Viktor's direction (2026-06-12): the emulator is dev-only, so it should be on-demand, and it should use the T4 where applicable. (1) api36-v5 runs '-gpu host' on the GPU node (nodeSelector + time-slice + EGL libs; automatic swiftshader fallback if GPU init dies) — screen-on rendering moves off the CPU (~5 cores → expected 1-2). (2) The wake gate (stdlib python, owns / on both hostnames) scales the deployment 0→1 on visit and hands the browser to noVNC when ready; agents GET /wake + /status. The idle-sleeper CronJob counts established adb/noVNC connections via /proc/net/tcp (excluding the in-container loopback adb client) and scales to zero after 4 idle checks (~1h). TF ignores replicas drift. VRAM cost (~0.5-1GiB) is held only while awake, protecting llama-swap headroom.
233 lines
7.3 KiB
HCL
233 lines
7.3 KiB
HCL
# On-demand lifecycle: the emulator scales to ZERO when idle and wakes on
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# visit. The gate (tiny stdlib-python HTTP server) owns `/` on both emulator
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# hostnames — it scales the deployment up and hands the browser to noVNC once
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# ready; agents use GET /wake + /status. The idle CronJob scales back to zero
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# after ~1h with no adb/VNC connections. Decision: Viktor 2026-06-12 —
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# dev-only usage, and an always-on GPU emulator would permanently hold T4
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# VRAM that the LLM jobs need.
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resource "kubernetes_service_account" "gate" {
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metadata {
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name = "android-emulator-gate"
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namespace = kubernetes_namespace.android-emulator.metadata[0].name
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}
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}
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resource "kubernetes_role" "gate" {
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metadata {
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name = "android-emulator-gate"
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namespace = kubernetes_namespace.android-emulator.metadata[0].name
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}
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rule {
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api_groups = ["apps"]
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resources = ["deployments"]
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resource_names = ["android-emulator"]
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verbs = ["get", "patch"]
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}
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rule {
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api_groups = [""]
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resources = ["pods"]
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verbs = ["get", "list"]
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}
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rule {
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api_groups = [""]
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resources = ["pods/exec"]
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verbs = ["create"]
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}
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}
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resource "kubernetes_role_binding" "gate" {
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metadata {
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name = "android-emulator-gate"
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namespace = kubernetes_namespace.android-emulator.metadata[0].name
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}
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role_ref {
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api_group = "rbac.authorization.k8s.io"
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kind = "Role"
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name = kubernetes_role.gate.metadata[0].name
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}
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subject {
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kind = "ServiceAccount"
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name = kubernetes_service_account.gate.metadata[0].name
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namespace = kubernetes_namespace.android-emulator.metadata[0].name
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}
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}
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resource "kubernetes_config_map" "gate" {
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metadata {
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name = "android-emulator-gate"
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namespace = kubernetes_namespace.android-emulator.metadata[0].name
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}
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data = {
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"gate.py" = file("${path.module}/gate.py")
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}
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}
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resource "kubernetes_deployment" "gate" {
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metadata {
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name = "android-emulator-gate"
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namespace = kubernetes_namespace.android-emulator.metadata[0].name
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labels = {
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app = "android-emulator-gate"
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}
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}
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spec {
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replicas = 1
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selector {
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match_labels = { app = "android-emulator-gate" }
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}
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template {
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metadata {
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labels = { app = "android-emulator-gate" }
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annotations = {
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"checksum/gate" = sha1(file("${path.module}/gate.py"))
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}
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}
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spec {
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service_account_name = kubernetes_service_account.gate.metadata[0].name
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container {
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name = "gate"
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image = "python:3.12-alpine"
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command = ["python", "/app/gate.py"]
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env {
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name = "NAMESPACE"
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value = kubernetes_namespace.android-emulator.metadata[0].name
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}
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env {
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name = "DEPLOYMENT"
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value = "android-emulator"
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}
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port {
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container_port = 8080
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}
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volume_mount {
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name = "app"
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mount_path = "/app"
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}
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resources {
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requests = {
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cpu = "10m"
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memory = "64Mi"
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}
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limits = {
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memory = "64Mi"
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}
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}
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readiness_probe {
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http_get {
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path = "/healthz"
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port = 8080
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}
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period_seconds = 10
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}
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}
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volume {
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name = "app"
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config_map {
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name = kubernetes_config_map.gate.metadata[0].name
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}
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}
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}
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}
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}
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lifecycle {
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ignore_changes = [spec[0].template[0].spec[0].dns_config] # KYVERNO_LIFECYCLE_V1
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}
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}
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resource "kubernetes_service" "gate" {
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metadata {
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name = "android-emulator-gate"
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namespace = kubernetes_namespace.android-emulator.metadata[0].name
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}
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spec {
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selector = {
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app = "android-emulator-gate"
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}
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port {
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name = "http"
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port = 80
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target_port = 8080
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}
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}
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}
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# Sleep side: every 15 min, look at established TCP connections to the
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# emulator's adb (5555) and noVNC (6080) ports from OUTSIDE the pod
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# (remote != 127.0.0.1 — the in-container adb server holds a permanent
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# loopback connection to adbd that must not count as activity). Four
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# consecutive idle checks (~1h) scale the deployment to zero.
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resource "kubernetes_cron_job_v1" "idle_sleeper" {
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metadata {
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name = "android-emulator-idle-sleeper"
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namespace = kubernetes_namespace.android-emulator.metadata[0].name
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}
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spec {
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schedule = "*/15 * * * *"
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concurrency_policy = "Forbid"
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successful_jobs_history_limit = 1
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failed_jobs_history_limit = 2
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job_template {
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metadata {}
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spec {
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backoff_limit = 0
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ttl_seconds_after_finished = 3600
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template {
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metadata {}
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spec {
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service_account_name = kubernetes_service_account.gate.metadata[0].name
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restart_policy = "Never"
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container {
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name = "sleeper"
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image = "bitnami/kubectl:latest"
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command = ["/bin/bash", "-c"]
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args = [<<-EOT
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set -euo pipefail
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NS=android-emulator DEPLOY=android-emulator ANN=emulator.viktorbarzin.me/idle-checks
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spec=$(kubectl -n $NS get deploy $DEPLOY -o jsonpath='{.spec.replicas}')
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[ "$spec" = "0" ] && { echo "already asleep"; exit 0; }
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pod=$(kubectl -n $NS get pods -l app=$DEPLOY --field-selector=status.phase=Running -o name | head -1)
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[ -z "$pod" ] && { echo "no running pod (booting?) — not counting"; exit 0; }
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# /proc/net/tcp: count ESTABLISHED (st=01) conns with local port
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# 5555 (0x15B3) or 6080 (0x17C0) whose remote is not loopback.
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est=$(kubectl -n $NS exec $${pod#pod/} -- cat /proc/net/tcp | awk '
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$4 == "01" {
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split($2, l, ":"); split($3, r, ":")
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if ((l[2] == "15B3" || l[2] == "17C0") && r[1] != "0100007F") n++
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} END { print n+0 }')
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if [ "$est" -gt 0 ]; then
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echo "$est active connection(s) — resetting idle counter"
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kubectl -n $NS annotate deploy $DEPLOY $ANN=0 --overwrite
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exit 0
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fi
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n=$(kubectl -n $NS get deploy $DEPLOY -o jsonpath="{.metadata.annotations['emulator\.viktorbarzin\.me/idle-checks']}")
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n=$(( $${n:-0} + 1 ))
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if [ "$n" -ge 4 ]; then
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echo "idle for $n checks (~1h) — scaling to zero"
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kubectl -n $NS scale deploy $DEPLOY --replicas=0
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kubectl -n $NS annotate deploy $DEPLOY $ANN=0 --overwrite
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else
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echo "idle check $n/4"
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kubectl -n $NS annotate deploy $DEPLOY $ANN=$n --overwrite
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fi
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EOT
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]
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resources {
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requests = {
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cpu = "10m"
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memory = "64Mi"
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}
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limits = {
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memory = "128Mi"
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}
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}
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}
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}
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}
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}
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}
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}
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lifecycle {
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ignore_changes = [spec[0].job_template[0].spec[0].template[0].spec[0].dns_config] # KYVERNO_LIFECYCLE_V1
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}
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}
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