Build Packages / Create release (push) Successful in 24s
Build Packages / build:viewer:macos-arm64:nocuda (push) Successful in 3m29s
Build Packages / build:rugnux:macos-arm64:nocuda (push) Successful in 2m43s
Build Packages / build:rugnux:linux-aarch64:cuda (push) Successful in 8m27s
Build Packages / build:rugnux:linux-x86_64:cuda (push) Successful in 9m53s
Build Packages / build:viewer:linux-x86_64:nocuda (push) Successful in 9m58s
Build Packages / build:viewer:linux-x86_64:cuda (push) Successful in 11m22s
Build Packages / build:jfjoch:rocky8:nocuda (push) Successful in 13m39s
Build Packages / build:viewer:windows-x86_64:nocuda (push) Successful in 18m37s
Build Packages / build:jfjoch:rocky9:nocuda (push) Successful in 16m32s
Build Packages / build:viewer:windows-x86_64:cuda (push) Successful in 24m11s
Build Packages / HDF5 consumer tests (DIALS, XDS) (push) Successful in 25m30s
Build Packages / build:jfjoch:ubuntu2404:nocuda (push) Successful in 19m3s
Build Packages / build:jfjoch:ubuntu2204:nocuda (push) Successful in 20m23s
Build Packages / build:jfjoch:rocky8:cuda-sls9 (push) Successful in 19m41s
Build Packages / Generate python client (push) Successful in 50s
Build Packages / Build documentation (push) Successful in 1m16s
Build Packages / build:jfjoch:rocky9:cuda-sls9 (push) Successful in 21m0s
Build Packages / build:jfjoch:rocky8:cuda (push) Successful in 18m38s
Build Packages / build:rugnux:windows-x86_64:cuda (push) Successful in 14m33s
Build Packages / build:jfjoch:rocky9:cuda (push) Successful in 17m55s
Build Packages / build:jfjoch:ubuntu2204:cuda (push) Successful in 20m50s
Build Packages / build:jfjoch:ubuntu2404:cuda (push) Successful in 18m38s
Build Packages / Unit tests (push) Successful in 1h46m14s
* jfjoch_broker: Optional per-dataset authentication - statistics, images and plots can require a bearer token, which jfjoch_viewer supports. * jfjoch_viewer: Dark mode and a theme-matched colour scheme, a magnifier panel, and simpler contrast and background controls. * Rugnux: Multiple performance improvements on GPU and CPU (CPU-only processing up to 40% faster, faster image decoding on ARM), with unchanged results. * Rugnux: `--model` rigid-body refinement runs on the GPU, and the model-validation check is faster and more reliable. * Rugnux: Improved scaling and merging - error model, outlier rejection, absorption correction and French-Wilson amplitudes now agree more closely with XDS and ctruncate. * Rugnux: Improved integration - radial background on powder and ice rings, crowded rotation data keep their reflections, and CPU-only builds integrate large unit cells as GPU builds do. * Rugnux: More robust detector geometry - measured beam centre, X-ray bandwidth and goniometer rate, and geometry refinement accepted only on significant evidence. * Rugnux: Merged files are written in the standard setting, or in the setting of a reference MTZ, structure-factor mmCIF or model, with its free-R flags. * Rugnux: Richer report - ice and powder rings, further lattices, superstructure candidates and mosaicity, with warnings worded as prompts to check. * Rugnux: Clear error messages when a data set needs more GPU or host memory than is available. Reviewed-on: #83 Co-authored-by: Filip Leonarski <filip.leonarski@psi.ch>
99 lines
5.1 KiB
C++
99 lines
5.1 KiB
C++
// SPDX-FileCopyrightText: 2025 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
|
|
// SPDX-License-Identifier: GPL-3.0-only
|
|
|
|
#pragma once
|
|
|
|
#include <cstdint>
|
|
#include <optional>
|
|
#include <cmath>
|
|
|
|
#include "SpotToSave.h"
|
|
|
|
struct Reflection {
|
|
int32_t h;
|
|
int32_t k;
|
|
int32_t l;
|
|
float image_number; // Can be in-between for 3D integration
|
|
float delta_phi_deg; // phi angle from XDS - difference from middle of current frame (NOT an absolute angle)
|
|
float predicted_x;
|
|
float predicted_y;
|
|
float observed_x;
|
|
float observed_y;
|
|
float d;
|
|
float I;
|
|
float bkg;
|
|
float var_bkg; // non-signal (background) part of sigma^2, carried to the merge
|
|
float sigma;
|
|
float dist_ewald;
|
|
// The reciprocal Lorentz factor (rotation only - a still's Lorentz factor is one) times the
|
|
// reciprocal polarization factor, and nothing else. This is what LP means everywhere in the
|
|
// field, and it is what the CBOR key "rlp" and the HDF5 dataset "lp" store the reciprocal of.
|
|
// What it is not is a scale: the fitted per-image scale and the partiality stay out of it and
|
|
// are divided in separately below. (Named after DIALS's prescaling_correction.)
|
|
float prescaling_corr;
|
|
// The sensor's angle-dependent efficiency, QE(0)/QE(alpha): always <= 1, and exactly 1 where the
|
|
// sensor is opaque or its material and thickness are unknown. It is carried BESIDE
|
|
// prescaling_corr rather than inside it, because LP and detector response are two different
|
|
// things and every file the field reads keeps them apart. It is one of the three factors whose
|
|
// product is the total deterministic correction, with prescaling_corr above and flight_corr
|
|
// below. Defaulted to 1 so a reflection read from a file written before this existed is a no-op
|
|
// rather than a zero.
|
|
float qe_corr = 1.0f;
|
|
// The medium in the sample-to-pixel flight path, exp(D/L * (1/cos(alpha) - 1)) with D the
|
|
// normal-incidence distance, L the medium's attenuation length and alpha the angle of incidence
|
|
// on the detector: always >= 1, because an oblique reflection crossed more of the medium than
|
|
// one arriving head-on. Exactly 1 under --flight-path vacuum. Carried beside the two above for the same
|
|
// reason they are carried apart - it is neither beam geometry nor detector response but the
|
|
// medium in between, and unlike either of them it is set by the flight distance. The total
|
|
// deterministic correction on a reflection is prescaling_corr * qe_corr * flight_corr, and every
|
|
// site that corrects an intensity multiplies all three. Defaulted to 1 so a reflection read
|
|
// from a file written before this existed is a no-op rather than a zero.
|
|
float flight_corr = 1.0f;
|
|
float partiality; // fraction of the reflection recorded in the sampled (rocking) slice
|
|
float zeta;
|
|
float image_scale_corr; // I_true = image_scale_corr * I; = prescaling_corr * qe_corr * flight_corr / (partiality * image_scale)
|
|
bool observed = false;
|
|
bool on_ice_ring = false; // sits on a hexagonal-ice powder ring: excluded from scaling, kept for merging
|
|
// The signal disk lost pixels to the mask or to saturation, so the intensity is the profile's
|
|
// estimate over what remained. Such a measurement may be low, and the merge does not let it
|
|
// testify against a larger observation of the same reflection (WilsonOutliers.h).
|
|
bool clipped = false;
|
|
};
|
|
|
|
struct MergedReflection {
|
|
int32_t h = 0;
|
|
int32_t k = 0;
|
|
int32_t l = 0;
|
|
float I = NAN;
|
|
float sigma = NAN;
|
|
float I_half[2] = {NAN, NAN};
|
|
float sigma_half[2] = {NAN, NAN};
|
|
// Weight of this reflection in a CC1/2: the precision its half-sets would have had with every
|
|
// observation at the run's typical frame scale, over the precision they have. 1 on a sweep
|
|
// without a weak stretch; small for a reflection measured only where the crystal barely
|
|
// diffracted, whose scaled-up noise would otherwise count as much as a well-measured pair.
|
|
float cc_weight = 1.0f;
|
|
float d = 0.0;
|
|
// Any observation of this reflection sat on an ice ring. The intensity is still merged and
|
|
// written - the ring contaminates it, it does not make it absent - and this only marks it so
|
|
// a consumer that must not read the ring as crystal signal can leave it out.
|
|
bool on_ice_ring = false;
|
|
bool rfree_flag = false;
|
|
float F = NAN; // French-Wilson amplitude |F| (filled by ApplyFrenchWilson at end of merge)
|
|
float sigmaF = NAN; // its sigma
|
|
// Anomalous (Bijvoet) split of this reflection's own observations, kept even when the merge is
|
|
// Friedel-averaged (I above is the Friedel mean). Lets I(+)/I(-) be written and CCano reported by
|
|
// default without scaling anomalously; NaN when a hand was not measured or for centrics.
|
|
float I_plus = NAN;
|
|
float sigma_plus = NAN;
|
|
float I_minus = NAN;
|
|
float sigma_minus = NAN;
|
|
// French-Wilson amplitudes of the two hands (filled by ApplyFrenchWilson from I_plus/I_minus).
|
|
float F_plus = NAN;
|
|
float sigmaF_plus = NAN;
|
|
float F_minus = NAN;
|
|
float sigmaF_minus = NAN;
|
|
};
|
|
|
|
|