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@@ -116,11 +116,11 @@ c=70
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PIHOLE_META_PACKAGE_CONTROL_APT=$(
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cat <<EOM
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Package: pihole-meta
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Version: 0.5
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Version: 0.6
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Maintainer: Pi-hole team <adblock@pi-hole.net>
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Architecture: all
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Description: Pi-hole dependency meta package
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Depends: awk,bash-completion,binutils,ca-certificates,cron|cron-daemon,curl,dialog,dnsutils,dns-root-data,git,grep,iproute2,iputils-ping,jq,libcap2,libcap2-bin,lshw,procps,psmisc,sudo,unzip
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Depends: awk,bash-completion,binutils,ca-certificates,cron|cron-daemon,curl,dialog,bind9-dnsutils|dnsutils,dns-root-data,git,grep,iproute2,iputils-ping,jq,libcap2,libcap2-bin,lshw,procps,psmisc,sudo,unzip
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Section: contrib/metapackages
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Priority: optional
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EOM
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@@ -155,7 +155,7 @@ EOM
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)
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# List of required packages on APK based systems
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PIHOLE_META_VERSION_APK=0.1
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PIHOLE_META_VERSION_APK=0.2
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PIHOLE_META_DEPS_APK=(
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bash
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bash-completion
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@@ -165,6 +165,8 @@ PIHOLE_META_DEPS_APK=(
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cronie
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curl
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dialog
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doas # sudo replacement
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doas-sudo-shim
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git
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grep
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iproute2-minimal # piholeARPTable.sh
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@@ -178,10 +180,8 @@ PIHOLE_META_DEPS_APK=(
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procps-ng
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psmisc
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shadow
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sudo
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tzdata
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unzip
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wget
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)
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######## Undocumented Flags. Shhh ########
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@@ -189,14 +189,27 @@ PIHOLE_META_DEPS_APK=(
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# The runUnattended flag is one example of this
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repair=false
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runUnattended=false
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skipFTL=false
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# Check arguments for the undocumented flags
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for var in "$@"; do
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case "${var}" in
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"--repair") repair=true ;;
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"--unattended") runUnattended=true ;;
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"--skipFTL") skipFTL=true ;;
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esac
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done
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if [[ "${runUnattended}" == true ]]; then
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# In order to run an unattended setup, a pre-seeded /etc/pihole/pihole.toml must exist
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if [[ ! -f "${PI_HOLE_CONFIG_DIR}/pihole.toml" ]]; then
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printf " %b Error: \"%s\" not found. Cannot run unattended setup\\n" "${CROSS}" "${PI_HOLE_CONFIG_DIR}/pihole.toml"
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exit 1
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fi
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printf " %b Performing unattended setup, no dialogs will be displayed\\n" "${INFO}"
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# also disable debconf-apt-progress dialogs
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export DEBIAN_FRONTEND="noninteractive"
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fi
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# If the color table file exists,
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if [[ -f "${coltable}" ]]; then
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# source it
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@@ -694,10 +707,11 @@ chooseInterface() {
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status="OFF"
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done
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# Disable check for double quote here as we are passing a string with spaces
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# shellcheck disable=SC2086
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PIHOLE_INTERFACE=$(dialog --no-shadow --keep-tite --output-fd 1 \
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--cancel-label "Exit" --ok-label "Select" \
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--radiolist "Choose An Interface (press space to toggle selection)" \
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${r} ${c} "${interfaceCount}" "${interfacesList}")
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${r} ${c} "${interfaceCount}" ${interfacesList})
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result=$?
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case ${result} in
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@@ -1251,10 +1265,6 @@ install_manpage() {
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# if not present, create man8 directory
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install -d -m 755 /usr/local/share/man/man8
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fi
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if [[ ! -d "/usr/local/share/man/man5" ]]; then
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# if not present, create man5 directory
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install -d -m 755 /usr/local/share/man/man5
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fi
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# Testing complete, copy the files & update the man db
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install -D -m 644 -T ${PI_HOLE_LOCAL_REPO}/manpages/pihole.8 /usr/local/share/man/man8/pihole.8
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@@ -1807,6 +1817,12 @@ clone_or_reset_repos() {
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# If the user wants to repair/update,
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if [[ "${repair}" == true ]]; then
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printf " %b Resetting local repos\\n" "${INFO}"
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# import getFTLConfigValue from utils.sh
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source "/opt/pihole/utils.sh"
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# Use the configured Web repo location on repair/update
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webInterfaceDir=$(getFTLConfigValue "webserver.paths.webroot")$(getFTLConfigValue "webserver.paths.webhome")
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# Reset the Core repo
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resetRepo ${PI_HOLE_LOCAL_REPO} ||
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{
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@@ -1948,9 +1964,18 @@ get_binary_name() {
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# If the machine is aarch64 (armv8)
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if [[ "${machine}" == "aarch64" ]]; then
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# If AArch64 is found (e.g., BCM2711 in Raspberry Pi 4)
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printf "%b %b Detected AArch64 (64 Bit ARM) architecture\\n" "${OVER}" "${TICK}"
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l_binary="pihole-FTL-arm64"
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if [[ "$(getconf LONG_BIT)" == "64" ]]; then
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# If the OS is 64 bit, we use the arm64 binary
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printf "%b %b Detected AArch64 (64 Bit ARM) architecture\\n" "${OVER}" "${TICK}"
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l_binary="pihole-FTL-arm64"
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else
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# If the OS is 32 bit, we use the armv7 binary (aarch64 is actually armv8)
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# Even though the machine is 64 bit capable, this makes debugging
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# very hard as 32bit tools like gdb, etc. cannot analyze the 64 bit
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# binary. See FTL issue #2494 for such an example.
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printf "%b %b Detected AArch64 (64 Bit ARM) architecture with 32 bit OS\\n" "${OVER}" "${TICK}"
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l_binary="pihole-FTL-armv7"
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fi
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elif [[ "${machine}" == "arm"* ]]; then
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# ARM 32 bit
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# Get supported processor from other binaries installed on the system
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@@ -2320,21 +2345,18 @@ main() {
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# Check if there is a usable FTL binary available on this architecture - do
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# this early on as FTL is a hard dependency for Pi-hole
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local funcOutput
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funcOutput=$(get_binary_name) #Store output of get_binary_name here
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# Abort early if this processor is not supported (get_binary_name returns empty string)
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if [[ "${funcOutput}" == "" ]]; then
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printf " %b Upgrade/install aborted\\n" "${CROSS}" "${DISTRO_NAME}"
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exit 1
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fi
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if [[ "${fresh_install}" == false ]]; then
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# if it's running unattended,
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if [[ "${runUnattended}" == true ]]; then
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printf " %b Performing unattended setup, no dialogs will be displayed\\n" "${INFO}"
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# also disable debconf-apt-progress dialogs
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export DEBIAN_FRONTEND="noninteractive"
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# Allow the user to skip this check if they are using a self-compiled FTL binary from an unsupported architecture
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if [ "${skipFTL}" != true ]; then
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# Get the binary name for the current architecture
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local funcOutput
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funcOutput=$(get_binary_name) #Store output of get_binary_name here
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# Abort early if this processor is not supported (get_binary_name returns empty string)
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if [[ "${funcOutput}" == "" ]]; then
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printf " %b Upgrade/install aborted\\n" "${CROSS}" "${DISTRO_NAME}"
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exit 1
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fi
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else
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printf " %b %b--skipFTL set - skipping architecture check%b\\n" "${INFO}" "${COL_YELLOW}" "${COL_NC}"
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fi
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if [[ "${fresh_install}" == true ]]; then
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@@ -2367,13 +2389,18 @@ main() {
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create_pihole_user
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# Download and install FTL
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local binary
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binary="pihole-FTL${funcOutput##*pihole-FTL}" #binary name will be the last line of the output of get_binary_name (it always begins with pihole-FTL)
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local theRest
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theRest="${funcOutput%pihole-FTL*}" # Print the rest of get_binary_name's output to display (cut out from first instance of "pihole-FTL")
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if ! FTLdetect "${binary}" "${theRest}"; then
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printf " %b FTL Engine not installed\\n" "${CROSS}"
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exit 1
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# Allow the user to skip this check if they are using a self-compiled FTL binary from an unsupported architecture
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if [ "${skipFTL}" != true ]; then
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local binary
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binary="pihole-FTL${funcOutput##*pihole-FTL}" #binary name will be the last line of the output of get_binary_name (it always begins with pihole-FTL)
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local theRest
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theRest="${funcOutput%pihole-FTL*}" # Print the rest of get_binary_name's output to display (cut out from first instance of "pihole-FTL")
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if ! FTLdetect "${binary}" "${theRest}"; then
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printf " %b FTL Engine not installed\\n" "${CROSS}"
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exit 1
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fi
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else
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printf " %b %b--skipFTL set - skipping FTL binary installation%b\\n" "${INFO}" "${COL_YELLOW}" "${COL_NC}"
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fi
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# Install and log everything to a file
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