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This is an UNSTABLE release. It includes many experimental features, as well as many AI generated fixes. We recommend using rc.152 for production use. * **rugnux: significantly better quality of results, and faster.** A large rework of integration, scaling, merging, geometry refinement and space-group determination, together with measurements the program previously made no attempt at - the direct beam before indexing, the beam stop, the goniometer rotation scale, and the stretches of a sweep the crystal did not deliver. A rotation dataset typically gains observations at better <I/sigma> and R_meas, and every `mx` and `scale` run writes a `<prefix>_report.txt` results report modelled on XDS's `CORRECT.LP`. Many defaults moved with it: spot detection is self-calibrating, beam-stop detection and rotation geometry post-refinement are on, resolution limits default to as far as the detector reaches, and ice-ring handling engages only where the crystal is measured to have ice. * **jfjoch_viewer:** the beam-stop shadow, the detector calibration and the beam-centre measurement are reachable from "Analyze dataset"; the settings panel reports how the sample moved and how polarized the beam was; image rendering and interaction are faster. * **Performance:** bitshuffle+LZ4 images are decoded on the GPU rather than on the host, with the bitshuffle inverse fused into preprocessing so the decompressed frame is never held in device memory. * **Broker, writer, packaging and build:** image-slot lifetime and locking fixes, per-image datasets sized by the images actually written, the Debian/Ubuntu broker package renamed to `jfjoch`, and `image_analysis` compiling under MSVC again. **Breaking change to the rugnux command line:** * `--azint-only` and `--scale` are **removed**, replaced by `--mode azint` and `--mode scale`; the full pipeline is `--mode mx` and remains the default. A script passing the old flags now fails with the list of valid modes rather than silently running the wrong one. * `-t`/`--stride` is **refused on rotation data**: skipping frames cuts every reflection's rocking curve, so the combined fulls and their partiality would be measured over frames the sweep never recorded. Select a contiguous range with `-s`/`-e` instead. `--mode azint` and `--force-still` still take a stride. **Breaking changes to OpenAPI** - regenerate the client (`jfjoch-client` 1.0.0-rc.161, `frontend/src/client`) or read the affected fields as optional: * `image_scale_b` is removed from the `plot_type` enum, so a client requesting that plot now gets an error rather than a curve. * `azim_int_settings.high_q_recipA`, `spot_finding_settings.high_resolution_limit` and `spot_finding_settings.low_resolution_limit` are no longer `required`. All three mean "no limit at that end" when unset and are omitted from the response instead of carrying a placeholder value, which raises in a client generated from an rc.160-or-earlier spec. A value of 0 is still accepted and means the same thing. **Breaking changes to the stored formats** - a consumer reading these fields must treat them as optional: * The per-image image-scale B factor is no longer computed, so `/entry/MX/imageScaleBFactor` is absent from newly written HDF5 files and the corresponding key is absent from the CBOR DataMessage and END blocks. Files written by rc.160 and earlier still contain it and still open; nothing in the pipeline reads it any more. * `_reflns.jfjoch_diffrn_ISa` now carries the whole-range `1/sqrt(a*b)` that XDS's ISa denotes, and the error-model `a` and `b` are reported in XDS's convention; the strong-reflection asymptote moves to `_reflns.jfjoch_diffrn_ISa_asymptotic`. **A file written by an earlier version carries the asymptote under the plain `ISa` name.** Reviewed-on: #71 Co-authored-by: Filip Leonarski <filip.leonarski@psi.ch>
47 lines
2.7 KiB
C++
47 lines
2.7 KiB
C++
// SPDX-FileCopyrightText: 2024 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
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// SPDX-License-Identifier: GPL-3.0-only
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#pragma once
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#include <optional>
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#include <cstdint>
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struct SpotFindingSettings {
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bool enable = true;
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float signal_to_noise_threshold = 4.0; // STRONG_PIXEL in XDS
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int64_t photon_count_threshold = 10; // Threshold in photon counts
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// Minimum connected pixels per spot. std::nullopt = choose it per image: on the stills indexing
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// path the frame is indexed at min-pix 3/2/1 and the one maximising indexed count x indexed fraction
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// is kept (see MXAnalysisWithoutFPGA::Analyze); a value fixes it. Defaults to a concrete value, so
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// the online receiver and the FPGA path keep the single-pass fixed behaviour unless set otherwise.
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std::optional<int64_t> min_pix_per_spot = 2;
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int64_t max_pix_per_spot = 50; // Maximum pixels per spot
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// High-resolution limit for spot finding [A]. std::nullopt = as far as the detector reaches, i.e. no
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// resolution clipping of the detection at all (DiffractionExperiment::GetDetectorMaxResolution_A
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// supplies the number where one is needed, e.g. for the spot plot's shells).
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std::optional<float> high_resolution_limit;
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// Low-resolution limit for spot finding [A]. std::nullopt = no limit at the low-resolution end, the
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// mirror of high_resolution_limit above. Optional rather than a zero sentinel because zero is not a
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// natural "no limit" here: every pixel has d above it, so the plain comparison would mask the whole
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// image rather than none of it. Defaults to a concrete value, which is where the detection normally
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// stops - the direct beam and its halo sit beyond it.
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std::optional<float> low_resolution_limit = 50.0;
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float cutoff_spot_count_low_res = 5.0;
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std::optional<float> high_res_gap_Q_recipA = 1.5; // 0.25 * 2 * pi
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// Half-width of the ice-ring exclusion band in q (2*pi/d). Measured hexagonal-ice ring FWHM on the
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// JUNGFRAU is ~0.06 q, so the band half-width is ~0.03; 0.02 under-covered the strong low-res rings.
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float ice_ring_width_Q_recipA = 0.03;
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bool indexing = true;
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bool quick_integration = true;
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// Self-calibrating detection (offline/rugnux path): when true, the fixed photon_count_threshold is
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// replaced by a per-resolution-ring threshold set from the image's own noise (see
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// AdaptiveSpotFinderCPU), so the same setting adapts across datasets with no per-dataset tuning.
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// false_pixels_per_frame is the one portable knob: the expected number of noise pixels tolerated
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// per frame (the threshold's operating point), ~100 for a multi-megapixel detector.
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bool adaptive_threshold = false;
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float false_pixels_per_frame = 100.0f;
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};
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