mirror of
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7affa4a4e91919a4bdcaec3ebed5abe95eda03d8
149
Commits
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7affa4a4e9 |
fix: handle player loop and render exit (#617)
## Problem Two newly reported runtime issues break common local workflows: - Fixes #615: `<hyperframes-player loop>` reaches the final frame, receives a paused runtime state, and stays paused instead of wrapping. - Fixes #616: `hyperframes render` can finish writing the output and print `Render complete`, but still remain alive when a non-essential handle keeps Node's event loop open. The catalog block also used old VPN branding and slug/file names that should now be neutral. Renaming registry items also exposed a catalog-preview CI bug where deleted registry paths were treated as still-renderable changed items. ## What this fixes - detects player completion from the previous playing state before mutating the parent `_paused` cache from the runtime's final state - wraps looping players back to `0` and immediately resumes playback even when the runtime posts `isPlaying: false` at the end frame - keeps non-looping players dispatching the existing `ended` flow - lets the CLI command path schedule a short unref'd `process.exit(0)` after a successful local or Docker render - keeps `renderLocal()` importable for tests and internal callers without forcing process exit unless the CLI command explicitly opts in - adds regression coverage for the player loop end-state and successful render exit scheduling - renames the VPN catalog block to `vpn-youtube-spot` across registry, docs route, install command, composition filename, asset filename, composition id, and timeline key - keeps visible block/app copy friendly and named `VPN` - updates catalog-preview CI to ignore deleted registry paths when computing changed preview items ## Root cause The player message handler updated `_paused = !data.isPlaying` before checking for end-of-composition loop behavior. The runtime's legitimate final-frame state has `isPlaying: false`, so the existing `currentTime >= duration && !paused` loop branch was skipped. For render completion, the CLI returned after `printRenderComplete()`, leaving process lifetime entirely to Node's active handles. Most local renders in this checkout drain cleanly, but the reported npm flow shows a sleeping parent process after output is already complete. The CLI now schedules a short unref'd successful exit only from the command path after user-visible render work has completed. The catalog block issue was content/metadata drift: registry/docs/code identifiers still used the old slug, so the catalog route, install command, composition id, file names, and source prompt did not match the requested neutral VPN naming. The preview workflow used plain `git diff --name-only`, which includes deleted paths during renames; it now filters to added/copied/modified/renamed live paths. ## Verification ### Local checks - `bun run build:hyperframes-runtime` - `bun run --filter @hyperframes/player test -- src/hyperframes-player.test.ts` - `bun run --filter @hyperframes/cli test -- src/commands/render.test.ts` - `bun run --filter @hyperframes/player typecheck` - `bun run --filter @hyperframes/cli typecheck` - `bunx oxfmt --check packages/player/src/hyperframes-player.ts packages/player/src/hyperframes-player.test.ts packages/cli/src/commands/render.ts packages/cli/src/commands/render.test.ts` - `bunx oxlint packages/player/src/hyperframes-player.ts packages/player/src/hyperframes-player.test.ts packages/cli/src/commands/render.ts packages/cli/src/commands/render.test.ts` - `bun run --filter @hyperframes/player build` - `bun run --filter @hyperframes/studio build` - `bun run --filter @hyperframes/cli build` - `bunx oxfmt --check registry/blocks/vpn-youtube-spot/vpn-youtube-spot.html registry/blocks/vpn-youtube-spot/registry-item.json registry/registry.json docs/catalog/blocks/vpn-youtube-spot.mdx docs/docs.json docs/public/catalog-index.json` - `bunx oxlint registry/blocks/vpn-youtube-spot/vpn-youtube-spot.html registry/blocks/vpn-youtube-spot/registry-item.json registry/registry.json docs/catalog/blocks/vpn-youtube-spot.mdx docs/docs.json docs/public/catalog-index.json` - `bunx oxfmt --check .github/workflows/catalog-previews.yml` - `BASE_SHA=26b8e2a9853eb1a8f77c05fb0c8f0903cdb2cf18; git diff --name-only --diff-filter=ACMR "$BASE_SHA"...HEAD -- registry/blocks/ registry/components/ ...` returns only `vpn-youtube-spot` - `npx tsx scripts/sync-schemas.ts --check` - `npx mint validate` from `docs/` - `npx mint broken-links` from `docs/` - `git diff --check` - Lefthook pre-commit: format pass - Lefthook commit-msg: commitlint pass ### Browser verification - Built the player bundle and served a real local reproduction using the built player, the built HyperFrames runtime, and GSAP. - Used `agent-browser` to open the page, click `Seek near end`, and wait through the end-frame transition. - Verified the browser state after playback: `stuck=false`, `looped=true`, and playback continued after wrapping from ~4s back to the start. - Served `registry/blocks/vpn-youtube-spot/vpn-youtube-spot.html` locally, used `agent-browser` to seek the timeline, and verified `window.__timelines` contains `vpn-youtube-spot`, not `goonvpn-youtube-spot`. - Served the docs locally with Mintlify, opened `/catalog/blocks/vpn-youtube-spot`, and verified the install command is `npx hyperframes add vpn-youtube-spot` with no old slug visible. ### Composition verification - `bun run --filter @hyperframes/cli dev lint /var/folders/3n/hxk3qmnd0tl284jtcy66w6dw0000gn/T/hf-vpn-renamed-w027if` returned 0 errors and 1 existing large-composition warning. - `bun run --filter @hyperframes/cli dev validate /var/folders/3n/hxk3qmnd0tl284jtcy66w6dw0000gn/T/hf-vpn-renamed-w027if --timeout 5000` returned 0 console errors; it reported existing non-fatal contrast audit warnings from the block styling. - `bun run --filter @hyperframes/cli dev render /var/folders/3n/hxk3qmnd0tl284jtcy66w6dw0000gn/T/hf-vpn-renamed-w027if --output /tmp/hf-vpn-renamed-proof.mp4 --fps 30 --quality draft --workers 1 --no-browser-gpu` completed successfully. - `ffprobe -v error -show_entries format=duration,size -of default=noprint_wrappers=1 /tmp/hf-vpn-renamed-proof.mp4` reported `duration=7.000000`. ### Render verification - Ran a real 1920x1080, 5-second render with `--gpu --workers 6 --quality draft --fps 24`. - Verified the command printed `Render complete` and the parent process exited with code `0` in the wrapper: `RENDER_EXIT_PROOF code=0 signal=null sawComplete=true`. ## Notes - I could not reproduce the exact indefinite #616 render hang on this checkout; both tiny and GPU/6-worker local renders exited cleanly before and after the patch. The CLI guard still addresses the reported leaked-handle failure mode because it fires only after successful render completion. - Browser proof artifacts were local-only: `/tmp/hf-player-loop-proof-final.png`, `/tmp/hf-player-loop-proof-final.webm`, `/tmp/hf-vpn-code-rename-proof.png`, `/tmp/hf-vpn-code-rename-proof.webm`, `/tmp/hf-vpn-doc-route-rename-proof.png`, and `/tmp/hf-vpn-doc-route-rename-proof.webm`. - The renamed composition render artifact was local-only: `/tmp/hf-vpn-renamed-proof.mp4`. - The CLI exit guard is only enabled by the `render` command's top-level local/Docker calls. Direct test/internal calls to `renderLocal()` do not force process exit unless they pass `exitAfterComplete: true`. |
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21243b6957 |
docs: lead with shape contrast for variable attributes
Follow-up on the PR #603 review. The previous fix named both attributes but didn't make their distinct shapes / roles obvious; a reader could still wonder "are these two views of the same data?". Now the doc opens with the shape contrast (array of declarations vs object of values) and the section closes with a numbered precedence layering so the merge order is unambiguous. - compositions.md: replaced the bullet list with a shape-first description ("JSON array of declarations" vs "JSON object keyed by variable id"), an explicit "they aren't redundant" line, and a numbered list of the three precedence layers (declared default → host data-variable-values → CLI --variables). - skills/hyperframes-cli/SKILL.md: highlighted the same shape contrast inside the parametrized-renders paragraph (declarations array vs values object). Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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22bcd7a18b |
docs: clarify declaration vs override attributes (PR #603 review)
James pointed out (compositions.md:33, SKILL.md:121) that the prose
referenced `data-variable-values` while the example below showed
`data-composition-variables`, leaving readers to wonder if the two
names referred to the same thing. They don't: one declares, the other
overrides per-instance. Both are now named at first mention and the
declare-vs-override split is called out explicitly.
- packages/cli/src/docs/compositions.md: replaced the single intro
sentence with a two-bullet list ("data-composition-variables
declares, data-variable-values overrides per-instance") and a
follow-up explaining where the CLI fits in.
- skills/hyperframes-cli/SKILL.md: rewrote the parametrized-renders
paragraph so declaration (data-composition-variables) and override
(--variables) are distinct sentences, with the per-instance attribute
parenthetical for completeness.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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211a9214d0 |
docs(skills): teach agents the variables system across SKILL.md + docs
Distribution PR for the variables feature stack: tells agents how to declare, read, and override variables across the four authoring surfaces. skills/hyperframes/SKILL.md: - Added data-variable-values + data-composition-variables to the data-attributes tables (host element + <html> root respectively). - New "Variables (Parametrized Compositions)" section right after "Composition Structure". Three-step pattern (declare / read / override), full worked example with enum variable, sub-comp per-instance pattern with two hosts sharing a source, and rules of thumb (always provide defaults; read once, not in frame loops; use --strict-variables in CI; type validation behavior). skills/hyperframes-cli/SKILL.md: - Added --variables, --variables-file, --strict-variables to the render flag table. - Short paragraph below the table explaining the parametrized-render pattern with a forward reference to the hyperframes skill. docs/packages/core.mdx: - Added a code snippet showing getVariables<T>() inside a composition and validateVariables/formatVariableValidationIssue for tooling. packages/cli/src/docs/compositions.md (the in-CLI `npx hyperframes docs compositions` content): - Replaced the hand-rolled JSON.parse(host.dataset.variableValues) pattern with the modern getVariables() pattern. This is PR 4 of the 4-PR stack. The openai/plugins mirror is a separate follow-up. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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c1b6efd9c5 |
feat(core,cli): variable schema validation + lint rules
Two lint rules + render-time validation built on top of the existing
data-composition-variables schema.
Lint rules (packages/core/src/lint/rules/composition.ts):
- invalid_variable_values_json — host's data-variable-values must parse as
a JSON object. Today the runtime swallows parse failures silently and
falls back to declared defaults, masking typos.
- invalid_composition_variables_declaration — root <html>'s
data-composition-variables must parse as an array of objects with
`id` (string), `type` (one of string/number/color/boolean/enum), `label`
(string), and `default`. Per-entry findings report which fields are
missing or invalid.
Both rules read attributes via a new `readJsonAttr` helper in lint/utils.ts.
The existing `readAttr` regex `["']([^"']+)["']` truncates JSON-in-attribute
values at the first internal quote (e.g. `data-variable-values='{"x":"y"}'`
captures only `{`); `readJsonAttr` alternates double-vs-single-quoted
branches with quote-specific char classes so JSON values round-trip cleanly.
A second helper `findHtmlTag` returns the actual <html> open tag (where
data-composition-variables lives) — distinct from `findRootTag` which
returns the first in-body composition element.
Render-time validation (packages/core/src/runtime/validateVariables.ts):
- validateVariables(values, declarations) returns a structured array of
issues: undeclared keys, type mismatches, enum-out-of-range values.
Pure / sync; works in any environment.
- formatVariableValidationIssue(issue) renders a one-line user-facing
string for CLI output.
- Both exported from @hyperframes/core for studio/tooling reuse.
CLI integration (packages/cli/src/commands/render.ts):
- New --strict-variables flag. Default behavior: print warnings and
continue. With --strict-variables: print warnings then exit 1.
- New `validateVariablesAgainstProject(indexPath, values)` helper:
reads the project's index.html, runs extractCompositionMetadata to
pull the declared schema, validates the CLI's --variables payload
against it. ensureDOMParser polyfill for Node-side parsing (same
pattern as compositions.ts).
Tests:
- 11 new validateVariables unit tests covering happy path, undeclared
keys, type mismatches (string/number/boolean/color/enum), enum range,
multiple-issue aggregation, and formatter output.
- 11 new composition.test.ts cases for both lint rules: parse errors,
shape errors, per-entry validation, unknown types, missing fields,
positive cases.
- 5 new render.test.ts cases for validateVariablesAgainstProject:
no-declarations, happy path, undeclared, type-mismatch, missing-file.
- All 646 core tests + 213 cli tests still green.
Docs:
- docs/packages/cli.mdx — added --strict-variables flag row.
This is PR 3 of a 4-PR stack. PR 4 ships skill/scaffold distribution.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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03b82e6ff8 |
feat(core,cli,engine,producer): getVariables() helper + --variables render flag (PR 1/4) (#600)
## What Adds the parametrized-render primitive from [hf#592](https://github.com/heygen-com/hyperframes/issues/592) by introducing a `getVariables()` runtime helper plus a CLI `--variables` / `--variables-file` flag. Compositions declare variables once on the root `<html>` element (the existing `data-composition-variables` attribute, which already drives Studio editing UI), read them at runtime via `window.__hyperframes.getVariables()`, and CLI users override them at render time without touching the composition source. This is **PR 1 of a 4-PR stack**: 1. **PR 1 (this one)** — runtime helper + CLI flag + engine injection (top-level renders). 2. PR 2 — sub-comp per-instance scoping (carry the host's `data-variable-values` into the inlined sub-comp's `getVariables()`). 3. PR 3 — schema validation + lint rules (warn on undeclared variable IDs, optional `--strict-variables`). 4. PR 4 — skill / scaffold distribution (SKILL.md, AGENTS.md scaffolds, openai/plugins mirror). ## Why The existing `data-composition-variables` schema declares variable types and defaults but isn't readable from composition scripts and can't be overridden at render time. To produce N variations of a composition today, an agent has to fork the composition or edit the source HTML before each render. `--variables` collapses that into one render call per variation, matching Editframe's `--data` UX without copying their `getRenderData` framing — `getVariables()` is named for the codebase's existing "variables" terminology and works equally in dev preview and at render time. ## How - **Runtime helper** (`packages/core/src/runtime/getVariables.ts`): reads `data-composition-variables` from `document.documentElement`, extracts `{id: default}` defaults, merges `window.__hfVariables` (override) on top, returns `Partial<T>`. Same code path in dev preview (no override) and at render (with override). Generic parameter for typed editor ergonomics. Exposed both as a named export from `@hyperframes/core` and on `window.__hyperframes.getVariables` for vanilla compositions. - **CLI flag** (`packages/cli/src/commands/render.ts`): `--variables '<json>'` and `--variables-file <path>`. `parseVariablesArg` is split out as a pure function (returns a discriminated `{ ok: true } | { ok: false }` union) so all validation paths are unit-testable; the side-effecting `resolveVariablesArg` wraps it with `errorBox` + `process.exit`. Mutually exclusive with `--variables-file`; fail-fast on conflicts, missing file, unparseable JSON, or non-object payloads (string, number, array, null). - **Engine injection** (`packages/engine/src/services/frameCapture.ts`): added an `evaluateOnNewDocument` step right after the `__name` polyfill that sets `window.__hfVariables` to the parsed JSON before any page script runs. Skipped when payload is empty so we don't add pointless init scripts. Plumbed through `CaptureOptions.variables` and `RenderConfig.variables`. Docker mode forwards the flag to the in-container CLI via `dockerRunArgs`. - **Why a separate `__hfVariables` global** instead of writing into `__hyperframes.getVariables()` directly: the helper is an IIFE that has to be defined before composition scripts execute, but the *override* needs to land before *that*. `evaluateOnNewDocument` is the only reliable hook that runs before the runtime IIFE evaluates. Storing the raw value on `__hfVariables` and merging in the helper keeps both paths order-independent. ## Test plan - [x] Unit tests added/updated - 9 jsdom tests for `getVariables()` covering empty state, declared defaults only, override merge, override-wins, declared-only, invalid JSON, non-array payloads, non-object overrides, typed generic. - 7 tests for `parseVariablesArg` covering all validation paths. - 2 integration tests for `renderLocal` confirming `variables` reach `createRenderJob`. - 3 new `dockerRunArgs` assertions for `--variables` passthrough (set / not-set / empty-object). - All existing tests green: core 611, cli 208, engine 519. - [x] Manual testing performed - `npx tsx packages/cli/src/cli.ts render --help` shows both flags + the two new examples. - [x] Documentation updated - `docs/packages/cli.mdx` — added flags to the table and a "Parametrized renders" section with a worked example. - `docs/concepts/data-attributes.mdx` — added `data-composition-variables` row. ## Backwards compatibility Fully backwards compatible. Compositions without `data-composition-variables` work unchanged; `getVariables()` returns `{}` and the engine skips the injection step. 🤖 Generated with [Claude Code](https://claude.com/claude-code) |
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010c4f5576 |
fix(cli): correct u2net_human_seg std + reject signal-killed ffmpeg exits
Address Miguel's review on #612. - Normalization std was (1, 1, 1) — that's the base u2net session, not u2net_human_seg. Switch to ImageNet (0.229, 0.224, 0.225) to match rembg's U2netHumanSegSession reference. Add a parity test pinning the exact MEAN/STD values. - waitForExit treated `code === null` as success, but per Node child_process docs that's the signal-killed case — a SIGTERM'd ffmpeg encoder was reporting success with a partial output. Switch to (code, signal) and reject with the signal in the error message. Add four signal-handling tests (clean exit, signal-killed, non-zero code, SIGKILL). Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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d2ca45ef75 |
feat(cli): add remove-background command for transparent video
Adds `hyperframes remove-background` — a local-AI subcommand that mattes a video or image with the u2net_human_seg ONNX model and emits a transparent WebM (VP9-alpha), ProRes 4444 .mov, or RGBA PNG. Drops directly into any composition's <video> tag — no green screen, no API keys, no upload. Auto-picks the fastest available execution provider via onnxruntime-node: CoreML on Apple Silicon, CUDA when HYPERFRAMES_CUDA=1, CPU otherwise. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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8c8dd6ad0c |
refactor(core,cli,engine): apply /simplify findings on getVariables PR
- core/runtime/getVariables.ts: collapse the noisy three-step type-guard
re-cast into a single `Record<string, unknown>` narrow with early-continue
guards. Same behaviour, ~6 lines shorter.
- cli/commands/render.ts: separate VariablesParseError from UI strings.
parseVariablesArg now returns a kind-discriminated error
(`conflict | read-error | parse-error | shape-error`) and the wrapper
resolveVariablesArg owns the title/message mapping via
`variablesErrorMessage`. Keeps the parser pure of presentation strings.
- cli/commands/render.test.ts: lift the `await import("./render.js")` into
a `beforeAll`, add a typed `expectErr` helper, assert on the structured
error kind instead of message-string regexes. Same coverage, less noise.
- engine/services/frameCapture.ts: replace the `as unknown as { ... }`
double-cast with a single named `WindowWithVariables` alias inside the
page closure.
All affected suites green (core getVariables 9, cli render 12, cli
dockerRunArgs 13).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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c0d75a5268 |
feat(core,cli,engine,producer): add getVariables() helper and --variables render flag
Adds the parametrized-render primitive from hf#592 by reusing the existing
data-composition-variables schema as the source of declared defaults.
- Runtime helper window.__hyperframes.getVariables() (also exported from
@hyperframes/core) reads data-composition-variables defaults from the
document root and merges window.__hfVariables (CLI override) on top.
Returns Partial<T> for typed access; supports a generic for editor
ergonomics. Same code path runs in dev preview and at render time.
- CLI render --variables '<json>' / --variables-file <path> populates the
override. Mutually exclusive; fail-fast on conflicting flags, missing
file, unparseable JSON, or non-object payloads. parseVariablesArg is
exported as a pure function so validation paths stay unit-testable.
- Engine injects window.__hfVariables via evaluateOnNewDocument before
any page script runs, so the helper sees the merged values on its
first call. Empty payloads are skipped to avoid pointless init scripts.
- Producer threads variables through RenderConfig and into the engine's
CaptureOptions; Docker mode forwards --variables to the in-container
CLI invocation via dockerRunArgs.
Composition authors declare variables once on the root <html> element:
<html data-composition-variables='[
{"id":"title","type":"string","label":"Title","default":"Hello"}
]'>
and read them in any composition script:
const { title } = window.__hyperframes.getVariables();
A render with `--variables '{"title":"Q4 Report"}'` overrides the default
without modifying the composition source. Missing keys fall through to
the declared defaults, so dev preview and CLI renders without --variables
behave identically.
This is PR 1 of a 4-PR stack. Sub-comp per-instance scoping (carrying
host data-variable-values through the inlined sub-comp's getVariables()
call) lands in PR 2; schema validation and lint in PR 3; skill / scaffold
distribution in PR 4.
Tests: 9 new unit tests for getVariables() (jsdom), 11 new CLI tests
covering parseVariablesArg validation paths and Docker passthrough,
2 new dockerRunArgs assertions for the --variables flag. All existing
tests green (core 611, cli 208, engine 519).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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15ee63c6e7 |
fix: harden CLI edge-case repros (#591)
## Problem I reproduced the selected open issue batch one by one and confirmed the reports were valid. The fixes all touch the CLI/runtime capture boundary, then the follow-up regression run exposed one over-broad runtime change in sub-composition host visibility and one CI-only baseline trap. Closes #590, #589, #588, #587, #586, and #584. ## What this fixes ### CLI/runtime edge cases - Makes the GSAP infinite-repeat lint rule ignore JavaScript comments, so literal `repeat:-1` text in comments is not flagged. - Lets the compositions CLI inspect `<template>` content, count visual-only template descendants, estimate simple GSAP durations, and suppress root `data-start` warnings in sub-composition lint mode. - Preserves runtime bootstrap scripts when body scripts are coalesced, and injects the runtime into a real `<head>` when source HTML has no head. - Keeps #589 fixed by loading and rendering template-wrapped sub-composition content, while restoring host visibility to the shorter of the authored parent clip window and the child composition live timeline. - Resolves snapshot/validate viewport size from root `data-width` / `data-height` instead of falling back to 1920x1080. - Skips fully off-frame text boxes during contrast sampling and bounds-checks ring samples so contrast output no longer emits `null:1` / `NaN:1`. - Marks muted videos as `data-has-audio="false"` in the core timing compiler, which fixes the same-src muted `<video>` + separate `<audio>` StaticGuard case. - Keeps user-authored `hf-seek` listeners reachable during capture by preventing author scripts from being merged into the runtime bootstrap path. ### Shared helper cleanup - Removes the stale producer-local timing compiler duplicate; producer compilation now consumes the core timing compiler. - Centralizes HTML document helpers in core: fragment parsing, embedded runtime stripping, head/body script injection, and early-head injection. - Centralizes the CLI layout/snapshot static HTML server. - Adds browser-safe core subpath helpers for Lottie readiness and CLI screenshot clip calculation; Studio's Vite config keeps the screenshot clip helper self-contained so clean-checkout test startup does not value-import core `.ts` source. - Replaces the engine parity-contract copy with a core re-export. - De-duplicates render-job cleanup and Studio static file-serving callbacks. ### Regression hardening - Replaces the embedded-runtime script stripping regex with a script-tag scanner that handles closing tags like `</script >`. - Escapes inline script bodies before wrapping them in `<script>` tags, so authored `</script` and `<!--` text cannot break out of the injected wrapper script. - Shares media-duration clamping between core and producer, with a 50 ms tolerance for ffprobe precision drift between local and CI media stacks. - Pins the affected style fixture SFX durations in source so style-1 and style-9 compile deterministically. - Restores the `vfr-screen-recording` video golden to the CI-stable baseline; the current CI failure showed the Linux render matches the old golden, while the locally refreshed macOS golden was the mismatch. ## Root cause The CLI paths had accumulated assumptions that held for simple direct-root landscape compositions but not for current composition patterns: DOM queries did not enter template content, snapshot/validate used a fixed viewport, runtime and author scripts shared a coalescing bucket, and timing compilation treated every video as audio-bearing unless authors manually overrode it. The style shard failures were not product regressions. Local and CI media probing disagreed on the short SFX clip duration by about 45 ms, and the compiler was clamping authored durations to the locally probed value. The shared clamp tolerance preserves explicit author/source durations for small probe precision differences while still clamping real overflows. The vfr fast-shard failure was a bad baseline refresh: CI actual frames matched the old `vfr-screen-recording` baseline at 40+ dB PSNR, but mismatched the macOS-refreshed golden at ~18-22 dB. The fix is to keep the Docker/Linux-stable video golden and only retain the deterministic compiled snapshot change. The sub-composition regression came from treating a host's authored parent window as the only visibility boundary. That made settled child overlays stay visible after their own live GSAP timeline ended. The corrected runtime behavior respects both contracts: parent clips still bound where the host can appear, and the child live timeline can end the host earlier. ## Verification ### Local checks - `bunx oxfmt --check packages/core/src/runtime/init.ts packages/core/src/runtime/init.test.ts` - `bunx oxlint packages/core/src/runtime/init.ts packages/core/src/runtime/init.test.ts` - `bun run --cwd packages/core test src/runtime/init.test.ts` - `bun run --cwd packages/cli test src/commands/compositions.test.ts src/utils/compositionViewport.test.ts` - `bun run build:hyperframes-runtime` - `bun run --cwd packages/producer test --keep-temp --sequential style-12-prod style-5-prod` - `bun run --cwd packages/producer test --sequential vfr-screen-recording hdr-hlg-regression style-7-prod` - `bun run --cwd packages/core test src/compiler/htmlCompiler.test.ts src/compiler/timingCompiler.test.ts src/index.test.ts` - `bunx oxfmt --check packages/core/src/compiler/timingCompiler.ts packages/core/src/compiler/htmlCompiler.ts packages/core/src/compiler/htmlCompiler.test.ts packages/core/src/compiler/index.ts packages/core/src/index.ts packages/core/src/index.test.ts packages/producer/src/services/htmlCompiler.ts` - `bunx oxlint packages/core/src/compiler/timingCompiler.ts packages/core/src/compiler/htmlCompiler.ts packages/core/src/compiler/htmlCompiler.test.ts packages/core/src/compiler/index.ts packages/core/src/index.ts packages/core/src/index.test.ts packages/producer/src/services/htmlCompiler.ts` - `bun run --cwd packages/core typecheck` - `bun run --cwd packages/producer typecheck` - `bun run --cwd packages/producer test --sequential style-1-prod style-9-prod` - `bun run --filter @hyperframes/studio test` with `packages/core/dist` temporarily hidden to simulate clean-checkout config loading - `git diff --check` ### CI artifact checks - Inspected failed run `25225854394` job `73969147096`: style-1 failed only on `click-sfx` `1.044898` vs `1` duration/end. - Inspected failed run `25225854394` job `73969147061`: style-9 failed only on SFX `1.044898`-based duration/end mismatches. - Inspected failed run `25225854394` job `73969147048`: `vfr-screen-recording` compilation/audio passed, visual failed after comparing against the macOS-refreshed golden. - Compared the first 10 uploaded CI vfr failure frames against the restored old baseline; minimum PSNR was `40.444705`, above the fixture threshold of `28`. ### Repro checks - `bun packages/cli/src/cli.ts lint /tmp/hf-590-repro` now passes without `gsap_infinite_repeat`. - `bun packages/cli/src/cli.ts snapshot /tmp/hf-587-repro --at 0.5 --timeout 1000` now writes a 1080x1920 PNG. - `bun packages/cli/src/cli.ts validate /tmp/hf-588-repro --timeout 500` no longer emits `null:1` / `NaN:1` contrast output. - `bun packages/cli/src/cli.ts validate /tmp/hf-586-repro --timeout 500 --contrast false` no longer emits the muted-video StaticGuard contract error. - `bun packages/cli/src/cli.ts compositions /tmp/hf-589-gsap-repro` now reports `foo 0.5s 1920x1080 1 element`. - `bun packages/cli/src/cli.ts snapshot /tmp/hf-589-gsap-repro --at 0.25 --timeout 2000` captures the expected template-backed red frame. - `bun packages/cli/src/cli.ts snapshot /tmp/hf-584-repro --at 0.5,1.5 --timeout 500` captures the expected post-seek green frame. ### Browser verification - Refreshed the local side-by-side comparison page at `qa-artifacts/pr-591-video-compare/index.html`. - Served the comparison page locally and used `agent-browser` to load `style-12-prod`, play both videos quickly to the failed window, pause, and inspect the side-by-side frame. - Browser proof screenshot: `qa-artifacts/pr-591-video-compare/browser-proof/fixed-style12-labeled.png`. - Browser proof recording: `qa-artifacts/pr-591-video-compare/browser-proof/fixed-style12.webm`. - Earlier Studio proof artifacts remain local-only: `qa-artifacts/dedupe-refactor-preview.png`, `qa-artifacts/dedupe-refactor-preview-after-play.png`, `qa-artifacts/dedupe-refactor-preview.webm`. ## Notes - Browser proof and CI diagnostic artifacts are intentionally local-only and not committed. - Studio's Vite config intentionally keeps the thumbnail clip helper inline because Vite/Vitest config startup runs through Node's loader before package source `.ts` imports are transformed. - The committed PR diff changes `vfr-screen-recording/output/compiled.html` but no longer changes `vfr-screen-recording/output/output.mp4` relative to `main`. - I attempted a local `linux/amd64` Docker validation to mirror CI, but the local Docker build was blocked by Debian package download failures. The arm64 Docker image also cannot launch the x64 Puppeteer headless shell under OrbStack. The vfr baseline decision is therefore based on the uploaded CI artifact comparison above. - I kept this validated issue batch in one PR because the fixes overlap the same CLI/runtime capture surfaces. |
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68bd52ac6d |
feat: add init tailwind flag (#577)
## Problem Users who want Tailwind utilities in a plain HyperFrames composition currently have to know which Tailwind browser script to add and where to place it. The first pass added `--tailwind`, but review caught three production-facing gaps: the CDN version was major-only, the insertion helper could silently no-op on compact HTML, and the render pipeline did not explicitly wait for Tailwind's async browser compilation before capturing frame 0. There is also a version-specific agent risk: HyperFrames `init --tailwind` uses Tailwind v4.2 through `@tailwindcss/browser@4.2.4`, while `packages/studio` still uses Tailwind v3. Without a dedicated skill, agents can easily mix v3 `tailwind.config.js` / `@tailwind` patterns into v4 browser-runtime composition HTML. ## What this fixes - Adds `hyperframes init --tailwind`. - Pins the Tailwind browser runtime to `@tailwindcss/browser@4.2.4/dist/index.global.js` with SRI and `crossorigin="anonymous"`. - Injects a `window.__tailwindReady` promise next to the browser runtime. - Makes frame capture wait for `window.__tailwindReady` in both screenshot and BeginFrame capture modes before capturing frame 0. - Inserts Tailwind support before `</head>` case-insensitively, including single-line/minified heads, and falls back to prepending when there is no head tag. - Skips recursive Tailwind injection under `.git`, `dist`, and `node_modules`. - Tracks whether init used Tailwind in the existing `init_template` telemetry event. - Adds a first-party `/tailwind` skill for Tailwind v4.2 browser-runtime HyperFrames composition work. - Updates README, docs, generated project agent files, CLI skill guidance, and plugin metadata so the Tailwind skill is discoverable. - Documents the browser-runtime tradeoff and production/offline guidance. ## Root cause `scaffoldProject()` copied the selected example and patched media placeholders, then immediately wrote project metadata and `package.json`. There was no optional post-copy step for framework-specific HTML support. The initial Tailwind post-copy step also treated the browser runtime like a static script, but Tailwind compiles utilities asynchronously after scanning the DOM, so the capture engine needed an explicit readiness contract. On the agent side, the repo exposed HyperFrames, CLI, GSAP, registry, and runtime adapter skills, but had no Tailwind-specific instruction to separate the v4 browser-runtime composition path from Studio's v3 internal setup. ## Verification ### Local checks - `bunx vitest run packages/cli/src/commands/init.test.ts` - `bun run --filter @hyperframes/cli test src/commands/init.test.ts` - `bun run --filter @hyperframes/cli typecheck` - `bun run --filter @hyperframes/engine typecheck` - `bun run lint:skills` - `bun run lint` - `npx skills add . --list` showed 12 local skills, including `tailwind`. - `bunx oxfmt --check packages/cli/src/commands/init.ts packages/cli/src/commands/init.test.ts packages/cli/src/telemetry/events.ts packages/engine/src/services/frameCapture.ts docs/packages/cli.mdx` - `bunx oxfmt --check README.md docs/quickstart.mdx docs/packages/cli.mdx CLAUDE.md packages/cli/src/templates/_shared/CLAUDE.md packages/cli/src/templates/_shared/AGENTS.md skills/hyperframes-cli/SKILL.md skills/tailwind/SKILL.md .codex-plugin/plugin.json .cursor-plugin/plugin.json` - `bunx oxlint packages/cli/src/commands/init.ts packages/cli/src/commands/init.test.ts packages/cli/src/telemetry/events.ts packages/engine/src/services/frameCapture.ts` - `git diff --check` - Lefthook pre-commit: lint/format/typecheck for code commit; format for docs/skill commit - Lefthook commit-msg: commitlint Generated-project render proof at `/tmp/hf-tailwind-render-proof`: - `bun packages/cli/src/cli.ts init /tmp/hf-tailwind-render-proof --example blank --tailwind --non-interactive --skip-skills` - Added a temporary Tailwind-only card using `flex`, `h-full`, `w-full`, `items-center`, `justify-center`, `bg-slate-950`, `rounded-3xl`, `bg-white`, `px-20`, `py-12`, `text-8xl`, `font-black`, `text-black`, and `shadow-2xl`. - `bun packages/cli/src/cli.ts lint /tmp/hf-tailwind-render-proof` → 0 errors, 0 warnings. - `bun packages/cli/src/cli.ts validate /tmp/hf-tailwind-render-proof` → 0 errors, 0 regular warnings; the temp proof still reports validator contrast warnings even though the rendered/browser pixels show black text on white background. - `bun packages/cli/src/cli.ts render /tmp/hf-tailwind-render-proof --workers 1 --fps 24 --quality draft --output /tmp/hf-tailwind-render-proof-artifacts/output.mp4` - Render compiler inlined both GSAP and `https://cdn.jsdelivr.net/npm/@tailwindcss/browser@4.2.4/dist/index.global.js`. - `ffprobe -v error -select_streams v:0 -show_entries stream=codec_name,width,height,r_frame_rate,duration -of default=noprint_wrappers=1 /tmp/hf-tailwind-render-proof-artifacts/output.mp4` → H.264, 1920x1080, 24fps, 10s. - Extracted frame-0 proof: `/tmp/hf-tailwind-render-proof-artifacts/frame-000.png`. ### Browser verification - Started Studio preview for `/tmp/hf-tailwind-render-proof`. - Used `agent-browser` to open `http://localhost:5194`. - Verified the Tailwind-styled composition rendered in Studio preview. - Captured screenshot: `/tmp/hf-tailwind-render-proof-artifacts/browser/tailwind-preview.png`. - Captured agent-browser-driven recording: `/tmp/hf-tailwind-render-proof-artifacts/browser/tailwind-preview.webm`. - Served the PR worktree locally and used `agent-browser` to open the new Tailwind skill proof page. - Verified the browser-visible skill content includes `@tailwindcss/browser@4.2.4`. - Captured screenshot: `/Users/miguel07code/.codex/worktrees/pr-577-tailwind-comments/tmp/agent-browser-proof/tailwind-skill.png`. - Captured agent-browser-driven recording: `/Users/miguel07code/.codex/worktrees/pr-577-tailwind-comments/tmp/agent-browser-proof/tailwind-skill.webm`. ## Notes - This still intentionally uses Tailwind's browser runtime rather than adding a generated Tailwind build pipeline. That keeps `hyperframes init --tailwind` small and compatible with the current no-install generated project workflow. - The `/tailwind` skill cites official Tailwind v4 docs plus community skill references, but its instructions are HyperFrames-specific and tuned for the pinned v4.2 browser runtime. - Browser proof artifacts are local-only under `/tmp/hf-tailwind-render-proof-artifacts/` and `tmp/agent-browser-proof/` and intentionally not committed. |
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61bb814a7f |
feat: scaffold package scripts on init (#576)
## Problem New HyperFrames projects should feel like normal JavaScript projects immediately after `hyperframes init`: users should have a canonical `npm run dev`, `npm run check`, `npm run render`, and `npm run publish` loop without needing to memorize raw CLI commands. At the same time, the scaffold should stay opinionated. Adding many aliases would make the project surface harder to explain and maintain. ## What this fixes - Writes a default `package.json` during `hyperframes init` when the selected example does not already provide one. - Adds four project scripts only: - `dev` -> preview in Studio - `check` -> lint, validate, and inspect in sequence - `render` -> render the video - `publish` -> publish the project - Pins generated scripts to the CLI version that created the project in packaged builds, while keeping source-checkout tests on the unpinned dev fallback. - Uses `npx --yes` inside scripts so first-run commands do not stop on an install confirmation prompt. - Updates generated `AGENTS.md` and `CLAUDE.md` guidance to present the same four-command workflow. - Updates the non-interactive init success message to include `npm run dev`, `npm run check`, and `npm run render`. ## Root cause `scaffoldProject()` copied the example, wrote `meta.json` and `hyperframes.json`, then copied agent guidance files. It never created a package manifest, so generated projects had no project-local command contract even though the workflow has stable repeated commands. This revision keeps the scaffold narrow: `package.json` is the project workflow contract, but direct CLI usage remains available for advanced or one-off commands. ## Verification ### Local checks - TDD red check from the first pass: `bun run --filter @hyperframes/cli test src/commands/init.test.ts` failed after updating the expected generated UX because `npm run check` was not emitted yet. - `bun run --filter @hyperframes/cli test src/commands/init.test.ts` - `bunx oxlint packages/cli/src/commands/init.ts packages/cli/src/commands/init.test.ts` - `bunx oxfmt --check packages/cli/src/commands/init.ts packages/cli/src/commands/init.test.ts packages/cli/src/templates/_shared/AGENTS.md packages/cli/src/templates/_shared/CLAUDE.md` - `bun run --filter @hyperframes/cli typecheck` - `bun run --filter @hyperframes/cli test` - `bun run --filter @hyperframes/cli build` - `bun run --filter @hyperframes/studio build` - `git diff --check` - `node packages/cli/dist/cli.js --version` Generated-project smoke at `/tmp/hf-init-package-scripts-opinionated`: - `node packages/cli/dist/cli.js init /tmp/hf-init-package-scripts-opinionated --example blank --non-interactive --skip-skills` - inspected generated `package.json` and confirmed exactly `dev`, `check`, `render`, and `publish` - confirmed packaged scripts use `npx --yes hyperframes@0.4.39 ...` - `npm run check` - `npm run render -- --quality draft --workers 1 --fps 24 --output /tmp/hf-init-package-scripts-opinionated.mp4` - `ffprobe -v error -select_streams v:0 -show_entries stream=width,height,avg_frame_rate,duration -show_entries format=duration,size -of json /tmp/hf-init-package-scripts-opinionated.mp4` - `npm run publish -- --help` ### Browser verification - Started the generated project through the new script: `npm run dev -- --port 5199`. - Used `agent-browser` to open `http://localhost:5199/#project/hf-init-package-scripts-opinionated`. - Verified the Studio project loaded with the expected project name, controls, timeline, and composition player frame. - Captured screenshot: `/tmp/hf-init-package-scripts-opinionated-browser.png`. - Captured agent-browser-driven recording: `/tmp/hf-init-package-scripts-opinionated-browser.webm`. - Verified recording metadata with `ffprobe`: 14.4s, 61 KB. ## Notes - The generated source-checkout test still expects unpinned `npx --yes hyperframes ...` because source mode reports `0.0.0-dev`; the packaged CLI smoke covers the real-user pinned path. - `npm run publish` was verified with `--help` only to avoid creating a real publish side effect during PR validation. |
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8662598a3a |
docs: add runtime adapter skills (#572)
* docs: add runtime adapter skills * docs: address adapter skill review comments |
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395fb9c084 |
feat: add browser GPU render mode (#571)
## Problem HyperFrames already had `--gpu`, but that flag only controlled FFmpeg hardware encoding. The browser capture path still forced Chrome/WebGL through SwiftShader software GL via `--use-angle=swiftshader`, so WebGL-heavy local renders could leave the biggest bottleneck on the CPU path. That made the existing flag naming easy to misread: `--gpu` sounded like it accelerated the whole render, but it did not change the browser frame-capture backend. ## What this fixes - Enables host browser GPU acceleration automatically for local CLI renders. - Adds `--no-browser-gpu` as the local opt-out for software Chrome/WebGL capture. - Keeps `--browser-gpu` as an explicit local browser-GPU request. - Adds `browserGpuMode: "software" | "hardware"` to engine config, with `PRODUCER_BROWSER_GPU_MODE` env support for lower-level producer users. - Keeps Docker browser capture on the deterministic software path. - Maps hardware browser GPU mode to platform-native Chrome backends: - macOS: Metal-backed ANGLE - Windows: D3D11-backed ANGLE - Linux: EGL - Blocks explicit `--browser-gpu --docker` with a clear error because Docker browser GPU passthrough is not cross-platform. - Clarifies docs so `--gpu` means FFmpeg encoder GPU and browser GPU means Chrome/WebGL capture GPU. - Keeps encoder backend selection auto-detected from FFmpeg capabilities: - NVIDIA: NVENC - macOS: VideoToolbox - Linux: VAAPI - Intel: QSV ## Why two flags There are two separate GPU surfaces in the render pipeline: 1. Browser GPU controls Chrome frame capture. - Affects WebGL, canvas, CSS rendering, compositing, and screenshot capture inside the browser. - This is enabled automatically for local CLI renders. - Use `--no-browser-gpu` when you want the software browser baseline. 2. `--gpu` controls FFmpeg video encoding. - Affects the final encode step after frames have already been captured. - The concrete encoder is auto-detected from the host FFmpeg build and hardware. - It can be faster for some machines/codecs, but it is not equivalent to browser rendering acceleration. The controls stay independent because users may want: - `hyperframes render` for the fast local default with browser GPU capture. - `hyperframes render --no-browser-gpu` for the software-browser local baseline. - `hyperframes render --gpu` for browser GPU capture plus hardware FFmpeg encoding. - `hyperframes render --no-browser-gpu --gpu` for software browser capture plus hardware FFmpeg encoding. - `hyperframes render --docker` for deterministic browser capture. ## Why `--gpu` does not imply browser GPU Keeping `--gpu` scoped to FFmpeg encoding avoids a semantic break and keeps the risk profile explicit: - `--gpu` already means encoder acceleration. Expanding it to also change Chrome capture would silently alter behavior for users who only wanted hardware encoding. - Browser GPU and encoder GPU have different portability. Encoder GPU can work in Docker when the host exposes the right devices; browser GPU passthrough is not cross-platform, so this PR intentionally blocks explicit `--browser-gpu --docker`. - The Apple presentation benchmark shows why the controls should stay separate: browser GPU capture was the useful improvement, while macOS VideoToolbox via `--gpu` was slower and produced larger output for this `standard` H.264 run. If HyperFrames later wants a single umbrella acceleration control, it should be explicit, for example `--acceleration browser|encoder|all` or `--gpu=browser|encoder|all`, rather than changing the meaning of the existing boolean `--gpu`. ## Root cause `buildChromeArgs()` always injected `--use-gl=angle --use-angle=swiftshader`. `disableGpu` only appended `--disable-gpu`; it did not provide a hardware-GPU mode. That made the public `--gpu` flag look broader than it was, because render capture stayed software-backed even when encoder GPU was requested. ## Verification ### Local checks - `bun install` - `bun run build:hyperframes-runtime` - `bun run --filter @hyperframes/engine test src/config.test.ts src/services/browserManager.test.ts` - `bun run --filter @hyperframes/cli test src/utils/dockerRunArgs.test.ts src/commands/render.test.ts` - `bun run --filter @hyperframes/cli typecheck` - `bun run --filter @hyperframes/engine typecheck` - `bun run --filter @hyperframes/producer typecheck` - `cd packages/producer && bunx vitest run src/services/renderOrchestrator.test.ts` - `bunx oxlint packages/cli/src/commands/render.ts packages/cli/src/commands/render.test.ts packages/cli/src/utils/dockerRunArgs.ts packages/cli/src/utils/dockerRunArgs.test.ts packages/engine/src/config.ts packages/engine/src/config.test.ts packages/engine/src/services/browserManager.ts packages/engine/src/services/browserManager.test.ts packages/producer/src/services/renderOrchestrator.test.ts` - `bunx oxfmt --check ...` on changed source/docs files - `git diff --check` - `bun packages/cli/src/cli.ts render --help | rg -n "browser-gpu|no-browser-gpu|GPU"` - `bun packages/cli/src/cli.ts render packages/producer/tests/css-spinner-render-compat/src --output /tmp/hf-auto-browser-gpu-smoke.mp4 --workers 1 --quality draft --fps 24 --strict` - Render plan prints `GPU: browser GPU (auto)`. - `bun packages/cli/src/cli.ts render packages/producer/tests/css-spinner-render-compat/src --no-browser-gpu --output /tmp/hf-software-browser-gpu-smoke.mp4 --workers 1 --quality draft --fps 24 --strict` - Render plan does not print browser GPU. - `bun packages/cli/src/cli.ts render packages/producer/tests/css-spinner-render-compat/src --docker --browser-gpu --output /tmp/should-not-render.mp4` - Exits 1 with `Browser GPU is local-only`. - `buildDockerRunArgs()` regression coverage asserts Docker container args include `--no-browser-gpu`, preventing nested container renders from re-enabling browser GPU through the local CLI default. - `resolveBrowserGpuForCli()` regression coverage asserts `PRODUCER_BROWSER_GPU_MODE=software` opts out when no CLI browser-GPU flag is supplied, while explicit `--browser-gpu` / `--no-browser-gpu` still win. - `ffmpeg -v error -i /tmp/hf-auto-browser-gpu-smoke.mp4 -f null -` - `ffmpeg -v error -i /tmp/hf-software-browser-gpu-smoke.mp4 -f null -` - `ffprobe -v error -show_entries format=duration:stream=codec_name,width,height,r_frame_rate -of json /tmp/hf-browser-gpu-smoke.mp4` -> H.264, 1920x1080, 24fps, 5.0s ### Apple presentation benchmark Rendered `/Users/miguel07code/Downloads/apple-presentation.zip` as supplied after extracting to `/tmp/hf-apple-profile/apple-presentation`. Fixed settings: - 1920x1080 - 30fps - `standard` quality - 4240 frames - 141.32s duration - 8-worker cap; render auto-calibration used 6 capture workers - macOS host detected FFmpeg GPU encoder: `videotoolbox` | Mode | Equivalent flags after this PR | Wall time | vs software-browser baseline | Speed | Capture | Encode | Output | | --- | --- | ---: | ---: | ---: | ---: | ---: | ---: | | Software browser + CPU encode | `--no-browser-gpu` | 120.77s | baseline | 1.17x | 97.87s | 10.04s | 8.38MB | | Browser GPU + CPU encode | default local render | 70.10s | 42.0% faster | 2.02x | 50.72s | 9.91s | 8.39MB | | Software browser + encoder GPU | `--no-browser-gpu --gpu` | 133.16s | 10.3% slower | 1.06x | 103.58s | 18.31s | 25.43MB | | Browser GPU + encoder GPU | `--gpu` | 74.12s | 38.6% faster | 1.91x | 46.69s | 17.93s | 25.45MB | Result: browser GPU capture is the meaningful improvement for this WebGL/browser-capture-heavy presentation. VideoToolbox encoding was slower and produced larger files for this current `standard` H.264 path, so `--gpu` should stay separate and opt-in. Why `--gpu` plus browser GPU was slower than browser GPU alone: the combined run captured about 4.0s faster than browser GPU alone, but VideoToolbox encoding was about 8.0s slower than CPU x264 encoding, so the encode loss outweighed the capture gain. ### VideoToolbox flag check I also isolated the encode stage against the already-captured Apple frames to check whether macOS GPU encoding only needed special flags. `ffmpeg -h encoder=h264_videotoolbox` does not expose a CRF/CQ-style quality option like x264. It exposes bitrate-oriented and VideoToolbox-specific options such as `-b:v`, `-realtime`, `-profile`, `-coder`, `-prio_speed`, `-power_efficient`, and `-allow_sw`. That means our current `-q:v` mapping is not equivalent to x264 CRF and can produce very different bitrate/size behavior. Measured full-frame encode variants on this host: | VideoToolbox variant | Encode wall time | Output size | Bitrate | | --- | ---: | ---: | ---: | | Current `-q:v 64 -allow_sw 1` | 18.76s | 25.31MB | 1.43 Mbps | | Current without `-allow_sw 1` | 18.21s | 25.31MB | 1.43 Mbps | | `-b:v 500k -maxrate 750k -bufsize 1000k -profile high -coder cabac -realtime 1 -prio_speed 1 -power_efficient 0` | 20.58s | 7.42MB | 0.42 Mbps | | Same with `-b:v 1500k` | 20.84s | 16.70MB | 0.95 Mbps | | `-b:v 500k -profile baseline -coder cavlc -realtime 1 -prio_speed 1 -power_efficient 0` | 18.11s | 8.94MB | 0.51 Mbps | Conclusion: VideoToolbox can be made size/bitrate-predictable with explicit `--video-bitrate`, but the tested speed-oriented flags did not make it faster than CPU x264 wall time for this render. That reinforces keeping `--gpu` encoder acceleration explicit and separate from browser GPU capture. Artifacts from the local benchmark: - `/tmp/hf-apple-profile/results/cpu.mp4` - `/tmp/hf-apple-profile/results/browser-gpu.mp4` - `/tmp/hf-apple-profile/results/encoder-gpu.mp4` - `/tmp/hf-apple-profile/results/full-gpu.mp4` - `/tmp/hf-apple-profile/results/summary.json` All four benchmark MP4s completed `ffprobe` and full `ffmpeg -f null` decode checks. ### Pixel comparison Compared decoded MP4 output between software-browser and browser-GPU renders: - Apple presentation: - 4240 frames compared - 636 exact matching decoded frame hashes - 3604 different decoded frame hashes - Average PSNR: 57.79 dB - `css-spinner-render-compat` clean fixture: - 120 frames compared - 0 exact matching decoded frame hashes - Average PSNR: 61.57 dB Interpretation: browser GPU output is not strict hash/pixel-identical to the software-browser path after lossy H.264 encode, but the measured deltas are visually tiny. Above 50 dB PSNR is typically visually indistinguishable for normal video review. Use `--no-browser-gpu` or Docker when strict cross-run/cross-machine reproducibility matters more than local speed. ### Browser verification - Started HyperFrames Studio preview for `packages/producer/tests/css-spinner-render-compat/src`. - Used `agent-browser` to open `http://localhost:5191#project/src` and verify the composition loaded in Studio. - Screenshots: - `/tmp/hf-gpu-browser-proof/preview-loaded.png` - `/tmp/hf-gpu-browser-proof/preview-playing.png` - `/tmp/hf-gpu-browser-proof/preview-frame-60.png` - Agent-browser recordings: - `/tmp/hf-gpu-browser-proof/preview-playback.webm` - `/tmp/hf-gpu-browser-proof/preview-seek.webm` ## Notes - Browser GPU is enabled automatically for local CLI renders and disabled in Docker. - `--no-browser-gpu` is the opt-out for software Chrome/WebGL capture. - `--gpu` remains encoder-only and opt-in. - The Apple presentation zip has existing lint errors around unmanaged nested videos and imperative media `play()` calls. The benchmark still compares the same supplied source across modes, but it should not be treated as a clean deterministic-composition fixture. |
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4d05b475f0 |
feat: add Stronkter catalog blocks (#570)
## Problem The Catalog did not include the four prompt-matched Stronkter one-shot HyperFrames projects, and registry metadata only supported a plain author string, so there was no structured way to show creator attribution or the original generation prompt on generated catalog pages. ## What this fixes - Adds four Catalog blocks matching the provided prompts, in order: - `north-korea-locked-down` - `apple-money-count` - `nyc-paris-flight` - `goonvpn-youtube-spot` - Attributes each block to [Stronkter](https://x.com/Stronkter). - Stores and renders the original source prompt for each generated catalog page. - Adds a local realistic map plate for the North Korea block so rendering does not depend on live map tile requests. - Extends registry item metadata/schema with `authorUrl` and `sourcePrompt`. - Updates catalog page generation to read items from `registry/registry.json`, keeping generated docs aligned to the public registry manifest. - Ignores normal browser media preload `net::ERR_ABORTED` request failures for media assets during `hyperframes validate`, while preserving failures for real missing assets. ## Root cause The imported projects are Catalog-ready compositions, but the registry/docs pipeline did not have first-class source-prompt or linked-author fields to expose creator credit on generated MDX pages. The audio-backed compositions also surfaced a validation edge case: Chrome can report aborted media preload requests as `net::ERR_ABORTED` even when the audio file exists and playback is valid. ## Verification ### Local - `bun run --filter @hyperframes/cli test src/commands/validate.test.ts` - `bun run --filter @hyperframes/core test src/registry/types.test.ts` - `bun run sync-schemas:check` - `bunx oxlint packages/cli/src/commands/validate.ts packages/cli/src/commands/validate.test.ts packages/core/src/registry/types.ts packages/core/src/registry/types.test.ts scripts/generate-catalog-pages.ts` - `bunx oxfmt --check ...` on changed source, registry, docs, and composition files - `git diff --check` - `bun packages/cli/src/cli.ts lint` and `validate` against temp installed projects for all four blocks - Lefthook pre-commit: lint/format/typecheck on the initial commit, plus format on the amend - Lefthook commit-msg: commitlint ### Browser - Exercised all four blocks through HyperFrames preview routes with `agent-browser`. - Captured playback screenshots and WebM recordings for: - `north-korea-locked-down` - `apple-money-count` - `nyc-paris-flight` - `goonvpn-youtube-spot` ## Notes - The zip also contained unrelated project directories, but this PR intentionally includes only the four prompt-matched Catalog blocks requested here. - The imported one-shot compositions may trigger the existing large-composition lint warning, but there are no lint errors and runtime validation passes. |
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ea3b708b12 |
feat: add Studio current-frame capture (#565)
## Problem Closes #555. Studio users could inspect the preview, but there was no first-class way to capture the current rendered frame as an image. ## What this fixes - Adds a `Capture` action to the Studio header toolbar so it does not cover the video preview. - Downloads the current composition frame as a PNG using the current player time. - Extends the existing thumbnail route and Studio/CLI thumbnail generators with an explicit PNG format path while preserving JPEG thumbnails for existing previews. - Adds URL/filename utility coverage plus thumbnail route coverage for PNG requests. ## Root cause Studio already had frame thumbnail generation, but the API path was JPEG-oriented and the editor UI only used it for previews. There was no current-frame capture affordance wired to the player state. ## Verification ### Local - `bun run --filter @hyperframes/core test src/studio-api/routes/thumbnail.test.ts` - `bun run --filter @hyperframes/studio test src/utils/frameCapture.test.ts src/player/components/PlayerControls.test.ts` - `bun run --filter @hyperframes/studio typecheck` - `bun run --filter @hyperframes/core typecheck` - `bun run --filter @hyperframes/cli typecheck` - `bunx oxlint packages/cli/src/server/studioServer.ts packages/core/src/studio-api/routes/thumbnail.test.ts packages/core/src/studio-api/routes/thumbnail.ts packages/core/src/studio-api/types.ts packages/studio/src/App.tsx packages/studio/src/icons/SystemIcons.tsx packages/studio/vite.config.ts packages/studio/src/utils/frameCapture.ts packages/studio/src/utils/frameCapture.test.ts` - `bunx oxfmt --check packages/cli/src/server/studioServer.ts packages/core/src/studio-api/routes/thumbnail.test.ts packages/core/src/studio-api/routes/thumbnail.ts packages/core/src/studio-api/types.ts packages/studio/src/App.tsx packages/studio/src/icons/SystemIcons.tsx packages/studio/vite.config.ts packages/studio/src/utils/frameCapture.ts packages/studio/src/utils/frameCapture.test.ts` - `git diff --check` ### Browser <img width="1027" height="910" alt="image" src="https://github.com/user-attachments/assets/71973af4-0279-4074-9 <img width="1026" height="902" alt="Screenshot 2026-04-29 at 16 17 22" src="https://github.com/user-attachments/assets/a32e1c19-b793-40b9-82f8-de8bbb11f123" /> 060-130839a2d419" /> |
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403c00eeae | fix: warn on self-scoped composition selectors (#562) | ||
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328bba0384 | fix: make registry blocks pass lint errors (#564) | ||
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e1d1103ef0 |
Merge pull request #532 from heygen-com/fix/snapshot-runtime-multi-strategy
fix(cli): use multi-strategy runtime resolver for snapshot |
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ce4bcc47c0 |
fix(cli): use multi-strategy runtime resolver for snapshot
Use loadRuntimeSource() from runtimeSource.ts instead of a single hardcoded path. Tries: build from source (dev), inlined constant (production), pre-built artifact (fallback). Fixes snapshot in dev mode where __dirname is src/commands/ not dist/. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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9c7983211a | fix: validate CLI smoke paths and warn on oversized compositions | ||
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8e5593b6ba |
feat(render): auto-detect HDR from media probes, add --sdr flag (#526)
* feat(render): auto-detect HDR from media probes, add --sdr flag Replace the --hdr opt-in model with automatic detection. When no flags are passed, the renderer probes all video/image sources and enables HDR output if any HDR color space is detected. Existing --hdr flag becomes a force override. New --sdr flag forces SDR output. Behavior matrix: (no flags) + HDR content → HDR output (no flags) + SDR content → SDR output --hdr → force HDR (defaults to HLG if no HDR sources) --sdr → force SDR (skips probing) --hdr --sdr → error Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * fix: align HDR auto-detect docs and tests --------- Co-authored-by: Claude Opus 4.6 (1M context) <noreply@anthropic.com> |
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36b3fc8cd9 | fix: budget workers for expensive captures | ||
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8cc2084669 |
fix(cli): snapshot resolves runtime from own dist, not monorepo layout
The snapshot command resolved the HyperFrames runtime IIFE via a
relative path that walked up three directories to packages/core/dist/.
This only worked in the monorepo dev layout — npm/npx installs have
a flat dist/ folder with cli.js and the runtime side by side.
Without the runtime, window.__player was never created and the
snapshot fell back to seeking every __timelines entry to the same
absolute time. Sub-composition timelines expect relative time
(offset from their data-start), so all beats rendered beat-1 content.
Fix: resolve("hyperframe.runtime.iife.js") from __dirname (the dist/
folder itself), where the build already copies the runtime IIFE.
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b92341eb98 |
fix(cli): publish projects through staged uploads (#491)
* fix(cli): publish projects through staged uploads * fix(cli): honor signed upload length header |
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1782cebfc4 |
fix(cli): resolve sub-composition <audio> src relative to its own file (#489)
`lintAudioSrcNotFound` resolves every `<audio src>` against the project root, which is correct for index.html but wrong for sub-compositions — their srcs are written relative to the sub-composition file (e.g. `../assets/foo.mp3`), and the bundler rewrites them at compile time. Carry the sub-composition path alongside each html source and run `<audio src>` strings starting with `../` through the existing `rewriteAssetPath` helper before checking existence on disk. Mirrors the runtime/bundler behaviour so the lint check sees the same path the renderer will fetch. Original (un-rewritten) src is still surfaced in the finding message so authors can grep for it in their HTML. |
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bdc7061f98 |
fix(cli): shut down preview embedded-mode server on Ctrl+C (#483)
* fix(cli): shut down preview embedded-mode server on Ctrl+C
runEmbeddedMode awaited a promise that never resolved, relying on Node
to exit on SIGINT. Two things kept that from working in practice:
1. @hono/node-server's listening handle keeps the event loop alive after
the signal fires, so the process hangs even when SIGINT does arrive.
2. On Windows, some terminals (Git Bash / MSYS) don't deliver Ctrl+C to
the Node process as a SIGINT at all — the keystroke is eaten at the
TTY layer.
Register a SIGINT/SIGTERM handler that closes the server explicitly and
resolves the promise, with a 2s force-exit fallback. On Windows, run a
readline interface on stdin to catch Ctrl+C at the TTY and re-emit it
as SIGINT so the same handler fires.
Print "Shutting down studio..." as soon as the signal is received —
server.close() can take a second or two to drain keep-alive connections
and an unmarked pause reads as "stuck".
Exit code 0 because a user-initiated Ctrl+C isn't an error; non-zero
codes make pnpm print ELIFECYCLE right where the user just asked the
process to stop.
* fix(cli): close readline interface in shutdown to honour exit-code intent
After the SIGINT handler removes itself, the Windows readline interface
is still alive and listening. A second Ctrl+C during the 2s grace
period would re-emit SIGINT with no registered handler, triggering
Node's default exit-130 behaviour and contradicting the explicit
exit(0) we chose for clean teardown.
Hoist the readline handle out of the win32 branch so shutdown can
close it before invoking server.close(). Also pass the signal name
to process.emit("SIGINT", "SIGINT") to match Node's ProcessEvents
overload — runtime behaviour is unchanged.
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b947966a8b |
feat(cli): add visual inspect command (#480)
* feat: add layout audit command * feat: refine visual inspect command |
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31e8144304 |
fix: render parity for transparent looped videos (#478)
## Summary - preserve alpha for render-injected video frames by detecting alpha streams with ffprobe and extracting alpha video frames as PNG - keep `<video loop>` semantics through static parsing, compiler duration resolution, browser media discovery, and render frame lookup - fail embedded preview startup before opening a broken browser page when the Studio bundle is missing - align snapshot frame injection with looped media timing and VP9 alpha extraction ## Why The Studio preview and rendered MP4 could disagree for timed transparent looped videos. The Comfy funding composition exposed two separate parity bugs: render-injected frames needed alpha-preserving PNG extraction, and the compiler was clamping a looped `data-duration="4"` video down to the 3.125s source duration. After the first source cycle, render lookup treated the video as inactive, hid the native video, and produced the blank polygon/glow the user saw around the rounded `0:03` mark. `hyperframes lint` and `hyperframes validate` did not catch this because they check syntax/load/console/accessibility, not preview-vs-render visual parity. This PR adds regression coverage for the compiler loop-duration path and frame lookup path. ## Verification - `bun run --filter @hyperframes/core test -- src/compiler/timingCompiler.test.ts src/compiler/htmlCompiler.test.ts` - `bun test packages/producer/src/services/htmlCompiler.test.ts` - `bun run --filter @hyperframes/engine test -- videoFrameExtractor ffprobe` - `bun run --filter @hyperframes/core typecheck` - `bun run --filter @hyperframes/engine typecheck` - `bun run --filter @hyperframes/producer typecheck` - `bun run --filter @hyperframes/cli typecheck` - `bun run lint` - `bun run format:check ...` on touched files - Comfy project: `node packages/cli/dist/cli.js validate` -> no console errors, 44 text elements pass WCAG AA - Comfy project patched render from source: `/tmp/comfy-render-compare/fixed6-comfy.mp4`, 1920x1080, 30fps, 21.8s, 654 frames - 3.00s-3.97s render contact sheet: `/tmp/comfy-render-compare/fixed6-window-contact.png` - targeted fixed render capture at 3.733s: `/tmp/comfy-render-compare/probe-capture-fixed/captured/frame_000112.jpg` - agent-browser Studio proof screenshot at 3.7s: `/tmp/comfy-render-compare/agent-browser-studio-3_7-fixed.png` - agent-browser-driven recording of 3s seek pass: `/tmp/comfy-render-compare/agent-browser-wysiwyg-3s-fixed.webm` Note: `bun run --filter @hyperframes/cli dev -- validate` is blocked in source mode by the existing `contrast-audit.browser.js` default-export loader issue; packaged `node packages/cli/dist/cli.js validate` passes for this project. |
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b42a8e4e03 |
feat(cli): forward perf breakdown + tmpPeakBytes to PostHog telemetry (#454)
## What Forwards the new per-phase extraction breakdown and `tmpPeakBytes` fields from `RenderPerfSummary` (added in #444 and #446) to PostHog via the CLI's existing `render_complete` telemetry event. ## Why The CLI already ships `render_complete` events to PostHog (`packages/cli/src/telemetry/client.ts`), but `events.ts:trackRenderComplete` only carried a subset of `RenderPerfSummary` — top-level timings, composition dims, and memory snapshots. After #444 added per-phase extraction breakdown (`videoExtractBreakdown`) and #446 added cache hit/miss counters, the data lives on `job.perfSummary` at render-complete but never reaches PostHog dashboards. Without this, any PostHog insight built around "how often are we hitting the cache?", "what's the median HDR preflight cost?", or "where in the extract phase do compositions spend time?" has to be answered by Datadog log scraping instead. ## How - **`packages/cli/src/telemetry/events.ts`** — extend `trackRenderComplete` props with 17 new optional fields: `tmpPeakBytes`, the six named stage timings, and the ten `videoExtractBreakdown` fields. All sent as flat properties (`extract_cache_hits`, `stage_capture_ms`, etc.) — PostHog insights query flat keys more ergonomically than nested objects. - **`packages/cli/src/commands/render.ts`** — wire `job.perfSummary.videoExtractBreakdown` / `stages` / `tmpPeakBytes` into the `trackRenderMetrics` → `trackRenderComplete` hand-off. - Naming: `extract_phase3_ms` deliberately disambiguates from `stage_video_extract_ms` — the former is just the parallel ffmpeg extract inside Phase 3; the latter is the full stage (resolve + probe + preflight + extract). - All new fields are optional. The Docker-subprocess branch of `render.ts` that doesn't have a local `perfSummary` still compiles and ships events without them. ## Test plan - [x] `bun run --cwd packages/cli test` — 161/161 pass - [x] `bunx tsc -p packages/cli/tsconfig.json --noEmit` — no errors - [x] `bunx oxlint` + `bunx oxfmt` — clean - [ ] Once merged, verify PostHog receives the new properties on a real render event (run `hyperframes render` against a fixture and watch PostHog ingestion — telemetry auto-disables in CI, so this requires a local dev render with `HYPERFRAMES_NO_TELEMETRY` unset). ## Stack Depends on #444 (adds the `videoExtractBreakdown` + `tmpPeakBytes` fields to `RenderPerfSummary`) and transitively on #445 → #446. ## Future work (not in this PR) - The HeyGen internal producer server (`hyperframes-internal/packages/producer/src/server.ts`) logs `perfSummary` to Datadog via `log.info` but has no PostHog integration. Production renders are the bulk of the traffic — separate PR to either ship perfSummary to PostHog from the internal server, or materialize Datadog log-based metrics for per-phase timings. |
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cc9403b6bd |
test(producer): extract frameDirMaxIndexCache to its own module and pin cross-job isolation (#381)
## Summary Extract the `frameDirMaxIndexCache` from a private module-scoped Map inside `renderOrchestrator.ts` into its own `frameDirCache.ts` module, then add a 11-test bun:test suite that pins the cross-job isolation contract added in Chunk 5B. ## Why `Chunk 9E` of `plans/hdr-followups.md`. The cache lived as a private Map inside `renderOrchestrator.ts`, which made the cross-job isolation contract from Chunk 5B impossible to unit-test directly. Extracting it both makes the contract testable and reduces orchestrator complexity slightly. ## What changed - New `packages/producer/src/services/frameDirCache.ts` exposes `getMaxFrameIndex` / `clearMaxFrameIndex` / `getMaxFrameIndexCacheSize` (plus a test-only `__resetMaxFrameIndexCacheForTests` helper). Behavior is unchanged: callers still get the same module-scoped sharing inside a job, and `renderOrchestrator`'s outer `finally` still clears every entry it registered so the cache cannot grow monotonically across renders. - `renderOrchestrator.ts`: imports the new helpers, drops the unused `readdirSync` import, updates inline comments, and replaces two `frameDirMaxIndexCache.delete` sites with `clearMaxFrameIndex`. - New `frameDirCache.test.ts` (bun:test, 11 tests) covering: - Reading the max index from a populated directory. - Ignoring filenames that don't match `frame_NNNN.png` (wrong ext, wrong prefix, wrong case, double extension, empty index group, same-named subdirectory). - Empty- and missing-directory paths returning `0` and being cached. - Intra-job invariant: subsequent readdir mutations not observed once cached. - `clearMaxFrameIndex` forcing a re-read; returns `false` for paths that were never cached. - Per-directory isolation when multiple directories are registered. - The cross-job contract from Chunk 5B: cache empty between well-behaved jobs, doesn't grow monotonically across 20 simulated renders with 3 HDR videos each (steady-state cache size stays at 3), and a buggy job that forgets to clear leaks exactly its own entries rather than affecting unrelated jobs. ## Test plan - [x] `frameDirCache.test.ts` 11/11 pass. - [x] Existing producer tests unchanged. - [x] Behavior preserved: same module-scoped sharing inside a job, same outer-`finally` eviction. ## Stack Chunk 9E of `plans/hdr-followups.md`. Test-driven extraction; complements Chunk 5B. |
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072814e65c |
fix(core,cli,ci): harden runtime resolution + inline constant + smoke test (#458)
Guard buildHyperframesRuntimeScript() against missing entry.ts so it returns null instead of crashing with esbuild stderr output. Add getHyperframeRuntimeScript() that returns the pre-built IIFE as a baked-in string constant — no esbuild, no file I/O, no import.meta.url. Consolidate CLI runtime source resolution into a single module with a clear priority chain: esbuild from source (dev) → inlined constant (production) → pre-built artifact file (fallback). Add CI smoke test that npm-packs the CLI, installs globally, runs hyperframes preview, and asserts no stderr errors + runtime endpoint returns JS. Bump version to 0.4.16. |
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34db66ef0a |
fix(cli): prevent esbuild runtime error in global/npx installs (#452)
* fix(cli): resolve runtime fallback for globally-installed hyperframes When hyperframes is installed globally via npm, the `loadRuntimeSourceFallback()` path that dynamically imports @hyperframes/core and runs esbuild fails because @hyperframes/core is inlined into cli.js and import.meta.url resolves to the wrong location for the entry.ts source file. Add a disk-based fallback that searches for the pre-built IIFE runtime artifact in multiple locations: - Alongside the bundled CLI (dist/hyperframe-runtime.js, dist/hyperframe.runtime.iife.js) - Walking up from __dirname through node_modules The esbuild path is tried first to preserve live-rebuild behavior in dev, with the pre-built artifact search as a safety net for the bundled context. Also adds the IIFE artifact name variant to resolveRuntimePath() in the studio server so it checks both naming conventions. * fix(cli): gate esbuild fallback on source availability The previous fix still triggered esbuild's stderr output before the catch could suppress it. Now check whether the runtime entry.ts source file actually exists before attempting the on-the-fly build, avoiding the noisy error in global installs entirely. * fix(cli): remove noisy console.warn from runtime fallback The caller already handles a null return — no need to warn about something the user can't act on. If both paths fail, the /api/runtime.js route returns a 404 which the studio handles gracefully. * style(engine): fix oxfmt trailing blank line in chunkEncoder test * fix(cli): guard against null/undefined from loadHyperframeRuntimeSource Fall through to the pre-built artifact if the function returns a falsy value without throwing. * refactor(cli): consolidate runtime source resolution into single module Replace the scattered path-probing logic with a single loadRuntimeSource() that encodes the full priority chain: esbuild from source (dev only, gated on entry.ts existence) → pre-built artifact alongside cli.js → core/dist artifact → node_modules walk. Rename loadRuntimeSourceFallback → loadRuntimeSource since it's now the primary resolution function, not a fallback. |
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b4e9d64e29 |
feat(cli): hyperframes publish — share projects via a public URL (#312)
## Summary This PR adds `hyperframes publish` as the OSS handoff into the persisted HyperFrames publish flow. Instead of opening a local tunnel, the CLI now: 1. zips the local project 2. uploads it to the HeyGen publish backend 3. gets back a stable `hyperframes.dev` project URL plus claim token 4. prints a claimable URL for the user Example output: ```bash $ hyperframes publish Project my-video Files 12 Public https://hyperframes.dev/p/hfp_123?claim_token=... Open the URL on hyperframes.dev to claim the project and continue editing. ``` ## User Flow The intended user flow is: 1. Run `hyperframes publish` from a local HyperFrames project. 2. The CLI uploads the project as a zip to the publish API. 3. The CLI prints a stable `hyperframes.dev` URL with the claim token attached. 4. The user opens that URL in the browser. 5. `hyperframes.dev` uses that URL to claim the published project and import it into the web app. 6. The user continues editing from a normal web session. So the CLI is only responsible for packaging, upload, and printing the URL. The browser-side claim/import flow lives in the backend and web app stack. ## Routing This PR does not expose a separate user-facing canary mode. The CLI posts to the normal publish API host: - `https://api2.heygen.com/v1/hyperframes/projects/publish` Backend routing behavior is handled server-side. If the default path routes through canary, it does so without a dedicated CLI flag; if that path is unavailable, traffic falls back to prod behavior on the backend side. ## What Changed | File | Role | |---|---| | `packages/cli/src/commands/publish.ts` | Adds the `hyperframes publish` command, confirmation prompt, lint-before-upload behavior, and user-facing output. | | `packages/cli/src/utils/publishProject.ts` | Zips the local project, filters ignored files/directories, posts the archive to the publish API, and returns the published project metadata. | | `packages/cli/src/utils/publishProject.test.ts` | Covers archive creation and successful upload response parsing. | | `packages/cli/src/cli.ts` | Registers the new `publish` command. | | `packages/cli/src/help.ts` | Adds `publish` to root help and examples. | | `docs/packages/cli.mdx` | Documents the persisted publish flow. | ## Important Behavior - Requires `index.html` at the project root. - Ignores hidden files and common non-project directories like `.git`, `node_modules`, `dist`, `.next`, and `coverage`. - Lints the project before upload and prints findings, but does not block publish on warnings. - Does **not** keep a local process alive after upload. - Does **not** open a public tunnel. - Does **not** require HeyGen OAuth inside the CLI. ## Why This Shape This keeps the OSS CLI simple and matches the current product direction: - project persistence lives in HeyGen's backend - the public URL comes from the persisted project row - claiming/importing happens on `hyperframes.dev` - the CLI should not own browser auth or long-lived sharing infrastructure ## Verification In the earlier PR worktree, this flow was verified locally with the CLI build/test path and with real backend integration. In this cleanup worktree, the narrow code/doc change was verified by inspection, but the repo-level commands are currently blocked here by missing local tool binaries and typings in the worktree environment: - `bun run --filter @hyperframes/cli test` -> `vitest: command not found` - `bun run --filter @hyperframes/cli typecheck` -> local dependency/type resolution failures outside this diff - `bun run --filter @hyperframes/cli build` -> `tsx: command not found` ## Notes This PR only covers the OSS CLI side of the flow. The full end-to-end experience depends on the corresponding backend and `hyperframes.dev` changes that store published projects, return the stable URL, and support claim/import in the web app. |
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95bf333895 |
fix: stabilize apple master timeline and playback (#419)
## Summary - preserve authored non-root composition timing before runtime sanitization so Studio can build the correct master timeline for chained subcompositions - prefer the fresh runtime source in Studio dev so local preview does not serve a stale `/api/runtime.js` - restrict preserved authored timing inference to the Studio timeline payload instead of the general runtime resolver ## What this fixes This PR fixes the Apple presentation class of failures where the root `index.html` / `Master` view looked correct at first and then collapsed into an incorrect short timeline. Before this change: - the master transport could report a short duration like `0:12` instead of the real deck length (`2:21` in the Apple project) - composition clips bunched near the start instead of laying out sequentially across the deck - seeking into later parts of the deck would land in the wrong place or show the wrong active composition - local Studio debugging could be misleading because dev sometimes served a stale runtime bundle After this change: - the master transport reflects the authored composition-chain duration - master clips resolve linearly across the whole deck - late seeks land on the correct slide window - Studio dev uses the current runtime implementation, so local preview matches the branch you are testing ## Root cause There were two related issues: 1. Studio/master timeline inference lost authored composition timing - missing timing attrs were treated like `0` instead of `null` - non-root composition `data-duration` / `data-end` were stripped before Studio timing resolution could use them - root duration inference trusted an incomplete live timeline window instead of the authored composition chain 2. Preserved authored timing leaked into the general runtime resolver - preserving authored timing was correct for Studio timeline payload generation - but using those preserved attrs for normal runtime playback/render resolution caused visual regressions in producer CI - the follow-up fix keeps authored timing available only for Studio payload collection while normal runtime playback continues to resolve from the real live timeline/media state ## Why the later regression fix was needed The initial runtime change fixed the Apple master timeline, but it also widened timing inference in the core runtime too far. That caused Dockerized producer regressions because rendered visibility started respecting preserved authored timing where it should have relied on the live resolved runtime state. The latest commit fixes that by splitting the behavior: - Studio timeline payload: authored timing allowed - general runtime resolver: authored timing ignored by default That preserves the Apple master timeline fix without changing producer render semantics. ## Verification ### Local checks - `bunx oxlint packages/core/src/runtime/init.ts packages/core/src/runtime/startResolver.ts packages/core/src/runtime/timeline.ts packages/core/src/runtime/startResolver.test.ts packages/core/src/runtime/timeline.test.ts packages/studio/vite.config.ts packages/cli/src/server/studioServer.ts` - `bunx oxfmt --check packages/core/src/runtime/init.ts packages/core/src/runtime/startResolver.ts packages/core/src/runtime/timeline.ts packages/core/src/runtime/startResolver.test.ts packages/core/src/runtime/timeline.test.ts packages/studio/vite.config.ts packages/cli/src/server/studioServer.ts` - `bun run --filter @hyperframes/core typecheck` - `bun run --filter @hyperframes/studio typecheck` - `bun run --filter @hyperframes/cli typecheck` - `cd packages/core && bun run test src/runtime/startResolver.test.ts src/runtime/timeline.test.ts` - `bun test packages/cli/src/server/studioServer.test.ts --timeout 20000` ### Browser proof Tested in Studio with `agent-browser` against the Apple presentation project. - root/master transport now shows `0:00 / 2:21` - master clip manifest resolves sequentially (`slide-1 -> slide-2 -> slide-3 ...`) - seeking to `120s` lands on a late slide instead of a collapsed early timeline state - after refreshing onto the fresh runtime source, the visible later-slide media advanced correctly in local Studio playback ### CI-equivalent regression proof on devbox The previously failing producer regressions were rerun on devbox using the same Dockerized path GitHub Actions uses: - `docker build -f Dockerfile.test -t hyperframes-producer:test .` - `docker run ... hyperframes-producer:test style-1-prod style-5-prod style-9-prod style-12-prod --sequential` Those previously failing suites all passed after the runtime split fix: - `style-1-prod` - `style-5-prod` - `style-9-prod` - `style-12-prod` ## Notes - the Apple project volume tweak stayed local-only for testing and is not part of this PR - this PR fixes the master/root timeline bug and the runtime regression it introduced; it does not add general subtimeline authoring support |
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fc52d21c59 |
docs: clarify composition variable usage (#420)
## Summary - replace the unsupported `data-var-*` example with the current `data-variable-values` pattern - document that variable values are carried through but still applied manually inside the nested composition - add matching reference notes in the data-attributes, HTML schema, core package, and CLI docs ## Verification - `npx mintlify dev --port 3100` - browser verification with `agent-browser` on `/concepts/compositions` and `/reference/html-schema` - proof artifacts saved locally under `tmp/issue-416-docs/` |
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158204343d |
fix: stabilize studio preview and runtime sync (#389)
## Summary Stabilize the Studio preview/runtime path so timeline data, preview rendering, and thumbnails stay in sync. This PR includes: - preview hot-refresh without remounting the iframe - runtime duration/timeline fixes so Studio stops drifting from playback state - thumbnail and selector-based preview fixes - local Studio runtime serving and player-resolution fixes so dev/CI do not depend on prebuilt player artifacts - tests around preview identity and thumbnail/runtime behavior ## Why This PR Exists This is the foundation layer for timeline editing. Without it, the editor was prone to: - iframe remount flashes after saves - duration mismatches between preview and timeline - stale or incorrect thumbnails - CI/test failures when `@hyperframes/player` artifacts were not prebuilt ## Verification - `bun run --filter @hyperframes/studio test` - `bun run --filter @hyperframes/studio typecheck` - `bun run --filter @hyperframes/core typecheck` - `bunx oxlint packages/cli/src/server/studioServer.ts packages/core/src/runtime/timeline.ts packages/core/src/runtime/timeline.test.ts packages/core/src/studio-api/routes/thumbnail.ts packages/core/src/studio-api/routes/thumbnail.test.ts packages/core/src/studio-api/types.ts packages/studio/src/components/nle/NLELayout.tsx packages/studio/src/components/nle/NLEPreview.tsx packages/studio/src/components/nle/NLEPreview.test.ts packages/studio/src/player/components/CompositionThumbnail.tsx packages/studio/src/player/components/Player.tsx packages/studio/src/player/hooks/useTimelinePlayer.ts packages/studio/src/player/store/playerStore.ts packages/studio/vite.config.ts` - `bunx oxfmt --check packages/cli/src/server/studioServer.ts packages/core/src/runtime/timeline.ts packages/core/src/runtime/timeline.test.ts packages/core/src/studio-api/routes/thumbnail.ts packages/core/src/studio-api/routes/thumbnail.test.ts packages/core/src/studio-api/types.ts packages/studio/src/components/nle/NLELayout.tsx packages/studio/src/components/nle/NLEPreview.tsx packages/studio/src/components/nle/NLEPreview.test.ts packages/studio/src/player/components/CompositionThumbnail.tsx packages/studio/src/player/components/Player.tsx packages/studio/src/player/hooks/useTimelinePlayer.ts packages/studio/src/player/store/playerStore.ts packages/studio/vite.config.ts` ## Stack - base of stack - followed by `feat: add studio timeline editing` - followed by `fix: smooth scrubber end seeking` |
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5db554c7b6 |
feat(cli): silent auto-update on next run (#306)
## Summary
Today users have to run `hyperframes upgrade` (or the right install command for their package manager) to get a new release — we ship fixes but they don't reach the install until the user remembers. This PR borrows the Claude Code model: detect the update on run N, install it in a detached background child, surface one line ("hyperframes auto-updated to vX.Y.Z") on run N+1. The user's current command never blocks, never prompts, never sees an install stream.
## Flow across two runs
```
Run N → checkForUpdate() sees latest > current → spawn detached
child running `npm install -g hyperframes@X` (or bun /
pnpm / brew equivalent). Parent exits immediately.
(between) → detached child installs, writes completedUpdate into
~/.hyperframes/config.json, clears pendingUpdate.
Run N+1 → reportCompletedUpdate() prints one line and clears the
marker. User is on the new version.
```
## Installer detection
Walks `realpathSync(process.argv[1])` against each package manager's well-known global prefix. Wrong guesses are biased toward `skip` — we'd rather miss an auto-update than clobber a Homebrew install with npm.
| Resolved entry path contains | Detected as | Install command |
|---|---|---|
| `…/Cellar/hyperframes/<v>/…` | `brew` | `brew upgrade hyperframes` |
| `…/.bun/…` | `bun` | `bun add -g hyperframes@<v>` |
| `…/pnpm/global/…` or `…/.pnpm/…` | `pnpm` | `pnpm add -g hyperframes@<v>` |
| `…/lib/node_modules/hyperframes/…` | `npm` | `npm install -g hyperframes@<v>` |
| `…/packages/cli/…` (workspace link) | `skip` | (no-op) |
| `…/_npx/…`, `…/bunx-…/…` | `skip` | (no-op) |
| Anything else | `skip` | (no-op) |
## Guardrails
- **Never auto-update across a major version.** The existing banner still nudges the user to run `hyperframes upgrade` explicitly.
- **Skip on CI, non-TTY, dev mode,** npx / bunx / workspace link, or any install layout the detector doesn't recognize.
- **`HYPERFRAMES_NO_AUTO_INSTALL=1`** disables the install without silencing the notice banner.
- **`HYPERFRAMES_NO_UPDATE_CHECK=1`** silences both (existing knob).
- **Fresh pending install (<10 min old)** prevents re-launch on every invocation.
- **Installer stdout + stderr go to `~/.hyperframes/auto-update.log`** for postmortem — the terminal stays clean.
- **Failed installs are surfaced once** with a prompt to run `hyperframes upgrade` manually.
## What changed
| File | Role |
|---|---|
| `packages/cli/src/utils/installerDetection.ts` | Classifies the running install → npm \| bun \| pnpm \| brew \| skip, with the right install command. |
| `packages/cli/src/utils/autoUpdate.ts` | `scheduleBackgroundInstall` + `reportCompletedUpdate`. Spawns a detached `node -e "..."` child that runs the install and writes the outcome back to the config, then `unref()`s so the parent exits immediately. |
| `packages/cli/src/telemetry/config.ts` | `pendingUpdate` + `completedUpdate` fields on the config schema. |
| `packages/cli/src/cli.ts` | Wires `reportCompletedUpdate()` at startup and `scheduleBackgroundInstall()` after `checkForUpdate()` resolves. |
## Verification
### Unit tests — 19 / 19 pass (full CLI suite 115 / 115)
- `installerDetection.test.ts` — 9 cases, one per layout (workspace, npx, bunx, brew, bun, pnpm, npm, unknown, unresolved).
- `autoUpdate.test.ts` — 10 scheduling-policy cases:
- Minor/patch → schedules + writes pendingUpdate
- Major bump → **does not** schedule
- Dev mode → skipped
- `CI=1` → skipped
- `HYPERFRAMES_NO_AUTO_INSTALL=1` → skipped
- Unknown installer → skipped
- Already-on-latest → skipped
- Fresh pending install → de-duplicated
- Stale pending install (>10 min) → supersedes
- Previous run already completed this version → skipped
Unit tests mock `spawn` and the installer — they verify the **policy**, not the real detached-child path.
### Live end-to-end smoke test (on this Mac, real processes)
To validate the parts the unit tests can't — actual detached spawn, real config writeback, banner surfacing in a fresh subsequent process — I wired a smoke script that exercises the exact same code path `autoUpdate.ts` uses, but with `echo …` as the "install command" so nothing global gets touched.
**Steps exercised:**
1. Backed up the user's real `~/.hyperframes/config.json`.
2. Wrote a `pendingUpdate` marker for version `0.4.99` (like `scheduleBackgroundInstall` does).
3. Spawned the **exact same detached `node -e "..."` child** the real scheduler produces, with the install command replaced by `echo 'faux install for 0.4.99'`.
4. The parent `unref()`d and continued; 800 ms later the parent re-read `config.json`.
5. Ran `reportCompletedUpdate()` in a **fresh subprocess** (via `bunx tsx -e ...`) to match the real "Run N+1" conditions, capturing its stderr.
6. Asserted the marker was cleared.
7. Restored the original config on exit.
**Observed output:**
```
[setup] Backed up config to /Users/miguel/.hyperframes/config.json.smoke-backup
[setup] Wrote pendingUpdate for v0.4.99
[spawn] Detached child pid=49469
[after] completedUpdate = {"version":"0.4.99","ok":true,"finishedAt":"2026-04-17T17:26:50.115Z"}
[after] pendingUpdate = (cleared)
✓ detached spawn + writeback verified
[banner-subprocess] stderr: "hyperframes auto-updated to v0.4.99"
✓ banner fired in fresh process + marker cleared
ALL CHECKS PASSED ✓
[cleanup] Config restored
```
**What this proves:**
| Claim | Evidence |
|---|---|
| Detached spawn works (doesn't block the parent) | `[spawn] pid=49469` logged, parent continued immediately |
| Detached child is process-independent | Parent exited its own work while child ran `exec(CMD)` |
| Child writes correct config shape | `completedUpdate = { version: "0.4.99", ok: true, finishedAt: … }` |
| Child clears the pending marker | `pendingUpdate = (cleared)` |
| Banner fires only in a fresh process | Subprocess stderr = `"hyperframes auto-updated to v0.4.99"` |
| Banner message format | Matches the copy in `autoUpdate.ts:reportCompletedUpdate` exactly |
| Marker clears after banner | Second file read shows `completedUpdate` absent |
Both the original test-plan checkboxes (fresh install, `HYPERFRAMES_NO_AUTO_INSTALL=1`, `CI=1`) are covered by either the unit-test suite or this smoke test — the scheduling-policy gates are unit-tested under `CI=true`, and the real detached-spawn path is smoke-tested above.
### What's still worth doing
- **Physical installer test on a real `npm i -g` / `brew` / `bun add -g` environment** — the smoke test above replaces the install command with `echo`, so we've never actually seen npm/bun/brew run the real command. That's the one remaining unknown. Worth one manual run on the maintainer's machine before cutting v0.4.4.
## Test plan
- [x] `bunx vitest run` on `packages/cli` — 115 / 115 pass (incl. 19 new)
- [x] `tsc --noEmit` clean
- [x] `tsup` build clean
- [x] **Live e2e smoke test** exercising the real detached spawn + config writeback + fresh-process banner (output above)
- [x] CI green on this branch (Typecheck, Test, Test: runtime contract, Build, Lint, Format)
- [ ] One manual run on a physical `npm i -g hyperframes@0.4.2` install to confirm the real `npm install -g hyperframes@0.4.3` command actually runs when `autoUpdate.ts` delegates to it (the smoke test stopped short of executing `npm`)
## Notes
- Independent of any version bump — ship whenever.
- The existing `checkForUpdate` + `printUpdateNotice` still work unchanged; this PR adds a second stage that *applies* the update rather than just telling the user about it.
- `hyperframes upgrade` still exists and is still the right command for explicit upgrades (especially major-version jumps).
|
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00af29c169 |
fix(cli): forward --hdr through Docker render + HDR docs (#346)
## Summary This PR ended up covering the full HDR Docker/docs follow-through plus the producer/engine work needed to make HDR still images render and regress correctly in CI. The branch now does four things: - forwards `--hdr` through the Docker render path in the CLI - adds and expands HDR documentation across the docs site - adds first-class HDR still-image support to the engine/producer pipeline - adds targeted HDR regression coverage, including a CI-safe fallback for PNG HDR metadata detection when `ffprobe` does not expose PNG color tags ## What changed ### CLI and docs - `hyperframes render --docker --hdr` now preserves `--hdr` when invoking the in-container CLI - added a dedicated HDR guide and linked it from CLI, producer, engine, rendering, and common-mistakes docs - documented HDR constraints and verification flow: HDR source requirements, MP4/H.265 Main10 output, PQ/HLG handling, Docker usage, and common SDR fallback causes ### Engine and producer HDR image support - added `ImageElement` support to the engine composition model and parsing path - threaded image elements through producer compilation and orchestration - probed image sources for HDR color spaces so image-only compositions can trigger HDR output without requiring an HDR video source - included HDR image start times in stacking queries so the layered compositor can place images correctly in z-order - integrated HDR image compositing into the layered HDR render loop alongside native HDR video layers and SDR DOM overlays - forced screenshot mode for HDR layered compositing where required to keep DOM/HDR layer composition deterministic - skipped readiness waiting for natively extracted HDR videos in the engine path where it was unnecessary and could block layered HDR flows ### HDR metadata robustness - added a fallback in `extractVideoMetadata()` to read PNG `cICP` metadata directly when `ffprobe` omits color-space fields for PNGs - this specifically fixes CI/Docker detection for the `hdr-image-only` fixture, where the render was falling back to SDR because the PNG was not being recognized as BT.2020 PQ ### Regression coverage and fixture cleanup - added `hdr-image-only`, a regression fixture that validates HDR still-image rendering end to end - added `hdr-pq`, a focused HDR PQ regression fixture for the video path - updated regression CI to run an `hdr` shard with `--sequential hdr-pq hdr-image-only` - removed the older larger `hdr-regression/*` fixture set in favor of the smaller targeted regressions used by CI - added the necessary fixture generation/readme material and checked-in golden outputs for the new HDR tests ## Why The original PR description only covered the CLI flag forwarding and docs work. Since then, the branch also picked up the missing runtime support needed for HDR still images and the regression coverage to keep that path from breaking. The practical issue this closes is: - local host runs could pass while CI failed `hdr-image-only` - the failure was a full-frame visual mismatch caused by SDR fallback, not unstable rendering - root cause was PNG HDR metadata not being surfaced by `ffprobe` in the CI Docker environment - parsing the PNG `cICP` chunk directly makes HDR detection deterministic across environments ## Test plan ### Local targeted checks ```bash bunx oxlint packages/engine/src/utils/ffprobe.ts packages/engine/src/utils/ffprobe.test.ts bunx oxfmt packages/engine/src/utils/ffprobe.ts packages/engine/src/utils/ffprobe.test.ts bun --cwd packages/engine test src/utils/ffprobe.test.ts src/utils/hdr.test.ts ``` ### Producer regression runs on host ```bash bun run --cwd packages/core build:hyperframes-runtime:modular bun --cwd packages/producer test -- --sequential --exclude-tags slow,render-compat,hdr bun --cwd packages/producer test -- --sequential hdr-pq hdr-image-only ``` Observed result: - `fast` shard: 7 passed, 0 failed - `hdr` shard: 2 passed, 0 failed ### CI-equivalent Docker verification ```bash docker build -f Dockerfile.test -t hyperframes-producer:test . docker run --rm \ --security-opt seccomp=unconfined \ --shm-size=4g \ -v "$PWD/packages/producer/tests:/app/packages/producer/tests" \ hyperframes-producer:test \ --sequential hdr-pq hdr-image-only ``` Observed result: - `hdr-image-only`: passed - `hdr-pq`: passed - shard summary: 2 passed, 0 failed ### Specific regression fixed Before the PNG `cICP` fallback, the Docker/CI run failed `hdr-image-only` with: - missing `"[Render] HDR source detected — output: PQ ..."` log line - full-frame visual mismatch across all 100 checkpoints - PSNR ~17 on every frame, indicating a consistent SDR-vs-HDR pipeline mismatch After the fallback, the same Docker path recognizes the PNG as HDR and the shard passes. |
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4a55bc8673 |
feat(cli): add --lang and auto-infer phonemizer locale from voice prefix (#351)
* feat(cli): add --lang and auto-infer phonemizer locale from voice prefix `hyperframes tts` was calling Kokoro's `model.create(text, voice=, speed=)` with no language argument, so Kokoro's default phonemizer (en-us) was applied regardless of the voice selected. Picking `ef_dora` or `jf_alpha` and feeding it Spanish or Japanese text produced English-phonemized output. Closes #349. - `manager.ts`: add `SUPPORTED_LANGS`, `inferLangFromVoiceId`, and `isSupportedLang`. Attach a `defaultLang` field to every bundled voice and expand the bundled list with `ef_dora`, `ff_siwis`, `jf_alpha`, `zf_xiaobei` so `--list` surfaces multilingual options. - `synthesize.ts`: accept optional `lang: SupportedLang` in `SynthesizeOptions`, forward it to the Python worker as `argv[7]`. The worker introspects `Kokoro.create`'s signature and only passes `lang=` when the installed kokoro-onnx version supports it. Returned metadata now includes `lang` and `langApplied` so callers can detect silent no-ops. Bump the cached script filename to `synth-v2.py` so existing installs pick up the new script automatically. - `commands/tts.ts`: add `--lang, -l` with validation against `SUPPORTED_LANGS`. Resolution order is explicit `--lang` > inferred from voice prefix > `en-us`. When explicit lang disagrees with the voice-implied lang (legitimate for stylized accents), emit a dim-level hint; suppress under `--json`. When kokoro-onnx silently ignores the kwarg, log that too. Update `--list` with a new "Lang code" column and add multilingual examples. - Tests: new `manager.test.ts` covering every supported prefix, the unknown-prefix fallback, case-insensitivity, `isSupportedLang` validation, and a regression guard that every bundled voice has a valid `defaultLang` matching its ID. - Docs: `docs/packages/cli.mdx` and `skills/hyperframes/references/tts.md` updated with the flag, examples, the espeak-ng dependency note for non-English phonemization, and the voice-prefix → lang table. Backward compatibility: - English voices (a*/b* prefixes) continue to phonemize as en-us / en-gb — no change. - Non-English voices now phonemize correctly by default (bug fix, not a regression). - Older kokoro-onnx versions that don't know the `lang` kwarg keep working via signature introspection; the CLI logs a dim note if `--lang` was requested but ignored. Verification: - `bun --cwd packages/cli test` — 128 tests pass (incl. 17 new). - `bunx oxlint` and `bunx oxfmt --check` clean on changed files. - `bun run build` succeeds. - `npx tsx packages/cli/src/cli.ts tts --help` / `--list` render cleanly; invalid `--lang` produces a clean error with the valid-codes list. * refactor(cli): simplify tts --lang implementation Post-review cleanup on #351. Net -21 lines. - Drop `defaultLang` field + `makeVoice()` helper from VoiceInfo — compute via `inferLangFromVoiceId(v.id)` at read time in listVoices. The only reader was the --list table; caching the derived value on every voice added a self-consistency invariant we had to test. - Drop redundant `lang` field from SynthesizeResult — caller already knows the requested lang since it passed it in; only `langApplied` carries information the caller can't derive. - Use `errorBox` for --lang validation to match the house style in render.ts (other validation errors already use errorBox). - Reuse existing `langList` module constant in the validation error instead of re-joining SUPPORTED_LANGS. - Inline `DEFAULT_LANG` — used once in inferLangFromVoiceId. - Trim WHAT-restating comments and the duplicate prefix-enumeration JSDoc on inferLangFromVoiceId (VOICE_PREFIX_LANG already carries per-row comments). - Clean up orphaned `synth*.py` files in ~/.cache/hyperframes/tts when writing the current versioned script, so repeated upgrades don't leak files. - Drop the `EN-US` case-sensitive-rejection test assertion — the CLI lowercases input before validation, so accepting mixed case is a feature, not a bug. Tests: 16/16 in `manager.test.ts`, 127/127 full CLI suite pass. Lint + format + typecheck clean. |
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0730f88dc7 |
fix(cli): address snapshot PR review feedback
Incorporates four review points on #348: 1. Fix typecheck error — cast the dynamic `@hyperframes/engine` import to a typed shape and drop the `as typeof x` cast on a `null`-unioned variable that TS rejected. CI `Typecheck` was failing on main because the cast conflicted with the declared union. 2. Clear stale injected <img> overlays — always call `syncVideoFrameVisibility(page, activeIds)` on every seek (including `active.length === 0`), so injected frames from a previous timestamp don't leak into later snapshots. The runtime's visibility toggles act on the native <video> but not on its injected sibling, which Copilot correctly flagged as a leakage source. 3. URL-decode the served video path before resolving to a filesystem path. Files whose names contain spaces or other URL-encoded characters were skipped because `new URL().pathname` preserves `%20` while the file server decodes inbound requests and the file on disk lives at the decoded name. 4. Mirror `packages/core/src/runtime/media.ts` media math so clips with a non-1 `defaultPlaybackRate` get the correct active window and relTime. Specifically: clamp `defaultPlaybackRate` to [0.1, 5], apply `(t - start) * rate + mediaStart`, and adjust the duration-fallback branch by `/ rate` when only source duration is known. 5. Kill FFmpeg on a 30s timeout so a pathological clip cannot wedge snapshot indefinitely. Matches the default in `@hyperframes/engine`'s `runFfmpeg`. Re-verified against the same 4-timestamp A/B on launch-video-2: MD5s match the ffmpeg-from-render ground truth 12.5s → ef9684e36fea53a0db7adf7cfcaacad3 (Stripe) 16.0s → 487494ca16344d55d7181408dc439a56 (Framer) 20.5s → 8835c34ad2a45755a1c98a7e079427a1 (HeyGen 3D) 32.5s → 34dc9450f2bd661c12039d7aa82a30b0 (GitHub finale) No-video projects (basecamp-tour, linear-brand, commissioned/github) still produce identical output to the pre-fix path. Latency unchanged. Made-with: Cursor |
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a3e7c6176f |
fix(cli): inject real video frames in snapshot to match render
The snapshot command previously just called `tl.seek(t)` + `page.screenshot` and trusted Chrome to advance `<video>`-element decoders. Chrome headless silently ignores `video.currentTime = X` writes — the setter is accepted but the decoder never moves. Result: every snapshot of a composition that uses body-level `<video data-start>` elements renders the same frame regardless of the requested timestamp (the z-topmost video's first-frame paints through, because all clips share `position: absolute; inset: 0` and visibility:hidden doesn't always prevent the GPU surface from contributing to the composite). The render pipeline has already solved this: for each body-level video it extracts the needed frame via FFmpeg and overlays it as an <img> sibling via `injectVideoFramesBatch` (packages/engine/src/services/screenshot Service.ts). This commit ports that same primitive into `snapshot`: 1. Added `extractVideoFrameToBuffer(videoPath, t)` — one FFmpeg spawn per active video, `-ss` keyframe seek (~100-200 ms), writes a temp PNG. 2. After the existing seek + settle, enumerate `<video data-start>` elements that are active at the target time, resolve each one's `currentSrc` URL back to a filesystem path under `projectDir`, extract the frame, and call `injectVideoFramesBatch`. 3. Then screenshot — as before. Non-breaking: when no body-level `<video data-start>` elements exist (every other project in the repo — basecamp, linear, stripe, github component), the new block short-circuits on `active.length === 0` and behaves identically to the pre-fix path. Verified against three no-video projects: bit-identical snapshot output, no latency regression. Measured on macOS M2 (4 frames, cold): launch-video-2 (11 timed videos): 6.48s → 6.16s (-5%) basecamp-tour (no timed videos): 5.67s → 4.87s (-14%) Proof: Pre-fix MD5 at t=12.5, 16.0, 20.5, 32.5 — all 4 identical (wrong frame) Post-fix MD5 at same timestamps — all 4 distinct, match ffmpeg-from-render Made-with: Cursor |
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99a903be2f |
feat(hdr): layered HDR compositing, shader transitions, and HDR image support (#268)
* feat(hdr): shader transitions, --hdr flag, and SDR rendering fixes - 15 GLSL→TypeScript shader transitions on rgb48le buffers - Dual-scene compositing with scene detection via window.__hf.transitions - --hdr flag gates ffprobe probing (zero overhead on SDR compositions) - Cross-transfer conversion (PQ↔HLG) via OOTF-corrected composite LUT - Buffer.from() copy in writeFrame() fixes streaming encoder race condition - SDR rendering fixes (three stacked bugs) - Object.assign fix for window.__hf preservation Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * fix: tighten shader smoke thresholds + assert .scene contract - Tighten the all-transitions smoke test thresholds: at progress=0 we now require the center pixel R-channel > 35000 (was > 25000) and at progress=1 < 15000 (was < 25000). The old midpoint of 25000 sat exactly halfway between the test from-pixel (40000) and to-pixel (10000), so a half-blended transition would silently pass. - Add a runtime assertion in HyperShader.init() that every scene id resolves to a DOM element with the .scene class. Without this, missing ids silently no-op when textures + querySelectorAll(.scene) run later. Addresses deferred review feedback from PR #268. * fix(hdr): restore VIRTUAL_TIME_SHIM and applyRenderModeHints in renderOrchestrator Commit c6b4619c ("feat(hdr): shader transitions, --hdr flag, and SDR rendering fixes") accidentally removed two pieces of the deterministic rendering pipeline: 1. The `VIRTUAL_TIME_SHIM` injected via `createFileServer.preHeadScripts`, which freezes `Date.now()` and `requestAnimationFrame` so RAF-driven animations advance only when `window.__hf.seek(t)` is called. 2. The `applyRenderModeHints` function and its post-`compileForRender` call site, which auto-forces screenshot capture mode for compositions the compiler flagged as needing it (RAF, iframes, etc.). Without (1), RAF animations advanced by wall-clock between the main-loop seek and the per-DOM-layer seek inside `compositeToBuffer`, producing the sawtooth PSNR pattern on `raf-ball-render-compat` (high PSNR at integer seconds, ~24 dB everywhere else). Without (2), `iframe-render-compat` lost its automatic fallback to screenshot mode and the child-document motion stopped being captured. Both helpers are still produced by `htmlCompiler` and exercised by `renderOrchestrator.test.ts` — the orchestrator just stopped calling them. Restored: - Re-import `VIRTUAL_TIME_SHIM` from `./fileServer.js` - Pass `preHeadScripts: [VIRTUAL_TIME_SHIM]` to both `createFileServer` call sites (probe + main render) - Re-add `applyRenderModeHints` (matching the test expectations) and call it immediately after `compileForRender` - Persist `renderModeHints` in `summary.json` and the "Compiled composition metadata" log line Fixes the `iframe-render-compat` and `raf-ball-render-compat` regression failures on `feat/hdr-layered-compositing`. Made-with: Cursor * test(engine): expand sampleRgb48le coverage + audit Uint16Array alignment Adds: - 8 new sampleRgb48le bilinear-interpolation tests covering boundary pixels, sub-pixel weights, edge clamping, and odd-byte-offset Buffers. - uint16-alignment-audit.test.ts documenting the alignment requirement for Uint16Array views over Buffer slices vs. readUInt16LE/writeUInt16LE. Background: ~105 hot-loop sites in shader transitions still use readUInt16LE/writeUInt16LE. Switching to Uint16Array views would cut overhead but requires guaranteed even byteOffsets — these tests document the contract before any future refactor lands. * fix(engine,producer): mask DOM layers during HDR layered compositing The HDR layered compositor blits z-ordered layers over a shared canvas. DOM layers used a full-page screenshot from `captureAlphaPng`, which captures *every* painted pixel on the page — root background, sibling-scene content, overlay UI elements that aren't part of the current layer. Those opaque pixels were then blitted over the canvas, overwriting any HDR content composited beneath in earlier layers. The previous workaround toggled `display:none` on hide ids via `hideVideoElements`/`showVideoElements`. That correctly hid native videos but did nothing about the root composition's background or about overlay elements that the layer grouping considered part of a different layer. This commit replaces the workaround with a precise CSS mask installed before each DOM screenshot: 1. `applyDomLayerMask` injects a stylesheet that hides every `body *` and re-shows the layer's elements (and their descendants and their injected `__render_frame_*` siblings) with `visibility: visible !important`. CSS visibility is *not* multiplicative through descendants — a child with `visibility: visible` overrides an ancestor's `visibility: hidden`, so deeply nested layer content still paints even though every intermediate ancestor is hidden by the mass-hide rule. 2. Non-layer data-start ids are inline-hidden with `visibility: hidden !important`. Inline `!important` beats stylesheet `!important`, so this overrides the show rule for elements that fall under a show selector but should NOT paint — most importantly HDR videos and other-layer SDR videos that live as descendants of `#root`. 3. `removeDomLayerMask` tears the stylesheet down and clears the inline `visibility`/`opacity` properties so subsequent video frame injection gets a clean slate. Crucially the mask only sets `visibility`, never `opacity`. CSS opacity *is* multiplicative — `opacity: 0` on `#root` would zero out every descendant including layer videos, even with `visibility: visible`. We also extend `initTransparentBackground` to force the composition root (`[data-composition-id]`) transparent in addition to `html`/`body`, because compositions almost always set `#root { background: ... }` and that background paints across the whole viewport otherwise. Both compositing paths use the new helpers: - The per-layer DOM branch (`compositeToBuffer`) for normal frames. - The transition path (single DOM screenshot per scene) so transition frames also get a clean per-scene capture. Adds extensive `KEEP_TEMP=1`-gated diagnostics to `compositeToBuffer`: per-layer pixel-add accounting, dumps of every captured DOM PNG, and a periodic raw `rgb48le` snapshot of the composite buffer. These were essential to diagnosing the root-overwrite bug and stay zero-cost in normal renders. Also stops the workDir / per-video frame-dir cleanup when `KEEP_TEMP=1` so the dumps survive past frame N. Made-with: Cursor * fix(engine): preserve GSAP-applied opacity across DOM-layer captures SDR clips inside an HDR composition were rendering at full opacity even when the user had animated their wrapper opacity (e.g. fade-in or yoyo). Two bugs in the per-layer screenshot path conspired to drop the GSAP-applied opacity on the floor: 1. removeDomLayerMask was unconditionally calling `el.style.removeProperty("opacity")` on every wrapper after each layer capture. applyDomLayerMask only ever sets `visibility`, so the only inline opacity present is the value GSAP wrote. Stripping it between layer captures means that on the next capture (at the same timestamp), GSAP's `totalTime(t, false)` no-ops because the timeline is already at that time — the opacity is never restored, and the wrapper renders fully opaque. 2. injectVideoFramesBatch was reading the source <video>'s computed opacity via `parseFloat(computedStyle.opacity) || 1` and copying it onto the injected <img>. Because syncVideoFrameVisibility forces the <video> to `opacity: 0 !important` to hide it during capture, the computed value is always 0, which `|| 1` then silently flips to full opacity. The <img> is a sibling of the <video> inside the same wrapper, so it should inherit opacity from the wrapper directly instead of having a value hard-set on it. Fix both: drop the opacity removal in removeDomLayerMask, skip opacity when copying visual properties from <video> to <img>, and explicitly clear any stale inline opacity on the <img> so it inherits from the wrapper that GSAP is animating. Made-with: Cursor * fix(producer): correct hdrLayerStartTimes typo to hdrVideoStartTimes The diagnostic logging block in executeRenderJob's HDR layer composite path referenced an undeclared `hdrLayerStartTimes` map. The correct variable, declared and populated earlier in the same function, is `hdrVideoStartTimes`. The typo was introduced alongside the DOM-layer masking work and broke the producer build/typecheck on CI. Made-with: Cursor * fix(engine): restore video opacity copy to injected frame img Commit 188ebcca removed the opacity copy from `injectVideoFramesBatch` on the assumption that the <img> sibling would inherit GSAP's opacity from a shared wrapper. That breaks any composition where GSAP animates opacity directly on the <video> element itself: the <img> has no animated ancestor and renders at full opacity throughout any fade, even when the user's intent is partial or zero opacity. The CI `style-7-prod` and `style-8-prod` regressions caught this: the <video id="aroll"> fade-in from 3.0-3.5s rendered as a hard cut because the <img> inherited opacity 1 regardless of GSAP's tween. Restore the old explicit copy from `computedStyle.opacity` to the <img>'s inline opacity, with the `|| 1` fallback intentionally preserved. The fallback is load-bearing: GSAP's seek does not re-apply tweens that have already completed, so post-fade frames read opacity 0 from the stale `opacity: 0 !important` we apply to hide the native <video>. The `|| 1` recovers the tween's end-state opacity 1 for those frames, matching the final on-screen intent and the existing baseline renders. Handles both DOM shapes: - GSAP on wrapper: video's own computed opacity is 1, img set to 1, wrapper's opacity applies via stacking as before. - GSAP on <video>: video's computed opacity is the tween value, copied to img directly since they are siblings. Fixes: - style-7-prod: 0 failed frames (was 2 @ t=3.17, 3.33) - style-8-prod: 0 failed frames (was 2 @ t=3.05, 3.24) Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.6 (1M context) <noreply@anthropic.com> |
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7b0c7e73b2 |
refactor: frame reorder buffer + port probe cleanup; add CREDITS.md and missing skill (#341)
* refactor(engine): restructure frame reorder buffer with Map-keyed storage
Rewrites createFrameReorderBuffer to use a Map<number, Array<() => void>>
keyed by frame index instead of a flat Array<{frame, resolve}> scanned on
every advance. O(1) lookups in enqueue/flush, fast-paths for the matching-
cursor and overshoot cases, and a small fix: waitForAllDone now coexists
with the writer still waiting on the final frame instead of colliding on
the same waiter slot.
Also adds 5 unit tests (there were none before) covering the fast-path,
out-of-order gating, multi-waiter-per-frame semantics, waitForAllDone
normal path, and the overshoot case.
Comment tweaks on buildChromeArgs — the flag profile is the standard
headless-for-capture set (Puppeteer / Playwright / Chrome headless-shell
all converge on similar flags); rephrased for clarity.
* refactor(cli): simplify port availability probe with async/await
Rewrites isPortAvailableOnHost from a single new-Promise callback into an
async/await form with an intermediate `bindError: ErrnoException | null`
variable. Makes the bind-then-release flow explicit as two sequential
awaits, and broadens the non-EADDRINUSE errno commentary (EADDRNOTAVAIL
for disabled IPv6, EACCES for privileged ports, EAFNOSUPPORT for missing
address families — all treated as "this host doesn't apply", not "port
occupied").
No behavior change to existing callers; all four portUtils tests still
pass.
* docs: add CREDITS.md and surface website-to-hyperframes skill
- New CREDITS.md acknowledging prior art in the browser-based video
rendering space (Remotion) and the ecosystem HyperFrames builds on
(Puppeteer, FFmpeg, GSAP, Hono). Standard OSS practice.
- Adds the `website-to-hyperframes` skill to the skills tables in
README.md, docs/guides/prompting.mdx, and the project template at
packages/cli/src/templates/_shared/CLAUDE.md. The skill ships in
skills/ but was missing from every table.
- Adds `/hyperframes-registry` to the prose mention in the repo
CLAUDE.md.
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6a587606e4 |
Merge pull request #339 from heygen-com/feat/capture-improvements-v2
feat(capture): improve capture quality, clean CLAUDE.md, skill refinements |
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4e87f28cd9 |
fix: address PR #339 review — 7 issues
1. Catalog failure safety: warn when catalog is empty or throws, so capture doesn't silently produce zero images 2. Dead path: extract-audio-data.py → skills/gsap/scripts/ (was skills/hyperframes/scripts/) 3. --json fonts compat: emit both `fonts` (string[]) and `fontsDetailed` (FontToken[]) to avoid breaking external consumers 4. Restore .cursorrules writing alongside AGENTS.md + CLAUDE.md 5. .gitignore: remove over-broad `projects/` and `videos/` entries, keep scoped `cursor-tests/` and `launch-video*/` 6. agentPromptGenerator: mark unused params as reserved with comments, remove _animations from buildPrompt 7. Cookie filter: threshold 20 → 8 chars to preserve footer copy like "© 2026 Stripe" (16 chars) and "Privacy & Terms" (15 chars) Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> |
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d1f992570a |
fix(cli): use 'where' instead of 'which' on Windows for FFmpeg and br… (#336)
* fix(cli): use 'where' instead of 'which' on Windows for FFmpeg and browser detection - findFFmpeg() now uses 'where ffmpeg' on Windows, 'which ffmpeg' on Unix - whichBinary() now uses 'where' on Windows, 'which' on Unix Fixes FFmpeg detection failure on Windows where 'which' command doesn't exist. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> * fix(cli): handle multi-line output from Windows 'where' command Windows 'where' can return multiple paths (one per line) when there are multiple matches on PATH. Take only the first non-empty line. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> * fix(cli): extend Windows 'where' fix to whisper, tts, and clipboard modules - whisper/manager.ts: whichBinary() now uses 'where' on Windows - tts/synthesize.ts: findPython() now uses 'where' on Windows - utils/clipboard.ts: detectProvider() now uses 'where' on Windows All functions handle multi-line output from 'where' command. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.7 <noreply@anthropic.com> |
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d8f1af1ef1 |
feat(capture): write AGENTS.md alongside CLAUDE.md + skill refinements from regression tests
Capture pipeline:
- agentPromptGenerator now writes AGENTS.md + CLAUDE.md (drop legacy
.cursorrules), matching the dual-file convention already used by the
_shared templates in hyperframes init. AGENTS.md is picked up natively by
Cursor, Codex, Gemini CLI, Windsurf, Aider, and Jules; CLAUDE.md covers
Claude Code. Both files share the same content — a capture data inventory
that points agents to the website-to-hyperframes skill.
website-to-hyperframes skill refinements (derived from 8-site regression test):
- Drop slash-command phrasing throughout SKILL.md and step-6-build.md so the
skill works identically across Claude Code (slash), Cursor (auto-discover
by description), and other agents.
- Remove stale HANDOFF.md references from SKILL.md step-7 summary and
reference table — matches the intent of the prior step-7 cleanup.
- step-5-vo: specify narration.txt filename convention (pronunciation-
substituted spoken text; distinct from SCRIPT.md the creative doc).
- step-6 self-review adds three rules derived from actual lint warnings
observed across the 8 regression runs:
- Every <template> root needs data-start + data-duration (catches
root_composition_missing_data_start/duration, seen in 4/8 runs).
- Caption exits need a hard tl.set kill after tl.to(opacity:0), or
per-word karaoke tweens can leave captions stuck on screen
(caption_exit_missing_hard_kill).
- No duplicate media nodes with identical src + start + duration, or
the compiler discovers them twice (duplicate_media_discovery_risk).
Housekeeping:
- .gitignore: add cursor-tests/, basecamp-video/, projects/, videos/ —
local regression-test scratch dirs that should never be committed.
- Remove two broken symlinks from .claude/skills/ that pointed to paths
which never existed in the repo (.claude/skills/ is already gitignored).
Made-with: Cursor
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92a5ef419b |
feat(capture): improve capture quality + clean up CLAUDE.md
Capture improvements:
- Font weights via document.fonts API + DOM sampling (variable font detection)
- Section background-image extraction (no more false #FFFFFF on hero photos)
- Detected libraries surfaced in CLAUDE.md brand summary
- Structured visible-text.txt with [tag] prefixes, cookie/nav noise filtered
- tokens.json cleaned: removed images/paragraphs/icons (duplicated elsewhere),
filtered sections to heading-only, trimmed cssVariables to design-relevant
- Removed redundant scroll pass in htmlExtractor (2-5s faster per capture)
- Font cap at 20 families, Placeholder/Fallback fonts filtered
CLAUDE.md rewrite:
- Removed prescriptive tone ("use exact strings" → "rephrase freely")
- Removed fluff sections (How to Create, DESIGN.md warning, Example Prompts,
Source Patterns)
- asset-descriptions.md promoted to first data row
- Removed assets-catalog.json from inventory
Skill fixes:
- Dead shader refs → point to packages/shader-transitions/README.md
- Google Fonts import in techniques.md → local @font-face placeholder
- Added Stripe DESIGN.md as light-brand example
- Removed HANDOFF.md generation from step-7
- Updated step-1 for new font weight + visible-text formats
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