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* feat(gcp-cloud-run): add Google Cloud Run + Workflows distributed render adapter Adds @hyperframes/gcp-cloud-run, the GCP counterpart to @hyperframes/aws-lambda (issue #932). The OSS distributed primitives (plan, renderChunk x N, assemble) are unchanged; this package is the storage/compute/orchestration glue. Package: Cloud Run handler (one image, three actions), runs under bun; GCS transport; in-image chrome-headless-shell resolver; client SDK (renderToCloudRun, getRenderProgress, deploySite, computeRenderCost); Dockerfile; Cloud Workflows definition; Terraform module; CLI cloudrun deploy|sites|render|render-batch|progress|destroy with --output-resolution and --strict-variables; 62 unit tests + docs + live smoke script. Shared extraction (removes ~640 lines of adapter duplication): move the cloud-agnostic config validator + content-hash into producer/distributed; both adapters import them. Validated end-to-end on GCP at 37.4 dB PSNR vs baseline. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(cli): resolve @hyperframes/gcp-cloud-run in the CLI build + root build The CLI bundle (esbuild) couldn't resolve `@hyperframes/gcp-cloud-run/sdk`, failing Build/Typecheck/CLI-smoke (and the perf/windows/regression jobs that build first). Mirror the aws-lambda handling: mark the gcp adapter + its /sdk subpath external in tsup.config.ts with a source alias, and add gcp-cloud-run to the root `build` filter so its dist exists for publish + runtime. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ci): copy gcp-cloud-run manifest in Dockerfile.test for frozen install The regression test image runs `bun install --frozen-lockfile` after copying each workspace package.json individually. The CLI now depends on @hyperframes/gcp-cloud-run (workspace:*), so the frozen install fails to resolve it unless its manifest is present. Add the COPY line. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(cli): add machine-sizing flags to `cloudrun deploy` Closes the parity gap with `lambda deploy` (which exposes --memory etc.). `cloudrun deploy` now threads --cpu, --memory, --max-instances, and --timeout into the Terraform apply; omitted flags keep the module defaults (4 vCPU / 16Gi / 100 instances / 3600s). For finer control, apply the module directly. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(gcp-cloud-run): address PR review (security, waste, limits, alerts) - server.ts: bucket-allowlist guard no longer fails open silently. Unset env logs a one-time WARNING; "*" is an explicit opt-out; otherwise it enforces. - server.ts: stop double-shipping audio.aac. It already rides in the plan tarball every consumer downloads, so drop the redundant standalone upload (plan) + re-download/overwrite (assemble); assemble reads it from the untar, falling back to a supplied AudioGcsUri for compat. - server.ts: chunk extension via path.extname() instead of slice(lastIndexOf). - workflow.yaml: clamp parallel concurrency_limit to math.min(chunkCount, 20) — Cloud Workflows hard-caps concurrent iterations at 20. - Dockerfile: pin bun (bun-v1.3.9) so an interop change can't silently break the image rebuild. - terraform: add min_instances var (default 0); add a workflow-failure alert (finished_execution_count status=FAILED) alongside the request-count one. - costAccounting: document that displayCost excludes GCS storage/egress. Verified against the actual APIs: @google-cloud/workflows@4.4.0 ICreateExecutionRequest has no executionId (so the idempotency-token suggestion isn't available in this client); Workflows concurrency cap is 20; failure metric is workflows.googleapis.com/finished_execution_count (status label). 174 adapter tests pass, fallow/oxlint/oxfmt/terraform clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(gcp-cloud-run): address round-2 review — error code + CFR forwarding - workflow.yaml: rename the zero-chunk failure code PLAN_TOO_LARGE → PLAN_PRODUCED_ZERO_CHUNKS. The old code implied a size-ceiling breach (the opposite cause), misleading anyone triaging the alert. - workflow.yaml: forward Config.cfr to the assemble step (`Cfr: ${("cfr" in config) and config.cfr}`). It was read by the handler but never sent, so exact-CFR was silently off for every Cloud Run render. Uses the same `in`-operator guard already proven in the retryable predicate. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(release): include gcp-cloud-run in set-version PACKAGES list set-version.ts (driven by release:prepare) bumps an explicit package list to the shared version on each release. gcp-cloud-run was wired into the build + publish.yml but missing here, so a release would leave it at a stale version and publish.yml would push the wrong version. Add it so the new package version-bumps + publishes in lockstep with the others. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
141 lines
5.1 KiB
TypeScript
141 lines
5.1 KiB
TypeScript
/**
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* Lambda event + result types for the HyperFrames distributed render handler.
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*
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* The Step Functions state machine in `examples/aws-lambda/template.yaml`
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* dispatches on the `Action` field. Each action maps 1:1 onto one of the
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* three OSS distributed primitives:
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*
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* "plan" → `plan(projectDir, config, planDir)` (Activity A)
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* "renderChunk" → `renderChunk(planDir, chunkIndex, output)` (Activity B)
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* "assemble" → `assemble(planDir, chunkPaths, audio, out)` (Activity C)
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*
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* All file I/O is mediated by S3 — the handler downloads inputs into
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* `/tmp` (Lambda's only writable filesystem path), invokes the primitive,
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* uploads outputs back to S3, and returns a small JSON payload that fits
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* inside Step Functions' history budget (under 200 bytes for chunk
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* results per §2.4).
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*/
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import type {
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DistributedFormat,
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SerializableDistributedRenderConfig,
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} from "@hyperframes/producer/distributed";
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export type { SerializableDistributedRenderConfig } from "@hyperframes/producer/distributed";
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/** Discriminator for the three roles the one Lambda image fulfills. */
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export type LambdaAction = "plan" | "renderChunk" | "assemble";
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/**
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* Top-level shape of any event the handler may receive.
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*
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* Step Functions can also invoke with a wrapped payload (e.g. when a Map
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* state's `ItemSelector` passes through `$$.Map.Item.Value`), so the
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* handler unwraps both `event.Payload` and `event.Input` before
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* dispatching.
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*/
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export type LambdaEvent =
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| PlanEvent
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| RenderChunkEvent
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| AssembleEvent
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| { Payload: LambdaEvent }
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| { Input: LambdaEvent };
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/** Activity A: produce a planDir, upload to S3. */
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export interface PlanEvent {
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Action: "plan";
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/** S3 URI pointing at a `tar -czf`-archived project directory (`s3://bucket/key.tar.gz`). */
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ProjectS3Uri: string;
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/** S3 URI prefix where the planDir tar should be uploaded (`s3://bucket/{prefix}/`). */
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PlanOutputS3Prefix: string;
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/** `DistributedRenderConfig` minus runtime-only fields (logger, abortSignal). */
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Config: SerializableDistributedRenderConfig;
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}
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/** Activity B: fetch planDir, render one chunk, upload result. */
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export interface RenderChunkEvent {
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Action: "renderChunk";
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/** S3 URI of the plan tar produced by a PlanEvent invocation. */
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PlanS3Uri: string;
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/**
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* `PlanResult.planHash` from the Plan invocation. The handler verifies
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* this against the untarred planDir's `plan.json` before invoking the
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* producer, throwing a typed `PLAN_HASH_MISMATCH` on divergence so the
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* state machine routes it as non-retryable. Defense-in-depth — the
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* producer also re-checks internally.
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*/
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PlanHash: string;
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/** 0-based chunk index this invocation should render. */
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ChunkIndex: number;
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/** S3 URI prefix where the chunk output should be uploaded (`s3://bucket/{prefix}/`). */
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ChunkOutputS3Prefix: string;
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/** Output container format from the plan's encoder.json; drives file vs frame-dir handling. */
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Format: DistributedFormat;
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}
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/** Activity C: fetch planDir + all chunks + audio, assemble, upload final. */
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export interface AssembleEvent {
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Action: "assemble";
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/** S3 URI of the plan tar produced by a PlanEvent invocation. */
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PlanS3Uri: string;
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/** S3 URIs of every chunk, ordered by chunk index. Length must equal `chunkCount`. */
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ChunkS3Uris: string[];
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/** S3 URI of the planDir's `audio.aac` if the composition has audio; `null` otherwise. */
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AudioS3Uri: string | null;
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/** Final output S3 URI (`s3://bucket/key.mp4`). */
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OutputS3Uri: string;
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/** Output container format; drives file vs frame-dir handling. */
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Format: DistributedFormat;
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/**
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* Optional exact-CFR re-encode at assemble time. When `true`, the final
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* assembled video is re-encoded with `-fps_mode cfr -r <fps>` so the
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* stream's `avg_frame_rate` matches the container's `r_frame_rate`
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* exactly (and the file's duration is exact, not PTS-derived). Trade-off
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* is ~2-5x the assemble wall-clock. mp4 only — webm / mov stream-copy
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* paths already produce exact avg_frame_rate. Default `false` /
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* unset preserves current `-c copy` behavior.
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*/
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Cfr?: boolean;
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}
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// ── Result types — kept small to fit Step Functions history budgets ─────────
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/** Result of a `plan` invocation. Carries enough to size the Map(N) state. */
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export interface PlanLambdaResult {
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Action: "plan";
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PlanS3Uri: string;
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PlanHash: string;
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ChunkCount: number;
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TotalFrames: number;
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Fps: 24 | 30 | 60;
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Width: number;
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Height: number;
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Format: DistributedFormat;
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HasAudio: boolean;
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AudioS3Uri: string | null;
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FfmpegVersion: string;
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ProducerVersion: string;
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DurationMs: number;
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}
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/** Result of a `renderChunk` invocation. Sized ≤200 bytes per §2.4. */
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export interface RenderChunkLambdaResult {
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Action: "renderChunk";
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ChunkS3Uri: string;
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ChunkIndex: number;
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Sha256: string;
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FramesEncoded: number;
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DurationMs: number;
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}
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/** Result of an `assemble` invocation. */
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export interface AssembleLambdaResult {
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Action: "assemble";
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OutputS3Uri: string;
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FramesEncoded: number;
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FileSize: number;
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DurationMs: number;
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}
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export type LambdaResult = PlanLambdaResult | RenderChunkLambdaResult | AssembleLambdaResult;
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