- INSTALL MODELS under the music explorer: a download dialog naming both
MIT weight sets (BS-RoFormer splitter 527MB, whisper large-v3-turbo
1.6GB), where they land and their licenses; resumable sha256-pinned
downloads through the asset-ai downloader (featureless dep — the same
slice the asset UI links); cancel mid-flight (the button flips to
CANCEL, .part resumes later), MB progress, and the row disappears on a
provisioned machine. When the last model lands the loaded decks
separate immediately: the stems worker now re-probes the checkpoint
per job instead of latching its absence, and the lyrics transcriber
unlatches too (the Apple fallback yields to whisper mid-session).
- DrawWaveLane's stem palette moves from instance inputs to uniforms:
36 vertex inputs blew D3D11's vs_5_0 limit of 32 (error X4506), which
left the music decks with NO waveform at all on Windows.
- --remote HOST:PORT binds a named interface so another machine can
drive an app over the LAN (fleet-box testing); bare --remote stays
loopback.
- queue chip: the + glyph centres in its 26x18 box.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
- README: a build quick-start for macOS and Windows, the honest Linux
story, what CUDA is for and how to install the separation model.
- AGENTS.md: the `--remote` control surface protocol, so the harness it
documents is usable without reading platform/src/remote.rs.
- Cargo.toml: workspace membership for the crates this series adds and
removes.
- tools/: the Windows box scripts (wincmd, winps and friends, winrun) and
remote_smoke.sh — how a build gets driven on a remote machine.
- apps/asset-server: the standalone server binary and its README.
- Small follow-ups in libs/{windows,apple_sys,makepad_test,mbtile_reader,
converse} and apps/route, plus .gitignore and makepad.splash.
Drop the archived old/ tree, root AI notes, splashgame.md (Arcade lives
in the private sandbox), widgets-dll leftovers, and LAN/oracle helper
scripts. Move download_*.sh into tools/, and move sim/math out of
libs/game/ so the public repo no longer has a game/ directory.
Also quiet first-party compile noise and skip asset-ui tests that need
sandbox kits or uncommitted fixtures.
* android oes video zero-copy and gles shader fixes
* regenerate windows-rs by windows-strip
* fix windows video freezes with MF on an MTA worker
* regenerate windows-rs by windows-strip
* MTA MF video, COM notify, YUV texture reuse
* add local video file playback support to video-player example
* NV12 Metal present, seek warm-up gate, YUV full range
* fix Linux GStreamer video: A/V mute, HLS prepare, async teardown
* no-op SelectVideoTrack/SelectAudioTrack on non-Linux backends
* Linux ALSA/Pulse: bigger buffers, fix resample setup, report device rate
* fix some warnings
* Move XInput/DirectInput device discovery off the UI thread
* fix GLSL unpack4u8 for GLES 3.0 (#version 300 es)
* Linux GStreamer: DMA-Buf NV12 OES zero-copy, optional GLMemory path
* Linux MediaPlugin: DMA-Buf NV12 and GLMemory zero-copy present APIs
* Add Windows SourceReader DXGI NV12 zero-copy video path
* fix build error
* fix GLES: add highp precision for sampler2DArray in Linux shaders
* playback speed support for android
---------
Co-authored-by: jasonqiu <jasonqiuchen@outlook.com>
Co-authored-by: jasonqiu <jasonqiu@futunn.com>
* wip
* Handle wasm data segments and manage brotli artifacts
Add full support for parsing, encoding and rewriting Wasm data segments: introduce WasmDataSegmentKind (Active/Passive), helpers to encode varints and const i32 exprs, and functions to rewrite the data section or replace a section payload. Update wasm_split_data_segments to preserve passive segments and data.count (section 12), only extract active segments into a separate split blob, and adjust segment counting and tests accordingly.
Bump brotli dependency to 8.0 in tools, and add remove_brotli_artifact to remove leftover .br files when brotli compression is disabled. Call this cleanup in cargo_makepad build/copy paths and when removing split data, and add .bin MIME mapping and print mapping for .bin in the server output. Tests updated to cover passive segments and data_count preservation.
* Support split data v2 and wasm rebuild
Add support for a new split data format (version 2) and the ability to rebuild a WASM module with its data section. wasm_bridge.js: parse v1/v2 split blobs, return {version, segments}, add varint encode/decode helpers, encode split-data section payloads, implement rebuild_split_wasm, fetch-and-instantiate logic to fetch both wasm and split blobs and handle v1 preloaded splits or rebuild for v2. wasm_strip.rs: bump split data version to 2, include segment kind and memory_index in encoded split data, preserve passive segments, update encoding/decoding and tests, and return the updated segment count. tools/cargo_makepad/src/wasm/compile.rs: separate target spec directories for threaded vs single builds (threads/single).
* basic splitting
* Instantiate secondary Wasm module in threads
Store and expose a compiled secondary WebAssembly module from the primary module, and ensure worker contexts (Web Worker and AudioWorklet) instantiate that secondary module before running thread entrypoints. Changes: save _secondary_module on primary_wasm in wasm_bridge, include secondary_module in WasmWebBrowser info, and add async instantiate_secondary logic + awaits in audio_worklet and web_worker so the secondary module is instantiated with {env, primary: primary_wasm.exports} prior to initializing stack/TLS or starting execution. This ensures the secondary module can import primary exports in threaded contexts and prevents race conditions by waiting for instantiation to complete.
* more cleanups
* more cleanup
* wip
* remove double wasm pump
* cleanup
* Cold-first auto wasm split with fallback
Add a cold-only function-splitting mode and automatic fallback to preserve startup-safe behavior. Introduces wasm_split_functions_cold() and a split_auto flag to run a cold-first pass that moves defer-safe cold functions to a secondary wasm; if no useful cold candidates are found the build falls back to the normal startup-path function split so the app still gets a secondary payload.
Changes include: update to CLI help text, new split_auto handling in WasmConfig, AutoSplitOutcome variants, compile logic to prefer cold-only splits then fall back to the regular split, adjusted logging for automatic mode, and README wording clarifications. Files touched: README.md, libs/wasm_strip/src/wasm_strip.rs, tools/cargo_makepad/src/main.rs, tools/cargo_makepad/src/wasm/compile.rs, tools/cargo_makepad/src/wasm/mod.rs.
* Tune brotli compression parameters
Adjust brotli settings in tools/cargo_makepad/src/wasm/compile.rs: increase buffer size from 4KB to 64KB, lower quality from 12 to 11, and raise window size from 22 to 24. This balances throughput and compression ratio for larger wasm artifacts—bigger buffer and window can improve compression effectiveness while slightly reducing CPU cost by lowering quality.
* Add optional wasm-opt optimization flag
Introduce an optional --wasm-opt option that runs Binaryen's wasm-opt -Os on built wasm when available. Adds a wasm_opt flag to WasmConfig (default false), parses the CLI option, and integrates a try_wasm_opt helper that writes a temp wasm, invokes wasm-opt, reads back the optimized output and prints size/reporting while gracefully falling back on errors. The wasm-opt step runs before the existing split/strip pipeline. Also updates CLI help text, minor Cargo.toml formatting changes, and removes a vendor UPSTREAM.md reference.
* update readme
* Shorten split exports to $s/$p and use base62
Rename split-related exports/imports to shorter identifiers and compress numeric indices using base62. Changes: export/table slot prefix changed from "__mp_split_table"/"__mp_split_slot_*" to "$s" and the primary import namespace from "primary" to "$p" across wasm_bridge, audio_worklet, and web_worker. Introduces encode_base62 in wasm_strip to emit $f/$t/$m/$g names with base62-encoded indices, and updates primary/secondary module generation and tests accordingly. Also includes minor JS formatting/whitespace cleanups and small safety/compatibility tweaks during WebAssembly instantiation.
* Preload WASM modules and set cache headers
Inject modulepreload links into generated HTML (conditionally including wasm_bridge and bindgen when bindgen is enabled, otherwise preloading web_gl only) to improve module loading. Also change served asset Cache-Control from max-age=0 to max-age=86400 (1 day) for both brotli-compressed and uncompressed responses to enable client caching and reduce repeated fetches.
* Minify JS when copying before brotli
Add a lightweight JS minifier and apply it in cp_brotli for .js files. Introduces minify_js which strips line/block comments, collapses unnecessary whitespace, preserves strings/escaped characters and simple regex literals (heuristic), and removes empty lines. cp_brotli now attempts to read and minify .js input and write the minified output to the destination (falling back to cp on read error), then continues to optionally brotli-compress the result. This reduces payload size prior to compression with a small, simple minification step.
* Format web.js and disable XR capability checks
Apply consistent JS formatting (spacing, brace placement, object literal spacing, and minor whitespace cleanups) across platform/src/os/web/web.js. Replace the previous XR capability detection with a no-op (query_xr_capabilities now returns Promise.all([])) and remove the await call in load_deps so XR checks are not performed during startup. Also includes minor non-functional tweaks (timers, audio worklet messaging formatting, fetch call spacing, and various input/keyboard handler cleanups). Overall changes are primarily stylistic with the notable behavior change of disabling XR capability probing.
* Add WASM no-cache headers; remove web video arms
Set Cache-Control to "no-store, must-revalidate" (plus Pragma/Expires) for .wasm responses while keeping max-age=86400 for other assets; wire these into the HTTP response headers. Also remove the explicit VideoSource::InMemory and VideoSource::Filesystem match arms from the web platform code (they previously logged errors and emitted VideoDecodingError events).