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🛡️ Shell Script Linting / 🛡️ Shell Script Linting (push) Successful in 1m29s
Signed-off-by: Marc S. Weidner <msw@coresecret.dev>
378 lines
10 KiB
Bash
378 lines
10 KiB
Bash
#!/bin/bash
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# SPDX-Version: 3.0
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# SPDX-CreationInfo: 2025-05-05; WEIDNER, Marc S.; <msw@coresecret.dev>
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# SPDX-ExternalRef: GIT https://git.coresecret.dev/msw/CISS.debian.installer.git
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# SPDX-FileContributor: WEIDNER, Marc S.; Centurion Intelligence Consulting Agency
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# SPDX-FileCopyrightText: 2024–2025; WEIDNER, Marc S.; <msw@coresecret.dev>
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# SPDX-FileType: SOURCE
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# SPDX-License-Identifier: EUPL-1.2 OR LicenseRef-CCLA-1.0
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# SPDX-LicenseComment: This file is part of the CISS.hardened.installer framework.
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# SPDX-PackageName: CISS.debian.installer
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# SPDX-Security-Contact: security@coresecret.eu
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# coresecret.sh to be executed after dropbear SSH login
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set -C -e -u -o pipefail
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IFS=$(printf ' \n\t')
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# shellcheck disable=SC2155
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declare -gr CURRENTDATE=$(date +"%F %T")
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declare -gir MAX_RETRIES=2
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#######################################
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# Generates informative shell prompt.
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# Globals:
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# PS1
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# Arguments:
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# None
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#######################################
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prompt_string() {
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declare -gx PS1="\
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\[\033[1;91m\]\d\[\033[0m\]|\[\033[1;91m\]\u\[\033[0m\]@\
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\[\033[1;95m\]\h\[\033[0m\]:\
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\[\033[1;96m\]\w\[\033[0m\]/>>\
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\$(if [[ \$? -eq 0 ]]; then \
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# Show exit status in green if zero
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echo -e \"\[\033[1;92m\]\$?\[\033[0m\]\"; \
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else \
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# Show exit status in red otherwise
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echo -e \"\[\033[1;91m\]\$?\[\033[0m\]\"; \
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fi)\
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|~\$ "
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}
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#######################################
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# Trap function to be called on 'ERR'.
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# Arguments:
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# $1: ${?}
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# $2: ${BASH_SOURCE[0]}
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# $3: ${LINENO}
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# $4: ${FUNCNAME[0]:-main}
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# $5: ${BASH_COMMAND}
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#######################################
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trap_on_err() {
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declare -r errcode="$1"
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declare -r errscrt="$2"
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declare -r errline="$3"
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declare -r errfunc="$4"
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declare -r errcmmd="$5"
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trap - ERR
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stty echo
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if [[ ${errcode} -eq 0 ]]; then
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print_scr_scc
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prompt_string
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exit 0
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else
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print_scr_err "${errcode}" "${errscrt}" "${errline}" "${errfunc}" "${errcmmd}"
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sleep 15
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sync
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set +C
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echo 1 > /proc/sys/kernel/sysrq
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echo o > /proc/sysrq-trigger
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fi
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}
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#######################################
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# Security Trap on 'INT' and 'TERM' to provide a deterministic way to not circumvent the Nuke Routine
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# Globals:
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# DEVICES_LUKS
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# DEVICES_NUKE
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# Arguments:
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# None
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#######################################
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trap_on_term() {
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trap - INT
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stty echo
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printf "\n"
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printf "\e[0;91m✘ System caught a 'SIGINT'. System Power Off in 3 seconds. \e[0m\n" >&2
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sync
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sleep 3
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set +C
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echo 1 > /proc/sys/kernel/sysrq
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echo o > /proc/sysrq-trigger
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}
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#######################################
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# Print Error Message for 'non-0' Trap on 'EXIT' on Terminal.
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# Arguments:
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# $1: ${?}
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# $2: ${BASH_SOURCE[0]}
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# $3: ${LINENO}
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# $4: ${FUNCNAME[0]:-main}
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# $5: ${BASH_COMMAND}
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#######################################
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print_scr_err() {
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declare -r scr_err_errcode="$1"
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declare -r scr_err_errscrt="$2"
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declare -r scr_err_errline="$3"
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declare -r scr_err_errfunc="$4"
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declare -r scr_err_errcmmd="$5"
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printf "\n"
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printf "\e[0;91m✘ System caught an 'ERROR'. System Power Off in 15 seconds. \e[0m\n" >&2
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printf "\n"
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printf "\e[0;91m✘ Error : %s \e[0m\n" "${scr_err_errcode}" >&2
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printf "\e[0;91m✘ Line : %s \e[0m\n" "${scr_err_errline}" >&2
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printf "\e[0;91m✘ Script : %s \e[0m\n" "${scr_err_errscrt}" >&2
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printf "\e[0;91m✘ Function : %s \e[0m\n" "${scr_err_errfunc}" >&2
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printf "\e[0;91m✘ Command : %s \e[0m\n" "${scr_err_errcmmd}" >&2
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printf "\n"
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}
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#######################################
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# Print Error Message for '0' Trap on 'ERR' on Terminal.
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# Arguments:
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# none
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#######################################
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print_scr_scc() {
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printf "\e[0;92m✅ Script exited successfully. Proceeding with booting. \e[0m\n"
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printf "\n"
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}
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#######################################
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# Gather information of all LUKS Devices available on the system
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# Arguments:
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# None
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#######################################
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gather_luks_devices() {
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declare prev=() curr=() dev="" tries=0
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while ((tries < 10)); do
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mapfile -t curr < <(blkid -t TYPE=crypto_LUKS -o device)
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if [[ ${curr[*]} == "${prev[*]}" ]]; then
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break
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fi
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prev=("${curr[@]}")
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tries=$((tries + 1))
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sleep 1
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done
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### Print one device per line for mapfile compatibility
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for dev in "${curr[@]}"; do
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printf '%s\n' "${dev}"
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done
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}
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#######################################
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# Gather information of all NUKE Devices available on the system
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# Globals:
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# DEVICES_LUKS
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# Arguments:
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# None
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#######################################
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gather_nuke_devices() {
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### 'DEVICES_LUKS' must already be a bash array of device paths
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declare dev=""
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declare result=()
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for dev in "${DEVICES_LUKS[@]}"; do
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### Check slot 31 for 'luks2'
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if cryptsetup luksDump "${dev}" 2> /dev/null | grep -qE '^[[:space:]]*31: luks2'; then
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result+=("${dev}")
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fi
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done
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### Print one device per line for mapfile compatibility
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for dev in "${result[@]}"; do
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printf '%s\n' "${dev}"
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done
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}
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#######################################
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# Read passphrase interactively.
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# Arguments:
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# None
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#######################################
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passphrase_ask() {
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declare -g PASSPHRASE=""
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printf "\n"
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stty -echo
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printf "\e[0;95m🔐 Enter passphrase for decryption: \e[0m\n"
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read -r PASSPHRASE
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stty echo
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printf "\n"
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}
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#######################################
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# Test the entered passphrase against the dedicated Nuke Keyslot #31.
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# Arguments:
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# $1: DEVICE
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# $2: PASSWD
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#######################################
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passphrase_test() {
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declare -r DEVICE="$1"
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declare -r PASPHR="$2"
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printf '%s' "${PASPHR}" | cryptsetup open --batch-mode --test-passphrase --key-slot 31 "${DEVICE}" > /dev/null 2>&1
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}
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#######################################
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# Check the integrity and authenticity of this script itself.
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# Arguments:
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# $0: Script Name
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#######################################
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verify_coresecret() {
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### Directory of this script
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# shellcheck disable=SC2155
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declare dir="$(dirname "$(readlink -f "${0}")")"
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# shellcheck disable=SC2155
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declare script="$(basename "${0}")"
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declare algo
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for algo in sha512 sha384; do
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# shellcheck disable=SC2155
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declare hashfile="${dir}/${script}.${algo}"
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# shellcheck disable=SC2155
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declare sigfile="${hashfile}.sig"
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# shellcheck disable=SC2155
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declare cmd="${algo}sum"
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printf "\e[0;95m🔏 Verifying signature of: [%s] \e[0m\n" "${hashfile}"
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gpgv --keyring /etc/keys/pubring.gpg "${sigfile}" "${hashfile}" || {
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printf "\e[0;91m✘ Signature verification failed for: [%s] \e[0m\n" "${hashfile}" >&2
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printf "\e[0;91m✘ System Power Off in 3 seconds. \e[0m\n" >&2
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sync
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sleep 3
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set +C
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echo 1 > /proc/sys/kernel/sysrq
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echo o > /proc/sysrq-trigger
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}
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printf "\e[0;92m🔏 Verifying signature of: [%s] successful. \e[0m\n" "${hashfile}"
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printf "\e[0;95m🔢 Recomputing Hash: [%s] \e[0m\n" "${algo}"
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# shellcheck disable=SC2155
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declare computed=$($cmd "${dir}/${script}" | awk '{print $1}')
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# shellcheck disable=SC2155
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declare expected=$(cat "${hashfile}")
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if [[ ${computed} != "${expected}" ]]; then
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printf "\e[0;91m✘ Hash mismatch for: [%s] \e[0m\n" "${algo}" >&2
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printf "\e[0;91m✘ System Power Off in 3 seconds. \e[0m\n" >&2
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sync
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sleep 3
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set +C
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echo 1 > /proc/sys/kernel/sysrq
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echo o > /proc/sysrq-trigger
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fi
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printf "\e[0;92m🔢 Recomputing Hash: [%s] successful. \e[0m\n" "${algo}"
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done
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printf "\e[0;92m🔏 All signatures and hashes verified successfully. Proceeding. \e[0m\n"
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}
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### Main Programm
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trap 'trap_on_err "$?" "${BASH_SOURCE[0]}" "${LINENO}" "${FUNCNAME[0]:-main}" "${BASH_COMMAND}"' ERR
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trap 'trap_on_term' INT TERM
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printf "\e[0;91mCoresecret Connection established.\e[0m\n"
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printf "\e[0;91mStarting Time: %s\e[0m\n" "${CURRENTDATE}"
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printf "\n"
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verify_coresecret
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### Read newline-separated output into an array
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mapfile -t DEVICES_LUKS < <(gather_luks_devices)
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mapfile -t DEVICES_NUKE < <(gather_nuke_devices)
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### Debug output: list each element with its index
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#for idx in "${!DEVICES_LUKS[@]}"; do
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# printf 'Luks[%d]: %s\n' "${idx}" "${DEVICES_LUKS[${idx}]}"
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#done
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### Debug output: list each element with its index
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#for idx in "${!DEVICES_NUKE[@]}"; do
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# printf 'Nuke[%d]: %s\n' "${idx}" "${DEVICES_NUKE[${idx}]}"
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#done
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### # If there are no LUKS devices at all, drop to bash
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[[ -n ${DEVICES_LUKS[*]} ]] || {
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printf "\e[0;92m✘ No LUKS Devices found. Dropping to bash ... \e[0m\n"
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prompt_string
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exec /bin/bash -i
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}
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### If there are LUKS devices but no Nuke devices, try unlocking flow
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if [[ -n ${DEVICES_LUKS[*]} ]] && [[ -z ${DEVICES_NUKE[*]} ]]; then
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### Attempt interactive unlock with cryptroot-unlock
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if cryptroot-unlock; then
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exit 0
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else
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printf "\n"
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printf "\e[0;91m✘ Unsuccessful command 'cryptroot-unlock'. \e[0m\n"
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printf "\e[0;92m✘ No LUKS operations performed. Dropping to bash ... \e[0m\n"
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printf "\e[0;92m✘ To unlock 'root' partition, and maybe others like 'swap', run 'cryptroot-unlock'. \e[0m\n"
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prompt_string
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exec /bin/bash -i
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fi
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elif [[ -n ${DEVICES_LUKS[*]} ]] && [[ -n ${DEVICES_NUKE[*]} ]]; then
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declare -i attempt=1
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declare NUKED=false
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declare TEST_DEV="${DEVICES_NUKE[0]}"
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while ((attempt <= MAX_RETRIES)); do
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printf "\e[0;95m🔐Attempt %s/%s: \e[0m\n" "${attempt}" "${MAX_RETRIES}"
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passphrase_ask
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declare -g PASSWD="${PASSPHRASE}"
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if passphrase_test "${TEST_DEV}" "${PASSWD}"; then
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for dev in "${DEVICES_NUKE[@]}"; do
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cryptsetup erase --batch-mode "${dev}" > /dev/null 2>&1
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printf "%s:\e[0;95m✘ LUKS Device Header malfunction. \e[0m\n" "${dev}"
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done
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declare -r NUKED=true
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unset PASSWD
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break
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else
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declare code="$?"
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case "${code}" in
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1) printf "\e[0;91m✘ No usable key slot is available. \e[0m\n" ;;
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2) printf "\e[0;91m✘ No key available with this passphrase. \e[0m\n" ;;
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3) printf "\e[0;93m✘ Out of memory. \e[0m\n" ;;
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*) printf "\e[0;91m✘ Unexpected Return Code. \e[0m\n" ;;
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esac
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fi
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attempt=$((attempt + 1))
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done
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if [[ ${NUKED} == true ]]; then
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stty echo
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sleep 3
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sync
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set +C
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echo 1 > /proc/sys/kernel/sysrq
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echo o > /proc/sysrq-trigger
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fi
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if cryptroot-unlock; then
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exit 0
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else
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printf "\e[0;91m✘ Unsuccessful command 'cryptroot-unlock'. \e[0m\n"
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printf "\e[0;92m✘ No LUKS operations performed. Dropping to bash ... \e[0m\n"
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printf "\e[0;92m✘ To unlock 'root' partition, and maybe others like 'swap', run 'cryptroot-unlock'. \e[0m\n"
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prompt_string
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exec /bin/bash -i
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fi
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fi
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# vim: number et ts=2 sw=2 sts=2 ai tw=128 ft=sh:
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