Confirmed live: install_frigate()'s fresh-install path overwrote a working, hand-crafted docker-compose.yml (Frigate + mosquitto + frigate-notify) with zero backup, because that file's shape didn't match what frigate.sh's own "existing install" detection knew how to recognize. Every service's own detection is a judgment call about what counts as "already installed" and can miss a real setup built outside this repo's conventions. lib/common.sh gains backup_if_exists(FILE) — copies FILE to FILE.bak.<timestamp> if it exists, no-ops otherwise (including DRY_RUN). Applied before every service's own `cat > docker-compose.yml`/`cat > .env` write across all 60 services that do one (115 call sites), plus a matching standalone-mode stub added to every service's own bootstrap block, same convention already used for port_in_use/find_free_port. This doesn't replace a service's own update/fresh-reinstall detection — it's the safety net underneath it, so a wrong detection costs a .bak file to restore from instead of the original silently disappearing. Also fixes the actual gap that surfaced this: services/frigate.sh's Authelia offer only checked for Authelia installed locally on Frigate's own box, which is never true for a dedicated NVR box with no local Caddy either (the common shape — Caddy lives elsewhere, snippet-generation mode already handles that). Now offers Authelia protection unconditionally and, when Authelia isn't local, asks whether it lives on the same machine as Caddy (still "import authelia", since that's local to wherever Caddy ends up) or on a genuinely separate third machine (the explicit header-pinned forward_auth form, per CLAUDE.md's "forward_auth to a remote Authelia" note, needed because a bare authelia:9091 shortcut only works one hop).
457 lines
19 KiB
Bash
457 lines
19 KiB
Bash
#!/bin/bash
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# services/pihole.sh — Pi-hole network-wide DNS ad/tracker blocking.
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# Part of the modular post-install system (sourced by setup.sh).
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#
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# Can also be run standalone on any machine:
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# sudo bash pihole.sh
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# (Docker must already be installed when run standalone)
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#
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# Deliberately standalone — not wired into wg-easy or any other VPN/DNS
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# push here. Point a device's DNS settings at this box's IP manually to use
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# it. If you want it pushed automatically to VPN clients, that's a
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# wg-easy-side change (WG_CONFIG's DNS setting), not something this
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# installer does on its own.
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# ── Standalone bootstrap ──────────────────────────────────────────────────────
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# Detected when the script is executed directly rather than sourced by setup.sh.
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# Sets up helpers and globals, then defers execution until after the function
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# definition at the bottom of this file.
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if [[ "${BASH_SOURCE[0]}" == "${0}" ]]; then
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[[ "$(id -u)" == "0" ]] || { echo "Run with sudo: sudo bash $0"; exit 1; }
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_SELF_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)"
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_COMMON="$_SELF_DIR/../lib/common.sh"
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if [[ -f "$_COMMON" ]]; then
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# Full repo present — use the real helpers (picks up ~/docker/.config too)
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# shellcheck source=../lib/common.sh
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source "$_COMMON"
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else
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# One-off copy — inline minimal stubs so the script works without the repo
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log_info() { echo -e "\033[0;34m[INFO]\033[0m $*"; }
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log_success() { echo -e "\033[0;32m[OK]\033[0m $*"; }
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log_warning() { echo -e "\033[1;33m[WARN]\033[0m $*"; }
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log_error() { echo -e "\033[0;31m[ERROR]\033[0m $*" >&2; }
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require_docker() {
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command -v docker &>/dev/null || {
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log_error "Docker not found. Install it first:"
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log_error " curl -fsSL https://get.docker.com | sudo sh"
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return 1
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}
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docker compose version &>/dev/null || {
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log_error "Docker Compose plugin missing:"
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log_error " sudo apt-get install -y docker-compose-plugin"
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return 1
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}
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}
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ensure_docker_dir_ownership() {
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chown -R "$ACTUAL_USER:$ACTUAL_USER" "$@" 2>/dev/null || true
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}
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generate_password() {
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local _len="${1:-32}"
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tr -dc 'a-zA-Z0-9' < /dev/urandom | head -c "$_len"
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}
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port_in_use() {
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local _port="$1" _proto="${2:-tcp}"
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local _flag="-tlnH"
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[ "$_proto" = "udp" ] && _flag="-ulnH"
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ss "$_flag" "sport = :${_port}" 2>/dev/null | grep -q .
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}
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find_free_port() {
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local _varname="$1" _port="$2" _proto="${3:-tcp}"
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while port_in_use "$_port" "$_proto"; do
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_port=$((_port + 1))
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done
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eval "$_varname='$_port'"
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}
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# Match common.sh's eval-based pattern so local vars in install_* are set correctly
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prompt_text() {
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local _q="$1" _def="$2" _var="$3" _r
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[[ "${UNATTENDED:-false}" == "true" ]] && { eval "$_var='$_def'"; return; }
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read -r -p " $_q " _r
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eval "$_var='${_r:-$_def}'"
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}
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prompt_yn() {
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local _q="$1" _def="$2" _var="$3" _r
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[[ "${UNATTENDED:-false}" == "true" ]] && { eval "$_var='$_def'"; return; }
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read -r -p " $_q " _r
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eval "$_var='${_r:-$_def}'"
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}
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prompt_reinstall_mode() {
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local _var="$1" _r
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[[ "${UNATTENDED:-false}" == "true" ]] && { eval "$_var='cancel'"; return; }
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echo ""
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echo " 1) Update — refresh the image only, leave config/data as-is"
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echo " 2) Full reinstall — wipe and reconfigure from scratch"
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echo " 3) Cancel — leave the existing install untouched"
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read -r -p " Choice [3]: " _r
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case "$_r" in
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1) eval "$_var='update'" ;;
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2) eval "$_var='fresh'" ;;
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*) eval "$_var='cancel'" ;;
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esac
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}
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configure_caddy_for_service() {
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local _name="$1" _upstream="$2" _subdomain="$3" _extra="${4:-}"
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local _caddy_dir="$DOCKER_DIR/caddy"
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local _caddyfile="$_caddy_dir/Caddyfile"
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local _display_port="${_upstream##*:}"
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# Determine mode: local Caddy, remote Caddy, or none
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local _mode="none"
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[[ -d "$_caddy_dir" ]] && _mode="local"
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[[ -n "${CADDY_REMOTE_HOST:-}" ]] && [[ "$_mode" != "local" ]] && _mode="remote"
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[[ "$_mode" == "none" ]] && {
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log_info "Access $_name directly on port $_display_port."
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return 0
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}
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echo ""
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local _do_caddy=""
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if [[ "$_mode" == "remote" ]]; then
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log_info "Remote Caddy configured (${CADDY_REMOTE_HOST})."
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log_info "A snippet file will be saved to ~/docker/caddy-snippets/."
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fi
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read -r -p " Configure Caddy reverse proxy for $_name? [y/N]: " _do_caddy
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[[ "${_do_caddy,,}" == "y" ]] || {
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log_info "Skipping — access at: http://localhost:$_display_port"
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return 0
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}
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# Domain prompt — pre-fill from SITE_DOMAIN when available
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local _default_domain=""
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if [[ -n "${SITE_DOMAIN:-}" ]] && [[ "$SITE_DOMAIN" != "example.com" ]]; then
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_default_domain="${_subdomain}.${SITE_DOMAIN}"
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log_info "Default: $_default_domain"
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fi
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local _domain=""
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read -r -p " Domain [${_default_domain:-required}]: " _domain
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_domain="${_domain:-$_default_domain}"
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[[ -n "$_domain" ]] || { log_warning "No domain entered — skipping Caddy."; return 0; }
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# Build upstream — remote Caddy uses host IP:port, not container name
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local _block_upstream="$_upstream"
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if [[ "$_mode" == "remote" ]]; then
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_block_upstream="${CADDY_REMOTE_HOST}:${_display_port}"
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fi
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local _site_block
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_site_block="$(cat << CBLOCK
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# $_name
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${_domain} {
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reverse_proxy ${_block_upstream}
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header {
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Strict-Transport-Security "max-age=31536000; includeSubDomains; preload"
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X-Content-Type-Options "nosniff"
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X-Frame-Options "SAMEORIGIN"
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Referrer-Policy "strict-origin-when-cross-origin"
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}
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log {
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output file /var/log/caddy/${_domain}.log
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format json
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}
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${_extra}
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}
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CBLOCK
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)"
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if [[ "$_mode" == "local" ]]; then
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if [[ -f "$_caddyfile" ]]; then
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local _bk="$_caddy_dir/Caddyfile.backup.$(date +%Y%m%d-%H%M%S)"
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cp "$_caddyfile" "$_bk"
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log_info "Backed up Caddyfile to $(basename "$_bk")"
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else
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touch "$_caddyfile"
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fi
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if grep -q "^${_domain}" "$_caddyfile" 2>/dev/null; then
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log_warning "$_domain already in Caddyfile"
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local _ow=""
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read -r -p " Overwrite? [y/N]: " _ow
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[[ "${_ow,,}" == "y" ]] || { log_info "Keeping existing entry."; return 0; }
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sed -i "/^${_domain}/,/^}/d" "$_caddyfile"
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fi
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printf '%s\n' "$_site_block" >> "$_caddyfile"
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log_success "Added $_domain to Caddyfile"
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docker exec caddy caddy fmt --overwrite /etc/caddy/Caddyfile 2>/dev/null || true
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if docker exec caddy caddy reload --config /etc/caddy/Caddyfile 2>/dev/null; then
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log_success "$_name accessible at: https://$_domain"
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else
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log_warning "Reload failed — check: docker logs caddy"
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log_info "Manual reload: docker exec caddy caddy reload --config /etc/caddy/Caddyfile"
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fi
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else
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local _snippet_dir="$DOCKER_DIR/caddy-snippets"
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local _snippet_file="$_snippet_dir/${_subdomain}.caddy"
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mkdir -p "$_snippet_dir"
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printf '%s\n' "$_site_block" > "$_snippet_file"
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chown "$ACTUAL_USER:$ACTUAL_USER" "$_snippet_file" 2>/dev/null || true
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log_success "Snippet saved: $_snippet_file"
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log_info "Copy to Caddy machine:"
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log_info " scp $_snippet_file caddy-host:~/caddy-snippets/"
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log_info " rsync -av $_snippet_dir/ caddy-host:~/caddy-snippets/ (all at once)"
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fi
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}
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write_readme() {
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local _dir="$1"; shift
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mkdir -p "$_dir"
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cat > "$_dir/README.md"
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}
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backup_if_exists() {
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local _file="$1"
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[ -f "$_file" ] || return 0
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cp -p "$_file" "${_file}.bak.$(date +%Y%m%d-%H%M%S)" 2>/dev/null
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}
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fi
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# Globals — ACTUAL_USER/ACTUAL_HOME must come before DOCKER_DIR
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# ($HOME under sudo is /root, not the real user's home)
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ACTUAL_USER="${ACTUAL_USER:-${SUDO_USER:-$USER}}"
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ACTUAL_HOME="$(getent passwd "$ACTUAL_USER" 2>/dev/null | cut -d: -f6 || echo "${HOME:-/root}")"
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DOCKER_DIR="${DOCKER_DIR:-$ACTUAL_HOME/docker}"
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DRY_RUN="${DRY_RUN:-false}"
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UNATTENDED="${UNATTENDED:-false}"
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SITE_TZ="${SITE_TZ:-$(cat /etc/timezone 2>/dev/null || echo UTC)}"
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SITE_DOMAIN="${SITE_DOMAIN:-example.com}"
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SITE_CADDY_NET="${SITE_CADDY_NET:-caddy_net}"
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register_service() { :; } # no-op — no wizard to register into
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_RUN_STANDALONE=1
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fi
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# ─────────────────────────────────────────────────────────────────────────────
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register_service pihole utilities "Network-wide DNS ad/tracker blocking (Pi-hole) — standalone, not wired into any VPN" 80
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install_pihole() {
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require_docker || return 1
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local DIR="$DOCKER_DIR/pihole"
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local WEB_PORT="8081"
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if [ "$DRY_RUN" = true ]; then
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echo "[DRY-RUN] Would create $DIR with docker-compose.yml + .env"
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echo "[DRY-RUN] Would warn (not block) if port 53/tcp or 53/udp is already in use"
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echo "[DRY-RUN] Would auto-scan for a free host port for the web admin UI"
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echo "[DRY-RUN] Would generate a random admin password"
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echo "[DRY-RUN] Would offer a Caddy reverse proxy for the admin UI only (never DNS)"
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return 0
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fi
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if [[ -f "$DIR/docker-compose.yml" && -f "$DIR/.env" ]]; then
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local MODE=""
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prompt_reinstall_mode MODE
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case "$MODE" in
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update)
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log_info "Refreshing the Pi-hole image only — existing blocklists, config, and"
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log_info "port are left as-is."
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( cd "$DIR" && docker compose pull && docker compose up -d ) \
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&& log_success "Pi-hole image refreshed" \
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|| log_warning "Refresh failed — check: docker compose -f $DIR/docker-compose.yml logs"
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return 0
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;;
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cancel)
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log_info "Leaving the existing install as-is."
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return 0
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;;
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fresh) ;; # fall through to the full install flow below
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esac
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fi
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# DNS itself is never scanned/moved — shifting Pi-hole off port 53 would
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# defeat the point, since every device on the network expects to find DNS
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# there by convention (unlike a web UI port, nothing lets a client be told
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# "try a different port instead"). Warn instead: the common case on Ubuntu
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# is systemd-resolved bound only to 127.0.0.53:53 (loopback), which does
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# NOT collide with Pi-hole's container publishing 53 on the host's real
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# interfaces — but if something else really is bound to 0.0.0.0:53, this
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# says so up front instead of failing silently at `docker compose up`.
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if port_in_use 53 tcp || port_in_use 53 udp; then
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log_warning "Something is already listening on port 53 (DNS) — check with:"
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log_warning " ss -tulnp | grep ':53 '"
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log_warning "If that's systemd-resolved bound to 127.0.0.53 only, this is fine —"
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log_warning "Pi-hole binds the host's real interfaces, not the loopback stub. If"
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log_warning "it's something else bound to 0.0.0.0:53, Pi-hole's container won't"
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log_warning "be able to start until that's freed or reconfigured."
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fi
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find_free_port WEB_PORT "$WEB_PORT"
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mkdir -p "$DIR"
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ensure_docker_dir_ownership "$DIR"
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cd "$DIR" || return 1
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# Mirrors configure_caddy_for_service's own mode resolution (lib/common.sh):
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# explicit CADDY_MODE from the site config wins, then a local ~/docker/caddy,
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# then the legacy CADDY_REMOTE_HOST var. Only "local" joins caddy_net — a
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# remote Caddy box can't resolve container names on this host's bridge
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# network anyway; it reaches this service via the host's published port.
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# This only ever applies to the WEB admin UI — DNS itself is never behind
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# Caddy (Caddy only speaks HTTP).
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local _CADDY_MODE="${CADDY_MODE:-none}"
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[ "$_CADDY_MODE" = "none" ] && [ -d "$DOCKER_DIR/caddy" ] && _CADDY_MODE="local"
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[ "$_CADDY_MODE" = "none" ] && [ -n "${CADDY_REMOTE_HOST:-}" ] && _CADDY_MODE="remote"
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local _CADDY_NET_BLOCK=""
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local _CADDY_NET_SECTION=""
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if [ "$_CADDY_MODE" = "local" ]; then
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_CADDY_NET_BLOCK=" networks:
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- caddy_net
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"
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_CADDY_NET_SECTION="
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networks:
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caddy_net:
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external: true
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name: ${SITE_CADDY_NET:-caddy_net}
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"
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fi
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local WEBPASSWORD
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WEBPASSWORD="$(generate_password 24)"
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# v6 image: config lives entirely under /etc/pihole (TOML-based
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# pihole.toml) — the old v5 split with a separate /etc/dnsmasq.d volume
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# and WEBPASSWORD env var are both gone. FTLCONF_webserver_api_password
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# replaces WEBPASSWORD; FTLCONF_dns_listeningMode=ALL is required under
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# Docker's default bridge networking or Pi-hole ignores queries from
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# anything but localhost. cap_add matches Pi-hole's own official compose
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# example — NET_ADMIN specifically is only needed if this instance is
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# ever used as a DHCP server too, which it isn't here, but the other two
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# (SYS_TIME, SYS_NICE) are part of that same documented baseline.
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backup_if_exists docker-compose.yml
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cat > docker-compose.yml << PIHOLE_COMPOSE
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name: pihole
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services:
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pihole:
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image: pihole/pihole:latest
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container_name: pihole
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hostname: pihole
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restart: unless-stopped
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environment:
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TZ: \${TZ}
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FTLCONF_webserver_api_password: \${WEBPASSWORD}
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FTLCONF_dns_listeningMode: ALL
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volumes:
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- ./etc-pihole:/etc/pihole
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ports:
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- "53:53/tcp"
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- "53:53/udp"
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- "${WEB_PORT}:80/tcp"
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cap_add:
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- NET_ADMIN
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- SYS_TIME
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- SYS_NICE
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${_CADDY_NET_BLOCK}${_CADDY_NET_SECTION}
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PIHOLE_COMPOSE
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backup_if_exists .env
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cat > .env << PIHOLE_ENV
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TZ=${SITE_TZ:-$(cat /etc/timezone 2>/dev/null || echo UTC)}
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# Admin web UI password (System Console / login screen).
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WEBPASSWORD='${WEBPASSWORD}'
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CADDY_NET=$SITE_CADDY_NET
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PIHOLE_ENV
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chmod 600 .env
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mkdir -p etc-pihole
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chown -R "$ACTUAL_USER:$ACTUAL_USER" "$DIR"
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echo ""
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log_success "Pi-hole configured at $DIR (DNS on 53, admin UI on port $WEB_PORT)"
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configure_caddy_for_service "Pi-hole" "pihole:80" "pihole"
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local _caddy_configured=false _caddy_mode=""
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if declare -p CADDY_SERVICE_CONFIGURED >/dev/null 2>&1; then
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_caddy_configured="$CADDY_SERVICE_CONFIGURED"
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_caddy_mode="$CADDY_SERVICE_MODE"
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fi
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# ── Firewall ─────────────────────────────────────────────────────────────
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# DNS (53) is opened unconditionally — this is meant to be queried
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# directly by devices on the network, never fronted by Caddy. The web UI
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# port only needs opening if Caddy ISN'T fronting it locally (matches the
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# pattern documented in CLAUDE.md for every other service in this repo).
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if command -v ufw &>/dev/null; then
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ufw allow 53/tcp comment "Pi-hole DNS"
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ufw allow 53/udp comment "Pi-hole DNS"
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if [ "$_caddy_configured" != "true" ] || [ "$_caddy_mode" = "remote" ]; then
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ufw allow "${WEB_PORT}/tcp" comment "Pi-hole admin UI"
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fi
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fi
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write_readme "$DIR" << MD
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# Pi-hole
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Network-wide DNS-based ad/tracker blocking. Standalone install — **not**
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wired into wg-easy, Netbird, or any other VPN here. To actually use it,
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point a device's DNS settings at this box's IP on port 53, either by hand
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per-device or via your router's DHCP DNS setting.
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## Access
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- Admin UI: http://localhost:${WEB_PORT} (or via Caddy if configured above)
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- Admin password: see \`.env\` → \`WEBPASSWORD\`
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- DNS: this box's IP, port 53 (standard DNS port — not configurable per-instance)
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## Using it
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|
Nothing points at this automatically. Options, in order of how much you
|
|
want blocked by default:
|
|
- **Per-device**: change that device's DNS server setting to this box's IP.
|
|
- **Whole LAN**: change your router's DHCP-assigned DNS server to this box's IP
|
|
(every device on that network picks it up automatically going forward).
|
|
- **Over the VPN too**: this needs a manual edit on the wg-easy side — set
|
|
wg-easy's DNS setting to this box's IP so it's pushed to VPN peers. Not
|
|
done automatically by this installer, on purpose (you said standalone).
|
|
|
|
## Port 53 already in use?
|
|
The installer warns but doesn't block if something's already listening on
|
|
53 at install time. The common, harmless case on Ubuntu is systemd-resolved
|
|
bound only to \`127.0.0.53:53\` (loopback stub) — Pi-hole's container
|
|
publishes on the host's real interfaces, not that loopback address, so the
|
|
two normally coexist fine. If something else genuinely holds \`0.0.0.0:53\`,
|
|
free it first or Pi-hole's container won't start:
|
|
\`\`\`
|
|
ss -tulnp | grep ':53 '
|
|
\`\`\`
|
|
|
|
## Manage
|
|
\`\`\`bash
|
|
cd $DIR
|
|
docker compose up -d # start
|
|
docker compose down # stop
|
|
docker compose logs -f # logs
|
|
docker exec -it pihole pihole -g # force a blocklist update (gravity)
|
|
\`\`\`
|
|
MD
|
|
|
|
local START=""
|
|
prompt_yn "Start Pi-hole now? (y/n):" "y" START
|
|
if [ "$START" = "y" ] || [ "$START" = "Y" ]; then
|
|
docker compose up -d \
|
|
&& log_success "Pi-hole started" \
|
|
|| log_warning "Start failed — check: docker compose logs"
|
|
fi
|
|
|
|
echo ""
|
|
echo " Admin UI: http://localhost:${WEB_PORT}"
|
|
echo " Password: see $DIR/.env"
|
|
echo " Nothing points at this DNS server yet — see the README for how to"
|
|
echo " actually route devices to it."
|
|
echo ""
|
|
}
|
|
|
|
# Run immediately when executed directly (deferred until after function definition)
|
|
[[ "${_RUN_STANDALONE:-0}" == 1 ]] && install_pihole
|