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hyperframes/skills/music-to-video/SKILL.md
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WaterrrForeverandClaude Opus 4.8 bf961d1268 feat(cli): skills freshness — version check, manifest, global install + multi-agent mirror (#1753)
* feat(cli): add skills version check, update, and freshness manifest

Give the HyperFrames skill bundle a content fingerprint so agents and
users can tell whether installed skills are the latest version, on any
platform that can run the CLI.

- skills-manifest.json (repo root): per-skill sha256 over the whole skill
  directory; minimal {source, skills}, no version/timestamp so it is fully
  deterministic. Generated by scripts/gen-skills-manifest.ts.
- `hyperframes skills check` [--json]: compares installed skills to the
  manifest; exits non-zero when something is outdated (agent/CI gate).
- `hyperframes skills update`: thin wrapper over `npx skills update`.
- Passive nudge on render/lint/validate when skills are stale (24h cache,
  same opt-out as the CLI self-update notice).
- "latest" resolved via `git ls-remote` + SHA-pinned raw URL to dodge
  GitHub raw-CDN lag, falling back to the main branch URL.
- CI job + lefthook hook keep skills-manifest.json in sync with skills/.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* fix(cli): add execFile to child_process mock in skills test

skills.test.ts mocks node:child_process but only declared execFileSync
and spawn. Loading skills.js transitively loads skillsManifest.ts, which
runs promisify(execFile) at module load, so vitest threw on the missing
execFile named export. Add a bare stub — these tests never invoke it.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* feat(cli): init installs all skills; skills update pulls the full set

Make `hyperframes init` the single place skills are pulled in full, and
make "update" mean "get everything" rather than "refresh what's there".

- init now always installs/refreshes ALL skills (incl. ones not yet
  present) instead of prompting "Install AI coding skills?" — opt out
  with `init --skip-skills`. Both the interactive and non-interactive
  paths pass `--all --yes` so the complete set is fetched.
- `hyperframes skills update` switches from `npx skills update` (which
  only refreshes already-installed skills) to `skills add --all`, so it
  installs missing skills too — the same install step init runs.
- SKILL.md documents init-installs-all and the new update semantics.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* feat(cli): skills check treats missing skills as needing an update

The full skill set is now the goal (init and `skills update` both pull
all, including ones not installed), so a partial install is no longer
"a choice" — it's something to fix.

- diffSkills: updateAvailable is now true when anything is outdated OR
  missing (local-only still doesn't count). So `skills check` exits
  non-zero — and renders "Update:" instead of "up to date" — whenever a
  skill is missing, not just when one is stale.
- The passive render/lint/validate nudge follows suit: it now counts
  missing alongside outdated ("N skills out of date or missing"),
  tracked via a new skillsMissingCount cache field.
- SKILL.md documents the stricter check.

Note: platforms that intentionally vendor only a subset of skills (e.g.
a Codex snapshot) will now see check report non-zero.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* fix(cli): install/update skills straight from the GitHub repo

`skills add owner/repo` can resolve through the skills.sh registry, which
lags behind the repo — so `update` could install a stale version while
`check` (which resolves latest directly from GitHub) keeps reporting
"outdated", an endless loop.

Switch the install source to the full GitHub URL
(https://github.com/heygen-com/hyperframes), which makes `skills add`
git-clone the repo directly at latest main, bypassing the registry. This
covers `hyperframes skills`, `hyperframes skills update`, and `init`'s
skill install — all of which go through SOURCES. Now install/update and
check agree on what "latest" means.

The init "install skills" hint now points at `npx hyperframes skills
update` so the manual path uses the same GitHub-direct fetch.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* feat(cli): init checks skills against GitHub, installs only when stale

`hyperframes init` now runs the skills version check first and only
(re)installs when something is outdated or missing — instead of
unconditionally re-pulling every time. Re-running init on an
already-current project is now a no-op ("skills are already up to date").

- New ensureSkillsCurrent() helper, shared by both the interactive and
  non-interactive init paths (no duplicated install logic).
- The check resolves "latest" straight from GitHub (same source the
  install uses); best-effort — if it can't reach GitHub it installs anyway.
- SKILL.md updated to describe the check-then-install behavior.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* refactor(cli): address skills manifest review feedback

From the PR review (points 1, 2, 4, 5):

1. Remove the `local-only` skill status. checkSkills only ever hashes
   manifest-listed skills, so a local-only status could never appear in
   the end-to-end output — and making it appear would wrongly flag
   unrelated skills (the `.../skills` dir is shared across sources).
   diffSkills now reports only on manifest skills; skills on disk that
   aren't in the manifest are ignored.
2. Drop the redundant per-directory sort in listFilesSorted — the single
   final out.sort() is what guarantees a deterministic hash (verified:
   manifest unchanged).
4. resolveLatestManifest local-path detection now uses path.isAbsolute,
   so Windows absolute paths (C:\...) are treated as local instead of
   falling through to a remote fetch.
5. fetchManifest validates the response shape (asSkillsManifest) instead
   of a blind `as` cast, so a CDN error page served as 200 fails with a
   clear error rather than a cryptic crash later in diffSkills.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* fix(cli): strict skills update + auto-discover any agent host

Address PR review (Magi blocker + James/Rames robustness):

- Blocker (Magi): `skills update` is the documented recovery path for
  `skills check || skills update`, but it delegated to installAllSkills()
  which swallowed missing-npx and failed `skills add` as "skipped",
  exiting 0 even when nothing changed. Add a strict mode that throws on
  failure; update sets a non-zero exit (init stays best-effort). New tests
  simulate a non-zero `skills add` (exit 1) and the success path.

- Robustness (James/Rames #2): the upstream `skills` CLI installs into
  ~72 agent conventions; a hard-coded list (4, or even 11) can't track
  that. Replace defaultSkillRoots with discoverSkillRoots — it scans cwd +
  $HOME for any `<host>/skills/<manifest-skill>/SKILL.md` (plus the XDG
  `.config/<host>/skills`), so detection is structural and future-proof,
  no closed list. agentFromDir infers the host from the path.

- Tests (Rames #3): temp-fixture detection tests for every convention ×
  {project, global}, scope priority, claude-code preference, the
  no-install case, the --dir override, and an unknown/new host (proving
  the no-closed-list property).

- Docs (Rames #4/#5): SKILL.md notes init's best-effort GitHub round-trip;
  findRepoManifest climbs 16 levels (was 8) for deep monorepos.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* fix(cli): resolve CodeQL file-system race + de-flake Windows npx test

Two CI fixes:

- CodeQL (high, js/file-system-race) at gen-skills-manifest.ts: the
  existsSync(outPath) precheck followed by writeFileSync(outPath) is a
  check-then-write race. Read the committed manifest directly in a
  try/catch instead (missing/unreadable ⇒ "no committed manifest"), so
  there's no precheck to race against. Behavior is unchanged.

- Windows Tests: npxCommand.test.ts's real `npx --version` smoke test
  cold-starts slower than vitest's 5s default on Windows runners and
  timed out. Give the test 60s headroom (and a 30s exec timeout). Kept
  as a real execution check — mocking would reduce it to a tautology.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* fix(cli): repair garbled npx smoke-test timeout comment

The explanatory comment for the 60s timeout was scrambled across the
callback/timeout arguments, failing oxfmt --check (and thus preflight,
which in turn skipped preview-parity and failed the regression gate).
Move it above the it() call so it no longer sits between call arguments.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* fix(cli): install skills once globally + symlink-mirror to every agent

The previous install path sprayed a full ~6.7MB skill copy into each of the
~70 agent conventions `skills add --all` knows (a fresh init produced 40+
dirs / 341MB, incl. a stray dotless `agent/` from the Eve convention).

Install ONCE, globally, as one faithful copy, then symlink it everywhere:
  - `skills add <url> --skill '*' --global --agent claude-code universal
    --copy` lands real files in ~/.claude/skills (Claude Code reads this at
    global priority) and ~/.agents/skills (the shared universal store).
  - mirrorGlobalSkills() fans that store out to every OTHER installed agent's
    GLOBAL dir (~/.cursor/skills, goose -> ~/.config/goose/skills, ...) — but
    only for agents present on the machine (marker dir exists), so nothing is
    sprayed. Unix: per-skill relative symlink into the store (one source of
    truth, auto-fresh on update); Windows: copy (symlinks need admin /
    Developer Mode there — the same fallback upstream and gstack make).

Why global: skills are framework-general knowledge, not project content;
Claude Code (and most agents) prioritize the personal/global scope, so the
global copy is the one actually loaded — and it installs once instead of
multiplying per project.

The per-agent dir list is GENERATED from upstream's src/agents.ts at a pinned
tag (the `skills` package exports nothing importable), committed as
agentDirs.generated.ts and resolved env-faithfully at runtime
(XDG_CONFIG_HOME / CODEX_HOME / CLAUDE_CONFIG_DIR honored). Regenerate with
`bun run --cwd packages/cli gen:agent-dirs` when the pin moves. Covers all 70
agents that define a global dir (eve/promptscript define none); the bare
project-dir agents (openclaw, astrbot) are namespaced globally, so the
stray-`agent/` footgun is gone.

`skills check` now scans global ($HOME) before project (cwd) to match the
runtime load order — so it reports on the copy the agent will really use, not
a stale project copy a newer global install silently overrides.

Test plan:
- skills.test.ts: install spawns the global --copy args, never --all; update
  stays strict + exits non-zero on failure.
- skillsMirror.test.ts: Unix relative symlinks, Windows copy, XDG_CONFIG_HOME
  honored, install-owned stores skipped, marker-gating, idempotent refresh,
  generated-table shape.
- skillsManifest.test.ts: check is global-first.
- Full CLI suite green (981); oxlint / oxfmt / tsc clean; gen:agent-dirs
  --check clean (offline + network produce byte-identical output).
- Benchmark (isolated HOME, local CLI): claude+hermes and all 70 agents —
  ~/.claude + ~/.agents real (19 each), every installed agent's global dir =
  19 symlinks into the store, zero spray into unseeded agents, check
  global-first. (The 9 "outdated" check reports are the separate skills.sh
  registry lag, not this change.)
- .fallowrc.jsonc: exempt the codegen script's inherent parser complexity and
  the parallel-case duplication in skillsManifest.test.ts (same rationale the
  config already uses for SlideshowPanel.test.ts / hyperframes-player.test.ts).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* fix(cli): install skills with --full-depth so a fresh install reads as current

`skills add <url>` without --full-depth fetches from the skills.sh registry
blob ("Fetching skills"), which lags GitHub main by hours — so a freshly
installed/updated set read as ~9 skills "outdated" right after install, and
`skills update` couldn't fix it (it re-fetched the same stale blob → death
loop). --full-depth switches it to a real `git clone` of HEAD ("Cloning
repository"), the only path that yields the genuine latest.

- Add --full-depth to the global install args. Verified (isolated HOME): blob
  path → 10 current / 9 outdated; --full-depth → 19 current / 0 outdated.
- The clone is heavier than the blob fetch, so set GIT_LFS_SKIP_SMUDGE=1 (skills
  are text; the repo's LFS objects are unrelated binaries the install doesn't
  need) and raise the spawn timeout 120s → 300s.
- Correct the stale comment that claimed a full URL already bypasses skills.sh —
  it doesn't; only --full-depth does.

Benchmark (skills-bench, local CLI): B.death-loop and J1.init-detect-and-refresh
flip FAIL → PASS (install/update/init now 19/0); mirror smoke reports 19 current
/ 0 outdated. (spine still reflects the raw documented `skills add <slug>`
command — the upstream skills.sh path, not this CLI.)

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* docs(skills): drop --skip-skills from workflow init so new projects refresh skills

The creation workflows scaffolded with `hyperframes init … --skip-skills`, which
skipped the skills currency check. Now that init installs globally, is a no-op
when already current, and pulls the genuine latest (via --full-depth), there's
no reason to skip it: removing --skip-skills means every new project runs the
check and refreshes the global skill set from GitHub when it's stale. Add a
one-line note to each workflow (embedded-captions, faceless-explainer,
motion-graphics, music-to-video, pr-to-video, product-launch-video) and the
hyperframes-cli + /hyperframes router explaining what init does.

skills-manifest.json regenerated by the pre-commit hook to match the edited
skill bundles.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* fix(cli): scope agent mirror to HyperFrames' own skills, not the whole store

mirrorGlobalSkills listed every */SKILL.md in ~/.claude/skills and fanned them
out — but that store is shared, so a user's gstack / personal / company Claude
skills would get symlinked (and, since linkOrCopy removes the target first,
could overwrite a same-named skill) into Cursor / Codex / Goose / etc.

Scope the mirror to HyperFrames' own skills via the upstream lock's source
attribution — the same definition the prune already uses
(skillsAttributedToSource) — never a directory listing. New
hyperframesSkillNames() reads the global lock and returns only skills attributed
to heygen-com/hyperframes; the mirror intersects that allow-list with what's in
the store. Empty (no lock / nothing attributed) → mirror nothing, never
everything.

Also fixes the cosmetic "director(ies)" log typo (now singular/plural-aware) and
extracts the fan-out into mirrorToInstalledAgents() to keep installAllSkills
under the complexity gate.

Regression: skillsMirror.test.ts asserts a foreign gstack skill in the store is
neither mirrored out nor allowed to replace another agent's same-named skill;
the skills-bench harness seeds ~/.claude/skills/gstack and asserts it never
leaks to any agent. 1045 CLI tests + lint/types/fallow green.

Addresses Magi's request-changes on #1753.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

---------

Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-27 08:34:43 +08:00

16 KiB
Raw Blame History

name, description
name description
music-to-video Use when the user has a music track (an audio file, or a video to pull audio from) and wants a beat-synced HyperFrames video, calm to hard-hitting. The music drives everything: one analyzer reads it once, the orchestrator lays out the frames and fills a per-frame plan, and one sub-agent builds each frame. Typography and templates are the floor — a complete video needs zero assets — but any images or videos the user supplies are cut into the frames on the same beat grid (beat-cut / ken-burns). The genre (lyric video, slideshow, kinetic promo) falls out of the per-frame choices; the pipeline never branches on it.

music-to-video — one music-grounded, beat-synced video workflow

Use this skill to turn a music track into a beat-synced HyperFrames video. You analyze the track once, lay out the frames, fill in a per-frame plan, and build each frame as a composition. The input is a music track plus optional user images or videos — there is no narration and no website capture. Typography and templates are the floor (a complete video needs zero assets); any media the user supplies is cut in on the same beat grid.

You are the orchestrator. Work in videos/<project>/. Run the steps in order and pass each Gate before moving on. Two steps need the user: Step 3 (plan approval) and Step 6 (render approval). Do every step yourself except Step 4, where you dispatch one sub-agent per frame. Keep design and motion rules out of this file — they live in references/ and the frame-worker sub-agent.

SKILL_DIR = this skill directory. PROJECT_DIR = videos/<project-name>/.

Workflow: Step 0 setup → hyperframes.json + assets/bgm.mp3; Step 1 analyze → audiomap.json; Step 2 skeleton → STORYBOARD.md (frames, groups TBD); Step 3 plan → complete STORYBOARD.md + frame.md; Step 4 build → compositions/frames/NN-*.html; Step 5 assemble → index.html; Step 6 render → renders/video.mp4.

Two ideas that shape everything

  • One analyzer, and you trust it. analyze-beatgrid.py is the only beat analyzer — never re-measure beats with another tool or by ear. Its energy / density / rolls / onsets / silences are always reliable. Its bpm and beats_sec are reliable only when the music is genuinely rhythmic; on calm music the grid is a metronome the tracker imposed, so pace by phrases and energy instead and never hard-cut to it. Deciding which case you're in is each frame's pacing (Step 2).
  • One frame = one file; groups live inside. Step 2 cuts the track into frames, and each frame becomes one composition file compositions/frames/NN-<frame_id>.html, built by one frame-worker. A frame can subdivide into groups (each a template or a motion-primitives combo). Extra density goes inside a group, so frame count tracks distinct treatments, not beats — a fast track does not blow up the number of sub-agents.

Step 0: Setup, BGM, and inputs

Goal: Establish the music source, create the HyperFrames project, and note any user-supplied media.

The music is the spine — establish one track before anything else. This skill is tuned for fast, high-energy BGM: a strong beat grid drives the cuts (calm tracks work, but pace by phrase rather than beat). If the user gave you audio — a music file, or a video to pull the audio from — use it. If not, generate one: choose the mood from the user's description (e.g. "driving synthwave", "trap beat", "upbeat corporate") and produce a track via /hyperframes-media (references/bgm.md — HeyGen retrieval when credentialed, else local Lyria / MusicGen; ElevenLabs or another generator also works). Before generating, run npx hyperframes auth status and relay its output verbatim (don't paraphrase or rewrite it) — it shows whether BGM comes from HeyGen or local MusicGen and, if not signed in, how to sign in. If not signed in, STOP and wait for the user to choose — sign in, or continue offline with local MusicGen — before generating the track; don't write keys into a per-repo .env. (In autonomous mode, note the status and continue offline.) See /hyperframes-media → Preflight for the canonical guidance. Either way the track lands at assets/bgm.mp3. Stage any user-supplied images or videos so frames can weave them in on the beat grid; otherwise typography carries the whole video.

Initialize only if hyperframes.json is missing. Name <project> from the brief in kebab-case, such as midnight-drive-loop — never a timestamp. init checks the installed skills against the latest on GitHub and updates the global set if any are out of date.

npx hyperframes init "videos/<project>" --non-interactive --example=blank
mkdir -p "$PROJECT_DIR/assets" "$PROJECT_DIR/renders"
cp "<user-music>" "$PROJECT_DIR/assets/bgm.mp3"   # extract from a video first if needed
# only if the user gave you images/videos:
node <SKILL_DIR>/scripts/stage-assets.mjs --from <dir> --hyperframes "$PROJECT_DIR" --into public

The brand (font + palette) is chosen at Step 3, not here. Don't pick a genre or a track type up front — assets are just an optional ingredient, and the genre emerges from the per-frame choices.

Gate: hyperframes.json + assets/bgm.mp3 exist; aspect / length / fps and (if any) the asset inventory are noted.


Step 1: Analyze the music

Goal: Produce the one canonical timing analysis the whole video is built on.

analyze-beatgrid.py is the only beat analyzer — never re-measure beats with another tool or by ear. It reads the track once and writes audiomap.json: energy phases (level / density / feel), onsets + onset_rate, rolls, silences, hard_stops, key_moments, phrases, tempo / grid, and audio.duration_sec. It's deterministic — the same file always gives the same map. Most fields are reliable on any music; bpm and beats_sec are reliable only when the music is genuinely rhythmic, and judging that is the call you make at Step 2.

Prerequisites: Python 3 with librosa, numpy, and soundfile available. If import fails, install them into the active Python environment before running the analyzer:

python3 -m pip install librosa numpy soundfile
python3 <SKILL_DIR>/scripts/analyze-beatgrid.py "$PROJECT_DIR/assets/bgm.mp3" \
  -o "$PROJECT_DIR/audiomap.json" --print

Gate: audiomap.json exists; audio.duration_sec is known.


Step 2: Frame skeleton (structure only)

Goal: Read the music and lay out the frames — the skeleton of STORYBOARD.md.

Read references/frame-skeleton.md. Turn audiomap.json into the skeleton of STORYBOARD.md yourself — there is no intermediate JSON. Cut the track into frames at real musical changes (hard_stops, SURGE / DROP key_moments, the edges of a roll, a stretch with no onsets, a big energy jump), snapping every boundary to an audiomap anchor. For each frame set span_sec, pacing (the verdict from Step 1's trust call — beat_cut when the grid is real, phrase_flow when it's a metronome imposed on calm music), mood, and a one-line feel (the plain music situation Step 3 matches a template against). Only classify and lay out here: leave every frame's ### Groups as TBD (Step 3) and the frontmatter style blank — no templates, copy, color, or fonts. Expect ~16 frames.

Gate: frames tile the track (first at 0, last at duration_s); each carries span_sec + pacing + mood + feel; every ### Groups is TBD; no content anywhere.


Step 3: Fill the plan (user-gated)

Goal: Turn the skeleton into an approved, complete STORYBOARD.md.

Read references/planning.md, storyboard-format.md, template-catalog.md, motion-primitive-catalog.md, and montage.md (only if the user supplied assets). Editing the same file in place, do two things:

  1. Pick the brand. Choose one preset from ../hyperframes-creative/frame-presets/ using the table in ../hyperframes-creative/references/design-spec.md (match the track's mood; only its fonts and colors matter — templates own composition). Copy it into frame.md unmodified and fill the frontmatter style (font + a ≤46 swatch palette) from it.
  2. Fill every frame. Decide its groups and give each a treatment: a matched template from the catalog (with bound params and real audiomap anchors), a free-compose from the primitive catalog, or an asset treatment that obeys pacing. Write the copy. You own WHAT (template / primitives + content + anchors); the frame-worker owns HOW — never write millisecond tweens into the storyboard.
node <SKILL_DIR>/scripts/validate-plan.mjs --storyboard "$PROJECT_DIR/STORYBOARD.md" \
  --audiomap "$PROJECT_DIR/audiomap.json" --templates <SKILL_DIR>/references/templates

Fix every (hard errors: duration mismatch, frames not tiling the track, a missing src); warnings are best-effort. Then show the user a frame-by-frame summary and iterate until they approve.

Gate: frame.md is a verbatim preset copy; validate-plan.mjs exits 0; the user approved the plan.


Step 4: Build frames from the plan

Goal: Build every frame as a self-contained composition file.

Create compositions/frames/. Read sub-agents/frame-worker.md and ../hyperframes-core/references/subagent-dispatch.md. Dispatch one frame-worker per frame, in parallel where possible (otherwise in waves). Each worker gets exactly one frame and this context:

PROJECT_DIR: <abs path>
frame_id: <NN-frame_id>              # = the frame file stem, e.g. 02-f2; the composition id
Your block: the `## Frame N — <frame_id>` block in PROJECT_DIR/STORYBOARD.md
audiomap: PROJECT_DIR/audiomap.json
frame.md: PROJECT_DIR/frame.md
Materials: for each group, <SKILL_DIR>/references/templates/<id>/index.html (templates) and
           <SKILL_DIR>/references/motion-primitives/<id>/ (free); staged assets/ (asset groups)
Contracts: ../hyperframes-core/references/sub-compositions.md + determinism-rules.md
Canvas: <w>×<h>   Pacing: <beat_cut|phrase_flow>
Write to: PROJECT_DIR/compositions/frames/<frame_id>.html

The worker forks the cited materials, converts every anchor to frame-local seconds (local_t = track_t span_sec[0]), gates its groups with 0ms cuts, and writes one seek-safe frame file. The worker never runs the hyperframes CLI — those commands operate on the assembled project, which doesn't exist yet, so they'd report on the wrong files. The worker just writes to the contract and stops; you verify after assembly (Step 6). As each worker returns, you can confirm its file landed on disk.

Gate: every frame has its compositions/frames/NN-*.html on disk.


Step 5: Assemble

Goal: Wire the built frames + BGM into the playable index.html.

assemble-index.mjs is deterministic — no subagent, no judgment. It references each frame file at its cumulative data-start, mounts assets/bgm.mp3 on track 11, and hard-cuts frame → frame (frames tile the track with no gaps, so there is no transition injector).

node <SKILL_DIR>/scripts/assemble-index.mjs --storyboard "$PROJECT_DIR/STORYBOARD.md" \
  --hyperframes "$PROJECT_DIR" --audiomap "$PROJECT_DIR/audiomap.json"

Fix any it reports — a missing or blank frame file means that worker wrote a partial file; re-dispatch it (Step 4) and re-assemble.

Gate: index.html exists; total duration == audiomap.audio.duration_sec.


Step 6: Verify and render

Goal: Verify the assembled video, get user approval, and render the final MP4.

Run the CLI on the assembled project — that's the correct unit (the per-frame workers couldn't run it). lint checks structure, validate runs headless Chrome (catching JS errors and missing assets), inspect snapshots frames.

( cd "$PROJECT_DIR" && npx hyperframes lint . && npx hyperframes validate . && npx hyperframes inspect . )

Inspect at t=0, each frame start, the strongest DROP / SURGE, every hard_stops[].t, and the final frame. On failure, make the cheapest safe fix yourself: edit the offending compositions/frames/NN-*.html. Never change duration or audio timing to hide a sync issue. Once the gates pass, pause for user review, then render only on approval:

( cd "$PROJECT_DIR" && npx hyperframes render . --skill=music-to-video -q draft -o renders/video.mp4 --fps 30 )

Gate: lint / validate / inspect passed; the user approved; renders/video.mp4 exists with audio, duration == audiomap.audio.duration_sec. The final reply states the MP4 path and duration.


Resume table

You have Continue from
assets/bgm.mp3 only Step 1
audiomap.json Step 2
STORYBOARD.md (skeleton) Step 3
STORYBOARD.md (complete) Step 4
all frame files Step 5
index.html Step 6

Quick Reference

Formats: landscape 1920x1080 by default; portrait 1080x1920; square 1080x1080. Set the canvas once in the storyboard frontmatter (canvas: { w, h, fps }).

Scripts under scripts/: analyze-beatgrid.py (the one analyzer), validate-plan.mjs (plan check), assemble-index.mjs (index assembly), stage-assets.mjs (stage user media), lib/storyboard.mjs (vendored parser). Everything else is the hyperframes CLI.

Read When
references/frame-skeleton.md Step 2: read the music, lay out the frames, set pacing
references/planning.md · storyboard-format.md Step 3: pick the brand, fill each frame, write the plan
references/template-catalog.md Step 3: pick a template per group
references/motion-primitive-catalog.md Step 3/4: L0 recipes for free-compose
references/montage.md Step 3/4: asset treatments (beat-cut / ken-burns)
sub-agents/frame-worker.md Step 4: dispatch + build one frame
../hyperframes-core/references/subagent-dispatch.md Step 4: dispatch sub-agents safely
../hyperframes-creative/references/design-spec.md Step 3: pick the preset (the brand)

Directory layout

music-to-video/
  SKILL.md
  references/   frame-skeleton.md · planning.md · storyboard-format.md
                template-catalog.md · motion-primitive-catalog.md · montage.md
                templates/<id>/          { index.html (+ assets/ · program.json) }  ← L1 catalog impls
                motion-primitives/<id>/  { index.html } (+ ../assets/gsap.min.js shared by recipes) ← L0 catalog impls
  scripts/      analyze-beatgrid.py · assemble-index.mjs · validate-plan.mjs · stage-assets.mjs · lib/storyboard.mjs
  sub-agents/   frame-worker.md   ← the one subagent (one per frame)