The two clones had diverged from origin/main (191d1b8) and both had
grown uncommitted work. This merges the other clone's three commits and
reconciles four conflicting files.
Both clones independently grew a feature called "batch export", but they
are different sweeps and both are kept:
- BatchExportWorker (this clone) — every angle x channel of the one open
file, fixed colorbar per channel, under a new Export menu.
- BatchExportImagesWorker (other clone) — the current view across many
selected files, process-pooled, under Convert.
Conflict resolutions of note:
- sras_average.py: the other clone's memory-bounded rewrite had silently
reverted this clone's float32 -> int16 accumulator fix, which exists to
keep averaged output from landing 1 ADC count off the original tool.
Kept the rewrite, re-applied the fix, and corrected the two docstrings
that still claimed float32.
- tests/test_compute.py: kept the other clone's meta["waveforms"] key
(meta["data"] no longer exists for this fixture and would KeyError)
and its laser_freq_hz assertions, plus this clone's int16 expectation
and its dropped subprocess returncode assertions.
- ComputeWorker: row_avg_n and min_freq_mhz were added independently on
either side; both are now threaded through.
- compute_rf_image's `exact` parameter is gone, removed by the other
clone's PyFFTW peak-search rewrite. It had no remaining callers.
Verified: 149 passed with a complete dependency set. The failures seen
with this clone's own .venv are a missing scikit-image, which predates
this merge and reproduces identically on the pre-merge commit.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Two strands of in-progress work, committed together because they overlap
in sras_workers.py and main_window.py.
Min peak frequency floor:
- CACH tail bumped to version 4, adding u32 min_freq_khz provenance in
fixed-point kHz (a float32 20.1 reads back as 20.10000038 and would
report a spurious mismatch forever). v1-v3 tails read as no floor.
- Stored FFT caches are accepted when the reader's floor is at or above
the stored one, since a higher floor is re-applicable by masking.
- Floor plumbed through compute_rf_image, BatchCacheWorker and the viewer.
Batch Export View as Images:
- New sras_render.py holds draw_view_image, shared by the Qt canvas and
the headless exporter so a PNG cannot drift from what the GUI shows.
Deliberately Qt-free so it is importable in a pool subprocess.
- BatchExportImagesWorker renders the current view settings across many
files, process-pooled with an inline fallback, reporting per-file
output names so the caller can flag same-stem collisions.
- _axes_extent extracted into sras_format for both render paths.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
ComputeWorker dropped row_avg_n, so a stored row-averaged cache was
ineligible whenever the fallback compute served the image instead of the
DC precompute path. Thread the viewer's precomputed_row_avg_n through
ComputeWorker and the batch export worker's compute_rf_image call.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Drop the coarse+fine zoom refinement, the SciPy FFT backend, and the
exact= audit path in favor of a single always-on full-transform peak
search (_peak_bins). Block size is now derived from a per-thread memory
budget (_fft_block_for/SRAS_FFT_PLAN_BUDGET_MB) instead of a fixed
constant, so the existing block-parallel PyFFTW pool stays memory-safe
at high pad factors without the zoom algorithm's bookkeeping. Also
removes the now-unused threadpoolctl dependency and the FFT backend
selector from the UI.
Also includes a pre-existing min_freq_mhz peak-search floor (excludes
bins below a caller-supplied frequency from the argmax) that was
already implemented and tested in the working tree.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
The display path hardcoded row_avg_n=0 when checking a file's stored FFT
cache, since the main window has no row-averaging control (only the
batch-only RowAverageFftOptionsDialog). Once a file was batch-computed with
row-averaging, every view switch saw a phantom provenance mismatch and
silently launched a full raw recompute, discarding the precomputed data.
The display now asks for the stored image at the settings it was actually
computed under (bg-sub/pad/row-averaging), rather than the window's live
controls, so a stored or already-computed image is always shown once
present. Those controls now only affect a first-time compute for an
uncached angle or an explicit batch recompute -- never what's already on
screen. DC threshold is unaffected: it stays live, since re-masking a
cached image is free.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>