Files
orca/cloud/docs/relay-workflows.md
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Jinwoo Hong 6c913a917f fix(relay-ops): roll a cell a wave stranded after its drain (#21321)
* fix(relay-ops): roll a cell a wave stranded after its drain

A wave that stops any time after its drain leaves the cell migration-only and
draining on the rollback image, and nothing clears it: the drain flag is a
one-way latch on the running process, and the failsafe restarts nothing. Both
recovery modes then refuse the cell. Apply wants it general and not draining.
Rollback sees the rollback image, reads it as a resume, refuses the draining,
and would not have restarted it anyway.

The image alone cannot separate a rollback that failed after its template apply
from a wave that stopped before one. The restart can: the first left a fresh
process, the second did not. Classify on that, so the cell that never restarted
takes the rolling path instead of the resuming one.

Its template still carries the image it serves, so that is the predecessor its
plan is reviewed against, and a template already moved on to the target is
refused rather than rolled backwards under a stale review. When the reviewed
template is already in place the plan changes nothing, so the MIG is rolled
explicitly on the same replacement policy a template change uses; the existing
incarnation check is what proves the instance came back.

Every other combination of mode, live image, and drain flag keeps the value it
had, held by a census that runs the real block over all nine.

* fix(relay-ops): pin the replacement method on the explicit MIG roll

gcloud persists every rolling-action bound into the group's update policy, and
it defaults the replacement method to substitute on a group with no stateful
config. Passing surge and unavailable without the method would patch the policy
off the declared RECREATE, and the next targeted plan would then carry a MIG
change outside version.0.instance_template, which the plan validator refuses.

Pass all three so the patch is identical to the declared policy, and read the
declared values in the census instead of restating two of them. Dropping the
flag, or moving any of the three in Terraform, now fails the census.
2026-09-17 21:38:09 -04:00

34 KiB

Relay GitHub Actions Configuration

The cloud-* workflows in .github/workflows/ are the Relay deploy and operate surface. Every one of them is gated on the repository variable ORCA_CLOUD_OPERATIONS_ENABLED == 'true' and does nothing until the repository owner sets it. The app and auth deploy workflows this document once also covered stay in the private stablyai/orca-cloud repository.

Set these staging environment variables before running the staging deploy workflow:

STAGING_GCP_REGION
STAGING_GCP_RELAY_DEPLOY_WORKLOAD_IDENTITY_PROVIDER
STAGING_GCP_RELAY_DEPLOY_SERVICE_ACCOUNT
STAGING_GCP_RELAY_CAPACITY_WORKLOAD_IDENTITY_PROVIDER
STAGING_GCP_RELAY_CAPACITY_SERVICE_ACCOUNT
STAGING_GCP_RELAY_ASIA_TOPOLOGY_WORKLOAD_IDENTITY_PROVIDER
STAGING_GCP_RELAY_ASIA_TOPOLOGY_SERVICE_ACCOUNT
STAGING_GCP_RELAY_ASIA_PROOF_WORKLOAD_IDENTITY_PROVIDER
STAGING_GCP_RELAY_ASIA_PROOF_SERVICE_ACCOUNT

STAGING_GCP_REGION exists today only as a repository variable. Create it as a staging environment variable before deleting any repository-level variable; Deploy Relay Staging gates its whole job on it being non-empty, so a delete-before-create silently skips it.

The Relay deploy, capacity, and Asia values come from the matching staging Terraform outputs after the targeted identity bootstrap:

terraform -chdir=infra/terraform output -raw github_staging_relay_deploy_workload_identity_provider
terraform -chdir=infra/terraform output -raw github_staging_relay_deploy_service_account

gh variable set STAGING_GCP_RELAY_DEPLOY_WORKLOAD_IDENTITY_PROVIDER --env staging --body '<reviewed output>'
gh variable set STAGING_GCP_RELAY_DEPLOY_SERVICE_ACCOUNT --env staging --body '<reviewed output>'

terraform -chdir=infra/terraform output -raw github_staging_relay_capacity_workload_identity_provider
terraform -chdir=infra/terraform output -raw github_staging_relay_capacity_service_account

gh variable set STAGING_GCP_RELAY_CAPACITY_WORKLOAD_IDENTITY_PROVIDER --env staging --body '<reviewed output>'
gh variable set STAGING_GCP_RELAY_CAPACITY_SERVICE_ACCOUNT --env staging --body '<reviewed output>'
terraform -chdir=infra/terraform output -raw github_relay_asia_proof_workload_identity_provider
terraform -chdir=infra/terraform output -raw github_relay_asia_proof_service_account
gh variable set STAGING_GCP_RELAY_ASIA_PROOF_WORKLOAD_IDENTITY_PROVIDER --env staging --body '<reviewed output>'
gh variable set STAGING_GCP_RELAY_ASIA_PROOF_SERVICE_ACCOUNT --env staging --body '<reviewed output>'

The capacity provider accepts only this repository's capacity proof and bootstrap workflows on main with the staging environment. It does not fall back to the shared deploy identity.

The Relay deploy provider accepts exactly five workflows on main with the staging environment: Bootstrap Relay Staging Capacity, Deploy Relay Staging, Deploy Relay Staging GCE Candidate, Operate Relay Asia Admission, and Power Relay Staging. Set both STAGING_GCP_RELAY_DEPLOY_* variables before merging the workflow repoint; the job gates read them and skip while they are unset.

Set these separately before enabling production deploys:

PRODUCTION_GCP_REGION
PRODUCTION_GCP_RELAY_DEPLOY_WORKLOAD_IDENTITY_PROVIDER
PRODUCTION_GCP_RELAY_DEPLOY_SERVICE_ACCOUNT
PRODUCTION_GCP_RELAY_MONITOR_WORKLOAD_IDENTITY_PROVIDER
PRODUCTION_GCP_RELAY_MONITOR_SERVICE_ACCOUNT
PRODUCTION_GCP_RELAY_FENCE_WORKLOAD_IDENTITY_PROVIDER
PRODUCTION_GCP_RELAY_FENCE_SERVICE_ACCOUNT
PRODUCTION_GCP_RELAY_CAPACITY_WORKLOAD_IDENTITY_PROVIDER
PRODUCTION_GCP_RELAY_CAPACITY_SERVICE_ACCOUNT
PRODUCTION_GCP_RELAY_ASIA_TOPOLOGY_WORKLOAD_IDENTITY_PROVIDER
PRODUCTION_GCP_RELAY_ASIA_TOPOLOGY_SERVICE_ACCOUNT
PRODUCTION_GCP_RELAY_DIRECTOR_RUNTIME_SERVICE_ACCOUNT
PRODUCTION_GCP_RELAY_RUNTIME_SERVICE_ACCOUNT

The Relay operations values come from matching Terraform outputs. Set them as production GitHub environment variables, not repository fallbacks. Every one of them is relay-owned in infra/terraform:

terraform -chdir=infra/terraform output -raw github_workload_identity_provider
terraform -chdir=infra/terraform output -raw github_deploy_service_account
terraform -chdir=infra/terraform output -raw github_relay_monitor_workload_identity_provider
terraform -chdir=infra/terraform output -raw github_relay_monitor_service_account
terraform -chdir=infra/terraform output -raw github_relay_fence_workload_identity_provider
terraform -chdir=infra/terraform output -raw github_relay_fence_service_account
terraform -chdir=infra/terraform output -raw github_production_relay_capacity_workload_identity_provider
terraform -chdir=infra/terraform output -raw github_production_relay_capacity_service_account
terraform -chdir=infra/terraform output -raw relay_director_runtime_service_account
terraform -chdir=infra/terraform output -raw relay_runtime_service_account

gh variable set PRODUCTION_GCP_RELAY_DEPLOY_WORKLOAD_IDENTITY_PROVIDER --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_DEPLOY_SERVICE_ACCOUNT --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_MONITOR_WORKLOAD_IDENTITY_PROVIDER --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_MONITOR_SERVICE_ACCOUNT --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_FENCE_WORKLOAD_IDENTITY_PROVIDER --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_FENCE_SERVICE_ACCOUNT --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_CAPACITY_WORKLOAD_IDENTITY_PROVIDER --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_CAPACITY_SERVICE_ACCOUNT --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_ASIA_TOPOLOGY_WORKLOAD_IDENTITY_PROVIDER --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_ASIA_TOPOLOGY_SERVICE_ACCOUNT --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_DIRECTOR_RUNTIME_SERVICE_ACCOUNT --env production --body '<reviewed output>'
gh variable set PRODUCTION_GCP_RELAY_RUNTIME_SERVICE_ACCOUNT --env production --body '<reviewed output>'

Run those commands only from the audited operator session after the targeted identity bootstrap apply. The providers require their exact workflows on refs/heads/main with the production environment. Missing values fail closed; no dedicated operations identity falls back to the shared deploy identity.

The shared production identity is restricted to seven named direct Relay callers plus the exact regional-rehome and same-cap reusable wrapper/job pairs on main in the production environment. Its Artifact Registry and Cloud Run mutation permissions are scoped to the Orca repository, Relay director, and Relay fence broker; it cannot mutate the API or auth services.

Bootstrap the production capacity identity only after its reviewed commit is on main. Reinitialize the production backend explicitly, save the exact targeted plan, require 9 additions, 0 changes, and 0 deletions, then apply that saved plan. manage_artifact_dns=false keeps the unimported Cloudflare records out of this GCP-only operation.

export GOOGLE_OAUTH_ACCESS_TOKEN="$(gcloud auth print-access-token)"
terraform -chdir=infra/terraform init -reconfigure \
  -backend-config=backend/production.hcl -input=false
terraform -chdir=infra/terraform plan -input=false -lock-timeout=30s \
  -var-file=environments/production.tfvars -var manage_artifact_dns=false \
  -target=google_iam_workload_identity_pool_provider.github_production_relay_capacity \
  -target=google_service_account.github_production_relay_capacity \
  -target=google_service_account_iam_member.github_production_relay_capacity_workload_identity_user \
  -target=google_project_iam_custom_role.github_production_relay_capacity_mutation \
  -target=google_project_iam_member.github_production_relay_capacity_mutation \
  -target=google_project_iam_member.github_production_relay_capacity_viewer \
  -target=google_project_iam_member.github_production_relay_capacity_artifact_reader \
  -target=google_storage_bucket_iam_member.github_production_relay_capacity_state \
  -target=google_service_account_iam_member.github_production_relay_capacity_runtime_user \
  -out=/tmp/orca-relay-production-capacity-identity.tfplan
terraform -chdir=infra/terraform show /tmp/orca-relay-production-capacity-identity.tfplan
terraform -chdir=infra/terraform apply /tmp/orca-relay-production-capacity-identity.tfplan
unlink /tmp/orca-relay-production-capacity-identity.tfplan

Confirm a second targeted plan is empty before setting the two production environment variables from reviewed Terraform outputs.

Deploy Relay Asia Topology is the only workflow allowed to add the reviewed asia-east2 network and fixed-one cell topology. Its dedicated identity is bound to that exact workflow, main, workflow_dispatch, and the selected GitHub environment. The workflow always saves a targeted plan, rejects any delete, replacement, US-resource, SQL, DNS, certificate, or unrelated change, and applies only the exact validated plan. It always passes manage_artifact_dns=false; observability and IAM are separate targeted operations.

Before the first admission operation, publish and deploy a compatible director image while the topology remains unchanged. Verify the exact serving digest, health, readiness, and rollback tag; older directors reject the generation-zero membership fingerprint. After a topology apply, use Operate Relay Asia Admission in inspect mode to read the exact live selector generation. If and only if it is generation 0, run the explicit initialize mode with the exact membership SHA-256 printed by inspect and INITIALIZE_ADMISSION_SELECTOR; the director checks both under its database lock, so this freezes the existing membership without adding, removing, or moving a cell and rejects intervening drift. Then atomically register the new cells as migration-only, binding every mutation to the exact live selector generation and a durable attempt ID. Deploy and verify the director configuration only after registration, then promote C27 alone before C28/C29. Rollback returns Asia cells to migration-only; it does not destroy the network or use existing-only. The production topology dispatch remains unavailable until the published compatible image is committed for C27-C29.

Prove Relay Asia Staging runs from a dedicated ephemeral repository runner in asia-east2 with the relay-asia-east2-load label. It promotes only staging C4, runs four bounded load shards at the exact 3,000/6,000 shape, validates continuous cell/director/Cloud SQL evidence, and always returns C4 to migration-only before publishing evidence. Register the runner with --ephemeral immediately before dispatch so it accepts one proof job and then removes itself. Each shard exchanges its exact workflow OIDC identity for a ten-minute in-memory staging token; no load credential, signing key, or raw load output is stored or uploaded.

Production promotion evidence must prove the exact production manifest, not an independent rebuild. Before refreshing C4, target and apply only google_artifact_registry_repository_iam_member.github_production_relay_staging_mirror_writer from the staging state with manage_artifact_dns=false. Run Publish Relay Production Image in mirror-staging mode with the exact digest and typed confirmation, then run Deploy Relay Staging with that digest. The mirror validates identical source and target manifest digests; the staging deploy binds the request to C4's checked-in image and deploys the director by that same digest. Only then refresh empty migration-only C4 and run the proof. The proof and production promotion both reject a serving director whose runtime digest differs from the cell/evidence digest.

Expected project IDs:

staging:    onorca-cloud-staging
production: onorca-cloud

Production relay delivery keeps the stable director separate from GCE cell rollout. Publish Relay Production Image builds and prints an immutable digest. Deploy Relay Production Director accepts only that digest, performs a health-gated Cloud Run director update, and never deploys data-plane cell stamps. Its explicitly confirmed prune option retains only the serving and cold rollback pair, and runs only after both compatible revisions pass the capacity-protocol health gate. Use that gate before adding Asia cells so an incompatible dormant revision cannot be routed later. A reviewed Terraform candidate pins the same digest on a distinct disabled GCE cell; Deploy Relay Production Candidate then runs read-only preflight or an explicitly confirmed target-first evacuation. Staging uses the same GCE data-plane shape as production; Deploy Relay Staging GCE Candidate exercises the reviewed GCE preflight and evacuation state machine before production use.

Prove Relay Staging Capacity is the only cap-transition path. Apply mode reversibly moves staging-gce-c3 to migration-only, drains it, validates the saved director and C3 Terraform plans, updates the director first, and requires stale telemetry before replacing the exact C3 template and MIG. A fresh matching heartbeat is required before C3 becomes the sole general placement cell; C2 remains recoverable in migration-only. Restore mode does not depend on Terraform or image agreement: it restores C2 first, then restores C3 only after a fresh, healthy, non-draining capacity check. The same transition order restores 600 before an older director image can be used.

Its bounded C4 refresh mode keeps Asia admission migration-only, accepts only an exact predecessor or already-applied target digest, validates a saved two-resource image-only plan, fences and proves C4 empty before replacement, and requires an empty targeted readback afterward. It cannot change C4 capacity, routing, trust configuration, or any production resource.

Recover Relay Staging C4 Image runs independently after a failed, timed-out, or cancelled C4 refresh and can also be dispatched with RECOVER_STAGING_ASIA_C4_IMAGE. It verifies the triggering job and both exact Terraform end states, preserves a fully converged ready target or predecessor, and fences partial state before restoring the pinned predecessor through an exact saved two-resource plan. A separate no-credential supervisor requeues a recovery cancelled while waiting for the shared staging mutation lane. Admin credentials are refreshed around Terraform. Before the first refresh, target only google_iam_workload_identity_pool_provider.github_staging_relay_capacity, require exactly one in-place condition update, apply the saved plan, and require an empty targeted readback.

This identity cannot bootstrap its own Relay authorization. Before the first capacity dispatch, use the existing audited staging blue/green deploy path to roll the compatible image and verified ORCA_RELAY_CAPACITY_SERVICE_ACCOUNT onto both director revisions. Roll C2/C3 through saved, validated cell plans with Bootstrap Relay Staging Capacity while they remain at 600/60. That workflow keeps the deploy identity only for Relay admin calls and uses the capacity identity for Terraform and GCP mutations. It isolates, drains, rolls, verifies, and restores one cell at a time, with the other cell as its failure fallback. Commit the matching C2/C3 image and capacity pairs in staging tfvars, then require the capacity workflow's read-only 600/60 verification to pass. Only a later reviewed configuration commit may select 1,000/0 or 1,000/60. The capacity workflow carries the reviewed director topology through blue/green; it never targets the drifted director or its Cloud SQL dependencies with Terraform.

The one-time bootstrap recognizes only the exact pre-capacity C2/C3 image and its five-field runtime-status response. It first proves C2 as the general fallback, then isolates and drains C3 and requires zero durable activity plus two fresh, instance-bound zero runtime metrics. After restarting the fixed-one MIG, it requires two new zero samples and a new director heartbeat incarnation started after the restart before restoring C3. This clears the legacy process's unreported drain flag without treating missing runtime fields as proof. Any other image, response shape, activity, or stale evidence fails closed with C2 preserved as the general fallback. Reruns classify partial C2/C3 progress. A legacy target may carry only no capacity record or the exact stale 600/60 record before the idempotent director update; afterward the exact stale record is required until that cell is replaced.

Power Relay Staging lowers the staging bill when no internal testing is underway. It runs a guarded sleep attempt at 09:00 UTC every day and also supports manual status, wake, and sleep dispatches. Manual mutations require the exact WAKE_STAGING or SLEEP_STAGING confirmation. Sleep refuses to stop a cell with active Relay work, disables admission and checks again, then scales the three GCE MIGs to zero and stops the shared staging Cloud SQL instance. Wake starts SQL, waits for healthy workers and authenticated heartbeats, then restores only the admission state declared in Terraform. The default wake starts c1/c2; choose all before a Terraform apply or GCE candidate operation so the complete Terraform-owned topology is running.

Deploy Relay Production Multi-Target handles a source that cannot fit on one candidate. It serializes deterministic per-target quotas, enforces each target's reviewed 600- or 1,000-connection gate and the ten-minute lease gate, and treats a drain attempt as the rollback point of no return. Fence and fence-abort remain fail-closed. It also registers one additive migration cell and retires exactly one migration-only cell through explicit, generation-bound selector operations. Registered-target supersession invokes the IAM-only private broker, which owns the durable mutation lease, exact Terraform checkout, saved plans, state, and narrow Compute mutation. The workflow requester has read and broker-invocation authority only; it never receives those mutation permissions directly. Deploy Relay Fence Broker updates only that service's immutable image and requires the digest to carry the exact sha-${GITHUB_SHA} tag. Terraform continues to own its identity, scaling, IAM, environment, and deletion protection. Its add-migration-cells mode is the selector-safe path for newly provisioned empty targets after generation 1. It requires ADD_MIGRATION_CELLS and a stable selector attempt ID, but no pre-drain artifact because it moves no assignments. Run the fresh 15-minute gate only after the new cells are registered and healthy.

Cloud SQL rollout lease

Every workflow that mints a Cloud Run revision or applies a relay instance template against a shared Cloud SQL instance takes the compare-and-swap lease in .github/actions/cloud-sql-rollout-lease immediately after google-github-actions/setup-gcloud. The per-repository concurrency groups (production-cloud-sql-rollout, relay-staging-mutation) only serialize runs inside one repository; once the relay workflows live in stablyai/orca there are two queues pointed at one instance, and relay-cloud-sql-connection-budget.mjs computes rolloutOverlap as a Math.max that is only sound with one rollout in flight. Keep both the groups and the lease.

Environment Bucket Object
production onorca-cloud-terraform-state terraform/state/cloud-sql-rollout/production.lock
staging onorca-cloud-staging-terraform-state terraform/state/cloud-sql-rollout/staging.lock

Deploy Relay Asia Topology and Operate Relay Asia Admission pick the pair from inputs.environment. Deploy Relay Production Capacity and Deploy Relay Production Same-Cap call their reusable job several times per run, so every wave job acquires with release: 'false' under the run-scoped default holder key and a single if: always() release_lease job frees it once every wave has finished.

Monitor Relay Production stays off the lease. It is read-only, holds only viewer roles, and putting it on a durable lease would let monitoring block a rollout and a rollout block monitoring. dev/scripts/production-cloud-sql-rollout-lock.test.mjs enforces the group, the lease wiring, and a content-derived census of every rollout candidate against dev/scripts/cloud-sql-rollout-lock-census.mjs.

Monitor Relay Production is manual and read-only. Its dry-run mode enforces the 15-minute pre-drain gate; monitor records a 90-minute incident watch. Both require the operator to enter the exact selector generation and tri-state membership. The workflow must use a dedicated identity for aggregate monitoring and exact-audience read-only Relay-admin calls. Do not dispatch it until that monitor identity, exact workflow-bound WIF trust, and read-only admin-route authorization have been bootstrapped. Capacity-transition monitoring binds the evidence to one exact general cell. It still blocks all migration failures and any inactive registered migration from that cell or another serving cell; it permits only inactive rows from unrelated existing-only cells because a capacity restart neither creates nor advances assignment migrations. Reruns restore hash-verified private state from the prior attempt. Production candidate and multi-target mutations require a fresh dry-run artifact and recheck its exact selector and every live safety signal before any mutation command. All three workflows share the production deployment lock, and each passing dry-run artifact is marked consumed before the mutation starts. The dry-run lineage fails closed after 25 total minutes, so continuity resets cannot extend the 15-minute gate indefinitely. Missing or stale telemetry fails closed, and the workflow uploads only private aggregate Markdown/JSON evidence.

Deploy Relay Production Capacity is the only production cap-transition path. It runs only from main and accepts exactly the current general rollout set: C7-C10, C13-C16, and C19-C26. C17/C18 and every existing-only, draining, fenced, or disabled cell are excluded in code. Its Terraform/GCE phase uses the dedicated exact-workflow capacity identity. Read-only checks, selector isolation, drain, and the audited director blue/green update use the existing shared production deploy identity; the production environment and common deployment lock still gate those steps. Apply mode consumes a fresh 15-minute monitor gate bound to the selected cell, moves only that cell from general to migration-only, drains it, updates only its director capacity entry, and applies a saved validated plan for only its template and MIG. Previously completed 1,000 cells remain unchanged while later 600 cells roll. The selected cell returns to general only after a fresh matching 1,000/60 heartbeat. The restart gate waits up to 15 minutes for genuine activity to finish while preserving every zero-work check. Rollback performs the same isolated sequence to 600/60 without waiting on a cell that may already be unhealthy. If the selected cell cannot answer the drain call, rollback instead requires two stale-heartbeat snapshots with zero durable activity before replacing it. Its typed confirmation includes the exact selected cell so a form-selection mistake cannot downgrade another cell. Interrupted Terraform applies resume only when the planned current template has the exact reviewed image, capacity, and identity and the remaining change is that selected MIG update or obsolete-template deletion. Production configuration pins only the approved serving set to the compatible image and 1,000/60; the transition classifier accepts only the reviewed mixed 600/1,000 envelope until every selected cell converges. Every GCP-only Terraform command disables artifact DNS. Any failed mutation leaves only the selected cell migration-only and never changes another cell's selector state.

After multiple production cells pass the canary path, wave-apply may raise two to four reviewed 600/60 serving cells under one fresh 15-minute capacity-transition gate. The first cell is bound to the sealed evidence; every later cell derives the exact expected selector generation and reruns the complete live preflight before mutation. After the first cell, continuation preflights retry only missing or stale signal evidence for at most one minute; health, threshold, selector, and migration failures stop immediately. Cells still drain, restart, and verify sequentially. A failed cell stays isolated and prevents every later wave job from starting; earlier completed cells remain general at 1,000/60. The workflow lock, single-use evidence marker, exact predecessor check, targeted Terraform plan, and per-cell heartbeat/admission oracle are unchanged.

Deploy Relay Production Same-Cap rolls only the reviewed US 1,000/60 and Asia 3,000/60 serving sets and the two migration-only US 600/60 cells, C17 and C18, without changing a cell's connection shape. Use canary-apply for exactly one cell. A successful canary seals its commit, target and rollback digests, selector generation, and durable rehome generation; batch-apply accepts only that same authority and rolls two to four cells sequentially. Each cell is isolated, drained to two restart-safe samples, replaced from a targeted saved plan, and restored only after a new incarnation reports the exact digest, cap, heartbeat, and rehome protocol. The durable worker must remain disabled throughout. The post-restart trust check is application-mediated by the director; the workflow never receives or mints a director or stamped-cell runtime token. A failure keeps only the selected cell migration-only, while the exact rollback digest remains dispatchable via the same workflow's rollback mode.

A roll holds the whole startup script identical before and after except the image, so a template stale enough to predate a pinned line fails closed rather than absorbing the drift. The one exception is the capacity identity: a cell that predates it gains it on its next roll, and the plan validator pins the exact reviewed identity instead of comparing that line, so a roll can never drop or rewrite it. Any other stale line still fails closed and needs a convergence apply first.

A drained cell is refused before a roll, because draining means something is already shedding its connections. A migration-only cell has none to shed, so the flag decides nothing there and is accepted on entry; the replacement VM is still required not to be draining, and the incarnation check still proves it was replaced. That also unwedges the state a failed canary leaves behind, where the wave's own drain set the flag and no restart followed.

C17 and C18 hold no hosts and are not general, so rolling one displaces nobody: they are the zero-displacement canary for a new image. Their wave enters and leaves migration-only, so its isolate and its restore are both no-ops and the selector generation does not move; a general cell's wave still advances it by two. One wave may not mix the two classes, because every cell after the first offsets from a single per-wave delta. Neither cell is a declared regional-rehome source, so its template carries no rehome trust lines and it may roll only at rehome protocol 0; the job refuses a trusted protocol for it before it plans anything.

Recovering a wave that died after its drain

A cell's drain flag is a one-way latch on the running process. Only a restart clears it, and the failsafe that isolates a failed cell does not restart anything. So a wave that stopped any time after its drain step leaves the cell migration-only and draining, and it stays that way until the cell is rolled.

Read the failed run before dispatching anything. If its log has a "event":"relay_production_capacity_canary","mode":"drain" line for the cell, the cell is drained. Then read the cell's live runtime image from POST https://<hostname>.relay.onorca.dev/v1/admin/runtime-status.

  1. Do not re-dispatch apply. It requires the cell general and not draining, and a drained cell is neither. It will fail closed at the predecessor check.
  2. Dispatch rollback, with the same target-image-digest and rollback-image-digest the failed wave used, the live selector generation, and the live tri-state membership with the failed cell listed under migration-only. The confirmation is ROLL_BACK_RELAY_SAME_CAP <rollback-digest> <cell-id>.
  3. The job classifies the cell itself and needs no extra input:
    • serving the rollback image and draining, it is stranded. The wave stopped before or during its template apply. The job re-isolates, re-drains, applies the reviewed template, and rolls the MIG explicitly if that template was already in place. The cell comes back on a new instance, so the drain clears, and it is restored to its entry class.
    • serving the target image, it is roll, the ordinary rollback. The template applied and the instance was replaced.
    • serving the rollback image and not draining, it is resume: a rollback that failed after its own template apply. Nothing is applied and nothing restarts.
  4. Rollback takes exactly one cell per dispatch. Recover the cells one at a time.
  5. If the run died inside wait-until stable, the MIG is still rolling on its own. Wait for it to settle and re-read the runtime before dispatching, or the stage will be read off a state that is about to change.
  6. A stranded dispatch that fails at plan review means the template already carries the target image while the old instance is still up. Wait for the MIG to finish replacing it, then dispatch again; it will classify as roll.

A mutating dispatch still needs a fresh aggregate monitor dry-run unless the break-glass override below is used.

Gate override (break-glass)

Every mutating same-cap wave normally consumes a fresh 15-minute aggregate monitor dry-run. gate-override-reason plus gate-override-confirmation, the latter exactly SKIP_RELAY_MONITOR_GATE <target-image-digest>, skips that aggregate evidence and nothing else. A partial or mismatched override fails the run before any mutation, and verify mode rejects it outright.

It is legitimate when the roll is the fix for the condition the gate is freezing on, or during an incident with the director healthy. It is not a way to move faster on an ordinary wave.

The live per-wave preflight still runs, against the same thresholds, with the expected selector taken from the dispatch inputs and the migration policy pinned to strict. That membership is canonicalised the same way the monitor canonicalises its own, so it must name every configured cell exactly once and its order does not matter. Durable rehome disabled, the exact selector generation and membership, the reviewed Terraform plan, the predecessor and new-incarnation checks, the rollout lease, the failed-wave failsafe, and single-dispatch mutation are all unchanged. The actor, reason, and confirmation are recorded in the gate job's run summary and, for a canary, sealed into the canary artifact under gateOverride; a batch may reuse a canary rolled under an override, because that authority never carried a monitor run ID. See gate override (break-glass).

The first compatible director rollout uses bootstrap-runtime-identity=true with BOOTSTRAP_RELAY_DIRECTOR_REHOME_IDENTITY. That one-time path requires the exact stamped-cell predecessor identity, creates both the cold rollback and candidate on the distinct director identity, and proves the disabled durable control through those compatible revisions before moving traffic. Later director deploys reject the predecessor identity and verify the disabled control on the serving, rollback, and candidate revisions.

Operate Relay Production Rehome is the only durable worker control. inspect is read-only; enable is selector-, director-digest-, rollback-digest-, and control-generation-bound, starts at exactly 10 hosts per minute, consumes the fresh 15-minute safety monitor, and seals 24 hourly buckets of aggregate requested-region, selected-region, fallback, and unavailable-region evidence with positive Asia requests and selections. pause and disable apply their generation CAS immediately after checkout and authentication, before package installation, revision checks, or log diagnostics. Their typed confirmations are PAUSE_REGIONAL_REHOMING and DISABLE_REGIONAL_REHOMING. Keep the default 3,600,000 ms drain grace so existing splices can finish. The job summary contains only fresh aggregate active, receipt, registration, completion, and abort counts.

Mobile push gateway

Deploy Push Gateway Production (.github/workflows/cloud-push-deploy.yml) is the deploy path for orca-cloud-push, the mobile push gateway. It is the one cloud-* workflow that is not a relay operation, and it is here because it shares the Artifact Registry repository and rollout lease. Push uses a dedicated Cloud SQL instance.

It authenticates through PRODUCTION_GCP_PUSH_DEPLOY_WORKLOAD_IDENTITY_PROVIDER and PRODUCTION_GCP_PUSH_DEPLOY_SERVICE_ACCOUNT. The dedicated identity has Artifact Registry writer, Cloud Run developer on the push service, and impersonation of only the push runtime account. Its provider pins the repository, production environment, main branch, and exact dispatch workflow; its distinct principal attribute cannot assume the shared Relay deploy account.

Foundation grants the dedicated account access to the rollout-lock prefix and bucket metadata. Apply that companion grant and publish the identity outputs before running the workflow. See push gateway deployment setup for the activation steps.

The run builds the exact reviewed image digest before taking the lease and rejects images without validation-mode support using a network-isolated container. Under the lease it boots an inert, read-only validation revision, checks readiness, mode, scaling and FCM credentials, then deletes it before deliberately activating the same digest in a new revision. Activation starts schema writes, pruners and queue consumers before HTTP promotion. Rollback requires restoring traffic, deleting the rejected active revision, and restoring the service template to the known-good image in normal mode. The untagged template-recovery revision can run known-good workers and is retired before lease release; see the deployment and rollback contract.