mirror of
https://github.com/dredx/prole.git
synced 2026-09-24 19:04:31 +00:00
692 lines
20 KiB
Bash
Executable File
692 lines
20 KiB
Bash
Executable File
#!/usr/bin/env bash
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set -euo pipefail
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# init_kong.sh
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# Purpose:
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# - Deploy Kong API Gateway (DB-less) into the service namespace
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# - Replaces the prole nginx deployment as the API endpoint
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# - Routes /backup/* to knoe-db-manager
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# - Creates the kong declarative config as a ConfigMap
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# - Applies the kong deployment and service manifests
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# - Provides start/stop/status/restart actions
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SCRIPT_DIR=$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)
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# Shared option parsing for common core scripts
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# shellcheck disable=SC1090
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source "$SCRIPT_DIR/common_core_lib.sh"
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# Inject default config if not provided
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_has_config=0
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for _arg in "$@"; do
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[[ "$_arg" == "-c" || "$_arg" == "--config" || "$_arg" == -c=* || "$_arg" == --config=* ]] && _has_config=1
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done
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if [[ $_has_config -eq 0 ]]; then
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_default_cfg="$(common_core_default_config_path "$SCRIPT_DIR" || true)"
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if [[ -n "$_default_cfg" ]]; then
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set -- "-c" "$_default_cfg" "$@"
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fi
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fi
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unset _has_config _arg _default_cfg
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common_core_preparse_config "$@"
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# shellcheck disable=SC1090
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source "$SCRIPT_DIR/prole_cfg.sh"
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set -- "${COMMON_CORE_ARGS[@]}"
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common_core_parse_args "$@"
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if [[ -z "${PROLE_MODE:-}" ]]; then
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export PROLE_MODE="k3s"
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fi
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resolve_explicit_kube_context() {
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local ctx="${KUBECTL_CONTEXT:-${KUBE_CONTEXT_NAME:-${KUBECONTEXT:-}}}"
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if [[ -n "$ctx" ]]; then
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printf '%s' "$ctx"
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return 0
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fi
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return 1
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}
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enforce_app_cluster_targeting() {
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if [[ "${PROLE_MODE:-}" != "k8s" ]]; then
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return 0
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fi
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local app_ctx="${APP_CLUSTER_KUBECONTEXT:-}"
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local db_ctx="${DB_CLUSTER_KUBECONTEXT:-}"
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local target_ctx
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target_ctx="$(resolve_explicit_kube_context || true)"
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if [[ -z "$app_ctx" ]]; then
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echo "ERROR: APP_CLUSTER_KUBECONTEXT is required for k8s Kong deployment." >&2
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exit 2
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fi
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if [[ -z "$target_ctx" ]]; then
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echo "ERROR: explicit kubectl context is required for k8s Kong deployment." >&2
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exit 2
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fi
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if [[ -n "$db_ctx" && "$target_ctx" == "$db_ctx" ]]; then
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echo "ERROR: refusing Kong APP step against DB context '$target_ctx'." >&2
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exit 2
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fi
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if [[ "$target_ctx" != "$app_ctx" ]]; then
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echo "ERROR: Kong APP step must target APP_CLUSTER_KUBECONTEXT='$app_ctx' (got '$target_ctx')." >&2
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exit 2
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fi
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export KUBECTL_CONTEXT="$app_ctx"
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export KUBE_CONTEXT_NAME="$app_ctx"
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export KUBECONTEXT="$app_ctx"
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}
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kubectl() {
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local target_ctx
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target_ctx="$(resolve_explicit_kube_context || true)"
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if [[ "${PROLE_MODE:-}" == "k8s" && -z "$target_ctx" ]]; then
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echo "ERROR: explicit kubectl context is required in k8s mode." >&2
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return 2
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fi
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local arg has_context=0
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for arg in "$@"; do
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case "$arg" in
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--context|--context=*|--server|--server=*)
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has_context=1
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break
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;;
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esac
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done
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if [[ -n "$target_ctx" && $has_context -eq 0 ]]; then
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command kubectl --context "$target_ctx" "$@"
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else
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command kubectl "$@"
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fi
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}
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enforce_app_cluster_targeting
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if [[ "${COMMON_CORE_HELP:-0}" == 1 ]]; then
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common_core_usage "$0"
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exit 0
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fi
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if [[ -n "${COMMON_CORE_PARSE_ERROR:-}" ]]; then
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echo "ERROR: ${COMMON_CORE_PARSE_ERROR}" >&2
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common_core_usage "$0"
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exit 2
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fi
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ACTION="$COMMON_CORE_ACTION"
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NAMESPACE="$(common_core_resolve_namespace "default")"
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common_core_apply_namespace "$NAMESPACE"
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PROLE_HOME=${PROLE_HOME:-$(cd "$SCRIPT_DIR/.." && pwd)}
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KONG_IMAGE="${KONG_IMAGE:-kong:3.9}"
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# k8s/GKE prod mode uses knoe.dev domain and knoe-svc-kong; all other modes use prole.org
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if [[ "${PROLE_MODE:-}" == "k8s" ]]; then
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KONG_NAME="${KONG_NAME:-knoe-svc-kong}"
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KONG_CONFIG_NAME="${KONG_CONFIG_NAME:-knoe-svc-kong-config}"
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SERVICE_HOSTNAME="${SERVICE_HOSTNAME:-svc.knoe.dev}"
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AUTH_HOSTNAME="${AUTH_HOSTNAME:-api.knoe.dev}"
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GITEA_HOSTNAME="${GITEA_HOSTNAME:-${GITEA_DOMAIN:-git.knoe.dev}}"
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SERVICE_INGRESS_TLS_ENABLED="${SERVICE_INGRESS_TLS_ENABLED:-0}"
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else
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KONG_NAME="${KONG_NAME:-prole-svc-kong}"
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KONG_CONFIG_NAME="${KONG_CONFIG_NAME:-prole-svc-kong-config}"
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SERVICE_HOSTNAME="${SERVICE_HOSTNAME:-svc.prole.org}"
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AUTH_HOSTNAME="${AUTH_HOSTNAME:-api.prole.org}"
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GITEA_HOSTNAME="${GITEA_HOSTNAME:-${GITEA_DOMAIN:-git.prole.org}}"
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SERVICE_INGRESS_TLS_ENABLED="${SERVICE_INGRESS_TLS_ENABLED:-1}"
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fi
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KONG_PROXY_PORT="${KONG_PROXY_PORT:-8000}"
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KONG_ADMIN_PORT="${KONG_ADMIN_PORT:-8001}"
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KONG_GITEA_SSH_PORT="${KONG_GITEA_SSH_PORT:-3022}"
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SERVICE_TLS_SECRET_NAME="${SERVICE_TLS_SECRET_NAME:-${SERVICE_HOSTNAME//./-}-tls}"
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SERVICE_TLS_CLUSTER_ISSUER="${SERVICE_TLS_CLUSTER_ISSUER:-letsencrypt-prod}"
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# Legacy: svc-check used to own svc.prole.org. We now route the service hostname
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# to Grafana, so remove any leftover svc-check resources to avoid conflicts.
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SVC_CHECK_NAMESPACE="${SVC_CHECK_NAMESPACE:-svc-check}"
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# kubectl robustness knobs (timeouts/retries for transient apiserver slowness)
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KUBECTL_REQUEST_TIMEOUT="${KUBECTL_REQUEST_TIMEOUT:-30s}"
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KUBECTL_APPLY_RETRIES="${KUBECTL_APPLY_RETRIES:-5}"
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KUBECTL_APPLY_RETRY_DELAY="${KUBECTL_APPLY_RETRY_DELAY:-2}"
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# Upstream service defaults
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DB_MANAGER_SERVICE="${DB_MANAGER_SERVICE:-knoe-db-manager}"
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DB_MANAGER_PORT="${DB_MANAGER_PORT:-80}"
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DB_MANAGER_NAMESPACE="${DB_MANAGER_NAMESPACE:-${DATABASE_NAMESPACE:-knoe-db}}"
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PROLE_SERVICE_UPSTREAM_URL="${PROLE_SERVICE_UPSTREAM_URL:-http://prole-svc.${NAMESPACE}.svc.cluster.local:8080}"
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GRAFANA_UPSTREAM_URL="${GRAFANA_UPSTREAM_URL:-http://kps-grafana.monitoring.svc.cluster.local:80}"
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GITEA_HTTP_UPSTREAM_URL="${GITEA_HTTP_UPSTREAM_URL:-http://gitea-http.gitea.svc.cluster.local:3000}"
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GITEA_SSH_UPSTREAM_HOST="${GITEA_SSH_UPSTREAM_HOST:-gitea-ssh.gitea.svc.cluster.local}"
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GITEA_SSH_UPSTREAM_PORT="${GITEA_SSH_UPSTREAM_PORT:-22}"
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# SSO wiring knobs
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PROLE_GRAFANA_SSO_ENABLED="${PROLE_GRAFANA_SSO_ENABLED:-0}"
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GRAFANA_PROXY_UPSTREAM_URL="${GRAFANA_PROXY_UPSTREAM_URL:-http://prole-grafana-proxy.${NAMESPACE}.svc.cluster.local:80}"
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KNOE_AUTH_UPSTREAM_URL="${KNOE_AUTH_UPSTREAM_URL:-http://knoe-auth.${SERVICE_NAMESPACE:-${NAMESPACE}}.svc.cluster.local:8080}"
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usage() {
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cat <<USAGE
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Usage: $0 [--mode MODE] [-n NAMESPACE] [${COMMON_CORE_ACTIONS//|/|}] [-c conf/{k3d|k3s|gke}.cfg]
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Actions:
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start Create ConfigMap and deploy Kong
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stop Remove Kong deployment, service, and ConfigMap
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status Show Kong pod/service status
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restart Restart Kong pods
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update Create or update Kong resources
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USAGE
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exit 1
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}
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ensure_tools() {
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for t in kubectl; do
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command -v "$t" >/dev/null || { echo "Missing required tool: $t" >&2; exit 1; }
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done
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}
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is_truthy() {
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case "${1:-}" in
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1|true|TRUE|True|yes|YES|on|ON|y|Y)
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return 0
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;;
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*)
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return 1
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;;
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esac
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}
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assert_public_ingress_targeting() {
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local ingress_class="${1:-}"
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shift || true
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local hosts=("$@")
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if [[ "${PROLE_MODE:-}" != "k8s" ]]; then
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return 0
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fi
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local app_ctx="${APP_CLUSTER_KUBECONTEXT:-}"
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local db_ctx="${DB_CLUSTER_KUBECONTEXT:-}"
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local active_ctx="${KUBECTL_CONTEXT:-${KUBE_CONTEXT_NAME:-${KUBECONTEXT:-}}}"
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if [[ -z "$app_ctx" || -z "$active_ctx" ]]; then
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echo "ERROR: explicit APP cluster context is required for public Kong ingress in k8s mode." >&2
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exit 1
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fi
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local host_count=0
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local h
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for h in "${hosts[@]}"; do
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[[ -n "${h:-}" ]] && host_count=$((host_count + 1))
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done
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if [[ "$host_count" -gt 0 && -n "$db_ctx" && "$active_ctx" == "$db_ctx" ]]; then
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echo "ERROR: refusing to render/apply public Kong ingress in DB cluster context '${active_ctx}' (hosts: ${hosts[*]})." >&2
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exit 1
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fi
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if [[ "$host_count" -gt 0 && -n "$app_ctx" && -n "$active_ctx" && "$active_ctx" != "$app_ctx" ]]; then
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echo "ERROR: public Kong ingress must target APP cluster context '${app_ctx}', active context is '${active_ctx}'." >&2
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exit 1
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fi
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if [[ -n "$ingress_class" ]]; then
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local normalized_class="${ingress_class,,}"
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if [[ "$normalized_class" == traefik* ]] && ! is_truthy "${ALLOW_TRAEFIK_PUBLIC_INGRESS:-${KONG_ALLOW_TRAEFIK_INGRESS:-0}}"; then
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echo "ERROR: ingress class '${ingress_class}' is incompatible with k8s mode unless Traefik public ingress is explicitly enabled." >&2
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exit 1
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fi
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fi
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}
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assert_unique_ingress_host_claims() {
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local ingress_name="${1:-}"
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local ingress_namespace="${2:-}"
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local host_csv="${3:-}"
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[[ -n "$host_csv" ]] || return 0
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local target_ctx="${KUBECTL_CONTEXT:-${KUBE_CONTEXT_NAME:-${KUBECONTEXT:-}}}"
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if [[ "${PROLE_MODE:-}" == "k8s" && -z "$target_ctx" ]]; then
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echo "ERROR: explicit kubectl context is required for ingress ownership checks in k8s mode." >&2
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return 1
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fi
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if ! python3 - "$host_csv" "$ingress_namespace" "$ingress_name" "$target_ctx" <<'PY'
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import json
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import subprocess
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import sys
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requested_hosts = {h.strip().lower() for h in (sys.argv[1] or "").split(",") if h.strip()}
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target_ns = sys.argv[2]
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target_name = sys.argv[3]
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target_ctx = (sys.argv[4] or "").strip()
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cmd = ["kubectl"]
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if target_ctx:
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cmd.extend(["--context", target_ctx])
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cmd.extend(["get", "ingress", "-A", "-o", "json"])
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try:
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raw = subprocess.check_output(cmd, text=True)
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except Exception:
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raise SystemExit(0)
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if not raw.strip():
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raise SystemExit(0)
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payload = json.loads(raw)
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conflicts: list[str] = []
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for item in payload.get("items", []) or []:
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md = item.get("metadata", {}) or {}
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ns = (md.get("namespace") or "").strip()
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name = (md.get("name") or "").strip()
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if ns == target_ns and name == target_name:
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continue
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spec = item.get("spec", {}) or {}
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rules = spec.get("rules", []) or []
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for rule in rules:
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host = (rule.get("host") or "").strip().lower()
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if not host or host not in requested_hosts:
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continue
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http = rule.get("http", {}) or {}
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paths = http.get("paths", []) or [{"path": "/"}]
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for path_item in paths:
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path = (path_item.get("path") or "/").strip() or "/"
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if path in {"/", ""}:
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conflicts.append(f"{host}{path} already owned by {ns}/{name}")
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if conflicts:
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raise SystemExit("; ".join(conflicts))
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PY
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then
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echo "ERROR: duplicate ingress host/path claim detected for Kong ingress '${ingress_namespace}/${ingress_name}'." >&2
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return 1
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fi
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}
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ensure_namespace() {
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if ! kubectl get namespace "$NAMESPACE" >/dev/null 2>&1; then
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echo "Creating namespace '$NAMESPACE' ..."
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kubectl create namespace "$NAMESPACE" >/dev/null 2>&1 || true
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fi
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}
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kubectl_rt() {
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kubectl --request-timeout="$KUBECTL_REQUEST_TIMEOUT" "$@"
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}
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kubectl_apply_retry() {
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local attempt=1
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local delay="$KUBECTL_APPLY_RETRY_DELAY"
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while true; do
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if kubectl_rt apply "$@"; then
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return 0
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fi
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local rc=$?
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if [[ "$attempt" -ge "$KUBECTL_APPLY_RETRIES" ]]; then
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return "$rc"
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fi
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echo "WARN: kubectl apply failed (attempt ${attempt}/${KUBECTL_APPLY_RETRIES}); retrying in ${delay}s ..." >&2
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sleep "$delay"
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attempt=$((attempt + 1))
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delay=$((delay * 2))
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done
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}
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# Sets KONG_CONFIG_CHANGED=1 in the caller's scope when the ConfigMap was
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# created or updated; leaves it 0 when kubectl reported "unchanged".
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# A temp file is used to communicate the result out of the subshell.
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KONG_CONFIG_CHANGED=0
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_KONG_CONFIG_CHANGED_FILE=""
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create_kong_config() {
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echo "Creating/updating Kong declarative config '$KONG_CONFIG_NAME' in namespace '$NAMESPACE' ..."
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local grafana_url
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grafana_url="$GRAFANA_UPSTREAM_URL"
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case "${PROLE_GRAFANA_SSO_ENABLED:-0}" in
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1|true|TRUE|True|yes|YES|on|ON)
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grafana_url="$GRAFANA_PROXY_UPSTREAM_URL"
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;;
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esac
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local kong_yml
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kong_yml=$(cat <<KONGEOF
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_format_version: "3.0"
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_transform: true
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services:
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- name: prole-service
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url: ${PROLE_SERVICE_UPSTREAM_URL}
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routes:
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- name: prole-k3s-kubeconfig
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hosts:
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- ${SERVICE_HOSTNAME}
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paths:
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- /k3s/kube_config.sh
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strip_path: false
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- name: db-manager
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url: http://${DB_MANAGER_SERVICE}.${DB_MANAGER_NAMESPACE}.svc.cluster.local:${DB_MANAGER_PORT}
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routes:
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- name: backup-route
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hosts:
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- ${SERVICE_HOSTNAME}
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paths:
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- /backup
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strip_path: false
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- name: grafana
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url: ${grafana_url}
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routes:
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- name: grafana-root
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hosts:
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- ${SERVICE_HOSTNAME}
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paths:
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- /
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strip_path: false
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- name: knoe-auth
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url: ${KNOE_AUTH_UPSTREAM_URL}
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routes:
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- name: knoe-auth-root
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hosts:
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- ${AUTH_HOSTNAME}
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paths:
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- /
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strip_path: false
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- name: gitea-http
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url: ${GITEA_HTTP_UPSTREAM_URL}
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routes:
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- name: gitea-root
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hosts:
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- ${GITEA_HOSTNAME}
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paths:
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- /
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strip_path: false
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- name: gitea-ssh
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host: ${GITEA_SSH_UPSTREAM_HOST}
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port: ${GITEA_SSH_UPSTREAM_PORT}
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protocol: tcp
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routes:
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- name: gitea-ssh-tcp
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protocols:
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- tcp
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destinations:
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- port: ${KONG_GITEA_SSH_PORT}
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KONGEOF
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)
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# Use a subshell to ensure the cleanup trap doesn't leak globally (and trip `set -u` later).
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# A sentinel file is used to communicate a config change back to the parent shell.
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_KONG_CONFIG_CHANGED_FILE="$(mktemp)"
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(
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tmp="$(mktemp)"
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trap 'rm -f "${tmp:-}"' EXIT
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kubectl create configmap "$KONG_CONFIG_NAME" \
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--namespace="$NAMESPACE" \
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--from-literal=kong.yml="$kong_yml" \
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--dry-run=client -o yaml >"$tmp"
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local apply_out
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apply_out=$(kubectl_apply_retry -f "$tmp" 2>&1)
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echo "$apply_out"
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if ! echo "$apply_out" | grep -q 'unchanged'; then
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echo "1" >"$_KONG_CONFIG_CHANGED_FILE"
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fi
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)
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if [[ -f "$_KONG_CONFIG_CHANGED_FILE" ]] && [[ "$(cat "$_KONG_CONFIG_CHANGED_FILE")" == "1" ]]; then
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KONG_CONFIG_CHANGED=1
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fi
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rm -f "$_KONG_CONFIG_CHANGED_FILE"
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_KONG_CONFIG_CHANGED_FILE=""
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echo "ConfigMap '$KONG_CONFIG_NAME' ready."
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}
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cleanup_legacy_svc_check() {
|
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# Best-effort cleanup: older installs applied a static check page (svc-check)
|
|
# that owned the service hostname via its own Ingress and injected routes into
|
|
# the shared Kong declarative config ConfigMap.
|
|
kubectl -n "$NAMESPACE" delete ingress svc-check-ingress --ignore-not-found >/dev/null 2>&1 || true
|
|
kubectl delete namespace "$SVC_CHECK_NAMESPACE" --ignore-not-found >/dev/null 2>&1 || true
|
|
}
|
|
|
|
apply_service_ingress() {
|
|
local host="${SERVICE_HOSTNAME:-}"
|
|
if [[ -z "$host" ]]; then
|
|
echo "WARN: SERVICE_HOSTNAME is empty; skipping service Ingress." >&2
|
|
return 0
|
|
fi
|
|
|
|
local auth_host="${AUTH_HOSTNAME:-}"
|
|
local gitea_host="${GITEA_HOSTNAME:-}"
|
|
local include_aux_hosts=1
|
|
if [[ "${PROLE_MODE:-}" == "k8s" ]]; then
|
|
include_aux_hosts=0
|
|
fi
|
|
local tls_hosts_extra=""
|
|
local rules_extra=""
|
|
if [[ "$include_aux_hosts" -eq 1 && -n "$auth_host" && "$auth_host" != "$host" ]]; then
|
|
tls_hosts_extra=$'\n - '"${auth_host}"
|
|
rules_extra=$(cat <<EOF
|
|
- host: ${auth_host}
|
|
http:
|
|
paths:
|
|
- path: /
|
|
pathType: Prefix
|
|
backend:
|
|
service:
|
|
name: ${KONG_NAME}
|
|
port:
|
|
number: ${KONG_PROXY_PORT}
|
|
EOF
|
|
)
|
|
fi
|
|
|
|
if [[ "$include_aux_hosts" -eq 1 && -n "$gitea_host" && "$gitea_host" != "$host" && "$gitea_host" != "$auth_host" ]]; then
|
|
tls_hosts_extra+=$'\n - '"${gitea_host}"
|
|
rules_extra+=$'\n'$(cat <<EOF
|
|
- host: ${gitea_host}
|
|
http:
|
|
paths:
|
|
- path: /
|
|
pathType: Prefix
|
|
backend:
|
|
service:
|
|
name: ${KONG_NAME}
|
|
port:
|
|
number: ${KONG_PROXY_PORT}
|
|
EOF
|
|
)
|
|
fi
|
|
|
|
local ingress_name="svc-knoe-ingress"
|
|
local extra_annotations=""
|
|
local tls_enabled=0
|
|
local tls_annotations=""
|
|
local tls_block=""
|
|
if is_truthy "${SERVICE_INGRESS_TLS_ENABLED:-0}"; then
|
|
tls_enabled=1
|
|
fi
|
|
|
|
if [[ "${PROLE_MODE:-}" != "k8s" ]]; then
|
|
extra_annotations=$' traefik.ingress.kubernetes.io/router.priority: "10"\n'
|
|
fi
|
|
local ingress_class="${KONG_INGRESS_CLASS:-}"
|
|
if [[ -z "$ingress_class" ]]; then
|
|
if [[ "${PROLE_MODE:-}" == "k8s" ]]; then
|
|
ingress_class="gce"
|
|
else
|
|
ingress_class="traefik"
|
|
fi
|
|
fi
|
|
|
|
local ingress_hosts=("$host")
|
|
if [[ "$include_aux_hosts" -eq 1 && -n "$auth_host" && "$auth_host" != "$host" ]]; then
|
|
ingress_hosts+=("$auth_host")
|
|
fi
|
|
if [[ "$include_aux_hosts" -eq 1 && -n "$gitea_host" && "$gitea_host" != "$host" && "$gitea_host" != "$auth_host" ]]; then
|
|
ingress_hosts+=("$gitea_host")
|
|
fi
|
|
assert_public_ingress_targeting "$ingress_class" "${ingress_hosts[@]}"
|
|
local ingress_host_csv
|
|
ingress_host_csv=$(IFS=, ; echo "${ingress_hosts[*]}")
|
|
assert_unique_ingress_host_claims "$ingress_name" "$NAMESPACE" "$ingress_host_csv"
|
|
|
|
if (( tls_enabled == 1 )); then
|
|
tls_annotations=$(cat <<EOF
|
|
cert-manager.io/cluster-issuer: ${SERVICE_TLS_CLUSTER_ISSUER}
|
|
EOF
|
|
)
|
|
tls_block=$(cat <<EOF
|
|
tls:
|
|
- hosts:
|
|
- ${host}
|
|
${tls_hosts_extra}
|
|
secretName: ${SERVICE_TLS_SECRET_NAME}
|
|
EOF
|
|
)
|
|
else
|
|
echo "INFO: Rendering svc ingress without TLS (SERVICE_INGRESS_TLS_ENABLED=${SERVICE_INGRESS_TLS_ENABLED:-0})."
|
|
fi
|
|
|
|
echo "Applying service Ingress for host '${host}' -> ${KONG_NAME}:${KONG_PROXY_PORT} (namespace=${NAMESPACE}) ..."
|
|
(
|
|
tmp="$(mktemp)"
|
|
trap 'rm -f "${tmp:-}"' EXIT
|
|
cat >"$tmp" <<EOF
|
|
apiVersion: networking.k8s.io/v1
|
|
kind: Ingress
|
|
metadata:
|
|
name: ${ingress_name}
|
|
namespace: ${NAMESPACE}
|
|
annotations:
|
|
kubernetes.io/ingress.class: ${ingress_class}
|
|
${extra_annotations}${tls_annotations}
|
|
spec:
|
|
${tls_block}
|
|
rules:
|
|
- host: ${host}
|
|
http:
|
|
paths:
|
|
- path: /
|
|
pathType: Prefix
|
|
backend:
|
|
service:
|
|
name: ${KONG_NAME}
|
|
port:
|
|
number: ${KONG_PROXY_PORT}
|
|
${rules_extra}
|
|
EOF
|
|
kubectl_apply_retry -f "$tmp"
|
|
)
|
|
}
|
|
|
|
deploy() {
|
|
echo "Deploying $KONG_NAME to namespace '$NAMESPACE' ..."
|
|
|
|
local manifests_dir
|
|
if [[ "${PROLE_MODE:-}" == "k8s" ]]; then
|
|
manifests_dir="$PROLE_HOME/deploy/opentofu/k8s/manifests/prole"
|
|
else
|
|
manifests_dir="$PROLE_HOME/deploy/opentofu/k3s/manifests/prole"
|
|
fi
|
|
|
|
# Determine whether the Deployment already exists before applying manifests.
|
|
local deployment_existed=0
|
|
kubectl_rt get deployment "$KONG_NAME" -n "$NAMESPACE" >/dev/null 2>&1 && deployment_existed=1
|
|
|
|
local deploy_out
|
|
deploy_out=$(kubectl_apply_retry -f "$manifests_dir/kong-deployment.yaml" -n "$NAMESPACE" 2>&1)
|
|
echo "$deploy_out"
|
|
local svc_out
|
|
svc_out=$(kubectl_apply_retry -f "$manifests_dir/kong-service.yaml" -n "$NAMESPACE" 2>&1)
|
|
echo "$svc_out"
|
|
|
|
echo "Waiting for $KONG_NAME rollout ..."
|
|
kubectl rollout status deployment/"$KONG_NAME" -n "$NAMESPACE" --timeout=120s
|
|
|
|
# ConfigMaps do not trigger a Deployment rollout by default. Only restart
|
|
# Kong when something actually changed: either this is a fresh deployment or
|
|
# the declarative config ConfigMap was modified. Skipping the restart when
|
|
# nothing changed prevents a new ReplicaSet from being created every run.
|
|
local need_restart=0
|
|
[[ "$deployment_existed" -eq 0 ]] && need_restart=1
|
|
[[ "${KONG_CONFIG_CHANGED:-0}" -eq 1 ]] && need_restart=1
|
|
|
|
if [[ "$need_restart" -eq 1 ]]; then
|
|
echo "Restarting $KONG_NAME to reload declarative config ..."
|
|
kubectl rollout restart deployment/"$KONG_NAME" -n "$NAMESPACE" >/dev/null 2>&1 || true
|
|
kubectl rollout status deployment/"$KONG_NAME" -n "$NAMESPACE" --timeout=120s >/dev/null 2>&1 || true
|
|
else
|
|
echo "$KONG_NAME config unchanged; skipping rollout restart."
|
|
fi
|
|
|
|
echo "$KONG_NAME deployed successfully."
|
|
}
|
|
|
|
stop() {
|
|
echo "Removing $KONG_NAME from namespace '$NAMESPACE' ..."
|
|
kubectl delete deployment "$KONG_NAME" -n "$NAMESPACE" --ignore-not-found=true
|
|
kubectl delete service "$KONG_NAME" -n "$NAMESPACE" --ignore-not-found=true
|
|
kubectl delete configmap "$KONG_CONFIG_NAME" -n "$NAMESPACE" --ignore-not-found=true
|
|
echo "$KONG_NAME removed."
|
|
}
|
|
|
|
status() {
|
|
echo "=== $KONG_NAME pods ==="
|
|
kubectl get pods -n "$NAMESPACE" -l app="$KONG_NAME" 2>/dev/null || echo "No pods found"
|
|
echo ""
|
|
echo "=== $KONG_NAME service ==="
|
|
kubectl get svc "$KONG_NAME" -n "$NAMESPACE" 2>/dev/null || echo "No service found"
|
|
}
|
|
|
|
restart() {
|
|
echo "Restarting $KONG_NAME ..."
|
|
kubectl rollout restart deployment/"$KONG_NAME" -n "$NAMESPACE"
|
|
kubectl rollout status deployment/"$KONG_NAME" -n "$NAMESPACE" --timeout=120s
|
|
echo "$KONG_NAME restarted."
|
|
}
|
|
|
|
action_update() {
|
|
ensure_tools
|
|
ensure_namespace
|
|
cleanup_legacy_svc_check
|
|
create_kong_config
|
|
apply_service_ingress
|
|
deploy
|
|
}
|
|
|
|
case "$ACTION" in
|
|
start|initialize|update|reload)
|
|
action_update
|
|
;;
|
|
stop)
|
|
ensure_tools
|
|
stop
|
|
;;
|
|
status)
|
|
ensure_tools
|
|
status
|
|
;;
|
|
restart)
|
|
ensure_tools
|
|
restart
|
|
;;
|
|
*)
|
|
usage
|
|
;;
|
|
esac
|