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v0.6.18
1016
Commits
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78fce8bd8a |
chore: release v0.6.18
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>v0.6.18 |
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2b46565c65 |
fix(runtime): hold external sub-compositions in render mode
PR #917 fixed visibility clamping for external sub-compositions in preview mode by checking data-composition-src. However, the producer's htmlCompiler strips that attribute during inlining without setting the data-composition-file marker that the core bundler sets. This caused the runtime to still clamp duration to Math.min(authored, live) in rendered output. Two fixes: - Runtime: also check data-composition-file (set by the core bundler after inlining) - Producer: set data-composition-file before removing data-composition-src, matching the core bundler's behavior Closes #911 Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> |
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3f976d454c |
chore: release v0.6.17
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>v0.6.17 |
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16d343dcf7 | Merge pull request #792 from func25/fix/layer-range-seek | ||
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9c954be049 | Merge pull request #625 from hobostay/fix/caption-generator-string-escaping | ||
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b7e23df20d | Merge pull request #824 from calcarazgre646/docs/cheatsheet-work-area-shortcuts | ||
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cff1e76246 | fix(runtime): respect keepPlaying option in player seek (#863) | ||
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551607efd6 | fix: hold external sub-compositions through host duration (#917) | ||
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b30fd29695 | chore: release v0.6.16 v0.6.16 | ||
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f01fccb0ea | perf(distributed): skip eager probe session when chunkWorkerCount > 1 (#916) | ||
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34d1f0e1d0 |
feat(lambda): add TypeScript SDK and CDK construct (#909)
* feat(lambda): add TypeScript SDK and CDK construct
Adds the client-side surface on top of the Phase 6a Lambda handler so
adopters can drive a deployed stack from Node without writing AWS-SDK
boilerplate:
- renderToLambda(opts) starts a Step Functions execution and returns a
handle. Does NOT poll.
- getRenderProgress({ executionArn }) returns a snapshot of progress,
frames rendered, cost (Lambda GB-seconds + SFN transitions), errors,
and the final output object once Assemble completes.
- deploySite({ projectDir, bucketName }) content-addresses the project
tree, tar.gzs it, and uploads to S3 with a HeadObject short-circuit so
re-renders of the same tree skip the tar+PUT.
- validateDistributedRenderConfig throws a typed InvalidConfigError
before StartExecution, so shape errors surface synchronously.
- computeRenderCost is exposed for callers who want to format cost out
of band.
Also ships HyperframesRenderStack, an aws-cdk-lib L2 construct that
emits the same topology as examples/aws-lambda/template.yaml. Lives on
the ./cdk subpath export so SDK-only consumers don't pull aws-cdk-lib
into their runtime graph (declared as an optional peer dependency).
Tests: 24 new unit tests across the SDK plus 9 CDK synth / contract /
snapshot tests. All 83 tests in packages/aws-lambda/src pass.
* refactor(lambda): /simplify pass on the SDK + CDK PR
Pulls shared logic out so the SDK doesn't re-invent things the handler
and the producer already have:
- `formatExtension` extracted to packages/aws-lambda/src/formatExtension.ts.
handler.ts and renderToLambda.ts both used identical 12-line copies of
this switch.
- `PLAN_PROJECT_DIR_SKIP_SEGMENTS` is now exported from
@hyperframes/producer/distributed. deploySite consumes it instead of
its own duplicate SKIP_TOP_LEVEL set; the two lists were trivially
identical and would have drifted silently.
- `FakeS3` + `drainBody` factored out of the two SDK test files into
src/sdk/__fixtures__/fakeS3.ts. Drops ~110 lines of test-file
duplication and gives future SDK tests a one-line FakeS3 import.
- S3 URI building in deploySite and renderToLambda routes through the
existing `formatS3Uri` helper instead of inline `s3://...`
concatenation; matches the convention already in handler.ts.
Net -133 lines across the touched files. All 83 aws-lambda tests still
pass; all 60 producer distributed tests still pass.
* fix(lambda): bump CDK test timeouts for CI cold-start synth
The bun:test default 5s timeout tripped the first CDK snapshot test
in CI when the cold-start `Template.fromStack(stack)` synth took ~5-8s
on the slowest GitHub Actions runner. Locally on a warm shell the
synth measures <1s, so the failure didn't reproduce until PR #909 hit
CI.
Two changes:
- Both CDK test files cache one synth in `beforeAll(..., 30000)` and
reuse the result across every test that uses the default props.
Each individual test now runs in microseconds (pure assertions
against the already-synthed template), so the 5s timeout no longer
applies on the hot path.
- The two contract tests that exercise non-default props
(reservedConcurrency, projectName) still synth fresh per-test; they
get a per-test `it(..., 30000)` timeout.
No behavior changes.
* fix(lambda): address PR review on SDK + CDK construct
Three correctness + ergonomics fixes raised in Vai's review:
- getRenderProgress over-counted SFN transitions by 3-5×. Step
Functions Standard Workflows bill per state-entry, not per
history event. Each Task produces ~5-7 history events
(Scheduled / Started / Succeeded / TaskStateExited / …);
counting `events.length` reported the runaway. Switch to
counting `*StateEntered` events explicitly.
- assembleComplete + outputFile detection was coupled to the
Lambda payload's `Action` field. Move both signals onto the
enclosing state name (`StateExited.name === "Assemble"`), which
is the state-machine identity rather than the Lambda event
contract. framesRendered increment moves to the same boundary
(RenderChunk state).
- SiteHandle now carries `bucketName` directly so README + CLI
callers don't have to re-parse `projectS3Uri.split("/")[2]`.
Test updates: getRenderProgress tests wrap renderChunk/assemble
events in matching StateEntered + StateExited pairs so the new
state-name-driven dispatch is exercised end-to-end. SiteHandle
fixture in renderToLambda.test.ts gets the new bucketName field.
All 83 aws-lambda tests still pass.
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0d726ae010 |
feat(studio): support preview panning with mouse and trackpad (#888)
* feat(studio): support middle-mouse panning in preview * feat(studio): support trackpad panning in preview * chore(core): remove stray compositionRoot helper |
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5f8391bd96 | chore: release v0.6.15 v0.6.15 | ||
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22363a11c9 |
perf(distributed): parallelize chunk capture across multiple workers (#906)
* perf(distributed): parallelize chunk capture across multiple workers
The distributed `renderChunk` primitive hardcoded `workerCount: 1` and
`captureStage` explicitly forbade `workerCount > 1` when `frameRange` was
set, with the comment:
"Distributed chunk workers fan out at the activity layer; reduce
workerCount to 1 when passing frameRange."
The assumption was that orchestration-layer fan-out (Temporal / Lambda /
K8s Jobs / SSH) saturates the available CPU on its own. In practice
adopters that deploy chunks onto multi-core hosts (8-24 vCPU is the
standard producer-worker pod sizing) end up pinning only ~3-4 cores per
chunk while the rest sit idle: chunk-level fan-out at the orchestration
layer gives each pod one chunk at a time, and the chunk render itself
was single-threaded.
Validated against a real 1080p / 30fps / 22-second shader-heavy
composition on a 22-vCPU Temporal pod: each chunk rendered at
165-273ms per frame (vs 94-98ms for the in-process streaming render
which runs `workerCount=2` by default). The slowest chunk gates total
wall-clock under parallel chunk fan-out, so the 2-3x per-frame gap
compounds and `distributed` was net-slower than `in-process` on every
composition smaller than ~5min of texture-class content. Lifting the
restriction is a measured ~2x per-chunk speedup with no contract
change at the framesDir or encoder layer.
Wire-up:
* `WorkerTask.outputFrameOffset` — optional offset subtracted from the
absolute frame index when computing the captured file's name.
Default 0 (the in-process contract; file name == absolute index).
Distributed chunks set this to the chunk's startFrame so file names
land 0-indexed within the chunk's range, matching the sequential
chunk-capture contract and the encoder's expectation that frames
are read sequentially without an `-start_number` override.
* `distributeFrames(totalFrames, workerCount, workDir, rangeStart=0)` —
offsets both `startFrame`/`endFrame` (used for per-frame time math
on the page's virtual clock) by `rangeStart`, and threads
`outputFrameOffset = rangeStart` onto each task it emits. With the
default `rangeStart=0` it is a no-op for in-process renders.
* `executeWorkerTask` — uses `i - (task.outputFrameOffset ?? 0)` for
the captured file name, leaving the per-frame TIME computation
`(i * fps.den) / fps.num` untouched so the page's virtual clock is
unchanged.
* `executeDiskCaptureWithAdaptiveRetry({ frameRangeStart? })` — accepts
the chunk's absolute startFrame and forwards it to `distributeFrames`
and `buildMissingFrameRetryBatches`. Default `undefined` preserves
the in-process contract.
* `buildMissingFrameRetryBatches(ranges, ..., rangeStart=0)` —
`findMissingFrameRanges` walks LOCAL 0-indexed file names; the retry
batch translates the local missing-range pair back to ABSOLUTE
composition indices for `WorkerTask.startFrame/endFrame` and sets
`outputFrameOffset = rangeStart` so the retried capture writes back
to the same local file name.
* `captureStage` — drops the assert; passes
`frameRangeStart: frameRange?.startFrame` to the parallel branch so
workers land on absolute composition frame indices for time math
while file names stay 0-indexed within the chunk range. Docstring
updated to reflect that the parallel branch is now supported.
* `renderChunk` — `workerCount: 1` → `workerCount: 2`. The pre-warmed
`probeSession` is consumed only by the sequential branch; the
parallel branch closes it during stage entry and creates its own
worker sessions. Documented as a follow-up: skip probeSession
creation when `workerCount > 1` to recover the ~3-5s warmup cost.
Backwards compatibility: every change is gated on a parameter that
defaults to the prior behavior. In-process callers (`executeRenderJob`)
pass no `frameRangeStart`, so `rangeStart === 0`, `outputFrameOffset`
defaults to 0, and the file-name math collapses to the prior `i` value.
The framesDir contract (`frame_0..frame_(totalFrames-1)`) and the
WorkerTask interface are extended, not replaced.
Tests: 24 pass / 0 fail across the distributed test suite (renderChunk,
plan, assemble, planFormatBanlist, planSizeCap, publicExports). 7 pass /
0 fail in `parallelCoordinator.test.ts`. The renderOrchestrator suite
has one pre-existing Windows-only failure
(`writeCompiledArtifacts — external assets on Windows drive-letter
paths`) unrelated to this change; the other 56 tests pass.
Refs: distributed-vs-inprocess benchmark thread at
heygen-com/experiment-framework#36950
* perf(distributed): auto-size chunk workerCount via calculateOptimalWorkers
Match the in-process renderer's worker selection instead of hardcoding 2.
`calculateOptimalWorkers(framesInChunk, undefined, cfg)` is the same call
`resolveRenderWorkerCount` makes under the hood, minus the capture-cost
calibration reduction (which would require plumbing the chunk's compiled
metadata through — left as a follow-up).
For a typical 22-vCPU producer-worker pod with `cfg.concurrency: "auto"`
this resolves to ~6 workers for a 240-frame chunk (capped by
`defaultSafeMaxWorkers() = max(6, min(16, floor(cpuCount/8)))`), matching
what `executeRenderJob` (the in-process path) already does. The prior
hardcoded `workerCount: 2` was a safe-minimum starting point that
undersized chunks vs prod's auto behavior.
Tests: 12/12 pass in `renderChunk.test.ts` (unchanged — the test suite
mocks the inner runCaptureStage call so workerCount selection is opaque
to it).
* refactor(distributed): /simplify pass on PR #906
Review pass on the parallel-capture frame-range change. Four targeted
cleanups identified by code-quality and efficiency review agents:
1. Add the missing `frameRange.endFrame - frameRange.startFrame === totalFrames`
assert. The parallel branch forwards `totalFrames` separately from
`frameRangeStart`; a caller passing mismatched values would have got a
silently wrong distribution. The sequential branch already implicitly
relied on this via its `rangeFrames = rangeEnd - rangeStart` arithmetic.
2. Collapse three near-duplicate docstrings (on `WorkerTask.outputFrameOffset`,
`executeDiskCaptureWithAdaptiveRetry.frameRangeStart`, and `runCaptureStage`'s
`frameRange`) so only the WorkerTask field carries the full contract. The
other two cross-reference it.
3. Drop the WHAT-narrating comments inside `executeWorkerTask`'s per-frame
loop. The variable names (`fileFrameIdx = i - outputOffset`) already say
what the line does; the only remaining comment flags the non-obvious
contract that the streaming callback gets the absolute index.
4. Trim the 30-line `chunkWorkerCount` block in `renderChunk` to one paragraph
explaining the one non-obvious thing (why we use `calculateOptimalWorkers`
directly instead of `resolveRenderWorkerCount`). The probeSession-wasted-on-
parallel acknowledgement stays as a 3-line follow-up flag — investigated
skipping it in this pass, but the SwiftShader probe is safety-critical and
has no per-worker equivalent, so deferred to a separate change with proper
per-worker assertion plumbing.
Tests + format + lint clean:
* `bun test parallelCoordinator.test.ts` — 7/7
* `bun test distributed/{renderChunk,plan}.test.ts` — 24/24
* `bunx oxfmt` + `bunx oxlint` — clean
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aa58ebc048 |
feat(lambda): add real-AWS smoke + benchmark script (#908)
* feat(lambda): add real-AWS smoke + benchmark script
Phase 6.3 of the distributed rendering plan
(DISTRIBUTED-RENDERING-PLAN.md §11 Phase 6a). Local bash script that
deploys the PR 6.2 SAM template to your own AWS account, renders a
fixture composition through the Step Functions state machine at several
chunk counts, PSNR-compares each output against the in-process
baseline, and tears the stack down.
This is the gate that proves the architecture works on real Lambda
infrastructure. After it runs green and the numbers are good, Phase 6b
(CLI, CDK, docs) can proceed with confidence.
Script lives at examples/aws-lambda/scripts/smoke.sh. Defaults:
- fixture: mp4-h264-sdr
- chunk_counts: 2,4,8
- psnr-threshold: 50 dB
- region: us-east-1
- stack-name: hyperframes-lambda-smoke-<timestamp>
AWS credentials come from the standard resolution chain (env vars,
~/.aws/credentials, SSO, IMDS). Pin a specific profile via --profile or
AWS_PROFILE; the script doesn't ship a default.
Workflow:
1. Pre-flight: verify aws/sam/bun/ffmpeg/jq/zip on PATH; check
credentials via sts:GetCallerIdentity.
2. Build the PR 6.1 ZIP and run verify:zip-size.
3. sam validate --lint + sam deploy under a per-run stack name.
4. Zip the fixture's src/ and upload to the render bucket.
5. For each chunk count, start a Step Functions execution, poll for
completion (25-min cap), download the output mp4 and the execution
history JSON, ffmpeg-psnr against the LFS-tracked in-process
baseline, and append to results.json.
6. Gate on the PSNR threshold.
7. Empty the bucket + sam delete (unless --keep-stack).
Outputs land under ./lambda-smoke-artifacts/:
- results.json (chunkCount x wallClockMs x psnrAvgDb)
- renders/N<N>-output.mp4
- renders/N<N>-history.json (full Step Functions execution history)
Per-run stack name with concurrency-safe AWS resource isolation. Run
multiple smokes in parallel without races; teardown guards against
stale stacks via cleanup_and_exit on every failure path.
Distinction from CI: this is a maintainer-run gate, not part of regular
CI. The architecture's per-PR safety net is the local Docker-based
BeginFrame probe (PR 6.1) and the upcoming Lambda RIE smoke mode (PR
6.6). No GitHub Actions / OIDC / cross-account secrets required.
This is part of the 8-PR Phase 6 stack; PR 6.3 of 8 — the last PR of
Phase 6a (validation). Phase 6b (CLI + CDK + docs) starts once 6.3's
benchmark numbers come back.
* fix(lambda): address PR 880 review feedback
- Document wall-clock methodology bias inline (eval.sh header + README):
local timing includes bun + tsx + harness scaffolding while Lambda
timing measures pure SFN execution, so "speedup" is end-to-end CLI
experience, not renderer-vs-renderer.
- Add --iterations N (default 1) with median wall-clock reporting via
awk-side median. Cold-start variance is ±5-10s per chunk; single-
sample readings made the PR-body speedup table not ground truth.
- Add --reserved-concurrency flag to both scripts; default still 16 but
no longer hardcoded. Pass-through to ReservedConcurrency CFN param.
- README: cost-per-pass estimate for both scripts.
- Replace `sed -n '2,30p' "$0"` help with usage() heredoc in both
scripts — fragile to header reflows and didn't survive the comment
expansion this commit adds anyway.
- eval.sh RMS-level parser: add a third fallback (`RMS level:` with no
`dB` suffix) for older ffmpeg builds where astats predates the unit
tag. Word-boundary guards keep `RMS peak level` from being eaten.
* docs(lambda): drop internal plan-doc + Rio refs from smoke/eval scripts
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6664e54053 |
feat(lambda): add SAM template and sample events for AWS deployment (#907)
* feat(lambda): add SAM template and sample events for AWS deployment Phase 6.2 of the distributed rendering plan (DISTRIBUTED-RENDERING-PLAN.md §15). Reference SAM template for deploying HyperFrames distributed rendering on AWS — one Lambda function in three roles, choreographed by a Step Functions standard workflow with a Map state for parallel chunk rendering. Resources created by the template: - Lambda function pointing at the Phase 6.1 ZIP - Step Functions state machine: Plan -> Map(N) RenderChunk -> Assemble - S3 bucket for plan tarballs, chunk outputs, final mp4 - IAM role for the state machine - CloudWatch alarm guarding against runaway chunk invocations Retry policy: 4 attempts, 2s initial, 2x backoff, max 60s, with the typed non-retryable error codes from plan §9.3 explicitly opted out. CodeUri points at packages/aws-lambda/dist/handler.zip; sam deploy resolves the local path and uploads to a SAM-managed bucket on first deploy. Validated: sam validate --lint passes against the template. This is part of the 8-PR Phase 6 stack; PR 6.2 of 8. * fix(lambda): address PR 879 review feedback - Add CloudWatch alarms for Lambda Errors metric (5min window, threshold 1) and Step Functions ExecutionsFailed metric. The existing runaway- invocations alarm catches too-many-calls but missed silent per-chunk failures and retry-exhaustion. - Document VersioningConfiguration: Suspended tradeoff inline. Adopters treating the final mp4 as user-keepable should bump to Enabled. - Cost-allocation Tags on RenderBucket + Lambda Globals. - Lambda Tracing: Active so X-Ray spans don't terminate at the SF→Lambda boundary (the state machine already had tracing). - State-machine top-level TimeoutSeconds: 3600 as defensive ceiling on the whole choreography — catches Plan-retry storms before they hit individual task budgets. - AssertChunkCount Choice state: if Plan ever returns ChunkCount=0 the Map would silently iterate zero times and Assemble would receive an empty ChunkS3Uris[] producing an empty output. Fail-fast with typed PLAN_TOO_LARGE error instead. - Architecture comment: explicit x86_64-only constraint from @sparticuz/chromium so adopters trying Graviton don't get bitten. * docs(lambda): drop internal plan-doc refs from SAM example + template |
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c50f59a53b |
feat(lambda): add Lambda handler, ZIP bundling, and BeginFrame probe (#878)
* feat(lambda): add Lambda handler, ZIP bundling, and BeginFrame probe
Phase 6 of the distributed rendering plan: AWS Lambda turnkey adoption
(see DISTRIBUTED-RENDERING-PLAN.md §11 Phase 6 + §15).
This PR adds the new packages/aws-lambda/ workspace package that wraps
the OSS plan/renderChunk/assemble primitives in an AWS Lambda handler,
plus a build pipeline that bundles the handler + Chromium runtime +
ffmpeg into a deployable ZIP.
Architecture: ZIP deploy (not Docker image), Chrome via @sparticuz/chromium
with chrome-headless-shell fallback, dispatch on event.Action ∈ {plan,
renderChunk, assemble}.
The load-bearing concern — does @sparticuz/chromium's chrome-headless-shell
build honour CDP HeadlessExperimental.beginFrame? — is pinned by the new
scripts/probe-beginframe.ts regression guard. Probe boots the runtime
inside public.ecr.aws/lambda/nodejs:22, navigates to a static page, and
asserts beginFrame returns a PNG buffer. Verified locally + inside the
Docker container; both pass with hasDamage=true.
Sizes (sparticuz source): unzipped 157 MiB, zipped 99 MiB. Well under
the 240 MiB / 150 MiB in-house gates and the Lambda 250 MiB hard ceiling.
This is part of a stack of 8 PRs (3 in Phase 6a, 5 in Phase 6b); this is
PR 6.1.
* fix(lambda): address PR 878 review feedback
- Verify event.PlanHash against the untarred plan.json at the handler
boundary before invoking the producer primitive. Throws typed
PLAN_HASH_MISMATCH on divergence so Step Functions routes it as
non-retryable; previously the field was schema bloat the handler
ignored, leaving enforcement entirely inside the producer.
- Standardize on MiB throughout build-zip.ts, verify-zip-size.ts, and
the README. Lambda's hard ceiling is 250 MiB (AWS docs label "250 MB"
but use binary mebibytes); previously mixed units made the 248 MiB
budget look like a ~5 MB margin instead of the 2 MiB it actually is.
- stageChromeHeadlessShell now picks Chrome versions via numeric semver
comparison instead of lexicographic sort+reverse — the latter would
silently pick "99.x" over "131.x" once Chrome cached three-digit
majors that aren't width-aligned.
- Drop _setSparticuzChromiumForTests from the public index barrel.
Test-only DI seam imported directly from ./chromium.js in tests.
- Replace require("node:fs") inside walkSize() with the top-level fs
imports — file is ESM and the same module is already imported.
* docs(lambda): drop internal plan-doc refs from package README
* ci(windows): fix bun filter UNION bug excluding producer from Windows tests
`bun run --filter "!a" --filter "!b" test` composes as a UNION (any
package matching either negation runs), not an intersection. Effect:
@hyperframes/producer was still being tested on Windows even though
it's explicitly excluded — its regression harness (Docker + LFS golden
mp4 baselines) is Linux-only and was driving the 32min timeout.
Enumerate the packages we DO want to test instead.
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1fca35b625 | chore: release v0.6.14 v0.6.14 | ||
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4e0034f072 |
fix(studio): fix capture button silent failures and broken CLI seek (#904)
* fix(studio): fix capture button silent failures and broken CLI seek
The Capture button could silently fail with no user feedback due to
several compounding issues:
- The click handler's try-catch only covered the fetch call, leaving
waitForPendingDomEditSaves() and URL construction unprotected. Any
error there became an unhandled promise rejection with zero UI
feedback. Wrap the entire handler body in try-catch.
- No timeout on the fetch or save-queue drain, so a hung server or
stuck save queue caused the button to appear permanently broken.
Add a 30s AbortController timeout on the fetch and a 5s race
timeout on waitForPendingDomEditSaves.
- The CLI server's thumbnail seek used `__timeline` (singular) which
doesn't exist — the runtime registers `__timelines` (plural). Also
used `.seek()` instead of `.pause(t)` and didn't kick the GSAP
ticker. Align with the Vite adapter's working seek logic.
- The CLI server's getThumbnailBrowser and generateThumbnail catch
blocks swallowed all errors silently — Chrome launch failures and
screenshot errors were invisible. Add console.warn logging.
- Parse the JSON error body from the server so the toast shows the
actual message ("Chrome browser may not be available") instead of
just "Capture failed (500)".
Closes #902
* fix(cli): apply same seek fix to snapshot command, address review nits
- Fix snapshot.ts seek logic: same __timeline→__timelines + .pause(t)
+ gsap ticker kick fix as studioServer.ts (caught by Vai's review)
- Use typed Window shape in waitForFunction instead of (window as any)
- Use function-form page.evaluate for document.fonts?.ready
* fix(cli): force screenshot mode for thumbnail browser on Linux
Root cause: on Linux, acquireBrowser defaults to beginframe mode
(--enable-begin-frame-control) which makes page.screenshot() hang
indefinitely — beginframe mode expects CDP HeadlessExperimental.beginFrame
commands, not Puppeteer's Page.captureScreenshot.
Pass forceScreenshot: true and captureMode: "screenshot" so the
thumbnail browser always uses screenshot-compatible Chrome flags.
Reproduced on Linux devbox: thumbnail endpoint hung >30s with
beginframe flags; returns a valid PNG instantly in screenshot mode.
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3569c4830c |
feat(producer): add Rio-style residual-RMS check to regression harness (#882)
* feat(producer): add Rio-style residual-RMS check to regression harness
The existing audio comparison in the regression harness measures the
Pearson correlation between RMS envelopes of the rendered and snapshot
streams. That catches shape-level drift but is insensitive to level
shifts, phase offsets, or codec-quantization noise — two streams can
correlate >0.9 while differing audibly.
Rio's approach (rio/tests/checksum.py:compare_audio_files_ffmpeg) is
sample-level: subtract the snapshot from the rendered stream, run
`astats`, read the residual Overall RMS in dBFS. Identical streams
cancel to silence (-inf, or sub -90 dBFS for AAC-vs-AAC); anything
>= -50 dBFS is considered drift.
This commit adds the same check as an optional secondary gate:
- utils/audioRegression.ts: new `computeAudioResidualRmsDb()` that
spawns ffmpeg with the same filter graph Rio uses (aresample +
pan + volume=-1 + amix + astats) and returns the parsed Overall
RMS plus a pass/fail flag.
- utils/audioRegression.test.ts: 3 new tests covering identical
streams (-inf result), drifted streams (440Hz vs 880Hz sine),
and missing-audio-stream input.
- regression-harness.ts: optional `maxAudioResidualRmsDb` field in
meta.json. Default is undefined (skip the check) so legacy
fixtures aren't retroactively gated; new fixtures opt in by
setting a threshold (e.g. -50). Harness emits `residualRmsDb` in
the audio_comparison_complete JSON event and the pretty log line.
The existing correlation check stays in place; the new residual check
is independent. They measure complementary properties (shape vs
sample-cancellation) and both should hold for a faithful render.
* fix(producer): harden residual-RMS check (parser, duration guard, error surfacing)
Addresses review feedback on PR #882:
- Stateful astats parse: modern ffmpeg emits `Overall` on its own line
followed by per-stat lines, so the single-line `Overall RMS level dB:`
regex never fires on 6.x/7.x/8.x. Find the `Overall` header, take the
next `RMS level dB:` line. Single-line fallback preserved for 4.x.
- Pre-probe both inputs' audio durations and fail up-front if they differ
by >5 ms — `amix=duration=shortest` was silently masking trailing
audio differences.
- Surface ffmpeg/ffprobe spawn errors, signal kills, and non-zero exits
with a stderr tail. Previously every failure mode collapsed into
"NaN, fail" with no diagnostic.
- Extend `TestResult.audio` with `residualRmsDb` + `residualError`,
propagate to `audio-failures.json`.
- Fix `residualSuffix` formatter: NaN (real failure) was being rendered
as "-inf dBFS" (perfect match). Split the branch on `Number.isNaN`
separately from `Number.isFinite` and add an explicit error label.
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cad9160cd8 |
chore(producer): drop internal plan-doc refs from source + docs (#903)
The producer source + docs referenced an internal coordination doc (DISTRIBUTED-RENDERING-PLAN.md) that doesn't ship in the OSS repo, leaving broken cross-links for adopters. Drops the references and the bare section-number shorthand that depended on them; behavioural content (hash contract, retry semantics, threshold rationale) is preserved inline where it was previously offloaded to a section number. |
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efc16a945f |
fix(engine): treat ffmpegStreamingTimeout as per-frame inactivity, not total render time (#901)
## Summary - Convert `streamingEncoder.ts`'s safety timer from a total-render hard cap to a per-frame inactivity timeout - Reset the timer only on `accepted === true` writes — buffered writes don't count as consumer progress - Update the `ffmpegStreamingTimeout` config doc to reflect the new semantics ## The bug The timer was set once at spawn and fired SIGTERM unconditionally at `ffmpegStreamingTimeout` ms — turning a "FFmpeg is hung" guard into a hard cap on total render duration. Slow-but-progressing captures (CI runner under load, large compositions, slower compositor paths after [#838](https://github.com/heygen-com/hyperframes/pull/838)'s always-clip change) regularly exceeded the 600s default and were killed mid-encode. The symptom surfaced as: ``` Streaming encode failed: FFmpeg exited with code 255 video:NNNkB audio:0kB ... [libx264 @ ...] frame I:3 Avg QP:12.91 size: 73263 [libx264 @ ...] frame P:431 Avg QP:14.72 size: 31633 ... [libx264 @ ...] kb/s:7661.05 Exiting normally, received signal 15. ``` libx264 had encoded most frames cleanly; SIGTERM arrived during the encode, libx264 printed its end-of-encode stats, and Node observed a non-zero exit. The `audio:0kB` in stderr is incidental — `streamingEncoder` is video-only; audio is muxed later in `assembleStage`. Downstream reproduction: `style-13-prod` fails deterministically in `heygen-com/hyperframes-internal` CI after bumping `@hyperframes/producer` from 0.6.7 → 0.6.10. Bisects to #838 widening the SDR capture path at dpr=1 — same composition shape, slower per-frame, total render now crosses 600s. ## The fix Convert the timer to a heartbeat: each `writeFrame` that goes through to the kernel pipe (i.e. `stdin.write` returns `true`) resets it. Only true hangs (no successful frame write for the timeout window) trip SIGTERM now; "slow but progressing" renders are unbounded. Crucially, the heartbeat does **not** reset on `accepted === false`. A `false` return means Node had to buffer the write because FFmpeg hasn't drained the pipe yet — that's not proof of consumer progress, just proof we produced. Without this distinction, a hung FFmpeg with a live Chrome would queue frames into Node's writable buffer indefinitely (no backpressure path back to the capture loop) and grow until OOM. In steady state with a slow-but-alive FFmpeg, writes alternate between `true` and `false` as the buffer drains and refills; the `true`s are enough to keep the heartbeat ticking. Renames are intentionally avoided — `ffmpegStreamingTimeout` keeps its name and `600_000` default; only the semantics changed. The config doc spells out the new behavior so downstream consumers know what 600s now means. ## Test plan - [x] **Slow-but-progressing capture** (`accepted=true`): 9× `writeFrame` at 900ms intervals (under the 1000ms threshold) — encoder stays alive through 8.1s. Stall past the threshold — SIGTERM fires. - [x] **Stalled FFmpeg with live producer** (`accepted=false`): override `stdin.write` to return false; pump 9× `writeFrame` at 900ms intervals. SIGTERM still fires inside the 1000ms window — buffered writes don't keep the heartbeat alive. - [x] Existing 33 tests in `streamingEncoder.test.ts` still pass - [x] Lint (`oxlint`) + format (`oxfmt --check`) clean - [ ] CI regression suite 🤖 Generated with [Claude Code](https://claude.com/claude-code) |
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64b3ae755d |
feat(cli): add browser launch options to preview and play (#884)
* feat(cli): add browser launch options to preview and play * fix(cli): add spawn error listener to prevent ENOENT crash --------- Co-authored-by: AnoKno <122017492+AnoKno@users.noreply.github.com> |
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883260aae3 |
chore: release v0.6.13
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>v0.6.13 |
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be33afb361 | fix(core): align sub-composition scoping across runtime and bundler (#897) | ||
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2355d505e1 | chore: release v0.6.12 v0.6.12 | ||
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cd0e6b02a0 |
feat(studio): Timing inspector + fix mixed-content text editing (#896)
* feat(studio): add clipboard payload types and ID deduplication * feat(studio): add Ctrl+C/V/X copy/paste for timeline clips and DOM elements * fix(studio): use duck-typing for cross-frame element access in clipboard Elements from the preview iframe are from a different window context, so `el instanceof HTMLElement` always returns false. Use `"outerHTML" in el` instead to correctly detect elements across frame boundaries. * fix(studio): preserve playhead position after paste reloadPreview() used location.reload() which bypassed the NLELayout saveSeekPosition effect, causing the playhead to reset to 0:00 after paste. Switch to setRefreshKey which triggers the effect and restores the seek position after the iframe reloads. * fix(studio): paste DOM elements as siblings, not at composition root DOM element paste was inserting at the composition root, losing the parent context that provides CSS styles and positioning. Now stores the origin selector on copy and inserts the paste as a sibling immediately after the original element, preserving style inheritance. Falls back to root insertion if the selector can't be matched. * fix(studio): address review — deduplicateIds, native copy, altKey guard - deduplicateIds regex used \b which matched data-composition-id, data-clip-id, etc. Switch to lookbehind (?<=\s) so only standalone id="..." attributes are rewritten. Add test pinning this. - Ctrl+C no longer calls preventDefault() before confirming there's a selected element. Native browser copy (text selections outside inputs) is preserved when nothing is selected in the Studio. - Add !event.altKey guard on C/V/X to avoid intercepting Cmd+Alt+V (paste-as-plain-text) and similar OS gestures. - Remove no-op .replace(/"/g, '"') flagged by CodeQL. * fix(studio): address review round 2 — Cmd+X guard, data-start scope, revert drive-by - Cmd+X now pre-checks selection state before preventDefault, mirroring the Cmd+C fix. Native cut preserved when nothing is selected. - handleCut returns Promise<boolean> so the caller can gate on it. - data-start rewrite scoped to the outermost opening tag only, so nested clip timing is preserved on paste. - Removed system clipboard write (cross-tab paste unsupported, in-memory ref is the only read path). - Reverted the reloadPreview drive-by (setRefreshKey→location.reload); the perf branch (#895) handles this properly via refreshPlayer(). * perf(studio): use lightweight iframe.src reload instead of Player teardown Content refreshes (paste, move, resize, delete, asset drop) previously triggered setRefreshKey which changed the Player's React key, causing full web-component destruction + iframe teardown + crossfade animation + re-initialization of all event listeners and asset polling. Now NLELayout intercepts refreshKey changes and calls refreshPlayer() which just appends a cache-busting _t param to the iframe src. The Player web component stays alive, event listeners persist, and the reload is ~10x faster with no "waiting for media" flash. Key-based teardown is preserved for actual structural changes (project switch, composition drill-down via directUrl change). * perf(studio): skip asset-loading overlay on content refreshes The asset-loading overlay ("Preparing preview assets") polled for video/audio readyState on every iframe load, including content refreshes from paste/move/resize. On reloads the browser serves assets from cache so they resolve near-instantly — the overlay just created a disruptive flash. Now skips the polling on subsequent loads (loadCountRef > 1), only showing it on the initial cold load. * feat(studio): add Timing section to inspector Design panel Adds Start, End, and Duration fields to the Design panel when the selected element has data-start/data-duration attributes. Editing any field commits via the attribute patch pipeline (same as timeline edits) and refreshes the preview. End is computed from start+duration and writing End adjusts duration accordingly. * fix(studio): preserve bare text nodes in mixed-content elements collectDomEditTextFields only captured child HTML elements, ignoring bare text nodes. For elements like: <div class="headline">If you're <span>turning 65</span> soon...</div> only the <span> was collected as a text field. When commitDomTextFields serialized back, "If you're " and " soon..." were lost. Now walks childNodes and creates text-node fields for bare text nodes alongside child element fields. serializeDomEditTextFields emits bare text for text-node fields, preserving the complete mixed content. * fix(studio): address #896 review — remove scrub from timing, add mixed-content test - Remove scrub from Timing fields: 1px = 1 second is too coarse. Scroll-wheel and direct typing still work with sub-second precision. - Add mixed-content text-node serialization test in a separate file (domEditingTextFields.test.ts) to avoid bloating the existing domEditing.test.ts past the filesize limit. |
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83b3ebabf3 |
perf(studio): lightweight preview reload, skip asset overlay (#895)
* feat(studio): add clipboard payload types and ID deduplication * feat(studio): add Ctrl+C/V/X copy/paste for timeline clips and DOM elements * fix(studio): use duck-typing for cross-frame element access in clipboard Elements from the preview iframe are from a different window context, so `el instanceof HTMLElement` always returns false. Use `"outerHTML" in el` instead to correctly detect elements across frame boundaries. * fix(studio): preserve playhead position after paste reloadPreview() used location.reload() which bypassed the NLELayout saveSeekPosition effect, causing the playhead to reset to 0:00 after paste. Switch to setRefreshKey which triggers the effect and restores the seek position after the iframe reloads. * fix(studio): paste DOM elements as siblings, not at composition root DOM element paste was inserting at the composition root, losing the parent context that provides CSS styles and positioning. Now stores the origin selector on copy and inserts the paste as a sibling immediately after the original element, preserving style inheritance. Falls back to root insertion if the selector can't be matched. * fix(studio): address review — deduplicateIds, native copy, altKey guard - deduplicateIds regex used \b which matched data-composition-id, data-clip-id, etc. Switch to lookbehind (?<=\s) so only standalone id="..." attributes are rewritten. Add test pinning this. - Ctrl+C no longer calls preventDefault() before confirming there's a selected element. Native browser copy (text selections outside inputs) is preserved when nothing is selected in the Studio. - Add !event.altKey guard on C/V/X to avoid intercepting Cmd+Alt+V (paste-as-plain-text) and similar OS gestures. - Remove no-op .replace(/"/g, '"') flagged by CodeQL. * fix(studio): address review round 2 — Cmd+X guard, data-start scope, revert drive-by - Cmd+X now pre-checks selection state before preventDefault, mirroring the Cmd+C fix. Native cut preserved when nothing is selected. - handleCut returns Promise<boolean> so the caller can gate on it. - data-start rewrite scoped to the outermost opening tag only, so nested clip timing is preserved on paste. - Removed system clipboard write (cross-tab paste unsupported, in-memory ref is the only read path). - Reverted the reloadPreview drive-by (setRefreshKey→location.reload); the perf branch (#895) handles this properly via refreshPlayer(). * perf(studio): use lightweight iframe.src reload instead of Player teardown Content refreshes (paste, move, resize, delete, asset drop) previously triggered setRefreshKey which changed the Player's React key, causing full web-component destruction + iframe teardown + crossfade animation + re-initialization of all event listeners and asset polling. Now NLELayout intercepts refreshKey changes and calls refreshPlayer() which just appends a cache-busting _t param to the iframe src. The Player web component stays alive, event listeners persist, and the reload is ~10x faster with no "waiting for media" flash. Key-based teardown is preserved for actual structural changes (project switch, composition drill-down via directUrl change). * perf(studio): skip asset-loading overlay on content refreshes The asset-loading overlay ("Preparing preview assets") polled for video/audio readyState on every iframe load, including content refreshes from paste/move/resize. On reloads the browser serves assets from cache so they resolve near-instantly — the overlay just created a disruptive flash. Now skips the polling on subsequent loads (loadCountRef > 1), only showing it on the initial cold load. |
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acd141b2ae |
feat(studio): add Ctrl+C/V/X copy/paste for timeline clips and DOM elements (#894)
* feat(studio): add clipboard payload types and ID deduplication * feat(studio): add Ctrl+C/V/X copy/paste for timeline clips and DOM elements * fix(studio): use duck-typing for cross-frame element access in clipboard Elements from the preview iframe are from a different window context, so `el instanceof HTMLElement` always returns false. Use `"outerHTML" in el` instead to correctly detect elements across frame boundaries. * fix(studio): preserve playhead position after paste reloadPreview() used location.reload() which bypassed the NLELayout saveSeekPosition effect, causing the playhead to reset to 0:00 after paste. Switch to setRefreshKey which triggers the effect and restores the seek position after the iframe reloads. * fix(studio): paste DOM elements as siblings, not at composition root DOM element paste was inserting at the composition root, losing the parent context that provides CSS styles and positioning. Now stores the origin selector on copy and inserts the paste as a sibling immediately after the original element, preserving style inheritance. Falls back to root insertion if the selector can't be matched. * fix(studio): address review — deduplicateIds, native copy, altKey guard - deduplicateIds regex used \b which matched data-composition-id, data-clip-id, etc. Switch to lookbehind (?<=\s) so only standalone id="..." attributes are rewritten. Add test pinning this. - Ctrl+C no longer calls preventDefault() before confirming there's a selected element. Native browser copy (text selections outside inputs) is preserved when nothing is selected in the Studio. - Add !event.altKey guard on C/V/X to avoid intercepting Cmd+Alt+V (paste-as-plain-text) and similar OS gestures. - Remove no-op .replace(/"/g, '"') flagged by CodeQL. * fix(studio): address review round 2 — Cmd+X guard, data-start scope, revert drive-by - Cmd+X now pre-checks selection state before preventDefault, mirroring the Cmd+C fix. Native cut preserved when nothing is selected. - handleCut returns Promise<boolean> so the caller can gate on it. - data-start rewrite scoped to the outermost opening tag only, so nested clip timing is preserved on paste. - Removed system clipboard write (cross-tab paste unsupported, in-memory ref is the only read path). - Reverted the reloadPreview drive-by (setRefreshKey→location.reload); the perf branch (#895) handles this properly via refreshPlayer(). |
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4212a28312 | chore: release v0.6.11 v0.6.11 | ||
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c003ef67e9 |
fix(player): pause parent audio proxy on seek to prevent stutter loop (#890)
## Summary - `seek()` only called `seekAll()` under parent audio ownership, leaving the `<audio>` proxy playing while the timeline froze at the new seek target. - The periodic `mirrorTime` drift-correction (`parent-media.ts`) would then yank `currentTime` back to the timeline position every ~80ms of accumulated drift, producing an audible stutter loop while the video frame stayed frozen. - Fix: make `seek()` symmetric with `pause()` — pause the parent proxy before seeking it. ## Repro 1. Use the player in an environment where the runtime posts `media-autoplay-blocked` (mobile / autoplay-restricted contexts), promoting audio ownership to `"parent"`. 2. Start playback with audio. 3. Click anywhere on the scrubber while playing. 4. Before: audio stutters in a short loop while the video frame is frozen. 5. After: audio cleanly pauses at the new seek position. ## Test plan - [x] Added regression test \`seek() while playing pauses parent proxy (prevents mirrorTime stutter loop)\` in \`hyperframes-player.test.ts\`. - [x] \`pnpm --filter @hyperframes/player test\` — 110/110 pass. - [ ] Manual repro on a device where ownership flips to \`parent\`. 🤖 Generated with [Claude Code](https://claude.com/claude-code) |
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1e05d78378 |
fix(engine): enable browser pool and deduplicate concurrent Chrome launches (#889)
## Summary
- **Enable browser pool by default** (`enableBrowserPool: true`) — parallel capture workers now share a single Chrome process via reference-counted pool instead of each spawning their own (~256MB each). A 6-worker render drops from 7+ browser parent processes to 1 shared pool.
- **Add launch-promise deduplication** in `acquireBrowser` — when multiple workers race into the pool simultaneously (via `Promise.all`), they await the same launch Promise instead of each triggering a separate Chrome spawn. Same pattern as the existing `_autoBrowserGpuModeCache` for GPU probes.
- **Add `connected` health check** on pool hit — if Chrome crashes mid-render, subsequent acquires detect the dead browser and launch fresh instead of returning a stale reference.
- **Add `drainBrowserPool()`** for explicit cleanup between independent render jobs.
- **CLI studio server** now uses the shared pool instead of its own redundant `enableBrowserPool: false` singleton, so thumbnail generation shares Chrome with render workers.
## Problem
The engine had a reference-counted browser pool (`browserManager.ts:73-75`) but it was **disabled by default** (`enableBrowserPool: false`). This meant:
1. **Every parallel worker spawned its own Chrome** — a `--workers 6` render launched 7+ independent Chrome processes (1 probe + 6 workers), each ~256MB.
2. **The pool had a race condition** — even if manually enabled, concurrent workers calling `acquireBrowser()` via `Promise.all` could all see `pooledBrowser === null` before the first launch completed, spawning N Chromes instead of 1.
3. **No crash recovery** — if Chrome died, the pool still held the dead reference. Subsequent acquires got a disconnected browser.
4. **CLI studio server ran its own singleton** — `studioServer.ts` explicitly set `enableBrowserPool: false` and managed a separate browser, so thumbnails and renders could never share.
Over time, orphaned Chrome processes accumulated across renders and previews. We observed **344 headless Chrome processes** consuming **569% CPU and 20% memory** on a dev machine.
## Before / After (6-worker parallel render)
| Metric | Before (pool off) | After (pool on) |
|--------|-------------------|-----------------|
| Browser parent processes | 7+ (1 probe + 6 workers) | **2** (1 GPU probe + 1 shared) |
| Total Chrome processes (with helpers) | 40-50+ | **14** |
| Memory during capture | ~20%+ | **4.6%** |
| Render time (1200 frames, 30fps) | ~64s | **53s** (~17% faster) |
| Post-render orphans | Accumulated over time | **0** |
## Changes
| File | Change |
|------|--------|
| `engine/src/config.ts` | `enableBrowserPool` default `false` → `true` |
| `engine/src/services/browserManager.ts` | Extract `launchBrowser()`, add `_pooledBrowserLaunchPromise` dedup, add `connected` check on pool hit, add `drainBrowserPool()` and `_resetBrowserPoolForTests()` |
| `engine/src/index.ts` | Export `drainBrowserPool` |
| `engine/src/services/browserManager.test.ts` | Pool dedup and drain tests |
| `cli/src/server/studioServer.ts` | Remove `enableBrowserPool: false` override — thumbnails now share the pool |
| `producer/src/services/browserManager.ts` | Re-export `drainBrowserPool` |
## Backward compatibility
- `PRODUCER_ENABLE_BROWSER_POOL=false` env var disables pooling (same as before).
- Callers passing `{ enableBrowserPool: false }` explicitly still get isolated browsers.
- Tests that set `enableBrowserPool: false` in their config fixtures continue to work.
## Test plan
- [x] Engine tests pass (597/597)
- [x] Producer tests pass (406/407, 1 pre-existing flaky test in `pngDecodeBlitWorkerPool`)
- [x] Build passes (lint, format, typecheck all green via lefthook pre-commit)
- [x] Manual render: `shortform-financial` with `--workers 6` → 1200 frames in 53s, 0 orphaned Chrome processes after completion
- [x] Process monitoring during render confirmed 2 browser parents (1 GPU probe + 1 shared pool) instead of 7+
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d3c32a0b4d | chore: release v0.6.10 v0.6.10 | ||
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a79d8acd7a |
fix: ship lottieReadiness + guard studio import.meta.env for non-Vite consumers (#861)
## Summary
Two small fixes that together make `@hyperframes/core` + `@hyperframes/studio` consumable from non-Vite hosts (Next.js / Turbopack, Node, etc.).
### 1. `core`: ship the missing `lottieReadiness` module
The `"./runtime/lottie-readiness"` subpath export in `@hyperframes/core` claims to ship at `./dist/runtime/adapters/lottieReadiness.js`, but that file is missing from the published 0.6.6 and 0.6.7 tarballs. Consumers that import the subpath — most notably `@hyperframes/studio`'s `Player.tsx` — fail to resolve the module and break downstream builds.
**Root cause:** `packages/core/tsconfig.json` excludes `src/runtime` (those files run in a browser context and are bundled separately into the IIFE artifact). Since nothing in the included tree imports `lottieReadiness.ts`, tsc never emits a compiled output, and the file silently goes missing from the publish.
**Fix:** `lottieReadiness.ts` is a pure helper — takes `unknown`, returns `boolean`, no DOM/`window` dependencies. It doesn't belong in `src/runtime/` in the first place; the runtime-exclude rule rightly caught it. Move it to `src/lottieReadiness.ts` so the standard library build picks it up.
The subpath export **name** stays `"./runtime/lottie-readiness"` — only the exports map's underlying file path changes — so existing consumers (studio) don't need any code change.
### 2. `studio`: guard `import.meta.env` for non-Vite hosts
`packages/studio/src/components/editor/manualEditingAvailability.ts` unconditionally reads `import.meta.env`. That's a Vite-only extension; in plain ESM hosts (Next.js / Turbopack, Node, jest in some configs) `import.meta` exists but `import.meta.env` is `undefined`. Reading any property off undefined throws at module evaluation time, so the studio fails to load the moment a non-Vite host imports anything from `@hyperframes/studio`.
Guarded the read so the module is loadable everywhere; outside Vite, every flag falls back to its declared default, preserving Vite behavior.
### Changes
**core:**
- `mv src/runtime/adapters/lottieReadiness.{ts,test.ts}` → `src/`
- Update `src/runtime/adapters/lottie.ts` re-export path
- Update `package.json` + `publishConfig.exports` to point at the new dist path (`./dist/lottieReadiness.{js,d.ts}`)
**studio:**
- One-line guard in `manualEditingAvailability.ts:30` with explanatory comment
## Test plan
- [x] `pnpm typecheck` (core, studio) — clean
- [x] `bun run build` (core) — `dist/lottieReadiness.{js,d.ts}` now present
- [x] `bunx vitest run` (core) — 862/862 passing
- [x] `bun run typecheck` (studio) — clean, resolves moved file via subpath export
- [ ] Publish 0.6.8 and verify the tarball contains `dist/lottieReadiness.js`
- [ ] Verify a non-Vite ESM consumer (e.g. a Next.js / Turbopack app) imports `@hyperframes/studio` without `import.meta.env` errors
🤖 Generated with [Claude Code](https://claude.com/claude-code)
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3336fddd41 |
fix(studio): handle full HTML doc sub-compositions in preview (#885)
## Summary - **Root cause**: `buildSubCompositionHtml` assumed all sub-compositions used `<template>` wrappers. Full HTML document blocks (like `north-korea-locked-down` and `nyc-paris-flight`) were nested as-is inside `<body>`, producing invalid HTML with nested `<html>` and `<head>` elements - **Effect**: the composition's `<style>` tags ended up misplaced inside `<body>`, and `<img src="assets/...">` paths failed to resolve when combined with the injected `<base>` tag — resulting in missing map images in the Studio sub-composition preview - **Fix**: detect full HTML documents and properly extract head styles/scripts and body content into separate sections, producing valid HTML where CSS lands in `<head>` and relative asset paths resolve correctly ## Test plan - [x] New unit test: full HTML document composition produces clean output without nested `<html>` in `<body>` - [x] Existing test: `<template>`-wrapped compositions still rewrite `../` asset paths correctly - [x] Visual verification: captured sub-composition preview frames before/after fix — maps now render correctly for both blocks - [x] Manual: open a project with `north-korea-locked-down` or `nyc-paris-flight` as a sub-composition in Studio, click on the sub-comp in the timeline → map should be visible |
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82c9b6b5ea | chore: release v0.6.9 v0.6.9 | ||
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395cbaf3f5 | fix(studio): make optional file reads explicit (#883) | ||
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4b501762e4 | chore: release v0.6.8 v0.6.8 | ||
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58a370939c |
fix(studio): fix seek after code edit, improve scrub perf, add click-to-source (#881)
* feat(studio): html-backed motion panel — persist GSAP motion to element attributes Re-architects the motion panel to store GSAP motion data as a JSON data attribute (data-hf-studio-motion) on each element instead of a .hyperframes/studio-motion.json sidecar file. Follows the same pattern as position/resize/rotation edits: write to DOM, build patches, persist to HTML source via commitPositionPatchToHtml. Render pipeline: the studioPositionSeekReapplyRuntime now queries [data-hf-studio-motion] elements after each seek, parses their JSON, builds a GSAP timeline, and seeks it to the current frame time. Studio preview: motion reapply is integrated into the manual edits seek hook (reapplyPositionEditsAfterSeek). useManifestPersistence is slimmed to only handle save queue and seek hooks. * fix(studio): address PR review — html-escape attrs, cache timeline, migrate sidecar, add tests Blocker: JSON attribute values are now HTML-entity-escaped before being written into source HTML. Read-back unescapes automatically. Perf: motion timeline is cached between seeks at render — only rebuilt when the concatenated JSON key changes, not on every frame. Migration: on mount, empties legacy .hyperframes/studio-motion.json so the legacy render script no-ops. Tests: 46 new tests for motion read/write/clear round-trips, JSON attribute escaping, and source patcher entity handling. Nits: removed unused activeCompositionPath param; tightened htmlCompiler attribute substring check. * fix(studio): fix seek after code edit, improve scrub performance, add click-to-source Three issues addressed: 1. **Seek breaks after code edit**: During crossfade refreshes the retiring Player's cleanup unconditionally nulled `iframeRef.current`, clobbering the reference the new Player had already assigned. Guard the cleanup to only clear the ref when it still points to the retiring Player's own iframe. 2. **Scrubber/timeline drag jank**: Every pointermove during a drag called the full seek pipeline (adapter.seek + setCurrentTime + React re-render cascade). RAF-throttle the expensive onSeek call during drags while keeping slider and playhead visuals updated on every pointer event for instant feedback. 3. **Click-to-source**: Clicking an element in the preview now switches to the Code tab, opens the element's source file, and scrolls the editor to the element's opening tag. Uses the existing `findTagByTarget` source patcher to locate the element by id/selector in the HTML source. * fix(studio): address PR review — gate click-to-source, fix fetch race, guard refs - Gate click-to-source on Alt/Option+click so it doesn't steal the Code tab on every preview click, conflicting with select-to-inspect workflow - Fix fetch race in openSourceForSelection: AbortController cancels the previous in-flight fetch, monotonic request ID prevents stale responses from applying the wrong file/offset - Guard the callback-ref branch in Player cleanup (no-op — can't read back from a callback ref to check identity, and the path is unreachable today since the ref is always a MutableRefObject) - Import SidebarTab type instead of duplicating the literal inline |
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f84cc492de |
perf(engine): faster shader transitions via page-side WebGL compositing (#832)
* fix(cli): prefer puppeteer cache + numeric version sort (staff review) Two correctness fixes from PR #821 self-review: 1. Cache priority order. Previous order was hyperframes-managed cache → puppeteer cache. HF cache is pinned to CHROME_VERSION (131-era) which lags 17+ releases behind upstream; if a user separately installed a newer chrome-headless-shell via @puppeteer/browsers install, the CLI would silently hand engine the older HF-cache binary while engine's own resolveHeadlessShellPath would have picked the newer one. Flip the priority so puppeteer cache wins, matching engine semantics. 2. Numeric (not lexicographic) version sort. `readdirSync.sort().reverse()` over names like `linux-148.0.7778.97` and `linux-99.0.6533.123` would return `linux-99...` first because character '9' outranks '1'. Parse each name into integer segments and compare them numerically. Tests: add both-caches-populated and linux-148-beats-linux-99 cases. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> * perf(engine): page-side compositing for shader transitions (opt-in spike) Add an opt-in `--page-side-compositing` flag (CLI) backed by a new engine config field `enablePageSideCompositing` and env var `HF_PAGE_SIDE_COMPOSITING`. When set, SDR shader-transition compositions skip the Node-side layered blend (the hf#677 chain) and instead run the shader inside Chrome via a page-side WebGL canvas; the engine then captures ONE opaque RGB frame per output frame via the existing streaming capture path. This is the strongest non-beginFrame perf lever for Mac users, who cannot take the beginFrame `~5×` path (Chromium structural limit, crbug.com/40656275). Stacks on top of the hf#677 1.95× baseline. Default OFF — existing fixture pins (byte-exact MP4 output) are preserved. Opt-in path is intentionally PSNR-pinned, not byte-equal (WebGL is f32; Node is f64). HDR content forces the existing layered path regardless. Implementation: - engine: new `EngineConfig.enablePageSideCompositing` (default false). - producer/fileServer: new `HF_PAGE_SIDE_COMPOSITING_STUB` early-page script injected into the served HTML head when the flag is on. - producer/renderOrchestrator: when the flag + no HDR + no png-sequence, route SDR transitions through the streaming path instead of the layered HDR stage. - shader-transitions: new `engineModePageComposite.ts` installs a fullscreen WebGL compositor overlay and wraps `window.__hf.seek` so each seek inside a transition window captures both scenes via the Chromium `drawElementImage` API to GL textures, runs the fragment shader, and displays the composited result on the overlay canvas. The engine takes one screenshot per frame and sees the composited overlay. - cli: new `--page-side-compositing` flag sets `HF_PAGE_SIDE_COMPOSITING=true` before producer load. - scripts/page-side-compositing-smoke: bundled-CLI smoke that renders a representative fixture with and without the flag, validates the canary strings are in the shipped bundles, and writes a wall-time pair. Determinism trade documented in the engine config doc-comment. The smoke script enforces the bundled-CLI validation discipline from prior perf work (see internal feedback note `validate_bundled_cli_not_dev_path`). Runtime requirement: Chromium's `CanvasDrawElement` feature (already enabled by the engine's `--enable-features=CanvasDrawElement` launch flag). When the runtime feature is unavailable, the page-side installer logs a warning and falls back to opacity-flip mode — the engine still takes the streaming path; the transition window degrades to a hard scene swap. Vance will validate on Mac Chrome where the feature is supported. Co-Authored-By: Vai <vai@heygen.com> * fix(shader-transitions): use html2canvas for page-side compositor capture The original drawElementImage approach fails in engine render mode because the virtual-time shim prevents Chromium from generating paint records for cloned elements. drawElementImage requires a cached paint record from the browser's compositor — clones created at capture time never receive one because (a) shimmed rAFs deadlock inside the seek wrapper, (b) original rAFs don't produce real paints under virtual-time control, and (c) layoutsubtree canvases don't apply CSS stylesheet rules to children. Switch scene capture to html2canvas (foreignObjectRendering: false), the same JS-based renderer already used by the preview-mode fallback path in capture.ts. html2canvas reads computed styles and renders via its own canvas drawing pipeline with no dependency on the browser paint cycle. Also fixes: - Engine seek must return the result so Puppeteer awaits async seek promises (frameCapture.ts). - GSAP opacity cache: compositor must restore scene opacity before seek, not after — GSAP caches inline values and skips re-writes. - Support check gates on WebGL availability, not drawElementImage. Perf: 15-scene shader-perf fixture (28s, 14 transitions, 30fps) Baseline (Node-side layered): 137s Page-side (html2canvas+WebGL): 33s → 4.1× speedup Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * refactor(shader-transitions): simplify review fixes for page-side compositor - Use uploadTexture (zeroes canvas backing store after upload) to prevent ~2.2GB transient memory pressure across 280 html2canvas calls per render - Add ignoreElements + stabilizeTransformedBoxShadows to html2canvas call, matching the preview-path capture.ts behavior - Parallelize from/to scene captures with Promise.all - Wrap post-capture render in try/finally so opacity is always restored - Fix WebGL context leak in isPageSideCompositingSupported probe - Remove dead ResolvedTransition.index field - Export stabilizeTransformedBoxShadows from capture.ts Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * fix(producer): unify page-side compositing gating and Docker forwarding Addresses three issues from staff review: 1. ignoreElements filter stripped all in-scene canvases (Chart.js, D3, p5.js) — narrowed to data-no-capture only since the compositor canvas is a body sibling never in the scene subtree. 2. Docker mode silently dropped --page-side-compositing — thread pageSideCompositing through DockerRenderOptions/buildDockerRunArgs with regression tests. 3. Fragmented gating across 4 independent sites could disagree: - Stub injection gated only on cfg flag (leaked into HDR/alpha) - Probe-created fileServer never got the stub - needsAlpha (WebM/MOV) not excluded from the gate - WebGL-unavailable fallback claimed layered path would run but orchestrator had already disabled it Fix: compute stub injection at the same site as the layered-bypass decision (after hasHdrContent is known), using addPreHeadScript on the already-running fileServer. Single predicate now gates both decisions, including !needsAlpha. Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * perf(engine): two-phase drawElementImage capture for page-side compositing Replace html2canvas with native drawElementImage for scene capture in the page-side compositor. drawElementImage reads from the browser's own paint cache, giving pixel-identical output to the preview path. The blocker was that cloned elements inside layoutsubtree canvases have no cached paint record under virtual time — the compositor only paints when explicitly triggered. Fix: split the seek+composite into two phases with an engine-forced paint between them. Phase 1 (seek wrapper, page-side): - GSAP seek positions the timeline - Clone FROM/TO scenes into visible layoutsubtree staging canvases - Set window.__hf_page_composite_pending flag Engine paint force (frameCapture.ts): - Detect pending flag after seek returns - Fire micro Page.captureScreenshot (1x1 clip) via CDP to force the browser compositor to paint all visible elements including staging canvas children Phase 2 (page.evaluate, page-side): - drawElementImage reads the now-valid paint records - Upload textures to WebGL, run shader, show GL overlay Key insight: staging canvases must be visible (not opacity:0) for the browser to paint their children. They sit at z-index:-9998, behind the main DOM and covered by the GL overlay during transitions. Perf: 15-scene fixture (28s, 14 transitions, 30fps): Baseline (Node-side layered): 137s html2canvas + WebGL: 33s (3.7×) drawElementImage + WebGL: 21s (6.6×) Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * perf(engine): optimize two-phase compositor hot path - uploadTextureSource instead of uploadTexture: eliminates ~2.3GB of canvas buffer alloc/dealloc churn (persistent staging canvases don't need the one-shot zeroing behavior) - Fold hasPending check into seek page.evaluate: eliminates one CDP round-trip per frame (~700 unnecessary IPC calls on non-transition frames) - Fix renderShader error handling: on failure, leave source scenes visible as fallback instead of hiding both scenes + GL overlay (which produced black frames) - Move mutable state declarations above resolveComposite to prevent TDZ risk on refactor Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * fix(engine): staff review — staging cleanup, pending flag, beginFrame guard - Clear staging canvas children when leaving transition window (prevents visible clone bleed-through on transparent compositions) - Clear __hf_page_composite_pending on all resolveComposite exit paths - Guard micro-screenshot paint force against beginFrame mode (CDP Page.captureScreenshot conflicts with beginFrame compositor control) - Update CLI flag description: document video/canvas limitation, remove stale PSNR claim Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * feat(engine): default-on page-side compositing for SDR shader transitions Page-side compositing is now enabled by default for SDR shader-transition renders without video content. The 6.6× speedup applies automatically — no flag needed. Auto-disables when: - HDR content detected - Alpha output (WebM/MOV/PNG-sequence) - Composition contains <video> elements (cloneNode loses playback state) - beginFrame capture mode (Linux headless) Use --no-page-side-compositing to force the Node-side layered path. Changes: - Engine config: enablePageSideCompositing defaults to true - CLI: flag default flipped to true; --no-page-side-compositing disables - Orchestrator: added composition.videos.length === 0 gate - Docker: forwards --no-page-side-compositing when explicitly disabled - Config tests updated for new default Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * feat(engine): support video elements on page-side compositing fast path Three-phase capture protocol lets shader transitions render video scenes without falling back to the slow Node-side layered pipeline: 1. Seek → compositor records transition metadata, sets pending flag 2. onBeforeCapture → video frame injector updates <img> replacements 3. prepare → cloneNode picks up current video frames, img.decode() awaits 4. micro-screenshot → forces browser to paint cloned elements 5. resolve → drawElementImage reads paint records, shader composites Key changes: - Remove `composition.videos.length === 0` gate from orchestrator - Split compositor resolve into prepare (clone) + resolve (shader) - Move onBeforeCapture before compositor prepare in frameCapture.ts - Await img.decode() on cloned data-URI images to prevent stale frames - Stop manipulating scene opacity in compositor (GL canvas overlay suffices) - Add gsap.set declaration for shader-transitions ambient types - Add video_missing_timing_attrs lint rule for <video> without id/data-start/data-end Performance: compositions with video now render at 7.5s (6 workers) instead of 2m38s on the layered path. Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * fix(core): auto-inject data-start on video/audio so frame extraction works without explicit attrs The timing compiler now injects data-start="0" on <video> and <audio> elements that lack it. This makes discoverMediaFromBrowser() find the element (it queries video[data-start]), so the frame extraction pipeline activates automatically. Videos "just work" without requiring authors to add data-start, data-end, or id attributes. Also removes the video_missing_timing_attrs lint rule — the compiler handles the missing attributes automatically, so the lint rule would only false-positive. Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * feat(core): add data-hf-auto-start sentinel on auto-injected video timing Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * feat(producer): add discoverVideoVisibilityFromTimeline for runtime video discovery Seeks the GSAP timeline in Puppeteer to discover when each video's parent scene is visible (opacity > 0). Uses coarse sampling at 100ms steps followed by binary search refinement to frame-level precision (1/60s). Only processes videos with the data-hf-auto-start sentinel so author-specified timing is never overridden. Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * feat(producer): integrate runtime video visibility discovery into probe stage Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * fix(producer): trigger browser probe for auto-start videos, remove debug logging The probe stage was skipping browser launch when composition duration was already known, which meant discoverVideoVisibilityFromTimeline never ran. Now needsBrowser also checks for data-hf-auto-start sentinel in compiled HTML. Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * fix(scripts): use mkdtempSync for smoke test work directory Replaces hardcoded /tmp/hf-page-side-smoke with a unique temp directory via mkdtempSync to resolve CodeQL "insecure temporary file" alert. Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> * style: format smoke test script Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.7 (1M context) <noreply@anthropic.com> Co-authored-by: Vai <vai@heygen.com> |
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fb9002598d |
Merge pull request #877 from heygen-com/ci/fast-fail-and-preflight-gate
ci: fast-fail regression matrix + preflight gate before expensive jobs |
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00984133fc |
ci(preflight): extract preflight steps into a composite action
Same 5-step preflight body (setup-bun, setup-node, cache, install, lint, format:check) was duplicated across 5 workflows. Move it to .github/actions/preflight/action.yml so future tweaks (adding typecheck, swapping the cache key, etc.) are a single-file change. Net diff: +33 / -65. Addresses the "shared preflight" follow-up Vai called out on #877. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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e29d7db331 |
ci(preflight): cache ~/.bun/install/cache keyed on bun.lock
Each of the 5 preflight gates was doing a cold bun install, costing ~30-60s of redundant install time per PR. Cache the install dir keyed on bun.lock so subsequent preflights (and reruns) hit warm. Addresses Vai's review on #877. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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18e49cb69c |
ci: fast-fail regression matrix + preflight gate before expensive jobs
Don't burn 60+ runner-minutes on regression shards, perf shards, preview-parity, Windows renders, or catalog-preview renders when the PR is already failing lint or format. - regression: matrix fail-fast: false → true (first failing shard cancels the rest), plus a new preflight (lint + format:check) job gating regression-shards. - player-perf: matrix fail-fast → true, plus preflight gate. - preview-regression, windows-render, catalog-previews: preflight gate added; heavy jobs now needs: [..., preflight]. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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4fd9520a90 |
feat(studio): per-composition render button in compositions tab (#874)
* feat(studio): add per-composition render button in compositions tab Thread composition path through the full render pipeline so individual compositions can be rendered independently from the studio UI. - Add download icon button on each comp card (visible on hover) - Accept `composition` field in POST /projects/:id/render - Pass composition as `entryFile` to the producer's createRenderJob - Make the Export button in the Renders panel composition-aware (renders the active composition instead of always index.html) * fix(studio): make composition render buttons always visible The hover-only opacity made them undiscoverable. * fix(studio): address PR review — CLI adapter, path guard, a11y, tests, settings sync - Wire `composition` → `entryFile` in CLI studio adapter (studioServer.ts) so `hyperframes preview` renders the correct composition, not always index.html - Add path-traversal guard: reject composition paths that resolve outside projectDir - Add `aria-label` to the icon-only render button for screen readers - Add 4 tests: forwarding, empty/missing → undefined, path-traversal → 400 - Persist render settings (format/quality/fps) to localStorage so comp card buttons use the same settings as the Export panel * refactor(studio): extract render settings persistence to own module Move getPersistedRenderSettings/persistRenderSettings out of RenderQueue.tsx into renderSettings.ts so code-splitting the component doesn't drag along the helper. |
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9b23ccf665 |
feat(studio): html-backed motion panel (#873)
## Summary
Re-architects the studio motion panel to persist GSAP motion data directly in HTML element attributes instead of a `.hyperframes/studio-motion.json` JSON sidecar file. Same pattern as position/resize/rotation edits.
### Before
```
MotionPanel → commitStudioMotionManifestOptimistically()
→ writes .hyperframes/studio-motion.json
→ applyStudioMotionManifest(doc, manifest)
```
### After
```html
<div id="hero" data-hf-studio-motion='{"start":0.5,"duration":1,"ease":"power3.out","from":{"opacity":0,"y":40},"to":{"opacity":1,"y":0}}'>
```
```
MotionPanel → writeStudioMotionToElement(element, motion)
→ buildMotionPatches(element)
→ commitPositionPatchToHtml(selection, patches)
```
## What changed
- **studioMotionOps.ts** — Added `readStudioMotionFromElement()`, `writeStudioMotionToElement()`, `clearStudioMotionFromElement()` for attribute-based CRUD
- **studioMotion.ts** — Added `applyStudioMotionFromDom()` that reads motion from DOM attributes and builds GSAP timeline (kept `applyStudioMotionManifest` for render script compat)
- **manualEditsDom.ts** — Added `buildMotionPatches()` / `buildClearMotionPatches()`, integrated motion into `reapplyPositionEditsAfterSeek()`
- **useDomEditCommits.ts** — Rewrote `handleDomMotionCommit` / `handleDomMotionClear` to use HTML patching instead of manifest persistence
- **useManifestPersistence.ts** — Removed all motion manifest state (~200 lines): `studioMotionManifestRef`, `commitStudioMotionManifestOptimistically`, `applyStudioMotionToPreview`, motion SSE handler
- **App.tsx** — Reads motion from element attribute (`readStudioMotionFromElement`) instead of manifest ref
- **manualEditsRenderScript.ts** — Extended `studioPositionSeekReapplyRuntime` to rebuild GSAP motion timeline from `data-hf-studio-motion` attributes after each seek, including CustomEase support
- **htmlCompiler.ts** — Trigger seek-reapply script injection on `data-hf-studio-motion=` attributes
## Benefits
- No sidecar file — motion survives git, copy-paste, and manual HTML editing
- Undo/redo works via HTML source history (same as position edits)
- Renders correctly via CLI — seek-reapply script handles motion timeline rebuild
- Simpler architecture — one persistence path for all studio edits
## Test plan
- [x] `bun run build` passes
- [x] Pre-commit hooks pass (lint, format, typecheck)
- [ ] Set motion on element in Studio → `data-hf-studio-motion` attribute appears in HTML source
- [ ] Reload page → motion persists and plays correctly
- [ ] Clear motion → attribute removed, element returns to original state
- [ ] Undo/redo motion changes
- [ ] Render via CLI → motion visible in rendered video
- [ ] Seek animation → motion timeline re-syncs correctly
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adeb92ecb7 |
feat(cli): add --no-open flag to preview and play (#871)
Add --no-open boolean flag to both commands via citty's built-in boolean negation (--no-open sets args.open to false). - preview.ts: guard all 4 open() calls with args.open check - play.ts: guard the open() call with args.open check - Default is true (open browser), preserving existing behavior Closes #1 Co-authored-by: AnoKno <122017492+AnoKno@users.noreply.github.com> |
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4bc24068f4 |
Merge pull request #864 from heygen-com/05-15-ci_codeql_bump_codeql-action_v3_v4_to_address_deprecation
ci(codeql): bump codeql-action v3 → v4 |
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8e0cfc33a7 |
fix(engine): preserve video frame replacement geometry (#838)
* fix(engine): preserve video frame replacement geometry * test(producer): cover video overlay stretch regression * fix(engine): always pass clip to Page.captureScreenshot Without an explicit clip, Chrome can resolve replaced-element sizing differently at dpr=1 when full-bleed absolute videos interact with overlay layers — producing anisotropic frame stretching on some compositor paths. Always passing clip with scale=dpr (including 1) ensures geometry is locked to the measured viewport dimensions. Credit: brian-t-allen (#837) * test(producer): regenerate style-9-prod baseline for always-clip capture path The always-clip change in screenshotService.ts routes Chrome through a different compositor capture path at dpr=1, producing different video frame compression artifacts. Regenerated inside Dockerfile.test to match CI environment. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.6 <noreply@anthropic.com> |
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436aebdc13 | ci(codeql): bump codeql-action v3 → v4 to address deprecation |