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arm-kali/nanopi2.sh

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#!/bin/bash
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set -e
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# This is the FriendlyARM NanoPi2 Kali ARM build script - http://nanopi.io/
# A trusted Kali Linux image created by Offensive Security - http://www.offensive-security.com
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if [[ $EUID -ne 0 ]]; then
echo "This script must be run as root"
exit 1
fi
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if [[ $# -eq 0 ]] ; then
echo "Please pass version number, e.g. $0 2.0"
exit 0
fi
basedir=`pwd`/nanopi2-$1
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# Custom hostname variable
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hostname=${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-$1-nanopi2}
# Size of image in megabytes (Default is 4500=4.5GB)
size=4500
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# Suite to use.
# Valid options are:
# kali-rolling, kali-dev, kali-bleeding-edge, kali-dev-only, kali-experimental, kali-last-snapshot
# A release is done against kali-last-snapshot, but if you're building your own, you'll probably want to build
# kali-rolling.
suite=kali-rolling
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# Generate a random machine name to be used.
machine=$(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
# anything else, that way the builds don't fail half way through.
export CROSS_COMPILE=arm-linux-gnueabihf-
if [ $(compgen -c $CROSS_COMPILE | wc -l) -eq 0 ] ; then
echo "Missing cross compiler. Set up PATH according to the README"
exit 1
fi
# Unset CROSS_COMPILE so that if there is any native compiling needed it doesn't
# get cross compiled.
unset CROSS_COMPILE
# Package installations for various sections.
# This will build a minimal XFCE Kali system with the top 10 tools.
# This is the section to edit if you would like to add more packages.
# See http://www.kali.org/new/kali-linux-metapackages/ for meta packages you can
# use. You can also install packages, using just the package name, but keep in
# mind that not all packages work on ARM! If you specify one of those, the
# script will throw an error, but will still continue on, and create an unusable
# image, keep that in mind.
arm="abootimg cgpt fake-hwclock ntpdate u-boot-tools vboot-utils vboot-kernel-utils"
base="apt-transport-https apt-utils console-setup e2fsprogs firmware-linux firmware-realtek firmware-atheros firmware-libertas firmware-brcm80211 ifupdown initramfs-tools iw kali-defaults man-db mlocate netcat-traditional net-tools parted psmisc rfkill screen snmpd snmp sudo tftp tmux unrar usbutils vim wget zerofree"
desktop="kali-menu fonts-croscore fonts-crosextra-caladea fonts-crosextra-carlito gtk3-engines-xfce kali-desktop-xfce kali-root-login lightdm network-manager network-manager-gnome xfce4 xserver-xorg-video-fbdev xserver-xorg-input-evdev xserver-xorg-input-synaptics"
tools="aircrack-ng crunch cewl dnsrecon dnsutils ethtool exploitdb hydra john libnfc-bin medusa metasploit-framework mfoc ncrack nmap passing-the-hash proxychains recon-ng sqlmap tcpdump theharvester tor tshark usbutils whois windows-binaries winexe wpscan wireshark"
services="apache2 atftpd openssh-server openvpn tightvncserver"
extras="iceweasel xfce4-terminal wpasupplicant python-smbus i2c-tools bluez bluez-firmware xfonts-terminus"
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packages="${arm} ${base} ${services} ${extras}"
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architecture="armhf"
# If you have your own preferred mirrors, set them here.
# After generating the rootfs, we set the sources.list to the default settings.
mirror=http.kali.org
# Set this to use an http proxy, like apt-cacher-ng, and uncomment further down
# to unset it.
#export http_proxy="http://localhost:3142/"
mkdir -p "${basedir}"
cd "${basedir}"
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# create the rootfs - not much to modify here, except maybe throw in some more packages if you want.
debootstrap --foreign --keyring=/usr/share/keyrings/kali-archive-keyring.gpg --include=kali-archive-keyring --arch ${architecture} ${suite} kali-${architecture} http://${mirror}/kali
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LANG=C systemd-nspawn -M ${machine} -D kali-${architecture} /debootstrap/debootstrap --second-stage
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mkdir -p kali-${architecture}/etc/apt/
cat << EOF > kali-${architecture}/etc/apt/sources.list
deb http://${mirror}/kali ${suite} main contrib non-free
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EOF
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echo "${hostname}" > kali-${architecture}/etc/hostname
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cat << EOF > kali-${architecture}/etc/hosts
127.0.0.1 ${hostname} localhost
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::1 localhost ip6-localhost ip6-loopback
fe00::0 ip6-localnet
ff00::0 ip6-mcastprefix
ff02::1 ip6-allnodes
ff02::2 ip6-allrouters
EOF
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mkdir -p kali-${architecture}/etc/network/
cat << EOF > kali-${architecture}/etc/network/interfaces
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auto lo
iface lo inet loopback
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auto eth0
allow-hotplug eth0
iface eth0 inet dhcp
hwaddress 76:92:d4:85:f3:0f
# This prevents NetworkManager from attempting to use this
# device to connect to wifi, since NM doesn't show which device is which.
# Unfortunately, it still SHOWS the device, just that it's not managed.
iface p2p0 inet manual
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EOF
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cat << EOF > kali-${architecture}/etc/resolv.conf
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nameserver 8.8.8.8
EOF
export MALLOC_CHECK_=0 # workaround for LP: #520465
export LC_ALL=C
export DEBIAN_FRONTEND=noninteractive
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#mount -t proc proc kali-${architecture}/proc
#mount -o bind /dev/ kali-${architecture}/dev/
#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
console-common console-data/keymap/full select en-latin1-nodeadkeys
EOF
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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
cp /bin/true /usr/sbin/invoke-rc.d
echo -e "#!/bin/sh\nexit 101" > /usr/sbin/policy-rc.d
chmod 755 /usr/sbin/policy-rc.d
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apt-get update
apt-get --yes --allow-change-held-packages install locales-all
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debconf-set-selections /debconf.set
rm -f /debconf.set
apt-get update
apt-get -y install git-core binutils ca-certificates initramfs-tools u-boot-tools
apt-get -y install locales console-common less nano git
echo "root:toor" | chpasswd
rm -f /etc/udev/rules.d/70-persistent-net.rules
export DEBIAN_FRONTEND=noninteractive
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apt-get --yes --allow-change-held-packages install ${packages} || apt-get --yes --fix-broken install
apt-get --yes --allow-change-held-packages install ${desktop} ${tools} || apt-get --yes --fix-broken install
apt-get --yes --allow-change-held-packages dist-upgrade
apt-get --yes --allow-change-held-packages autoremove
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# Because copying in authorized_keys is hard for people to do, let's make the
# image insecure and enable root login with a password.
sed -i -e 's/^#PermitRootLogin prohibit-password/PermitRootLogin yes/' /etc/ssh/sshd_config
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update-rc.d ssh enable
# Copy bashrc
cp /etc/skel/.bashrc /root/.bashrc
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rm -f /usr/sbin/policy-rc.d
rm -f /usr/sbin/invoke-rc.d
dpkg-divert --remove --rename /usr/sbin/invoke-rc.d
rm -f /third-stage
EOF
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chmod 755 kali-${architecture}/third-stage
LANG=C systemd-nspawn -M ${machine} -D kali-${architecture} /third-stage
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cat << EOF > kali-${architecture}/cleanup
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#!/bin/bash
rm -rf /root/.bash_history
apt-get update
apt-get clean
rm -f /0
rm -f /hs_err*
rm -f cleanup
rm -f /usr/bin/qemu*
EOF
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chmod 755 kali-${architecture}/cleanup
LANG=C systemd-nspawn -M ${machine} -D kali-${architecture} /cleanup
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#umount kali-${architecture}/proc/sys/fs/binfmt_misc
#umount kali-${architecture}/dev/pts
#umount kali-${architecture}/dev/
#umount kali-${architecture}/proc
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# Serial console settings.
# (No auto login)
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
deb-src http://http.kali.org/kali kali-rolling main non-free contrib
EOF
# Uncomment this if you use apt-cacher-ng otherwise git clones will fail.
#unset http_proxy
# Kernel section. If you want to use a custom kernel, or configuration, replace
# them in this section.
git clone --depth 1 https://github.com/friendlyarm/linux -b nanopi2-v4.4.y "${basedir}"/kali-${architecture}/usr/src/kernel
cd "${basedir}"/kali-${architecture}/usr/src/kernel
git rev-parse HEAD > "${basedir}"/kali-${architecture}/usr/src/kernel-at-commit
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touch .scmversion
export ARCH=armhf
export CROSS_COMPILE=arm-linux-gnueabihf-
patch -p1 --no-backup-if-mismatch < "${basedir}"/../patches/kali-wifi-injection-4.4.patch
make nanopi2_linux_defconfig
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make -j $(grep -c processor /proc/cpuinfo)
make modules_install INSTALL_MOD_PATH="${basedir}"/kali-${architecture}/
cp arch/arm/boot/Image "${basedir}"/kali-${architecture}/boot
cp arch/arm/boot/dts/*.dtb "${basedir}"/kali-${architecture}/boot/
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make mrproper
make nanopi2_linux_defconfig
cd "${basedir}"
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# Copy over the firmware for the nanopi3 wifi.
# At some point, nexmon could work for the device, but the support would need to
# be added to nexmon.
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
cd "${basedir}"
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# Fix up the symlink for building external modules
# kernver is used so we don't need to keep track of what the current compiled
# version is
kernver=$(ls "${basedir}"/kali-${architecture}/lib/modules/)
cd "${basedir}"/kali-${architecture}/lib/modules/${kernver}
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rm build
rm source
ln -s /usr/src/kernel build
ln -s /usr/src/kernel source
cd "${basedir}"
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cp "${basedir}"/../misc/zram "${basedir}"/kali-${architecture}/etc/init.d/zram
chmod 755 "${basedir}"/kali-${architecture}/etc/init.d/zram
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sed -i -e 's/^#PermitRootLogin.*/PermitRootLogin yes/' "${basedir}"/kali-${architecture}/etc/ssh/sshd_config
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RAW_SIZE_MB=${size}
BLOCK_SIZE=1024
let RAW_SIZE=(${RAW_SIZE_MB}*1000*1000)/${BLOCK_SIZE}
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# Create the disk and partition it
echo "Creating image file ${imagename}.img"
dd if=/dev/zero of="${basedir}"/${imagename}.img bs=${BLOCK_SIZE} count=0 seek=${RAW_SIZE}
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parted ${imagename}.img --script -- mklabel msdos
parted ${imagename}.img --script -- mkpart primary ext4 2048s 264191s
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parted ${imagename}.img --script -- mkpart primary ext4 264192s 100%
# Set the partition variables
loopdevice=`losetup -f --show "${basedir}"/${imagename}.img`
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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.ext4 ${bootp}
mkfs.ext4 -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
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# We do this down here to get rid of the build system's resolv.conf after running through the build.
cat << EOF > kali-${architecture}/etc/resolv.conf
nameserver 8.8.8.8
EOF
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echo "Rsyncing rootfs into image file"
rsync -HPavz -q "${basedir}"/kali-${architecture}/ "${basedir}"/root/
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# Unmount partitions
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sync
umount -l ${bootp}
umount -l ${rootp}
kpartx -dv ${loopdevice}
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# Samsung bootloaders must be signed.
# These are the same steps that are done by
# https://github.com/friendlyarm/sd-fuse_nanopi2/blob/master/fusing.sh
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# Download the latest prebuilt from the above url.
mkdir -p "${basedir}"/bootloader
cd "${basedir}"/bootloader
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wget https://raw.githubusercontent.com/friendlyarm/sd-fuse_nanopi2/master/prebuilt/bl1-mmcboot.bin
wget https://raw.githubusercontent.com/friendlyarm/sd-fuse_nanopi2/master/prebuilt/bl_mon.img
wget https://raw.githubusercontent.com/friendlyarm/sd-fuse_nanopi2/master/prebuilt/bootloader.img # This is u-boot
wget https://raw.githubusercontent.com/friendlyarm/sd-fuse_nanopi2/master/prebuilt/loader-mmc.img
wget https://raw.githubusercontent.com/friendlyarm/sd-fuse_nanopi2/master/tools/fw_printenv
chmod 755 fw_printenv
ln -s fw_printenv fw_setenv
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dd if=bl1-mmcboot.bin of=${loopdevice} bs=512 seek=1
dd if=loader-mmc.img of=${loopdevice} bs=512 seek=129
dd if=bl_mon.img of=${loopdevice} bs=512 seek=513
dd if=bootloader.img of=${loopdevice} bs=512 seek=3841
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cat << EOF > ${basedir}/bootloader/env.conf
# U-Boot environment for Debian, Ubuntu
#
# Copyright (C) Guangzhou FriendlyARM Computer Tech. Co., Ltd.
# (http://www.friendlyarm.com)
#
bootargs console=ttyAMA0,115200n8 root=/dev/mmcblk0p2 rootfstype=ext4 rootwait rw consoleblank=0 net.ifnames=0
bootdelay 1
EOF
./fw_setenv ${loopdevice} -s env.conf
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sync
cd "${basedir}"
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losetup -d ${loopdevice}
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# Don't pixz on 32bit, there isn't enough memory to compress the images.
MACHINE_TYPE=`uname -m`
if [ ${MACHINE_TYPE} == 'x86_64' ]; then
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echo "Compressing ${imagename}.img"
pixz "${basedir}"/${imagename}.img "${basedir}"/../${imagename}.img.xz
rm "${basedir}"/${imagename}.img
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fi
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# Clean up all the temporary build stuff and remove the directories.
# Comment this out to keep things around if you want to see what may have gone
# wrong.
echo "Clean up the build system"
rm -rf "${basedir}"