Foundation for a scoped sudoers: route every genuine system-admin command (systemctl/ufw/ufw-docker/nft/apt/apt-get/pacman/sysctl/useradd/usermod/ service/wg/wg-quick/cscli/loginctl) through runSystem instead of raw sudo across 28 active scripts. runSystem is 'sudo "$@"' so this is byte-identical in every mode (safe on live installs) — it just collects all real-root use at one chokepoint that will define the eventual /etc/sudoers.d allowlist. Also: revert a crowdsec advice message the sweep wrongly rewrote (the admin types sudo, not runSystem), and give crontab_check_processor.sh the same startup bootstrap as the task processor — it runs standalone via cron and already used runFileOp/runFileWrite (undefined there), so it was silently broken; now it sources the helpers + docker-type config. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> Signed-off-by: librelad <librelad@digitalangels.vip>
225 lines
10 KiB
Bash
Executable File
225 lines
10 KiB
Bash
Executable File
#!/bin/bash
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installDockerRootless()
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{
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if [[ $CFG_DOCKER_INSTALL_TYPE == "rootless" ]]; then
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isHeader "Install Docker Rootless"
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#dockerComposeDownAllApps root;
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#dockerServiceStop root;
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((menu_number++))
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echo ""
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echo "---- $menu_number. Installing System Requirements."
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echo ""
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local docker_install_user_id=$(id -u "$CFG_DOCKER_INSTALL_USER")
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local docker_install_bashrc="/home/$CFG_DOCKER_INSTALL_USER/.bashrc"
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local result=$(runSystem apt-get install -y apt-transport-https ca-certificates curl gnupg software-properties-common uidmap dbus-user-session fuse-overlayfs passt)
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checkSuccess "Installing necessary packages"
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local result=$(runSystem systemctl disable --now docker.service docker.socket)
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checkSuccess "Disabling Docker service & Socket"
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((menu_number++))
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echo ""
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echo "---- $menu_number. Installing slirp4netns."
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echo ""
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# slirp4netns update and install
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if ! command -v slirp4netns &> /dev/null; then
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isNotice "slirp4netns is not installed. Installing..."
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local result=$(runSystem apt-get install -y slirp4netns)
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checkSuccess "Installing slirp4netns"
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else
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isNotice "slirp4netns is already installed"
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installed_version=$(slirp4netns --version | awk '{print $2}')
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latest_version=$(curl -s https://api.github.com/repos/rootless-containers/slirp4netns/releases/latest | grep tag_name | cut -d '"' -f 4)
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if [[ "$installed_version" != "$latest_version" ]]; then
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isNotice "slirp4netns version $installed_version is outdated."
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isNotice "Installing version $latest_version..."
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local result=$(runSystem apt-get update)
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checkSuccess "Updating apt packages"
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local result=$(runSystem apt-get install -y slirp4netns)
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checkSuccess "Installing slirp4netns"
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else
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isSuccessful "slirp4netns version $installed_version is up to date"
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fi
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fi
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if [[ $(lsb_release -rs) == "10" ]]; then
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((menu_number++))
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echo ""
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echo "---- $menu_number. Updating the sysctl file for Updating Debian 10."
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echo ""
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if sudo grep -q "kernel.unprivileged_userns_clone=1" $sysctl; then
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isNotice "kernel.unprivileged_userns_clone=1 already exists in $sysctl"
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else
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local result=$(echo "kernel.unprivileged_userns_clone=1" | sudo tee -a $sysctl > /dev/null)
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checkSuccess "Adding kernel.unprivileged_userns_clone=1 to $sysctl..."
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local result=$(runSystem sysctl --system)
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checkSuccess "Running sudo -u $sudo_user_name sysctl --system..."
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fi
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fi
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((menu_number++))
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echo ""
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echo "---- $menu_number. Update the .bashrc file."
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echo ""
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if ! grep -qF "# DOCKER ROOTLESS BASHRC START" "$docker_install_bashrc"; then
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local result=$(echo '# DOCKER ROOTLESS BASHRC START' | sudo tee -a "$docker_install_bashrc" > /dev/null)
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checkSuccess "Adding rootless header to .bashrc"
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local result=$(echo 'export XDG_RUNTIME_DIR=/run/user/${UID}' | sudo tee -a "$docker_install_bashrc" > /dev/null)
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checkSuccess "Adding export path to .bashrc"
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local result=$(echo 'export PATH=/usr/bin:$PATH' | sudo tee -a "$docker_install_bashrc" > /dev/null)
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checkSuccess "Adding export path to .bashrc"
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local result=$(echo 'export DOCKER_HOST=unix:///run/user/${UID}/docker.sock' | sudo tee -a "$docker_install_bashrc" > /dev/null)
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checkSuccess "Adding export DOCKER_HOST path to .bashrc"
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local result=$(echo 'export DBUS_SESSION_BUS_ADDRESS="unix:path=/run/user/${UID}/bus"' | sudo tee -a "$docker_install_bashrc" > /dev/null)
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checkSuccess "Adding export DBUS_SESSION_BUS_ADDRESS path to .bashrc"
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local result=$(echo '# DOCKER ROOTLESS BASHRC END' | sudo tee -a "$docker_install_bashrc" > /dev/null)
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checkSuccess "Adding rootless header to .bashrc"
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isSuccessful "Added $CFG_DOCKER_INSTALL_USER to bashrc file"
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else
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isNotice "Rootless .bashrc already configured for $CFG_DOCKER_INSTALL_USER — skipping"
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fi
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((menu_number++))
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echo ""
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echo "---- $menu_number. Setting up Rootless Docker."
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echo ""
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local result=$(runSystem loginctl enable-linger $CFG_DOCKER_INSTALL_USER)
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checkSuccess "Adding automatic start (linger)"
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# Rootless Install
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rootless_install=$(cat <<EOF
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curl -fsSL https://get.docker.com/rootless | sh && \
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systemctl --user start docker && \
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systemctl --user enable docker && \
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exit
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EOF
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)
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local result=$(dockerCommandRunInstallUser "$rootless_install")
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checkSuccess "Setting up Rootless for $CFG_DOCKER_INSTALL_USER"
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((menu_number++))
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# The net namespace driver and the rootlesskit port driver are a matched
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# pair — mixing them makes rootlesskit reject the config and the daemon
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# silently never starts (this is why an earlier pasta+builtin attempt
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# bricked the install). The user picks one network stack via
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# CFG_ROOTLESS_NET; we derive its only valid port driver here:
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# pasta -> implicit (fastest; propagates the real client IP)
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# slirp4netns -> builtin (legacy fallback)
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local rootless_net="${CFG_ROOTLESS_NET:-pasta}"
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local rootless_port_driver
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case "$rootless_net" in
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pasta) rootless_port_driver="implicit" ;;
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slirp4netns) rootless_port_driver="builtin" ;;
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*)
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isNotice "Unknown CFG_ROOTLESS_NET='$rootless_net'; falling back to pasta."
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rootless_net="pasta"
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rootless_port_driver="implicit"
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;;
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esac
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echo ""
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echo "---- $menu_number. Configuring rootless networking ($rootless_net + $rootless_port_driver port driver)."
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echo ""
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systemd_user_dir="/home/$CFG_DOCKER_INSTALL_USER/.config/systemd/user"
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local result=$(dockerCommandRunInstallUser "mkdir -p $systemd_user_dir")
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checkSuccess "Create the systemd user directory if it doesn't exist"
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local result=$(dockerCommandRunInstallUser "mkdir -p $systemd_user_dir/docker.service.d")
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checkSuccess "Create the docker.service.d directory if it doesn't exist"
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override_conf_file="$systemd_user_dir/docker.service.d/override.conf"
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local result=$(sudo touch $override_conf_file)
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checkSuccess "Create the override.conf in docker.service.d"
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sudo bash -c "cat <<EOL > '$override_conf_file'
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[Service]
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Environment='DOCKERD_ROOTLESS_ROOTLESSKIT_NET=$rootless_net'
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Environment='DOCKERD_ROOTLESS_ROOTLESSKIT_PORT_DRIVER=$rootless_port_driver'
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Environment='DOCKERD_ROOTLESS_ROOTLESSKIT_MTU=$CFG_NETWORK_MTU'
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EOL"
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local result=$(sudo chown $CFG_DOCKER_INSTALL_USER:$CFG_DOCKER_INSTALL_USER $override_conf_file)
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checkSuccess "Updating ownership for override.conf"
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# NOTE: we deliberately do NOT set "userland-proxy": false here. Disabling
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# it makes rootless dockerd require br_netfilter
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# (/proc/sys/net/bridge/bridge-nf-call-iptables), which isn't present in
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# the rootless netns on Debian — the daemon then fails to create the
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# default bridge and won't start. The userland proxy's lack of source-IP
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# propagation doesn't matter here: apps sit behind Traefik, which carries
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# the real client IP via X-Forwarded-For at L7.
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local result=$(dockerCommandRunInstallUser "systemctl --user daemon-reload")
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checkSuccess "Reload the systemd user manager configuration"
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isNotice "Restarting docker service...this may take a moment..."
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local result=$(dockerCommandRunInstallUser "systemctl --user restart docker")
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checkSuccess "Reload the systemd user docker service"
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local result=$(sudo cp $sysctl $sysctl.bak)
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checkSuccess "Backing up sysctl file"
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((menu_number++))
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echo ""
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echo "---- $menu_number. Setting up sysctl file to work with LetsEncrypt."
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echo ""
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# Update sysctl file
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if ! grep -qF "# DOCKER ROOTLESS SYSCTL START" "$sysctl"; then
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local result=$(echo '# DOCKER ROOTLESS SYSCTL START' | sudo tee -a "$sysctl" > /dev/null)
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checkSuccess "Adding rootless header to sysctl"
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local result=$(echo 'net.ipv4.ip_unprivileged_port_start=0' | sudo tee -a "$sysctl" > /dev/null)
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checkSuccess "Adding ip_unprivileged_port_start to sysctl"
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local result=$(echo 'kernel.unprivileged_userns_clone=1' | sudo tee -a "$sysctl" > /dev/null)
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checkSuccess "Adding unprivileged_userns_clone to sysctl"
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local result=$(echo '# DOCKER ROOTLESS SYSCTL END' | sudo tee -a "$sysctl" > /dev/null)
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checkSuccess "Adding rootless end to sysctl"
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isSuccessful "Updated the sysctl with Docker Rootless configuration"
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fi
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# Enabling unprivileged user namespaces (needed for rootless) widens the
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# kernel attack surface reachable by unprivileged users. Offset that by
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# closing the surfaces that local-privilege-escalation chains lean on:
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# kptr_restrict hides kernel pointers (info-leak primitives), ptrace_scope
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# blocks cross-process ptrace (credential theft post-compromise), and
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# bpf_jit_harden hardens the JIT against spraying. Written under
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# /etc/sysctl.d/ so `sysctl --system` actually loads it — LibrePortal's
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# own $sysctl path (/etc/sysctl/…) is non-standard and is NOT read by
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# `sysctl --system`.
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local hardening_conf="/etc/sysctl.d/99-libreportal-hardening.conf"
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sudo bash -c "cat > '$hardening_conf'" <<'EOL'
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# LibrePortal kernel LPE-surface hardening (paired with rootless unprivileged userns)
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kernel.kptr_restrict=2
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kernel.yama.ptrace_scope=1
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net.core.bpf_jit_harden=2
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EOL
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checkSuccess "Writing kernel LPE-surface hardening to $hardening_conf"
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local result=$(runSystem sysctl --system)
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checkSuccess "Applying changes to sysctl"
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menu_number=0
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fi
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}
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