Files
Jungfraujoch/rugnux/RugnuxCommandLine.cpp
T
leonarski_fandClaude Opus 5 a29c36600f Beam-stop shadow detection, and a low-resolution limit for scaling
rugnux finds the beam stop and its holder in a projection of 60 images and
marks them in the pixel mask as bit 9 (--detect-beam-stop[=N|off], on by
default). Reflections behind the stop are attenuated but not flagged, so they
integrate low with a plausible sigma and nothing downstream catches them: the
signal-box gate requires 100% valid pixels and shadow pixels are valid, the
background clip is high-side only, and the |zeta| cut applies only to the
space-group search merge.

The detection compares each pixel's background against the typical background
at the same radius on two channels. An azimuthal one (the ring median) finds
the holder arm, which is a minority of its ring; a radial one (the background
just outside) finds the disk, which the ring median cannot see because inside a
fully blocked ring the median is the shadow itself. Pixels are pooled over a
5x5 box and tested only where the background has actually been counted, so
low-background data no longer masks the whole detector. Recorded reflections
are carved back out - a beam stop cannot block a reflection that was measured.

Bit 9 belongs to the run that found it, not to the dataset: it is cleared when
a run starts, so a mask read back from a file that carries one starts clear.
The user mask (bit 8) is left alone.

Scaling and merging gain a low-resolution limit, default 50 A
(--scaling-low-resolution <num>, 0 removes it), applied per observation before
scaling so it also protects the per-frame scale fit and the space-group search.
50 A is the value XDS configurations use; rugnux_vs_xds.py now matches both of
XDS's resolution limits instead of only the high one, so the lowest shell is
the same shell in the two programs.

The viewer draws the detected shadow in coral with a "Show beam stop" switch in
the side panel, exposes the low-resolution limit in the settings dock, and
offers detection in its processing jobs. Adding an image marker meant giving
the reader a MIN_REAL_PXL_VALUE, because several places classify a pixel by
range rather than by equality and would otherwise read the new marker as a very
negative intensity.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-09 01:05:31 +02:00

221 lines
11 KiB
C++

// SPDX-FileCopyrightText: 2026 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
// SPDX-License-Identifier: GPL-3.0-only
#include "RugnuxCommandLine.h"
#include "../common/DiffractionExperiment.h"
#include <sstream>
#include <vector>
namespace {
std::string quote_if_needed(const std::string &s) {
if (s.find_first_of(" \t\"'") == std::string::npos)
return s;
std::string out = "\"";
for (char c: s) {
if (c == '"' || c == '\\')
out += '\\';
out += c;
}
out += '"';
return out;
}
const char *indexing_alg_flag(IndexingAlgorithmEnum a) {
switch (a) {
case IndexingAlgorithmEnum::FFBIDX: return "ffbidx";
case IndexingAlgorithmEnum::FFT: return "fft";
case IndexingAlgorithmEnum::FFTW: return "fftw";
case IndexingAlgorithmEnum::None: return "none";
case IndexingAlgorithmEnum::Auto:
default: return "auto";
}
}
const char *refine_flag(GeomRefinementAlgorithmEnum r) {
switch (r) {
case GeomRefinementAlgorithmEnum::None: return "none";
case GeomRefinementAlgorithmEnum::OrientationOnly: return "orientation";
case GeomRefinementAlgorithmEnum::Flex: return "flex";
case GeomRefinementAlgorithmEnum::BeamCenter:
default: return "beam_and_lattice";
}
}
std::string num(double v) {
std::ostringstream o;
o << v;
return o.str();
}
}
std::string RugnuxCommandLine(const ProcessConfig &config,
const DiffractionExperiment &experiment,
const std::string &input_file,
const std::string &calibrant_name) {
std::vector<std::string> args;
const bool azint = (config.mode == ProcessMode::AzimuthalIntegration);
const bool calibration = (config.mode == ProcessMode::Calibration);
args.emplace_back("rugnux");
if (azint) {
args.emplace_back("--mode");
args.emplace_back("azint");
} else if (calibration) {
args.emplace_back("--mode");
args.emplace_back("calibration");
}
auto add = [&](const std::string &flag, const std::string &val) {
args.push_back(flag);
args.push_back(val);
};
if (!config.output_prefix.empty())
add("-o", config.output_prefix);
add("-N", std::to_string(config.nthreads));
if (config.start_image != 0)
add("-s", std::to_string(config.start_image));
if (config.end_image >= 0)
add("-e", std::to_string(config.end_image));
if (config.stride != 1)
add("-t", std::to_string(config.stride));
// Beam-stop detection is ON by default in the CLI, so emit only a deviation from that. getopt takes
// an optional argument only when attached (=N), never as a separate token.
if (!config.detect_beam_stop.has_value())
args.emplace_back("--detect-beam-stop=off");
else if (*config.detect_beam_stop != 60)
args.push_back("--detect-beam-stop=" + std::to_string(*config.detect_beam_stop));
if (calibration) {
if (!calibrant_name.empty())
add("--calibrant", calibrant_name);
add("--calibration", config.calibration_method == CalibrationMethod::Rings ? "rings" : "spots");
// The rings method reads the ring at every azimuth, and the GUI may have raised the sector
// count for this run, so emit the value actually used rather than relying on the CLI default.
if (config.calibration_method == CalibrationMethod::Rings)
add("--azim-phi-bins",
std::to_string(experiment.GetAzimuthalIntegrationSettings().GetAzimuthalBinCount()));
} else if (azint) {
const auto a = experiment.GetAzimuthalIntegrationSettings();
add("--azim-min-q", num(a.GetLowQ_recipA()));
// An unset maximum Q means "to the detector edge"; emitting the resolved number would pin it
// to this run's geometry, so leave the flag out and let it resolve again.
if (const auto high_q = a.GetRequestedHighQ_recipA())
add("--azim-max-q", num(*high_q));
add("--azim-q-spacing", num(a.GetQSpacing_recipA()));
add("--azim-phi-bins", std::to_string(a.GetAzimuthalBinCount()));
add("--polarization-correction", a.IsPolarizationCorrection() ? "on" : "off");
add("--solid-angle-correction", a.IsSolidAngleCorrection() ? "on" : "off");
} else {
const auto &sf = config.spot_finding;
add("--spot-sigma", num(sf.signal_to_noise_threshold));
add("--spot-threshold", std::to_string(sf.photon_count_threshold));
// Emit the explicit flag rather than relying on the default, so the command line reproduces
// this run even if the default changes.
args.emplace_back(sf.adaptive_threshold ? "--adaptive-spots" : "--no-adaptive-spots");
if (sf.adaptive_threshold)
add("--spot-false-pixels", num(sf.false_pixels_per_frame));
// min-pix is chosen per image unless an explicit value is given, so emit --min-pix-per-spot only
// when a fixed min-pix was selected; its absence selects the adaptive per-image path.
if (sf.min_pix_per_spot.has_value())
add("--min-pix-per-spot", std::to_string(*sf.min_pix_per_spot));
// Same for the spot-finding limit: absent means "as far as the detector reaches".
if (sf.high_resolution_limit.has_value())
add("--spot-high-resolution", num(*sf.high_resolution_limit));
add("--max-spots", std::to_string(experiment.GetMaxSpotCount()));
const auto idx = experiment.GetIndexingSettings();
add("-X", indexing_alg_flag(idx.GetAlgorithm()));
add("-r", refine_flag(idx.GetGeomRefinementAlgorithm()));
if (const auto sg = experiment.GetSpaceGroupNumber())
add("-S", std::to_string(*sg));
if (const auto uc = experiment.GetUnitCell()) {
std::ostringstream o;
o << uc->a << "," << uc->b << "," << uc->c << "," << uc->alpha << "," << uc->beta << "," << uc->gamma;
add("-C", o.str());
}
if (const auto bw = experiment.GetBandwidthFWHM())
add("--bandwidth", num(*bw));
const auto bragg = experiment.GetBraggIntegrationSettings();
std::ostringstream radii;
radii << bragg.GetR1() << "," << bragg.GetR2() << "," << bragg.GetR3();
add("--integration-radius", radii.str());
// Background ring: the CLI defaults to the 4 sigma high-side clip, so emit a flag only when the
// GUI chose otherwise. The trim is the alternative estimator (it clears the clip), and a clip of
// 0 with no trim is the plain ring mean, which needs the flag to be reproduced.
if (bragg.GetBackgroundTrimFraction() > 0.0f)
add("--background-trim", num(bragg.GetBackgroundTrimFraction()));
else if (bragg.GetBackgroundClipNSigma() != BraggIntegrationSettings().GetBackgroundClipNSigma())
add("--background-clip", num(bragg.GetBackgroundClipNSigma()));
if (const auto max_hkl = bragg.GetMaxHKL())
add("--max-hkl", std::to_string(*max_hkl));
// Unset means "to the detector edge"; emitting the resolved number would pin it to this run's
// geometry, so leave the flag out and let it resolve again.
if (const auto d_min = bragg.GetDMinLimit_A())
add("--integration-high-resolution", num(*d_min));
if (config.rotation_indexing) {
if (config.two_pass_rotation)
// -R takes an optional argument, which getopt only accepts attached (-R100), never as a
// separate token - so emit it joined or the copied command line will not re-parse.
args.push_back("-R" + std::to_string(config.rotation_indexing_image_count));
else
args.emplace_back("--single-pass-rotation");
} else if (experiment.GetGoniometer().has_value()) {
// rotation dataset processed as stills -> the user overrode the default with --force-still
args.emplace_back("--force-still");
}
// Stills geometry-refinement two-pass (--refine-geometry). getopt takes its optional argument
// only when attached (=N), never as a separate token, so emit it joined. The CLI defaults it ON
// for a stills-with-cell run, so emit =off when the GUI turned it off in that same case, to
// reproduce the GUI's choice in the copied command line.
const bool stills_with_cell = !config.rotation_indexing && experiment.GetUnitCell().has_value();
if (config.refine_geometry.has_value())
args.push_back("--refine-geometry=" + std::to_string(*config.refine_geometry));
else if (stills_with_cell)
args.emplace_back("--refine-geometry=off");
// Rotation two-pass geometry post-refine. The CLI defaults it ON for a rotation run, so emit the
// disable flag only when the GUI turned it off on a rotation dataset (to reproduce that choice).
if (config.rotation_indexing && !config.rotation_postrefine_geometry)
args.emplace_back("--rotation-no-postrefine");
// Merging is on by default; emit --no-merge only when it was turned off.
if (config.run_scaling) {
const auto sc = experiment.GetScalingSettings();
if (!sc.GetMergeFriedel())
args.emplace_back("-A");
if (!sc.GetStillsPartialityRefine())
args.emplace_back("--simple-stills");
if (!sc.GetExpectedVarianceMerge())
args.emplace_back("--no-expected-variance-merge");
// When merging, the CLI skips the large _process.h5 unless asked; emit the flag when it is
// wanted so a copied command matches the GUI's "Save _process.h5" choice. (write_merged has
// no CLI equivalent - the CLI always writes the .mtz/.cif when merging.)
if (config.write_process_h5)
args.emplace_back("--write-process-h5");
// The low-resolution limit is on by default at the same value in both, so emit it only when
// it differs - including 0, which is how the CLI spells "no limit".
const auto d_max = sc.GetLowResolutionLimit_A();
const auto d_max_default = ScalingSettings().GetLowResolutionLimit_A();
if (d_max != d_max_default)
args.push_back("--scaling-low-resolution=" + num(d_max.value_or(0.0)));
} else {
args.emplace_back("--no-merge");
}
}
args.push_back(input_file);
std::ostringstream cmd;
for (size_t i = 0; i < args.size(); i++) {
if (i)
cmd << ' ';
cmd << quote_if_needed(args[i]);
}
return cmd.str();
}