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orca/cloud/dev/scripts/relay-production-same-cap-wave.mjs
T
Jinwoo Hong 051ca4d34e feat(relay): declare US cells c32 and c33 at the 3,000-host shape (#24444)
* feat(relay): declare US cells c32 and c33 at the 3,000-host shape

Declares two us-central1 cells at the Asia shape (cap 3000, 6000 request
units, e2-standard-4) with the US default pool of 10, and generalises the
Asia topology and admission ladder to derive each wave's region from its
reviewed zone, leaving every Asia wave's behaviour unchanged.

Claude-Session: ced32ebb-7155-4413-adad-1eccd14c2010

* docs(relay): note the US canary tie-break and leave the fleet pool list to promotion

Claude-Session: ced32ebb-7155-4413-adad-1eccd14c2010

* fix(relay): plan C32 and C33 as one topology wave

The live-image overlay refuses a declared non-target cell with no template,
so a lone C32 plan would fail on C33. Registration and promotion stay
one cell at a time.

Claude-Session: ced32ebb-7155-4413-adad-1eccd14c2010
2026-10-01 15:34:57 -04:00

250 lines
11 KiB
JavaScript

import { readFileSync } from 'node:fs'
import { pathToFileURL } from 'node:url'
import { requireSameEvidenceCode } from './relay-evidence-code-provenance.mjs'
// Migration-only by policy: zero hosts and no reservation, so a wave rolls one without
// displacing anybody. It enters and must leave migration-only, never general.
// C32 and C33 stay here until each one's canary promotes it; that follow-up moves it to general.
export const SAME_CAP_MIGRATION_ONLY_CELLS = [
'production-gce-c17', 'production-gce-c18', 'production-gce-c32', 'production-gce-c33'
]
export const SAME_CAP_CELLS = [
'production-gce-c7', 'production-gce-c8', 'production-gce-c9', 'production-gce-c10',
'production-gce-c13', 'production-gce-c14', 'production-gce-c15', 'production-gce-c16',
'production-gce-c19', 'production-gce-c20', 'production-gce-c21', 'production-gce-c22',
'production-gce-c23', 'production-gce-c24', 'production-gce-c25', 'production-gce-c26',
'production-gce-c27', 'production-gce-c28', 'production-gce-c29', 'production-gce-c30',
'production-gce-c31',
...SAME_CAP_MIGRATION_ONLY_CELLS
]
// A general cell's wave isolates and restores it, advancing the selector twice; a
// migration-only cell's isolate and restore are both no-ops, so its wave advances nothing.
export function selectorWaveDelta(cellId) {
return SAME_CAP_MIGRATION_ONLY_CELLS.includes(cellId) ? 0 : 2
}
export function entryAdmission(cellId) {
return SAME_CAP_MIGRATION_ONLY_CELLS.includes(cellId) ? 'migration-only' : 'general'
}
function digest(value, name) {
if (!/^sha256:[a-f0-9]{64}$/.test(value ?? '')) throw new Error(`${name} is invalid`)
return value
}
function cells(value) {
const parsed = value.split(',').map((cell) => cell.trim()).filter(Boolean)
if (
parsed.length < 1 ||
parsed.length > 10 ||
new Set(parsed).size !== parsed.length ||
parsed.some((cell) => !SAME_CAP_CELLS.includes(cell))
) throw new Error('same-cap wave cells are invalid')
// Every later cell offsets from one per-wave selector delta, and the two classes
// have different ones, so a mixed wave has no single offset any cell could use.
if (new Set(parsed.map(selectorWaveDelta)).size > 1) {
throw new Error('same-cap wave cells must be all general or all migration-only')
}
return parsed
}
// Break-glass: the aggregate 15-minute monitor gate is skipped, nothing else is.
// Returns null when no override was requested, and throws on a partial or
// mismatched one so a malformed override can never reach a mutation.
export function gateOverrideAuthorization(input, targetDigest, mutation) {
const reason = input.gateOverrideReason ?? ''
const confirmation = input.gateOverrideConfirmation ?? ''
if (!reason && !confirmation) return null
if (!mutation) throw new Error('verify does not accept a monitor gate override')
if (confirmation !== `SKIP_RELAY_MONITOR_GATE ${targetDigest}`) {
throw new Error('gate override confirmation does not match the exact target digest')
}
// Printable single-line only: this reason is rendered into the run summary and
// sealed into the canary artifact.
if (!/^[\x20-\x7e]{12,500}$/.test(reason)) {
throw new Error('gate override reason must be 12 to 500 printable characters on one line')
}
return { reason, confirmation }
}
export function validateSameCapWave(input) {
if (!['verify', 'canary-apply', 'batch-apply', 'rollback'].includes(input.mode)) {
throw new Error('same-cap wave mode is invalid')
}
const selected = cells(input.cellIds)
const targetDigest = digest(input.targetDigest, 'target digest')
const rollbackDigest = digest(input.rollbackDigest, 'rollback digest')
if (targetDigest === rollbackDigest) throw new Error('target and rollback digests must differ')
if (input.mode === 'canary-apply' && selected.length !== 1) {
throw new Error('canary mode requires exactly one cell')
}
// Ten is the wave workflow's statically declared serial cell-job chain, cell_1..cell_10.
if (input.mode === 'batch-apply' && (selected.length < 2 || selected.length > 10)) {
throw new Error('batch mode requires two to ten cells')
}
// Later waves expect the selector to advance by exactly 2 per predecessor,
// which a resumed rollback cell (isolate skipped, +1) violates.
if (input.mode === 'rollback' && selected.length !== 1) {
throw new Error('rollback mode requires exactly one cell')
}
const mutation = input.mode !== 'verify'
const expectedConfirmation = input.mode === 'rollback'
? `ROLL_BACK_RELAY_SAME_CAP ${rollbackDigest} ${selected.join(',')}`
: `ROLL_RELAY_SAME_CAP ${targetDigest} ${selected.join(',')}`
if (mutation && input.confirmation !== expectedConfirmation) {
throw new Error('same-cap confirmation does not match the exact digest and cells')
}
if (!mutation && input.confirmation) throw new Error('verify does not accept confirmation')
const gateOverride = gateOverrideAuthorization(input, targetDigest, mutation)
if (input.mode === 'batch-apply' && !/^[1-9][0-9]*$/.test(input.canaryRunId ?? '')) {
throw new Error('batch mode requires a canary run ID')
}
if (input.mode !== 'batch-apply' && input.canaryRunId) {
throw new Error('only batch mode accepts a canary run ID')
}
return { cells: selected, targetDigest, rollbackDigest, gateOverride }
}
export function canaryAuthority(input) {
const wave = validateSameCapWave({ ...input, mode: 'canary-apply', canaryRunId: '' })
if (!/^[0-9a-f]{40}$/.test(input.commitSha ?? '')) throw new Error('commit SHA is invalid')
if (!/^[1-9][0-9]*$/.test(input.runId ?? '')) throw new Error('run ID is invalid')
const selectorGeneration = Number(input.selectorGeneration)
const rehomeGeneration = Number(input.rehomeGeneration)
if (!Number.isSafeInteger(selectorGeneration) || selectorGeneration < 0) {
throw new Error('selector generation is invalid')
}
if (!Number.isSafeInteger(rehomeGeneration) || rehomeGeneration < 0) {
throw new Error('rehome generation is invalid')
}
return {
v: 1,
commitSha: input.commitSha,
runId: input.runId,
cellId: wave.cells[0],
targetDigest: wave.targetDigest,
rollbackDigest: wave.rollbackDigest,
selectorGeneration: selectorGeneration + selectorWaveDelta(wave.cells[0]),
rehomeGeneration,
// Audit trail, not authority: a batch reusing this canary is authorized by
// its own confirmation, so verification below neither requires nor forbids it.
gateOverride: wave.gateOverride === null ? null : {
...wave.gateOverride,
actor: input.actor ?? ''
}
}
}
export function verifyCanaryAuthority(authority, expected, repositoryRoot) {
const selectorGeneration = Number(expected.selectorGeneration)
// A mixed wave is already rejected, so the batch's first cell names the whole batch's class.
const batchAdmission = entryAdmission(cells(expected.cellIds ?? '')[0])
if (
authority?.v !== 1 ||
!/^[0-9a-f]{40}$/.test(authority.commitSha ?? '') ||
authority.runId !== expected.runId ||
authority.targetDigest !== expected.targetDigest ||
authority.rollbackDigest !== expected.rollbackDigest ||
!Number.isSafeInteger(authority.selectorGeneration) ||
authority.selectorGeneration < 0 ||
!Number.isSafeInteger(selectorGeneration) ||
selectorGeneration < authority.selectorGeneration ||
authority.rehomeGeneration !== Number(expected.rehomeGeneration) ||
!SAME_CAP_CELLS.includes(authority.cellId)
) throw new Error('canary authority does not match this batch')
// A migration-only cell carries no hosts and a different cap, so rolling it proves nothing
// about a general batch, and its wave advances a different selector delta.
if (entryAdmission(authority.cellId) !== batchAdmission) {
throw new Error(
`canary authority cell ${authority.cellId} is ${entryAdmission(authority.cellId)}, ` +
`but this batch is ${batchAdmission}`
)
}
// Each cell checks exact live selector state; later batches may reuse this control epoch's canary.
requireSameEvidenceCode({
sealedSha: authority.commitSha,
currentSha: expected.commitSha,
label: 'relay same-cap canary authority',
repositoryRoot
})
return authority
}
function values(argv) {
const result = {}
for (let index = 0; index < argv.length; index += 2) {
if (!argv[index]?.startsWith('--') || argv[index + 1] === undefined) {
throw new Error('invalid arguments')
}
result[argv[index].slice(2)] = argv[index + 1]
}
return result
}
export function main(argv = process.argv.slice(2)) {
const command = argv.shift()
const input = values(argv)
if (command === 'validate') {
const wave = validateSameCapWave({
mode: input.mode,
cellIds: input['cell-ids'],
targetDigest: input['target-digest'],
rollbackDigest: input['rollback-digest'],
confirmation: input.confirmation,
canaryRunId: input['canary-run-id'],
gateOverrideReason: input['gate-override-reason'],
gateOverrideConfirmation: input['gate-override-confirmation']
})
process.stdout.write(`${JSON.stringify(wave.cells)}\n`)
return
}
if (command === 'create-canary') {
process.stdout.write(`${JSON.stringify(canaryAuthority({
mode: 'canary-apply',
cellIds: input['cell-id'],
targetDigest: input['target-digest'],
rollbackDigest: input['rollback-digest'],
confirmation: input.confirmation,
commitSha: input['commit-sha'],
runId: input['run-id'],
selectorGeneration: input['selector-generation'],
rehomeGeneration: input['rehome-generation'],
gateOverrideReason: input['gate-override-reason'],
gateOverrideConfirmation: input['gate-override-confirmation'],
actor: input.actor
}))}\n`)
return
}
if (command === 'cell-class') {
const cellId = input['cell-id']
if (!SAME_CAP_CELLS.includes(cellId)) throw new Error('same-cap wave cells are invalid')
process.stdout.write(`${JSON.stringify({
entryAdmission: entryAdmission(cellId),
selectorWaveDelta: selectorWaveDelta(cellId)
})}\n`)
return
}
if (command === 'verify-canary') {
verifyCanaryAuthority(JSON.parse(readFileSync(input.file, 'utf8')), {
commitSha: input['commit-sha'],
runId: input['run-id'],
cellIds: input['cell-ids'],
targetDigest: input['target-digest'],
rollbackDigest: input['rollback-digest'],
selectorGeneration: input['selector-generation'],
rehomeGeneration: input['rehome-generation']
})
return
}
throw new Error('unknown same-cap wave command')
}
if (import.meta.url === pathToFileURL(process.argv[1]).href) {
try { main() } catch (error) {
process.stderr.write(`${error instanceof Error ? error.message : String(error)}\n`)
process.exitCode = 1
}
}