* build: typecheck the test suites
Tests were in no TypeScript program: no tsconfig included tests/** or
packages/*/tests/**, and bun strips types without checking them, so a
fixture could drop a required field and keep passing until something
read it.
@types/bun moves to the root because it was installed per package only,
and #cli-tests/* joins the paths the root config already carries.
* test: fix the type errors the test suites were hiding
Typechecking the tests turned up 1123 errors. Most were ordinary
strictness, but some were real: `NodeChange` bound to Figma's plugin
typings rather than the Kiwi codec in thirteen .fig tests,
materializeInstance was called with six arguments against five so the
blobs and source children were dropped, CanvasKit pixels were written
to a plain object that never reached WASM, and assertions were made
through accessors that do not exist, so they asserted nothing.
Fixtures that had quietly lost a required field now carry it, nullable
results are narrowed through the existing expectDefined helper rather
than assumed, and stand-ins for CanvasKit and the editor go through one
named helper instead of an unexplained cast at each site.
No test was deleted, skipped, or weakened, and no `any`, non-null
assertion, or ts-expect-error was introduced.
* docs: record what typechecking the tests established
Pins the app program's global types with an assertion rather than a
note, since an unpinned types list lets any root @types package decide
which platform src/** is judged against.
The two environment faults that look like code regressions — Vite's
dependency pre-bundle outliving a package rebuild, and heavy .fig
suites failing under load — go to the development docs, where an
explanation belongs.
* fix: align @types/bun and keep node types resolvable when extended
The root manifest declared a newer @types/bun than every package, which
check:monorepo rejects, and pinning the app program's types left them
unresolvable from a config that extends this one out of tree.
* fix: fail the test typecheck when the compiler itself fails
The gate matched diagnostics by substring, so a compiler or config
failure that named no test file printed a pass while having checked
nothing. Diagnostics are now split by whether they name a file: an
unscoped one is the run failing and stops the gate, a test file's is a
finding, and a source file's stays out by design.
Also drops the parameter planComponentConstruction never read, and
makes the inner-shadow verification script exit non-zero when it
renders no image instead of logging and succeeding.
* chore: merge master into tests-typecheck
* fix(desktop): allow reading recent .fig files for thumbnails
The recent-files thumbnail loader stats a .fig file, opens it, and seeks
and reads its thumbnail entry, but the desktop capability granted none of
those fs commands, so the WebView rejected the first call ("fs.stat not
allowed") and no thumbnail ever loaded. Grant stat and open with the same
path scope as read-file, plus the handle commands they lead to.
A native spec runs the loader's command sequence on a real .fig file.
* test(desktop): check the bytes the recent-file thumbnail read returns
The native spec discarded the read result, so a read returning nothing would pass. Assert the zip signature and the byte count the fs plugin appends, through a bytes variant of the native invoke helper.
* refactor!: move shared primitives below dom-css and core
dom-css depended on core for color conversion, base64 helpers, text
direction, and web-font assets, so core could not use dom-css and every
caller special-cased HTML and Tailwind output.
Color conversion and management, base64 helpers, and text/layout
direction now live in scene-graph under `color`, `bytes`, and
`text-direction`. dom-css takes web-font resolution as an injected
`fonts` option and owns the font face types, so it depends only on
scene-graph and core can depend on it.
BREAKING CHANGE: `@open-pencil/core/color` and `@open-pencil/core/bytes`
are removed, and the direction helpers are no longer exported from
`@open-pencil/core/text`; import them from `@open-pencil/scene-graph`
subpaths. `exportHTMLBundle` takes a font resolver in `fonts` instead of
`'assets'`.
* fix(tools): import color parsing from scene-graph in visual bisect
* fix(mcp): declare the scene-graph dependency
MCP imports `@open-pencil/scene-graph/bytes` since base64 helpers moved
there, but only reached scene-graph through core, so isolated installs
and package checks depended on transitive resolution.
* refactor!: use js-base64 directly instead of a base64 wrapper
Base64 helpers had moved into scene-graph only to sit below dom-css,
but they are a thin wrapper over js-base64 and unrelated to the graph;
fig already called js-base64 directly.
Callers use js-base64 and check `isValid` where input comes from outside
(clipboard, imported HTML, tool arguments, the plugin API). A new
`open-pencil/no-hand-rolled-base64` lint rule rejects atob, btoa, and
Buffer Base64 conversions, and AGENTS.md records the convention.
BREAKING CHANGE: `@open-pencil/core/bytes` is removed; use `js-base64`.
* fix(dom-css): keep images with invalid Base64 inline in HTML export
`exportHTMLBundle` accepts documents parsed from outside HTML, and
js-base64 drops characters it cannot decode, so extracting an invalid
image data URL wrote different bytes. Such images now stay inline.
* fix: explain unsupported browsers instead of a blank window
The desktop app on macOS 13 with WebKit older than Safari 17.4 opened an
empty window because startup called Promise.withResolvers, which Vite lowers
nothing for: build.target only rewrites syntax and never polyfills APIs, and
the target itself was an implicit Vite default (#744).
Make the supported baseline explicit in src/app/shell/support/baseline.ts and
feed it to build.target, a lint rule that rejects newer static built-ins in
browser-shipped sources, and the documented system requirements. Replace
Promise.withResolvers with a createDeferred() helper.
Turn src/main.ts into a small gate that checks sentinel features before
dynamically importing the app, so an old engine still evaluates enough code
to render platform-specific update guidance: macOS/Safari via Software
Update, WebKitGTK and WebView2 on Linux and Windows, and each browser's
own update path on the web, with a prefilled bug report link. Render-blocking
errors during the first route are captured through app.config.errorHandler
and shown the same way instead of leaving the window blank.
Desktop facts come from tauri-plugin-os and a webview_version command; the
bundle now declares macOS 13 as its minimum system version.
* build: enforce the browser baseline from compatibility data
Replace the hand-maintained list of built-ins newer than the baseline with
two data-driven checks. The app and browser-shipped packages pin their
TypeScript lib to ES2023, the last edition Chrome 111, Firefox 128 and
Safari 16.4 implement in full, so a newer built-in such as
Promise.withResolvers fails type-checking. Web APIs, which lib.dom does not
version, go through eslint-plugin-compat under oxlint with the same browsers
in settings.browsers, scoped to sources that ship to a browser.
A unit test keeps the oxlint browser list and the tsconfig libs derived from
src/app/shell/support/baseline.ts, so the three cannot drift apart.
* fix: recognise production error codes in the boot observer
Vue passes the error reference URL as the errorHandler info argument in
production builds instead of the development string, so the observer never
classified a setup or render failure as fatal in the shipped app and the
boot-failure notice only appeared on the dev server. Match Vue's exported
ErrorCodes in both forms, and cover the component-setup path in the E2E
spec; the scenario was also verified against a production build.
The Home tab exposes an editor store without a mounted canvas or text editor. Open New design during fixture setup and await actual editor readiness before populating nodes or starting text input. Reuse already-open documents and keep WebDriver input assertions unchanged.
Full check passes. Native WebKit text input, fixture reuse and Settings checks pass (4 tests); Windows-only layer dragging skips on macOS. Upstream Tauri service bridge/teardown warnings remain; this does not claim IME or native clipboard coverage.
- Return native FIG archives as raw IPC responses instead of JSON byte arrays
- Decode the response as an ArrayBuffer and cover the binary contract
- Prevent large desktop exports from multiplying memory use during save