
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echo "Usage: brcm_patchram_plus start|stop" >&2
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exit 3
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;;
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esac
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EOF
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chmod 755 kali-${architecture}/etc/init.d/brcm_patchram_plus
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cat << EOF > kali-${architecture}/third-stage
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#!/bin/bash
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set -e
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dpkg-divert --add --local --divert /usr/sbin/invoke-rc.d.chroot --rename /usr/sbin/invoke-rc.d
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cp /bin/true /usr/sbin/invoke-rc.d
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echo -e "#!/bin/sh\nexit 101" > /usr/sbin/policy-rc.d
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chmod 755 /usr/sbin/policy-rc.d
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apt-get update
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debconf-set-selections /debconf.set
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rm -f /debconf.set
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apt-get update
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apt-get -y install git-core binutils ca-certificates initramfs-tools u-boot-tools
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apt-get -y install locales console-common less nano git
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# Create kali user with kali password... but first, we need to manually make some groups because they don't yet exist...
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# This mirrors what we have on a pre-installed VM, until the script works properly to allow end users to set up their own... user.
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# However we leave off floppy, because who a) still uses them, and b) attaches them to an SBC!?
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# And since a lot of these have serial devices of some sort, dialout is added as well.
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# scanner, lpadmin and bluetooth have to be added manually because they don't
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# yet exist in /etc/group at this point.
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groupadd -r -g 118 bluetooth
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groupadd -r -g 113 lpadmin
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groupadd -r -g 122 scanner
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groupadd -g 1000 kali
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useradd -m -u 1000 -g 1000 -G sudo,audio,bluetooth,cdrom,dialout,dip,lpadmin,netdev,plugdev,scanner,video,kali -s /bin/bash kali
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echo "kali:kali" | chpasswd
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export DEBIAN_FRONTEND=noninteractive
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# This looks weird, but we do it twice because every so often, there's a failure to download from the mirror
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# So to workaround it, we attempt to install them twice.
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apt-get --yes --allow-change-held-packages -o dpkg::options::=--force-confnew install ${packages} || apt-get --yes --fix-broken install
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apt-get --yes --allow-change-held-packages -o dpkg::options::=--force-confnew install ${packages} || apt-get --yes --fix-broken install
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apt-get --yes --allow-change-held-packages -o dpkg::options::=--force-confnew install ${desktop} ${extras} ${tools} || apt-get --yes --fix-broken install
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apt-get --yes --allow-change-held-packages -o dpkg::options::=--force-confnew install ${desktop} ${extras} ${tools} || apt-get --yes --fix-broken install
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apt-get --yes --allow-change-held-packages -o dpkg::options::=--force-confnew dist-upgrade
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apt-get --yes --allow-change-held-packages -o dpkg::options::=--force-confnew autoremove
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# Because copying in authorized_keys is hard for people to do, let's make the
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# image insecure and enable root login with a password.
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sed -i -e 's/PermitRootLogin prohibit-password/PermitRootLogin yes/' /etc/ssh/sshd_config
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# Regenerated the shared-mime-info database on the first boot
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# since it fails to do so properly in a chroot.
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systemctl enable smi-hack
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# Resize FS on first run (hopefully)
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systemctl enable rpiwiggle
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# Generate SSH host keys on first run
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systemctl enable regenerate_ssh_host_keys
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systemctl enable ssh
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# There's no graphical output on this device so
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systemctl set-default multi-user
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# Copy over the default bashrc
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cp /etc/skel/.bashrc /root/.bashrc
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cd /root
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apt download ca-certificates
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apt download libgdk-pixbuf2.0-0
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apt download fontconfig
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# This is a bit annoying, but since we build releases against
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# kali-last-snapshot, we need either to keep k-l-s in sources.list or we need to
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# do this.
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echo "deb http://http.kali.org/kali kali-rolling main contrib non-free" > /etc/apt/sources.list
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echo "#deb-src http://http.kali.org/kali kali-rolling main contrib non-free" >> /etc/apt/sources.list
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apt-get update
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apt-get --yes --download-only install kali-linux-default
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# Enable bluetooth - we do this way because we haven't written a systemd service
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# file for it yet.
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update-rc.d brcm_patchram_plus defaults
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# Because they have it in the system image, lets go ahead and clone these as
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# well.
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cd /root
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git clone --depth 1 https://github.com/friendlyarm/WiringNP
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git clone --depth 1 https://github.com/auto3000/RPi.GPIO_NP
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cd /
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# Set the terminus font for a bit nicer display.
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sed -ie 's/FONTFACE=.*/FONTFACE="Terminus"/g' /etc/default/console-setup
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sed -ie 's/FONTSIZE=.*/FONTSIZE="6x12"/g' /etc/default/console-setup
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rm -f /usr/sbin/policy-rc.d
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rm -f /usr/sbin/invoke-rc.d
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dpkg-divert --remove --rename /usr/sbin/invoke-rc.d
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rm -f /third-stage
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EOF
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chmod 755 kali-${architecture}/third-stage
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LANG=C systemd-nspawn -M ${machine} -D kali-${architecture} /third-stage
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cat << EOF > kali-${architecture}/cleanup
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#!/bin/bash
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rm -rf /root/.bash_history
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apt-get update
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rm -f /0
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rm -f /hs_err*
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rm -f cleanup
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rm -f /usr/bin/qemu*
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EOF
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chmod 755 kali-${architecture}/cleanup
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LANG=C systemd-nspawn -M ${machine} -D kali-${architecture} /cleanup
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#umount kali-${architecture}/proc/sys/fs/binfmt_misc
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#umount kali-${architecture}/dev/pts
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#umount kali-${architecture}/dev/
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#umount kali-${architecture}/proc
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cat << EOF > kali-${architecture}/etc/resolv.conf
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nameserver 8.8.8.8
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EOF
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# Serial console settings.
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# (No auto login)
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#echo 'T1:12345:respawn:/sbin/agetty 115200 ttyAMA0 vt100' >> ${basedir}/kali-${architecture}/etc/inittab
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cat << EOF > ${basedir}/kali-${architecture}/etc/apt/sources.list
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deb http://http.kali.org/kali kali-rolling main non-free contrib
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deb-src http://http.kali.org/kali kali-rolling main non-free contrib
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EOF
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# Uncomment this if you use apt-cacher-ng otherwise git clones will fail.
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#unset http_proxy
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# Kernel section. If you want to use a custom kernel, or configuration, replace
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# them in this section.
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git clone --depth 1 https://github.com/friendlyarm/linux -b sunxi-4.x.y ${basedir}/kali-${architecture}/usr/src/kernel
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cd ${basedir}/kali-${architecture}/usr/src/kernel
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git rev-parse HEAD > ${basedir}/kali-${architecture}/usr/src/kernel-at-commit
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touch .scmversion
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export ARCH=arm64
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export CROSS_COMPILE=aarch64-linux-gnu-
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cp ${basedir}/../kernel-configs/neoplus2.config ${basedir}/kali-${architecture}/usr/src/kernel/.config
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cp ${basedir}/../kernel-configs/neoplus2.config ${basedir}/kali-${architecture}/usr/src/
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patch -p1 --no-backup-if-mismatch < ${basedir}/../patches/kali-wifi-injection-4.14.patch
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patch -p1 --no-backup-if-mismatch < ${basedir}/../patches/0001-wireless-carl9170-Enable-sniffer-mode-promisc-flag-t.patch
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make -j $(grep -c processor /proc/cpuinfo)
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make modules
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make modules_install INSTALL_MOD_PATH=${basedir}/kali-${architecture}
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cp arch/arm64/boot/Image ${basedir}/kali-${architecture}/boot
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cp arch/arm64/boot/dts/allwinner/*.dtb ${basedir}/kali-${architecture}/boot/
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mkdir -p ${basedir}/kali-${architecture}/boot/overlays/
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cp arch/arm64/boot/dts/allwinner/overlays/*.dtb ${basedir}/kali-${architecture}/boot/overlays/
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make mrproper
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cd ${basedir}
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# Copy over the firmware for the ap6212 wifi.
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# On the neo plus2 default install there are other firmware files installed for
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# p2p and apsta but I can't find them publicly posted to friendlyarm's github.
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# At some point, nexmon could work for the device, but the support would need to
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# be added to nexmon.
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mkdir -p ${basedir}/kali-${architecture}/lib/firmware/ap6212/
|
|
wget https://raw.githubusercontent.com/friendlyarm/android_vendor_broadcom_nanopi2/nanopi2-lollipop-mr1/proprietary/nvram_ap6212.txt -O ${basedir}/kali-${architecture}/lib/firmware/ap6212/nvram.txt
|
|
wget https://raw.githubusercontent.com/friendlyarm/android_vendor_broadcom_nanopi2/nanopi2-lollipop-mr1/proprietary/nvram_ap6212a.txt -O ${basedir}/kali-${architecture}/lib/firmware/ap6212/nvram_ap6212.txt
|
|
wget https://raw.githubusercontent.com/friendlyarm/android_vendor_broadcom_nanopi2/nanopi2-lollipop-mr1/proprietary/fw_bcm43438a0.bin -O ${basedir}/kali-${architecture}/lib/firmware/ap6212/fw_bcm43438a0.bin
|
|
wget https://raw.githubusercontent.com/friendlyarm/android_vendor_broadcom_nanopi2/nanopi2-lollipop-mr1/proprietary/fw_bcm43438a1.bin -O ${basedir}/kali-${architecture}/lib/firmware/ap6212/fw_bcm43438a1.bin
|
|
wget https://raw.githubusercontent.com/friendlyarm/android_vendor_broadcom_nanopi2/nanopi2-lollipop-mr1/proprietary/fw_bcm43438a0_apsta.bin -O ${basedir}/kali-${architecture}/lib/firmware/ap6212/fw_bcm43438a0_apsta.bin
|
|
wget https://raw.githubusercontent.com/friendlyarm/android_vendor_broadcom_nanopi2/nanopi2-lollipop-mr1/proprietary/bcm43438a0.hcd -O ${basedir}/kali-${architecture}/lib/firmware/ap6212/bcm43438a0.hcd
|
|
wget https://raw.githubusercontent.com/friendlyarm/android_vendor_broadcom_nanopi2/nanopi2-lollipop-mr1/proprietary/bcm43438a1.hcd -O ${basedir}/kali-${architecture}/lib/firmware/ap6212/bcm43438a1.hcd
|
|
wget https://raw.githubusercontent.com/friendlyarm/android_vendor_broadcom_nanopi2/nanopi2-lollipop-mr1/proprietary/config_ap6212.txt -O ${basedir}/kali-${architecture}/lib/firmware/ap6212/config.txt
|
|
|
|
# The way the base system comes, the firmware seems to be a symlink into the
|
|
# ap6212 directory so let's do the same here.
|
|
# NOTE: This means we can't install firmware-brcm80211 firmware package because
|
|
# the firmware will conflict, and based on testing the firmware in the package
|
|
# *will not* work with this device.
|
|
mkdir -p ${basedir}/kali-${architecture}/lib/firmware/brcm
|
|
cd ${basedir}/kali-${architecture}/lib/firmware/brcm
|
|
ln -s /lib/firmware/ap6212/fw_bcm43438a1.bin brcmfmac43430a1-sdio.bin
|
|
ln -s /lib/firmware/ap6212/nvram_ap6212.txt brcmfmac43430a1-sdio.txt
|
|
ln -s /lib/firmware/ap6212/fw_bcm43438a0.bin brcmfmac43430-sdio.bin
|
|
ln -s /lib/firmware/ap6212/nvram.txt brcmfmac43430-sdio.txt
|
|
cd ${basedir}
|
|
|
|
# Fix up the symlink for building external modules
|
|
# kernver is used so we don't need to keep track of what the current compiled
|
|
# version is
|
|
kernver=$(ls ${basedir}/kali-${architecture}/lib/modules/)
|
|
cd ${basedir}/kali-${architecture}/lib/modules/${kernver}
|
|
rm build
|
|
rm source
|
|
ln -s /usr/src/kernel build
|
|
ln -s /usr/src/kernel source
|
|
cd ${basedir}
|
|
|
|
cp ${basedir}/../misc/zram ${basedir}/kali-${architecture}/etc/init.d/zram
|
|
chmod 755 ${basedir}/kali-${architecture}/etc/init.d/zram
|
|
|
|
# Required to kick the bluetooth chip.
|
|
cp ${basedir}/../misc/bins/brcm_patchram_plus-64 ${basedir}/kali-${architecture}/bin/brcm_patchram_plus
|
|
chmod 755 ${basedir}/kali-${architecture}/bin/brcm_patchram_plus
|
|
|
|
sed -i -e 's/^#PermitRootLogin.*/PermitRootLogin yes/' ${basedir}/kali-${architecture}/etc/ssh/sshd_config
|
|
|
|
cat << EOF > ${basedir}/kali-${architecture}/boot/boot.cmd
|
|
# Recompile with:
|
|
# mkimage -C none -A arm -T script -d boot.cmd boot.scr
|
|
|
|
setenv fsck.repair yes
|
|
setenv ramdisk rootfs.cpio.gz
|
|
setenv kernel Image
|
|
|
|
setenv env_addr 0x45000000
|
|
setenv kernel_addr 0x46000000
|
|
setenv ramdisk_addr 0x47000000
|
|
setenv dtb_addr 0x48000000
|
|
setenv fdtovaddr 0x49000000
|
|
|
|
fatload mmc 0 \${kernel_addr} \${kernel}
|
|
fatload mmc 0 \${ramdisk_addr} \${ramdisk}
|
|
if test \$board = nanopi-neo2-v1.1; then
|
|
fatload mmc 0 \${dtb_addr} sun50i-h5-nanopi-neo2.dtb
|
|
else
|
|
fatload mmc 0 \${dtb_addr} sun50i-h5-\${board}.dtb
|
|
fi
|
|
fdt addr \${dtb_addr}
|
|
|
|
# setup NEO2-V1.1 with gpio-dvfs overlay
|
|
if test \$board = nanopi-neo2-v1.1; then
|
|
fatload mmc 0 \${fdtovaddr} overlays/sun50i-h5-gpio-dvfs-overlay.dtb
|
|
fdt resize 8192
|
|
fdt apply \${fdtovaddr}
|
|
fi
|
|
|
|
# setup MAC address
|
|
fdt set ethernet0 local-mac-address \${mac_node}
|
|
|
|
# setup boot_device
|
|
fdt set mmc\${boot_mmc} boot_device <1>
|
|
|
|
setenv fbcon map:0
|
|
setenv bootargs console=ttyS0,115200 earlyprintk root=/dev/mmcblk0p2 rootfstype=ext3 rw rootwait fsck.repair=\${fsck.repair} panic=10 \${extra} fbcon=\${fbcon} ipv6.disable=1
|
|
#booti \${kernel_addr} \${ramdisk_addr}:500000 \${dtb_addr}
|
|
booti \${kernel_addr} - \${dtb_addr}
|
|
EOF
|
|
mkimage -C none -A arm -T script -d ${basedir}/kali-${architecture}/boot/boot.cmd ${basedir}/kali-${architecture}/boot/boot.scr
|
|
|
|
# rpi-wiggle
|
|
mkdir -p ${basedir}/kali-${architecture}/root/scripts
|
|
wget https://raw.github.com/steev/rpiwiggle/master/rpi-wiggle -O ${basedir}/kali-${architecture}/root/scripts/rpi-wiggle.sh
|
|
chmod 755 ${basedir}/kali-${architecture}/root/scripts/rpi-wiggle.sh
|
|
|
|
echo "Running du to see how big kali-${architecture} is"
|
|
du -sh ${basedir}/kali-${architecture}
|
|
echo "the above is how big the sdcard needs to be"
|
|
|
|
# Create the disk and partition it
|
|
# We start out at around 3MB so there is room to write u-boot without issues.
|
|
echo "Creating image file for NanoPi NEO Plus2"
|
|
dd if=/dev/zero of=${basedir}/${imagename}.img bs=1M count=${size}
|
|
parted ${imagename}.img --script -- mklabel msdos
|
|
parted ${imagename}.img --script -- mkpart primary ext3 4096s 264191s
|
|
parted ${imagename}.img --script -- mkpart primary ext3 264192s 100%
|
|
|
|
# Set the partition variables
|
|
loopdevice=`losetup -f --show ${basedir}/${imagename}.img`
|
|
device=`kpartx -va ${loopdevice} | sed 's/.*\(loop[0-9]\+\)p.*/\1/g' | head -1`
|
|
sleep 5
|
|
device="/dev/mapper/${device}"
|
|
bootp=${device}p1
|
|
rootp=${device}p2
|
|
|
|
# Create file systems
|
|
mkfs.vfat ${bootp}
|
|
mkfs.ext3 -O ^64bit -O ^flex_bg -O ^metadata_csum ${rootp}
|
|
|
|
# Create the dirs for the partitions and mount them
|
|
mkdir -p ${basedir}/root
|
|
mount ${rootp} ${basedir}/root
|
|
mkdir -p ${basedir}/root/boot
|
|
mount ${bootp} ${basedir}/root/boot
|
|
|
|
# We do this down here to get rid of the build system's resolv.conf after running through the build.
|
|
cat << EOF > kali-${architecture}/etc/resolv.conf
|
|
nameserver 8.8.8.8
|
|
EOF
|
|
|
|
echo "Rsyncing rootfs into image file"
|
|
rsync -HPavz -q ${basedir}/kali-${architecture}/ ${basedir}/root/
|
|
|
|
# Unmount partitions
|
|
sync
|
|
umount -l ${bootp}
|
|
umount -l ${rootp}
|
|
kpartx -dv ${loopdevice}
|
|
|
|
cd ${basedir}
|
|
git clone https://github.com/friendlyarm/u-boot.git
|
|
cd u-boot
|
|
git checkout sunxi-v2017.x
|
|
make nanopi_h5_defconfig
|
|
make
|
|
dd if=spl/sunxi-spl.bin of=${loopdevice} bs=1024 seek=8
|
|
dd if=u-boot.itb of=${loopdevice} bs=1024 seek=40
|
|
sync
|
|
|
|
cd ${basedir}
|
|
|
|
losetup -d ${loopdevice}
|
|
|
|
# Don't pixz on 32bit, there isn't enough memory to compress the images.
|
|
MACHINE_TYPE=`uname -m`
|
|
if [ ${MACHINE_TYPE} == 'x86_64' ]; then
|
|
echo "Compressing ${imagename}.img"
|
|
pixz ${basedir}/${imagename}.img ${basedir}/../${imagename}.img.xz
|
|
unxz -t ${basedir}/../${imagename}.img.xz || rm ${basedir}/../${imagename}.img.xz && pixz ${basedir}/${imagename}.img ${basedir}/../${imagename}.img.xz && unxz -t ${basedir}/../${imagename}.img.xz
|
|
echo "Deleting ${imagename}.img"
|
|
rm ${basedir}/${imagename}.img
|
|
fi
|
|
|
|
# Clean up all the temporary build stuff and remove the directories.
|
|
# Comment this out to keep things around if you want to see what may have gone
|
|
# wrong.
|
|
echo "Clean up the build system"
|
|
rm -rf ${basedir}
|