conformance/run.sh fetches eight public HDF5 corpora pinned by commit (conformance/corpus.txt) into a gitignored cache, reads every file with clawhdf5 (conformance/probe, a crate outside the workspace) and with h5py/libhdf5 (ref.py), and the CVE files with h5dump, each under a timeout and an address-space limit; compare.py classifies the files, report.py writes CONFORMANCE.md and check.py gates on panics/hangs/crashes/OOM and on regressions against conformance/baseline.json. ~25 s once cached. Changes from the ad-hoc audit harness: - the probe compares non-IEEE-layout floats (N-Bit) and integers with a bit offset or reduced precision as the values libhdf5 converts them to, not raw file bytes: 8 files that showed as mismatches now read identically; - ref.py exits without tearing down h5py objects: libhdf5 2.0 aborts while freeing them for two files about half the time, which flipped them between ok and h5py-cannot-read from run to run; - the file list is defined (list_files.py): netCDF classic files are left out, 11 HDF5 files the ad-hoc sweep missed are in. Co-Authored-By: Claude Opus 5.5 (1M context) <[email protected]>
Conformance sweep
Reads every HDF5 file of eight public corpora with clawhdf5 and with
h5py/libhdf5, compares the two readings object by object, and writes
CONFORMANCE.md.
CLAWHDF5_PYTHON=/path/to/venv/bin/python conformance/run.sh # ~30 s once the corpus is cached
conformance/run.sh --update-baseline # after an intended change in results
Needs Rust, git, h5dump (Debian/Ubuntu hdf5-tools), libaec (for the
probe's szip feature; libaec-dev), and a Python with the packages in
requirements.txt. The first run downloads about 450 MB of sparse checkouts.
| file | role |
|---|---|
corpus.txt |
the corpora: git URL, pinned commit, swept root, sparse-checkout patterns |
fetch-corpus.sh |
shallow, sparse, blob-filtered checkout of each pinned commit into .cache/src/ (gitignored); no-op when already there |
list_files.py |
which files are probed (HDF5/netCDF-4 extensions minus netCDF classic, plus the CVE reproducers) |
probe/ |
the clawhdf5 side: a standalone crate (outside the workspace, so cargo test --workspace never builds it) that walks a file with clawhdf5-format and prints canonical JSON |
ref.py |
the h5py side: the same JSON from h5py |
run_one.sh |
runs both sides on one file (and h5dump on the CVE corpus) under a timeout and an address-space limit |
compare.py |
classifies each file (ok / our-error / mismatch / h5py-cannot-read / panic / hang / crash / oom) and groups root causes |
report.py |
writes CONFORMANCE.md |
check.py |
the gate: fails on any panic/hang/crash/oom, on an ok count below baseline.json, or on a baseline-ok file that is no longer ok |
baseline.json |
the ok files the gate holds the line on |
requirements.txt |
pinned h5py / numpy / hdf5plugin / netCDF4 |
Results for every file (both sides' JSON and stderr, results.csv,
results.json, summary.md) are left in .cache/results/.
The nightly job is .gitea/workflows/conformance.yml; it prints the report
into the job log.
The canonical value encoding both sides hash is documented at the top of
probe/src/main.rs. Values are compared as libhdf5 presents them: a float
with a non-IEEE bit layout (N-Bit) or an integer with a bit offset is compared
as the converted number, not as raw file bytes.