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Jungfraujoch/viewer/widgets/PowderCalibrationWidget.cpp
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v1.0.0-rc.166 (#76)
* `rugnux --mode calibration` writes `<prefix>.json` beside the `.poni`, whose `dataset_settings` member is a `jfjoch_broker` `dataset_settings` body as it stands.
* `rugnux` and `jfjoch_viewer` read PILATUS miniCBF sweeps natively, without conversion.
* Masters written by other facilities open, including Eiger 1.x and third-party NXmx variants.
* `rugnux` measures the beam centre on every run, and indexes with it when the file's value indexes nothing.
* A detector swung out on a 2theta arm is placed where the file says it stands, and the calibration can hold the tilt fixed.
* `rugnux` writes the unmerged MTZ by default, and a P1 merge beside it, so a wrong space group can be re-merged without reprocessing.
* Significant improvements to symmetry handling in `rugnux`: the lattice, the point group, the setting and the systematic absences.
* The `rugnux` report gives the resolution the CC1/2 fit reached, beside the range the reflections were written to.
* The `rugnux` report gives the twinning statistics measured before the space group was decided, beside the ones measured after.
* The `rugnux` report gives the strong-direction diffraction limit, and warns when CC1/2 is not monotone with resolution.
* `rugnux` ranks screw axes on the evidence their absences carry, rather than on how many control reflections a candidate happens to have.
* Twinning is no longer reported when the L-test contradicts it.
* The `rugnux` report gives the detector tilt, the measured tilt and the direct beam beside the beam centre, and a post-refined beam centre is judged against the run's own measurement rather than the file's.
* `--no-refine-tilt` holds the detector tilt at the value in the file, instead of zeroing it, when the calibration starts from the spots.
* The `jfjoch_viewer` grid scan view draws the cells in the proportion of the scan steps, so the map has the shape of the scanned area.

Reviewed-on: #76
Co-authored-by: Filip Leonarski <filip.leonarski@psi.ch>
2026-09-02 21:17:31 +02:00

134 lines
6.3 KiB
C++

// SPDX-FileCopyrightText: 2025 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
// SPDX-License-Identifier: GPL-3.0-only
#include "PowderCalibrationWidget.h"
#include <QPushButton>
#include <QGridLayout>
#include <QLabel>
#include "../../common/JFJochMath.h"
#include "../image_analysis/geom_refinement/AssignSpotsToRings.h"
#include "../image_analysis/geom_refinement/Calibrants.h"
PowderCalibrationWidget::PowderCalibrationWidget(QWidget *parent) : QWidget(parent) {
auto layout = new QVBoxLayout(this);
calibrantCombo = new QComboBox(this);
updateCalibrantList();
// How a whole-dataset run measures the rings. The two buttons below always work from the spots of
// the image on screen, so this only takes effect for "Analyze dataset".
methodCombo = new QComboBox(this);
methodCombo->addItem("Rings (summed profile)", static_cast<int>(CalibrationMethod::Rings));
methodCombo->addItem("Spots (pooled spot lists)", static_cast<int>(CalibrationMethod::Spots));
methodCombo->setToolTip("How \"Analyze dataset\" measures the powder rings: rings sums the "
"(q x azimuth) azimuthal profile over every image and fits the ring arcs in it; "
"spots pools the found spots and fits those.");
// The detector tilt is a free parameter of every one of these fits. Unticking it holds rot1/rot2
// where the geometry already has them - what a calibration handed to a program with no way to
// express a tilted detector (XDS) needs. It applies to the two buttons and to "Analyze dataset".
refineTiltCheck = new QCheckBox("Refine detector tilt", this);
refineTiltCheck->setChecked(true);
refineTiltCheck->setToolTip("Fit the detector tilt (PONI rot1/rot2) together with the beam centre "
"and the distance. Untick to hold the tilt where it is and fit only the "
"beam centre and the distance - for a calibration that will be given to "
"a program which cannot express a tilted detector, such as XDS.");
auto findBeamCenterButton = new QPushButton("Guess detector calibration", this);
connect(findBeamCenterButton, &QPushButton::clicked,this, &PowderCalibrationWidget::findBeamCenterClicked);
auto optimizeBeamCenterButton = new QPushButton("Refine detector calibration", this);
connect(optimizeBeamCenterButton, &QPushButton::clicked,this, &PowderCalibrationWidget::optimizeBeamCenterClicked);
auto calibrantRingsButton = new QPushButton("Display calibrant rings", this);
connect(calibrantRingsButton, &QPushButton::clicked, this, [this]() {
QVector<float> d_rings;
for (float q : GetCalibrantRings())
d_rings.append(2 * PI / q);
emit ringsFromCalibration(d_rings);
});
auto refine_row = new QGridLayout();
refine_row->setSpacing(12);
refine_row->addWidget(new QLabel("Calibrant:"),0,0);
refine_row->addWidget(calibrantCombo,0,1);
refine_row->addWidget(findBeamCenterButton,1, 0);
refine_row->addWidget(optimizeBeamCenterButton,1, 1);
refine_row->addWidget(calibrantRingsButton,2, 0);
refine_row->addWidget(refineTiltCheck,2, 1);
refine_row->addWidget(new QLabel("Dataset method:"),3,0);
refine_row->addWidget(methodCombo,3,1);
auto hint = new QLabel("The two buttons fit the image on screen; \"Analyze dataset\" fits the whole "
"run and writes a .poni.", this);
hint->setWordWrap(true);
hint->setStyleSheet("color: gray;");
layout->addLayout(refine_row);
layout->addWidget(hint);
setLayout(layout);
}
std::vector<float> PowderCalibrationWidget::GetCalibrantRings() const {
// The combo lists the shared calibrant table (in its order), then the current sample's own cell,
// which is not a powder standard but is what a single-crystal image's spots actually sit on.
const int idx = calibrantCombo->currentIndex();
const auto &table = Calibrants();
if (idx >= 0 && idx < static_cast<int>(table.size()))
return CalibrantRings(table[idx].name);
if (sample_cell) {
// With the group where the dataset has one: the absences then come from the symmetry rather
// than from a bare P-lattice assumption, and a centred cell's list no longer opens with a
// reflection that is not there - which would scale the whole calibration by the ratio between
// that ring and the first real one. Same call the CLI makes.
if (sample_sg)
return CalculateXtalRings(sample_cell.value(), *sample_sg);
return CalculateXtalRings(sample_cell.value());
}
return CalibrantRings(table.front().name);
}
CalibrationSelection PowderCalibrationWidget::Selection() const {
return {calibrantCombo->currentText(), GetCalibrantRings(),
static_cast<CalibrationMethod>(methodCombo->currentData().toInt()),
refineTiltCheck->isChecked()};
}
void PowderCalibrationWidget::updateCalibrantList() {
calibrantCombo->clear();
for (const auto &c : Calibrants())
calibrantCombo->addItem(QString::fromStdString(c.name));
if (sample_cell)
calibrantCombo->addItem(QString("Current sample (%1 %2 %3 %4 %5 %6)")
.arg(QString::number(sample_cell->a, 'f', 1))
.arg(QString::number(sample_cell->b, 'f', 1))
.arg(QString::number(sample_cell->c, 'f', 1))
.arg(QString::number(sample_cell->alpha, 'f', 1))
.arg(QString::number(sample_cell->beta, 'f', 1))
.arg(QString::number(sample_cell->gamma, 'f', 1)));
calibrantCombo->setCurrentIndex(0);
}
void PowderCalibrationWidget::loadImage(std::shared_ptr<const JFJochReaderImage> image) {
if (image) {
sample_cell = image->Dataset().experiment.GetUnitCell();
sample_sg = image->Dataset().experiment.GetGemmiSpaceGroup();
}
updateCalibrantList();
}
void PowderCalibrationWidget::findBeamCenterClicked() {
const std::vector<float> rings = GetCalibrantRings();
emit findBeamCenter(QVector<float>(rings.begin(), rings.end()), true, refineTiltCheck->isChecked());
}
void PowderCalibrationWidget::optimizeBeamCenterClicked() {
const std::vector<float> rings = GetCalibrantRings();
emit findBeamCenter(QVector<float>(rings.begin(), rings.end()), false, refineTiltCheck->isChecked());
}