docs: openUrl hardening after review (limits, listing passes, CORS tests)

CHANGELOG (M4 section), known-issues (wasm limits: maxFetch, the 1 GiB
decode limit, the 4 GiB file limit on wasm32, bodies cut off at their
length, listing passes, the cross-origin tests, and a pre-existing
nondeterministic error choice on cve-2025-2310.h5 that can fail the
native corpus comparison), the viewer README (options, how listing
costs, tests) and the M4 status in docs/design/range-reads.md.

Co-Authored-By: Claude Opus 5.5 (1M context) <[email protected]>
This commit is contained in:
osobh
2026-09-27 07:54:29 -05:00
co-authored by Claude Opus 5.5
parent 2379e6163e
commit 7a4acbce12
4 changed files with 113 additions and 23 deletions
+32
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@@ -50,6 +50,38 @@
reachable from JavaScript (it was compiled out before), and the promise
glue and `remote.js` add JavaScript. Not measured for the docs yet (the
build machine was shared); the viewer README's size table predates M4.
- **Hardened after review (2026-09-27):**
- Sizes a server or a dataset names are errors, never an abort of the
wasm module (which took every open file on the page with it): a read
past 2 GiB aborted in the lazy cache, reachable by a hostile server
claiming a large file and a 2 GiB heap collection, and `read()` of a
256 MiB `u8` dataset aborted widening it to 64 bits. New option
`maxFetch` (512 MiB, at most 1 GiB): what one call may fetch, and the
longest single read, refused before fetching. `read()` refuses a
dataset that would take more than 1 GiB to decode, naming
`readHyperslab`. A file of 4 GiB or more is refused at open (wasm32
reads offsets as 32-bit); `maxDownload` is at most 1 GiB.
- Response bodies are read as they arrive and cut off at the length
asked for (`maxDownload` for a `200`): a `206` with a gigabyte body
was buffered whole before its length was checked.
- Listing a group reads every child's header, and every node of each
level of the group's index, in one pass: 3000 datasets (h5py, 198 MB)
listed in 6 passes and 73 requests at 1 MiB blocks instead of 185
passes and 184 serial requests (`libver="latest"`: 9 passes instead of
189). In `clawhdf5-format`, the B-tree v1/v2 collectors, the symbol
table node loop and the dense-link loop read (without using) the
siblings after the first that fails, then return that error: same
results and errors, more reads only on failure (free in memory). The
lazy cache no longer re-fetches a cached block to merge two requests.
- `headers` may be a `Headers` instance or `[name, value]` pairs (a
`Headers` was silently dropped); when one range request fails the
others in flight are aborted; `parallel` must be an integer from 1 to
1024.
- Tests: `test/serve.py` serves ranges without exposed `Content-Range`/
`ETag` (`/noexpose/`, and `/unexposed/` for a real cross-origin page
in Chromium), so the HEAD-length path runs end to end; hostile and
oversized files (`make_fixture.py`'s `write_limits`), flooding
bodies, aborted siblings.
### Range reads, milestone M3: remote files (2026-09-26)
- **New crate `clawhdf5-remote`.** `open_url("http://host/file.h5")` gives
+13 -1
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@@ -548,7 +548,8 @@ fast path within benchmark noise.
arithmetic and coalescing (runs of consecutive blocks, a one-block
hole filled, at most 8 MiB per request) follow it; the cache is
about 450 lines (with its documentation) in the wasm crate, with no
in-flight tracking or HTTP.
in-flight tracking or HTTP. (A hole already cached is not filled:
it would be fetched again.)
- **The HTTP is JavaScript** (`crates/clawhdf5-wasm/js/remote.js`,
shipped as a wasm-bindgen snippet): `fetch` with `Range`, six
requests at a time, every answer checked (206, `Content-Range` when
@@ -570,6 +571,17 @@ fast path within benchmark noise.
attributes and a 10-value window of the 25-million-value dataset
took 5 requests, 6 MiB; with the corpus variable, 622 files agree
with `open(bytes)`.
- After review (2026-09-27): a call may fetch at most `maxFetch`
(512 MiB, at most 1 GiB) and a longer single read is refused before
fetching; `read()` refuses a decode over 1 GiB; a file of 4 GiB or
more is refused at open on wasm32 (offsets become `usize`); every
response body is cut off at the length asked for. Parsers that walk
siblings (B-tree v1/v2 collectors, symbol table nodes, dense links,
the wasm listing's child headers) read the siblings after the first
failure before returning it, so a pass asks for a whole level's
missing blocks: listing 3000 datasets went from 185 passes to 6.
The 32-bit risk below is covered by a Node test that reads data at
3 GiB from a mock server and is refused a 4 GiB file.
**M5 — SWMR and growth (later, separate design).** `Storage::len()` may grow;
add `File::refresh()` that re-reads the superblock/EOF and invalidates cached
+38 -9
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@@ -915,26 +915,55 @@ cache, but:
and is re-run after each wave of misses, so a call costs one round
trip per wave, not one for everything: a chunk index is walked a
level (or a node) per round trip, while the chunks of a read are
fetched together. Each pass re-parses what the call reads (CPU, not
network).
fetched together. Listing a group asks for every child's object
header, and every node of a level of the group's index, in one pass
(since 2026-09-27; it was one round trip per header block): 3000
datasets of an h5py file took 6 passes at 1 MiB blocks, 9 for a
`libver="latest"` file (dense links). Each pass re-parses what the
call reads (CPU, not network). With headers spread through the file
(h5py writes each next to its data) a listing still fetches most of
the file at 1 MiB blocks; a smaller `blockSize` fetches less.
- **Memory:** a call keeps every block it reads until it finishes (the
cache budget applies between calls), so reading a large dataset whole
needs its stored bytes in memory next to the result; read windows
(`readHyperslab`) of large datasets. Files above 200 MB have not been
tested, nor offsets above 4 GiB on wasm32.
cache budget applies between calls). It may fetch at most `maxFetch`
bytes (512 MiB by default, at most 1 GiB), and a single read longer
than that fails before anything is fetched: a hostile server cannot
make the page fetch or allocate what a file's lengths claim. `read()`
of a dataset that would take more than 1 GiB while it is decoded
(stored bytes, the values widened to 64 bits, the result) fails,
naming `readHyperslab`; read windows of large datasets. On wasm32 a
buffer past 2 GiB cannot exist and a failed allocation aborts the
whole module (every open file on the page), which these limits keep
from happening; before 2026-09-27 both did abort it.
- **File size:** at most 4 GiB - 1 bytes; a larger file is refused at
open. The format code turns file offsets into `usize` to use them
(with a clean error past it), which is 32 bits on wasm32, so nothing
at 4 GiB or beyond could be read. Offsets between 2 and 4 GiB are
tested (with a mock server); files above 200 MB have not been served
for real.
- **Cross-origin servers** must allow CORS for the page's origin and
either expose `Content-Range` (`Access-Control-Expose-Headers`) or
answer `HEAD` with `Content-Length`. The file is pinned at open by its
`ETag` or `Last-Modified` (and its length): when the page cannot see
either header, only a change of length is detected.
- **A server without range support** (it answers `200`) costs a whole
download, up to `maxDownload` (512 MiB), or an error with
`fallback: "error"`.
download, up to `maxDownload` (512 MiB, at most 1 GiB), or an error
with `fallback: "error"`. Every body, this one and each `206`, is read
as it arrives and cut off past its limit (the range asked for, or
`maxDownload`): a server cannot make the page buffer more.
- Fixed block size (`blockSize`, 1 MiB by default); a paged file's page
size is not used. No retries: a failed request fails the call (calling
again retries it; what was fetched stays cached).
- Tested under Node 22 and headless Chromium (Playwright's build) against
a local server; not in Firefox or Safari.
a local server, cross-origin included (a page on 127.0.0.1 reading a
file from localhost, with and without exposed headers); not in Firefox
or Safari.
- The native corpus comparison (`tests/lazy.rs` with
`CLAWHDF5_WASM_CORPUS`) fails now and then on one CVE file,
`cve-2025-2310.h5`: two of its datasets have more than one bad chunk,
and which chunk's error is reported depends on the iteration order of
the chunk index (a `HashMap`, seeded per process), so the lazy and
the range-storage reads can name different errors. Both are errors;
not specific to `openUrl` (it predates it).
- Compound, reference, opaque, bitfield, time and VL-sequence datasets are
refused with an error naming the type; attributes of those types come back
as `value: null` with their `dtype`.
+30 -13
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@@ -54,11 +54,14 @@ 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), `fallback` (`"download"`, the default,
reads the whole file when the server ignores `Range`, up to `maxDownload`
bytes, default 512 MiB; `"error"` refuses such a server), `headers` and
`credentials` (passed to every request), `parallel` (requests in flight,
default 6), `fetch` (a `fetch`-compatible function to use).
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
@@ -66,7 +69,9 @@ 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;
listing a group whose metadata is in blocks already fetched costs none,
and otherwise a round trip per level of the group's index plus one for
its children's headers, all fetched together;
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
@@ -86,9 +91,12 @@ else throws an `Error` naming the type.
`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, so a
whole read of a large dataset needs its stored bytes in memory; read
windows of large datasets. More in `docs/known-issues.md`.
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`.
@@ -104,7 +112,9 @@ else throws an `Error` naming the type.
`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, and `/norange/...` for a server without range support), then:
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
@@ -114,14 +124,21 @@ counter, and `/norange/...` for a server without range support), then:
`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`.
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 a server without range
support, and `big.h5` (a small dataset and a window of the large one,
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