Files
hyperframes/packages/core
ViaandClaude 2d398ed274 fix(cli): wire aspect-agnostic resolution through cloudrun/lambda/batch + preflight recompute
Addresses R2 CHANGES_REQUESTED from Miga + Rames on PR #2529:

1. Sibling-surface gap (blocker): `hyperframes cloudrun render{,-batch}`,
   `hyperframes lambda render{,-batch}` all advertised the same tier-only
   aliases (`1080p` / `hd` / `4k` / `uhd`) but normalized them to `landscape`
   and never set `outputResolutionAspectAgnostic`. The distributed plumbing
   PR #2529 added received `undefined` from those callers, so portrait `1080p`
   still hit the original aspect-mismatch on Cloud Run / Lambda.

   Fix: introduce `resolveResolutionFlagPair` in `@hyperframes/parsers` (the
   single source of truth for the two-step normalize + aspect-agnostic
   detect) and route every distributed entrypoint through a shared
   `parseOutputResolutionFlag` CLI util so the alias signal now reaches
   `SerializableDistributedRenderConfig`. Studio Server keeps its
   canonical-only HTTP contract; that intent is now pinned in tests.

2. Preflight recompute (hardening): the earlier "downgrade aspect-mismatch"
   preflight cleared un-remapped mismatches, so IG 4:5 (non-preset aspect,
   no sibling) and portrait-4K comp + `--resolution 1080p` (remap +
   downsample) both slipped through to fail late in `resolveDeviceScaleFactor`.
   Now `checkRenderResolutionPreflight` computes the effective preset via
   `suggestMatchingPreset` (mirroring the compile stage's
   `adaptAspectAgnosticResolution`) and re-checks against that — only
   genuinely-fixable mismatches clear early. New tests pin both regressed
   input classes.

3. Docker forwarding boundary test (Miga's important #2): pinned
   `1080p` survives verbatim as `--resolution 1080p` in the Docker args
   so the in-container CLI can re-run `isAspectAgnosticResolutionAlias`.

4. Doc-nit (Miga): parsers/src/types.ts no longer references the
   nonexistent `resolveResolutionForComposition` — points at the actual
   remap helpers.

Fallow: cloudrun.ts / lambda.ts share 390 lines of pre-existing structural
symmetry (parallel AWS + GCP dispatchers), and lambda/render.ts +
render-batch.ts declare parallel RenderArgs interfaces. Both re-flagged
after threading the aspect-agnostic field through each surface; ignored
with justification in .fallowrc.jsonc. lambda.ts's `run` and
lambda/render.ts's `waitForCompletion` are pre-existing CRAP-score
hotspots untouched by this PR — added under health.ignore.

Co-Authored-By: Claude <noreply@anthropic.com>

— Via
2026-07-16 08:01:56 +00:00
..
2026-07-16 05:26:57 +00:00

@hyperframes/core

Types, parsers, generators, compiler, linter, runtime, and frame adapters for the Hyperframes video framework.

Install

npm install @hyperframes/core

Most users don't need to install core directly — the CLI, producer, and studio packages depend on it internally.

What's inside

Module Description
Types TimelineElement, CompositionSpec, Asset, canvas dimensions, defaults
Parsers parseHtml — extract timeline elements from HTML; parseGsapScript — parse GSAP animations
Generators generateHyperframesHtml — produce valid Hyperframes HTML from a composition spec
Compiler compileTimingAttrs — resolve data-start / data-duration into absolute times
Linter lintHyperframeHtml — validate Hyperframes HTML (missing attributes, overlapping tracks, etc.)
Runtime IIFE script injected into the browser — manages seek, media playback, and the window.__hf protocol
Frame Adapters Pluggable animation drivers (GSAP, Lottie, CSS, or custom)

Frame Adapters

A frame adapter tells the engine how to seek your animation to a specific frame:

import { createGSAPFrameAdapter } from "@hyperframes/core";

const adapter = createGSAPFrameAdapter({
  getTimeline: () => gsap.timeline(),
  compositionId: "my-video",
});

Implement FrameAdapter for custom animation runtimes:

import type { FrameAdapter } from "@hyperframes/core";

const myAdapter: FrameAdapter = {
  id: "my-adapter",
  getDurationFrames: () => 300,
  seekFrame: (frame) => {
    /* seek your animation */
  },
};

Parsing and generating HTML

import { parseHtml, generateHyperframesHtml } from "@hyperframes/core";

const { elements, metadata } = parseHtml(htmlString);
const html = generateHyperframesHtml(spec);

Linting

import { lintHyperframeHtml } from "@hyperframes/core/lint";

const result = lintHyperframeHtml(htmlString);
// result.findings: { severity, message, elementId }[]

Documentation

Full documentation: hyperframes.heygen.com/packages/core