Files
clawhdf5/examples/wasm-viewer
osobhandClaude Opus 5.5 999cb86071 docs(wasm-viewer): package size re-measured after openUrl; round-trip costs
The size table predated openUrl (it said so). Re-measured on tank at
9b5803f with `bash examples/wasm-viewer/build.sh`, then `wc -c` and
`gzip -9 -n -c`: the wasm is 1,384,607 B (378,485 gzipped), was 627,501
(191,639); the glue 40,711 (8,181), was 21,826 (4,487); remote.js 9,326
(3,448). 476,062 B of the wasm is the function-name section. opt-level z
(CARGO_PROFILE_WASM_RELEASE_OPT_LEVEL=z) is now 1% smaller gzipped than
the profile's s; 3 is larger. h5wasm rows unchanged.

Also adds the measured cost of listing a large group and reading one
dataset by URL (passes / requests / bytes, from CHANGELOG, 2026-09-27).

Co-Authored-By: Claude Opus 5.5 (1M context) <[email protected]>
2026-09-28 11:13:30 -05:00
..

HDF5 viewer in the browser

A single page that opens an HDF5 or NetCDF-4 file entirely in the browser with clawhdf5-wasm (clawhdf5's reader compiled to WebAssembly): drop a file or give a URL, browse its groups, and look at a dataset's type, shape, attributes and values (a 50 x 12 window at a time, read as a hyperslab, with the leading dimensions of a 3-D+ dataset held at chosen indices). A local file never leaves the page. A file given by URL is not downloaded: only the byte ranges each view needs are fetched (HTTP range requests), and the header shows the requests and bytes that has cost so far.

Build and open

rustup target add wasm32-unknown-unknown
cargo install wasm-bindgen-cli --version 0.2.129   # must equal the crate version; build.sh checks
bash examples/wasm-viewer/build.sh                  # writes examples/wasm-viewer/pkg/ (not committed)
python3 -m http.server -d examples/wasm-viewer 8000 # wasm cannot load from file://

Then open http://localhost:8000/. The URL box, or ?file=<url>&path=<object>, opens a file by URL (same origin, or a server sending CORS headers, see Limits) and selects an object in it, e.g. ?file=data/run1.h5&path=/results/energy. Python's http.server does not answer range requests, so a file served by it is downloaded whole (the header says so); test/serve.py does:

python3 examples/wasm-viewer/test/serve.py --root data=/path/to/files --root =examples/wasm-viewer
# prints its port; open http://127.0.0.1:<port>/?file=data/run1.h5

JavaScript API

import init, { open, openUrl } from "./pkg/clawhdf5_wasm.js";
await init();
const f = open(new Uint8Array(await blob.arrayBuffer()));
f.list("/");                          // [{ name, kind: "group" | "dataset" }], groups first
f.info("/grid");                      // { shape, maxshape, dtype, elementShape }
f.attrs("/grid");                     // [{ name, value, dtype }]
f.read("/grid");                      // { shape, dtype, data }
f.readHyperslab("/grid", [0, 0], [10, 5], [2, 1]);  // start, count, stride?, block?
f.free();

// A file on a web server, read by HTTP range requests as needed. The same
// methods, each returning a promise.
const r = await openUrl("https://example.org/run1.h5", { blockSize: 1 << 20 });
await r.list("/");
await r.readHyperslab("/grid", [0, 0], [10, 5]);  // fetches only the chunks it touches
r.stats();    // { lazy, size, requests, bytesFetched, cachedBytes, passes }
r.free();

openUrl(url, opts) options, all optional: blockSize (bytes per block fetched, 512 B to 64 MiB, default 1 MiB), cacheSize (bytes of blocks kept between calls, default 64 MiB), maxFetch (bytes one call may fetch, and so the longest single read, up to 1 GiB, default 512 MiB), fallback ("download", the default, reads the whole file when the server ignores Range, up to maxDownload bytes, default 512 MiB, at most 1 GiB; "error" refuses such a server), headers (a Headers, [name, value] pairs or an object) and credentials (passed to every request), parallel (requests in flight, 1 to 1024, default 6; when one fails the others are aborted), fetch (a fetch-compatible function to use).

How it works: the reader is synchronous and a page cannot block on the network, so each call runs as a pass over the blocks fetched so far. A pass that needs a block not yet fetched is abandoned, the missing blocks are fetched (in parallel, adjacent blocks in one request), and the pass is run again, until one completes (docs/design/range-reads.md, M4). Opening costs one request (the first block, which also gives the file's size); listing a group whose metadata is in blocks already fetched costs none, and otherwise about a round trip per level of the group's index plus one for its children's headers, all fetched together (the reader fetches what it knows it reads next along with what a pass missed); opening one object looks its name up in the group's index, not the whole group; reading a chunked dataset costs a round trip for its chunk index (a few for a deep one) and one batch of requests for its chunks. Every answer is checked — a 206 with exactly the bytes asked for, from the same file (ETag or Last-Modified, and length) — or the call fails.

What that costs, counted on tank on 2026-09-27 (CHANGELOG.md, "Remote files in the browser: fewer round trips"), on an h5py file of 3000 datasets of 16384 f32 in one group (198 MB, h5py 3.16 / HDF5 2.0), as passes / requests / bytes fetched, with CLAWHDF5_WASM_LIST_FILE=<file> CLAWHDF5_WASM_READ=/d1500 cargo test --release -p clawhdf5-wasm --test lazy listing_cost_of_a_given_file -- --nocapture:

file (libver), block size list('/') open + read one dataset
earliest, 1 MiB 4 / 68 / 192.5 MB 6 / 5 / 5.2 MB
earliest, 64 KiB 5 / 530 / 35.3 MB 8 / 7 / 0.52 MB
latest, 1 MiB 5 / 86 / 196.5 MB 7 / 7 / 6.7 MB
latest, 64 KiB 6 / 454 / 30.5 MB 8 / 8 / 0.58 MB

Listing reads every child's object header, and h5py spreads those through the file, so a listing of a group this large fetches most of it at 1 MiB blocks; a smaller blockSize fetches far less at the cost of more requests. Reading one dataset does not list the group. In the test suite's 200 MB file (WASM_BIG_MB=200 bash examples/wasm-viewer/test/run.sh), listing the root, reading two small datasets, a group's attributes, the large dataset's shape and a 10-value window of it took 5 requests and 6 MiB.

data is the typed array of the stored width (Float64Array, Float32Array also for f16, Int8Array ... BigInt64Array, BigUint64Array), or an array of strings for fixed- and variable-length strings and enumerations (h5py booleans read as "TRUE"/"FALSE"). Array datatypes are flattened, their dimensions appended to shape. Anything else throws an Error naming the type.

Limits

  • Read-only. open(bytes) holds the whole file in memory.
  • openUrl: a cross-origin server must allow CORS and expose Content-Range (Access-Control-Expose-Headers: Content-Range) or answer HEAD with Content-Length; if the page cannot see ETag or Last-Modified either, a file replaced on the server is detected only by a change of length. A call keeps what it reads until it finishes, and may fetch at most maxFetch; read() of a dataset that would take more than 1 GiB to decode is refused (read windows of large datasets with readHyperslab). Files of 4 GiB or more are refused at open (wasm32). Every response body is cut off past the length asked for. More in docs/known-issues.md.
  • Compound, reference, opaque and variable-length-sequence datasets are refused with an error. Attributes of those types are listed with value: null and their dtype.
  • No Zstd or SZIP filters (they link C): such a dataset fails with unsupported filter. Deflate, shuffle, Fletcher-32, LZ4, N-Bit and scale-offset are read (within the limits in docs/known-issues.md).
  • Virtual datasets whose sources are in other files, and external links, cannot be followed: there is no file system.

Tests

test/run.sh builds the package, writes fixture.h5 (h5py) and fixture.nc (netCDF4) with test/make_fixture.py, and big.h5, a 200 MB h5py file (WASM_BIG_MB sets its size, 0 leaves it out; it goes under TMPDIR), serves them with test/serve.py (range requests, a request counter, /norange/... for a server without range support, /noexpose/... and /unexposed/... for one that does not expose its headers to CORS), then:

  • runs test/test.mjs under Node: every dataset (whole and a strided hyperslab), listing and attribute is compared with what libhdf5 reads back, error paths are checked, and so are the page's DOM-free helpers (viewer-lib.js). Then the same checks on the files opened by URL (1 MiB and 512 B blocks), calls in flight at once, the request budget of big.h5 (listing it and reading small things of it must take at most 8 requests and under 5% of the file), the download fallback and its limit, and the errors: HTTP status, a file that changes, a server that sends the wrong bytes or stops honouring Range. Also the cross-origin path with no exposed headers (/noexpose/: length from HEAD), the size limits on make_fixture.py's limits.h5, hostile_vl.h5 (a heap collection claiming 2 GiB) and far.h5 (data at 3 GiB, served by a mock), bodies longer than asked for, headers forms, parallel, and sibling requests aborted after a failure. CLAWHDF5_WASM_CORPUS=DIR also compares every HDF5 file under DIR (up to 16 MiB) read by URL with the same file read from bytes;
  • runs test/browser.sh: loads the page in headless Chromium with ?file=fix/fixture.h5&path=... for eight objects and checks the rendered tree, types, shapes, attribute and value cells, the request counter, and the error shown for an unsupported type; then the file from another origin (localhost), with CORS exposing Content-Range and exposing nothing (/unexposed/, where the server must see a HEAD), a server without range support, and big.h5 (a small dataset and a window of the large one, with a single-digit percentage of the file fetched). Skipped when no Chromium is found (CHROME names one; a Playwright download under ~/.cache/ms-playwright is picked up). Drag-and-drop, the file picker and the URL box are not driven by it; they share setFile() with the ?file= path.

The same expectations are checked natively, without Node, by crates/clawhdf5-wasm/tests/h5py_interop.rs, and the lazy reader against the in-memory one by tests/lazy.rs (with CLAWHDF5_WASM_CORPUS, over the corpus too), which is what CI runs (the CI container has no Node or browser).

Size

Measured 2026-09-28 on tank at 9b5803f (rustc 1.98.1, wasm-bindgen 0.2.129, gzip 1.14): bash examples/wasm-viewer/build.sh, then wc -c and gzip -9 -n -c FILE | wc -c of each file in pkg/. The opt-level z and 3 rows are the same build with CARGO_PROFILE_WASM_RELEASE_OPT_LEVEL=z (or 3) and the same wasm-bindgen --target web step.

raw gzip -9
pkg/clawhdf5_wasm_bg.wasm (profile wasm-release, opt-level s) 1,384,607 B 378,485 B
pkg/clawhdf5_wasm.js (wasm-bindgen glue) 40,711 B 8,181 B
pkg/snippets/.../js/remote.js (the HTTP side of openUrl) 9,326 B 3,448 B
same wasm at opt-level z 1,533,772 B 374,765 B
same wasm at opt-level 3 1,184,889 B 394,569 B
h5wasm 0.10.3: wasm embedded in dist/esm/hdf5_util.js 3,544,184 B 907,096 B
h5wasm 0.10.3: dist/esm/hdf5_util.js as shipped 4,150,134 B 986,699 B

The previous measurement (2026-09-26, before openUrl) was 627,501 B / 191,639 B gzipped for the wasm and 21,826 B / 4,487 B for the glue. The package roughly doubled since. openUrl made the facade's Storage read path reachable from JavaScript (it was compiled out before) and added the lazy cache and the promise glue (CHANGELOG.md, M4); the growth has not been broken down per change. Of the wasm's 1,384,607 bytes, 476,062 are the name custom section (function names, which wasm-bindgen keeps; wasm-bindgen --remove-name-section or a wasm-opt pass would drop them); code is 816,244 and data 83,431. Without the name section the wasm is 908,541 B, 329,854 B gzipped (section removed with a script, not a supported build option yet). At opt-level z the gzipped wasm is now 1% smaller than at s, which the profile still uses.

h5wasm figures (2026-09-26, unchanged): npm pack [email protected] (npm reports dist.unpackedSize 14,731,385 B for the whole package), wasm extracted from the binaryDecode literal in hdf5_util.js. h5wasm is the whole of libhdf5 (writing, every datatype, plugins), so this compares download size, not equal functionality. No wasm-opt pass was applied (binaryen is not installed on tank).