Build Packages / Create release (push) Successful in 21s
Build Packages / build:rugnux-tgz (x86_64) (push) Successful in 9m40s
Build Packages / build:rugnux:aarch64 (cross) (push) Successful in 9m49s
Build Packages / build:viewer-tgz:cpu (push) Successful in 11m37s
Build Packages / build:viewer-tgz:cuda (push) Successful in 12m40s
Build Packages / build:windows:nocuda (push) Successful in 17m44s
Build Packages / build:windows:cuda (push) Successful in 20m13s
Build Packages / build:rpm (rocky8_nocuda) (push) Successful in 14m41s
Build Packages / HDF5 consumer tests (DIALS, XDS) (push) Successful in 25m59s
Build Packages / build:rpm (ubuntu2204_nocuda) (push) Successful in 15m5s
Build Packages / build:rpm (ubuntu2404_nocuda) (push) Successful in 14m35s
Build Packages / build:rpm (rocky9_nocuda) (push) Successful in 15m53s
Build Packages / build:rugnux:windows (push) Successful in 11m29s
Build Packages / build:rpm (rocky8_sls9) (push) Successful in 18m51s
Build Packages / build:rpm (rocky9_sls9) (push) Successful in 18m43s
Build Packages / Generate python client (push) Successful in 51s
Build Packages / build:rpm (rocky8) (push) Successful in 18m51s
Build Packages / Build documentation (push) Successful in 1m21s
Build Packages / build:rpm (ubuntu2204) (push) Successful in 18m38s
Build Packages / build:rpm (ubuntu2404) (push) Successful in 18m24s
Build Packages / build:rpm (rocky9) (push) Successful in 19m19s
Build Packages / Unit tests (push) Successful in 1h37m15s
* Building Jungfraujoch no longer needs zlib or Eigen installed on the machine, and the dependencies the build fetches are pinned and updated to current releases. * rugnux: improvements in indexing, lattice selection and geometry post-refinement, which index crystals that previously returned no lattice and keep the better of the two geometries a run measures. * rugnux: improvements in beam-centre measurement, beam-stop detection and space-group determination. * rugnux: the unit cell reported with a determined space group now obeys that group - a cell whose symmetry was confirmed from the intensities is re-refined under it, and a cell the group cannot describe is reported with a warning rather than as it stands. * rugnux drops the stretches of a rotation sweep whose removal measurably improves the merged intensities and reports what became of every frame, and decides the resolution cut on the crystal's own diffraction rather than on its ice rings. * The rugnux results report is machine-readable - every line that is not `KEY= value` data starts with `#` - and states the build it was written by, its authorship and its terms of use (`REPORT_VERSION= 8`). * `jfjoch_viewer`: improvements in the file manager (CBF frames beside HDF5 datasets, a remembered root), the dataset plots, the inspector and the image statistics, plus a settable font size, a view of the rugnux results report, usable performance over a remote display (`ssh -X`) and a reset of all settings to defaults; the reciprocal-space window is removed. * Broker fixes around DECTRIS collections and dark-mask calibration: re-initialising after a run that never started no longer freezes the broker, a cancelled calibration is abandoned instead of reported as done, and a collection whose start message never arrives ends by itself. Reviewed-on: #79 Co-authored-by: Filip Leonarski <filip.leonarski@psi.ch>
425 lines
18 KiB
C++
425 lines
18 KiB
C++
// SPDX-FileCopyrightText: 2025 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
|
|
// SPDX-License-Identifier: GPL-3.0-only
|
|
|
|
#include "JFJochViewerImageStatistics.h"
|
|
#include "../../common/time_utc.h"
|
|
#include <QFormLayout>
|
|
#include <QRegularExpression>
|
|
|
|
// Two aligned rows - the lengths over their angles, so that alpha sits below a, beta below b,
|
|
// gamma below c. Qt's rich text does not inherit a surrounding colour into a table, so the
|
|
// colour is applied per cell.
|
|
static QString mkUnitCell(const UnitCell &uc, const char *color = nullptr) {
|
|
const QString style = color ? QString(" style=\"color: %1;\"").arg(color) : QString();
|
|
auto num = [&style](double v) {
|
|
// Padded to three integer digits with figure spaces (digit-wide), so the columns hold
|
|
// still as values change magnitude; no axis reaches 1000 Å and no angle 1000°.
|
|
QString s = QString::number(v, 'f', 1);
|
|
while (s.size() < 5)
|
|
s.prepend(QChar(0x2007));
|
|
return QString("<td align=\"right\"%1><b>%2</b> </td>")
|
|
.arg(style).arg(s);
|
|
};
|
|
auto unit = [&style](const char *u) {
|
|
return QString("<td%1>%2</td>").arg(style).arg(u);
|
|
};
|
|
return "<table cellspacing=\"0\" cellpadding=\"0\"><tr>"
|
|
+ num(uc.a) + num(uc.b) + num(uc.c) + unit("Å")
|
|
+ "</tr><tr>"
|
|
+ num(uc.alpha) + num(uc.beta) + num(uc.gamma) + unit("°")
|
|
+ "</tr></table>";
|
|
}
|
|
|
|
static QString mkSourceInstrumentText(const DiffractionExperiment& exp) {
|
|
QString src, inst;
|
|
const auto &m = exp.GetInstrumentMetadata();
|
|
if (!m.GetSourceName().empty()) src = QString::fromStdString(m.GetSourceName());
|
|
if (!m.GetInstrumentName().empty()) inst = QString::fromStdString(m.GetInstrumentName());
|
|
|
|
if (!src.isEmpty() && !inst.isEmpty()) return src + " / " + inst;
|
|
if (!src.isEmpty()) return src;
|
|
if (!inst.isEmpty()) return inst;
|
|
return QString("-");
|
|
}
|
|
|
|
static QString mkSourceInstrumentTooltip(const DiffractionExperiment &exp) {
|
|
QStringList tooltips;
|
|
|
|
if (exp.GetRingCurrent_mA().has_value()) {
|
|
tooltips << QString("Ring current: <b>%1</b> mA").arg(exp.GetRingCurrent_mA().value(), 0, 'f', 2);
|
|
}
|
|
|
|
if (exp.GetTotalFlux().has_value()) {
|
|
tooltips << QString("Total flux: <b>%1</b> ph/s").arg(exp.GetTotalFlux().value(), 0, 'e', 2);
|
|
}
|
|
|
|
if (exp.GetAttenuatorTransmission().has_value()) {
|
|
tooltips << QString("Attenuation: <b>%1</b>").arg(exp.GetAttenuatorTransmission().value(), 0, 'f', 3);
|
|
}
|
|
|
|
return tooltips.join("<br/>");
|
|
}
|
|
|
|
static QString mkSampleText(const DiffractionExperiment& exp) {
|
|
const auto& name = exp.GetSampleName();
|
|
return name.empty() ? QString("-") : QString::fromStdString(name);
|
|
}
|
|
|
|
static QString mkSampleTooltip(const DiffractionExperiment& exp) {
|
|
if (exp.GetSampleTemperature_K().has_value()) {
|
|
return QString("Sample temperature: <b>%1</b> K").arg(exp.GetSampleTemperature_K().value(), 0, 'f', 2);
|
|
}
|
|
return QString();
|
|
}
|
|
|
|
static QString mkSymmetry(const LatticeMessage& sym) {
|
|
QString text("Bravais lattice: <b>");
|
|
switch (sym.crystal_system) {
|
|
case gemmi::CrystalSystem::Triclinic:
|
|
text += "a";
|
|
break;
|
|
case gemmi::CrystalSystem::Monoclinic:
|
|
text += "m";
|
|
break;
|
|
case gemmi::CrystalSystem::Orthorhombic:
|
|
text += "o";
|
|
break;
|
|
case gemmi::CrystalSystem::Tetragonal:
|
|
text += "t";
|
|
break;
|
|
case gemmi::CrystalSystem::Hexagonal:
|
|
text += "h";
|
|
break;
|
|
case gemmi::CrystalSystem::Cubic:
|
|
text += "c";
|
|
break;
|
|
default: ;
|
|
}
|
|
text += QString(sym.centering) + "</b><br/>";
|
|
text += QString("Niggli class <b>%1</b><br/>").arg(sym.niggli_class);
|
|
return text;
|
|
}
|
|
|
|
JFJochViewerImageStatistics::JFJochViewerImageStatistics(QWidget *parent) : QWidget(parent) {
|
|
QFormLayout* layout = new QFormLayout(this);
|
|
|
|
// Order: what the dataset is, then how it was collected, then what this image contains.
|
|
dataset_name = new QLabel(this);
|
|
dataset_name->setWordWrap(true);
|
|
layout->addRow(new QLabel("Dataset:"), dataset_name);
|
|
|
|
collection_time = new QLabel(this);
|
|
collection_time->setWordWrap(true);
|
|
layout->addRow(new QLabel("Collection time:"), collection_time);
|
|
|
|
source_name = new QLabel(this);
|
|
layout->addRow("Source / Instrument:", source_name);
|
|
|
|
sample_name = new QLabel(this);
|
|
layout->addRow("Sample:", sample_name);
|
|
|
|
detector_name = new QLabel(this);
|
|
layout->addRow(new QLabel("Detector:"), detector_name);
|
|
|
|
detector_distance = new QLabel(this);
|
|
layout->addRow(new QLabel("Detector distance:"), detector_distance);
|
|
|
|
beam_center = new QLabel(this);
|
|
layout->addRow(new QLabel("Beam center:"), beam_center);
|
|
|
|
wavelength = new QLabel(this);
|
|
layout->addRow(new QLabel("Wavelength:"), wavelength);
|
|
|
|
exposure_time = new QLabel(this);
|
|
layout->addRow(new QLabel("Exposure Time:"), exposure_time);
|
|
|
|
rotation_angle_label = new QLabel(this);
|
|
rotation_angle = new QLabel(this);
|
|
layout->addRow(rotation_angle_label, rotation_angle);
|
|
|
|
// Sample-head angles that do not move during a run (an SLS Smargon writes chi and phi). Both
|
|
// labels stay empty for a file that carries none, so the row costs nothing where it means nothing.
|
|
smargon_label = new QLabel(this);
|
|
smargon_angles = new QLabel(this);
|
|
layout->addRow(smargon_label, smargon_angles);
|
|
|
|
valid_values = new QLabel(this);
|
|
layout->addRow(new QLabel("Valid values:"), valid_values);
|
|
|
|
masked_pixels = new QLabel(this);
|
|
layout->addRow(new QLabel("Masked pixels:"), masked_pixels);
|
|
|
|
spots = new QLabel(this);
|
|
layout->addRow(new QLabel("Spots:"), spots);
|
|
|
|
bkg_estimate = new QLabel(this);
|
|
layout->addRow(new QLabel("Background:"), bkg_estimate);
|
|
|
|
indexed = new QLabel(this);
|
|
layout->addRow(new QLabel("Indexing:"), indexed);
|
|
|
|
multiple_lattices = new QLabel(this);
|
|
layout->addRow(multiple_lattices);
|
|
|
|
res_estimate = new QLabel(this);
|
|
layout->addRow(new QLabel("Resolution estimate:"), res_estimate);
|
|
|
|
profile_radius_label = new QLabel("");
|
|
profile_radius = new QLabel(this);
|
|
layout->addRow(profile_radius_label, profile_radius);
|
|
}
|
|
|
|
QString TrimZeros(double number, int precision) {
|
|
auto s = QString::number(number, 'f', precision);
|
|
s.remove(QRegularExpression("\\.?0+$"));
|
|
if (s.isEmpty()) s = "0";
|
|
return s;
|
|
}
|
|
|
|
template <typename Duration>
|
|
QString FormatTime(Duration time, int precision = 6) {
|
|
return TrimZeros(std::chrono::duration<float>(time).count(), precision);
|
|
}
|
|
|
|
void JFJochViewerImageStatistics::loadImage(std::shared_ptr<const JFJochReaderImage> image) {
|
|
if (!image) {
|
|
source_name->setText("");
|
|
sample_name->setText("");
|
|
dataset_name->setText("");
|
|
collection_time->setText("");
|
|
detector_name->setText("");
|
|
detector_name->setToolTip("");
|
|
detector_distance->setText("");
|
|
beam_center->setText("");
|
|
wavelength->setText("");
|
|
wavelength->setToolTip("");
|
|
exposure_time->setText("");
|
|
exposure_time->setToolTip("");
|
|
rotation_angle->setText("");
|
|
rotation_angle->setToolTip("");
|
|
rotation_angle_label->setText("");
|
|
smargon_label->setText("");
|
|
smargon_angles->setText("");
|
|
valid_values->setText("");
|
|
valid_values->setToolTip("");
|
|
spots->setText("");
|
|
bkg_estimate->setText("");
|
|
indexed->setText("");
|
|
indexed->setToolTip("");
|
|
multiple_lattices->setText("");
|
|
profile_radius_label->setText("");
|
|
profile_radius->setText("");
|
|
profile_radius->setToolTip("");
|
|
res_estimate->setText("");
|
|
masked_pixels->setText("");
|
|
masked_pixels->setToolTip("");
|
|
return;
|
|
}
|
|
|
|
QString text;
|
|
|
|
auto &exp = image->Dataset().experiment;
|
|
|
|
// Word-wrap alone would break wherever it likes (mid-directory-name); a zero-width space after
|
|
// every "/" gives it a preferred break point there, so a long path wraps like a path and only
|
|
// falls back to breaking a single component if that component alone doesn't fit.
|
|
QString path = QString::fromStdString(exp.GetFilePrefix());
|
|
path.replace('/', QString("/") + QChar(0x200B)); // U+200B ZERO WIDTH SPACE, a break opportunity
|
|
text = QString("<b>%1</b>").arg(path);
|
|
dataset_name->setText(text);
|
|
|
|
const QString collected = QString::fromStdString(utc_to_local_human_readable(image->Dataset().arm_date));
|
|
collection_time->setText(collected.isEmpty() ? QString("-") : QString("<b>%1</b>").arg(collected));
|
|
|
|
detector_distance->setText(QString("<b>%1</b> mm").arg(QString::number(exp.GetDetectorDistance_mm(), 'f', 3)));
|
|
|
|
beam_center->setText(QString("<b>%1</b> <b>%2</b> pxl")
|
|
.arg(QString::number(exp.GetBeamX_pxl(), 'f', 2))
|
|
.arg(QString::number(exp.GetBeamY_pxl(), 'f', 2)));
|
|
|
|
wavelength->setText(QString("<b>%1</b> Å").arg(QString::number(exp.GetWavelength_A(), 'f', 4)));
|
|
wavelength->setToolTip(QString("Energy: <b>%1</b> eV")
|
|
.arg(QString::number(exp.GetIncidentEnergy_keV() * 1000.0, 'f', 0)));
|
|
|
|
text = QString("<b>%1</b>").arg(QString::fromStdString(exp.GetDetectorDescription()));
|
|
detector_name->setToolTip(QString("Width: <b>%1</b> pxl (<b>%2</b> mm)<br/>Height: <b>%3</b> pxl (<b>%4</b> mm)<br/>Pixel size: <b>%5</b> μm")
|
|
.arg(QString::number(exp.GetXPixelsNum()))
|
|
.arg(QString::number(exp.GetXPixelsNum() * exp.GetPixelSize_mm(), 'f', 3))
|
|
.arg(QString::number(exp.GetYPixelsNum()))
|
|
.arg(QString::number(exp.GetYPixelsNum() * exp.GetPixelSize_mm(), 'f', 3))
|
|
.arg(QString::number(exp.GetPixelSize_mm() * 1000.0, 'f', 0)));
|
|
detector_name->setText(text);
|
|
|
|
source_name->setText(QString("<b>%1</b>").arg(mkSourceInstrumentText(exp)));
|
|
source_name->setToolTip(mkSourceInstrumentTooltip(exp));
|
|
|
|
sample_name->setText(QString("<b>%1</b>").arg(mkSampleText(exp)));
|
|
sample_name->setToolTip(mkSampleTooltip(exp));
|
|
|
|
if (exp.GetGoniometer()) {
|
|
// An axis that is present but does not turn has no wedge to add: state the angle it stands at.
|
|
const float wedge = exp.GetGoniometer()->GetWedge_deg();
|
|
const QString angle = TrimZeros(exp.GetGoniometer()->GetAngle_deg(image->ImageData().number), 3);
|
|
rotation_angle_label->setText("Image angle:");
|
|
rotation_angle->setText(wedge == 0.0f
|
|
? QString("<b>%1°</b>").arg(angle)
|
|
: QString("<b>%1° + %2°</b>").arg(angle).arg(TrimZeros(wedge, 3)));
|
|
rotation_angle->setToolTip(QString("Start angle: <b>%1°</b><br/>Increment: <b>%2°</b>")
|
|
.arg(TrimZeros(exp.GetGoniometer()->GetStart_deg(), 3))
|
|
.arg(TrimZeros(exp.GetGoniometer()->GetIncrement_deg(), 3))
|
|
);
|
|
} else if (exp.GetGridScan()) {
|
|
rotation_angle_label->setText("Grid scan:");
|
|
rotation_angle->setText(QString("<b>%1</b> x <b>%2</b> μm")
|
|
.arg(QString::number(exp.GetGridScan()->GetGridStepX_um(), 'f', 1))
|
|
.arg(QString::number(exp.GetGridScan()->GetGridStepY_um(), 'f', 1)));
|
|
rotation_angle->setToolTip(QString("Grid size: <b>%1</b> x <b>%2</b> μm<br/>"
|
|
"Grid elements: <b>%3</b> x <b>%4</b>")
|
|
.arg(QString::number(exp.GetGridScan()->GetGridSizeX_um()))
|
|
.arg(QString::number(exp.GetGridScan()->GetGridSizeY_um()))
|
|
.arg(QString::number(exp.GetGridScan()->GetGridSizeX_step()))
|
|
.arg(QString::number(exp.GetGridScan()->GetGridSizeY_step())));
|
|
} else {
|
|
rotation_angle_label->setText("");
|
|
rotation_angle->setText(QString(""));
|
|
rotation_angle->setToolTip("");
|
|
}
|
|
|
|
if (const auto head = exp.GetDatasetSettings().GetSmargonPosition()) {
|
|
smargon_label->setText("Smargon:");
|
|
smargon_angles->setText(QString("chi <b>%1</b>° / phi <b>%2</b>°")
|
|
.arg(TrimZeros(head->chi_deg, 3))
|
|
.arg(TrimZeros(head->phi_deg, 3)));
|
|
} else {
|
|
smargon_label->setText("");
|
|
smargon_angles->setText("");
|
|
}
|
|
|
|
exposure_time->setText(QString("<b>%1</b> s").arg(FormatTime(exp.GetImageTime())));
|
|
exposure_time->setToolTip(QString("Count time: <b>%1</b> s<br/>").arg(FormatTime(exp.GetImageCountTime())));
|
|
|
|
text = QString("<b>%1</b>").arg(image->ImageData().spots.size());
|
|
spots->setText(text);
|
|
if (image->ImageData().spot_count.has_value())
|
|
spots->setToolTip(QString("Unfiltered (total): <b>%1</b> <br/>Low resolution: <b>%2</b><br/>Ice ring: <b>%3</b><br/>Indexed <b>%4</b><br/>")
|
|
.arg(image->ImageData().spot_count.value())
|
|
.arg(image->ImageData().spot_count_low_res.value_or(0))
|
|
.arg(image->ImageData().spot_count_ice_rings.value_or(0))
|
|
.arg(image->ImageData().spot_count_indexed.value_or(0)));
|
|
|
|
auto mm = image->ValidMinMax();
|
|
if (mm.has_value()) {
|
|
text = QString("<b>%1</b> - <b>%2</b>")
|
|
.arg(mm->first)
|
|
.arg(mm->second);
|
|
valid_values->setText(text);
|
|
} else {
|
|
valid_values->setText("N/A");
|
|
}
|
|
valid_values->setToolTip(QString("Error pixels: <b>%1</b><br/>Saturated pixels: <b>%2</b>")
|
|
.arg(image->ErrorPixels().size()).arg(image->SaturatedPixels().size()));
|
|
|
|
if (!image->Dataset().bkg_estimate.empty()) {
|
|
text = QString("<b>%1</b>").arg(image->ImageData().bkg_estimate.value_or(0));
|
|
bkg_estimate->setText(text);
|
|
} else {
|
|
bkg_estimate->setText("N/A");
|
|
}
|
|
|
|
auto pr = image->ImageData().profile_radius;
|
|
auto mos = image->ImageData().mosaicity_deg;
|
|
if (mos && std::isfinite(mos.value())) {
|
|
text = QString("<b>%1</b>°").arg(QString::number(mos.value(), 'f', 2));
|
|
profile_radius_label->setText("Mosaicity:");
|
|
profile_radius->setText(text);
|
|
if (pr && std::isfinite(pr.value())) {
|
|
text = QString("Profile radius <b>%1</b> Å<sup>-1</sup>").arg(QString::number(pr.value(), 'f', 6));
|
|
profile_radius->setToolTip(text);
|
|
} else
|
|
profile_radius->setToolTip("");
|
|
} else if (pr && std::isfinite(pr.value())) {
|
|
profile_radius_label->setText("Profile radius:");
|
|
text = QString("<b>%1</b> Å<sup>-1</sup>").arg(QString::number(pr.value(), 'f', 6));
|
|
profile_radius->setText(text);
|
|
profile_radius->setToolTip("");
|
|
} else {
|
|
profile_radius_label->setText("");
|
|
profile_radius->setText("");
|
|
profile_radius->setToolTip("");
|
|
}
|
|
|
|
auto res = image->ImageData().resolution_estimate;
|
|
if (res && std::isfinite(res.value())) {
|
|
text = QString("<b>%1</b> Å").arg(QString::number(res.value(), 'f', 2));
|
|
res_estimate->setText(text);
|
|
} else {
|
|
res_estimate->setText("N/A");
|
|
}
|
|
|
|
float total_pixels = image->Dataset().experiment.GetPixelsNum();
|
|
if (total_pixels == 0)
|
|
total_pixels = 1;
|
|
|
|
auto mask_stats = image->Dataset().pixel_mask->GetStatistics();
|
|
text = QString("<b>%1</b>").arg(mask_stats.total_masked);
|
|
masked_pixels->setText(text);
|
|
masked_pixels->setToolTip(
|
|
QString(
|
|
"Error pixels: <b>%1</b> (%2 %)<br/> Noisy pixels: <b>%3</b> (%4 %) <br/> User mask: <b>%5</b> (%6 %)<br/>"
|
|
"Chip gaps: <b>%7</b> (%8 %)<br/>"
|
|
"Non active area (module gap and fill): <b>%9</b> (%10 %)")
|
|
.arg(mask_stats.error_pixel).arg(QString::number(mask_stats.error_pixel / total_pixels * 100.0, 'f', 1))
|
|
.arg(mask_stats.noisy_pixel).arg(QString::number(mask_stats.noisy_pixel / total_pixels * 100.0, 'f', 1))
|
|
.arg(mask_stats.user_mask).arg(QString::number(mask_stats.user_mask / total_pixels * 100.0, 'f', 1))
|
|
.arg(mask_stats.chip_gap_pixel).arg(QString::number(mask_stats.chip_gap_pixel / total_pixels * 100.0, 'f', 1))
|
|
.arg(mask_stats.module_gap_pixel).arg(QString::number(mask_stats.module_gap_pixel / total_pixels * 100.0, 'f', 1))
|
|
);
|
|
|
|
if (!image->Dataset().indexing_result.empty()) {
|
|
QString tooltip;
|
|
|
|
auto latt = image->ImageData().indexing_lattice;
|
|
if (latt) {
|
|
text = mkUnitCell(latt->GetUnitCell(), "purple");
|
|
|
|
auto vec0 = latt->Vec0();
|
|
auto vec1 = latt->Vec1();
|
|
auto vec2 = latt->Vec2();
|
|
|
|
tooltip = QString("<b>Lattice vectors (Å):</b><br/>"
|
|
"a = (%1, %2, %3)<br/>"
|
|
"b = (%4, %5, %6)<br/>"
|
|
"c = (%7, %8, %9)")
|
|
.arg(vec0.x, 7, 'f', 1)
|
|
.arg(vec0.y, 7, 'f', 1)
|
|
.arg(vec0.z, 7, 'f', 1)
|
|
.arg(vec1.x, 7, 'f', 1)
|
|
.arg(vec1.y, 7, 'f', 1)
|
|
.arg(vec1.z, 7, 'f', 1)
|
|
.arg(vec2.x, 7, 'f', 1)
|
|
.arg(vec2.y, 7, 'f', 1)
|
|
.arg(vec2.z, 7, 'f', 1);
|
|
|
|
if (image->ImageData().lattice_type) {
|
|
tooltip += QString("<br/><br/>");
|
|
tooltip += mkSymmetry(*image->ImageData().lattice_type);
|
|
} else if (image->Dataset().experiment.GetSpaceGroupNumber()) {
|
|
tooltip += QString("<br/><br/>Space group (user-provided): <b>%1</b>")
|
|
.arg(QString::fromStdString(image->Dataset().experiment.GetSpaceGroupName()));
|
|
}
|
|
} else
|
|
// Not indexed is a normal state, not an error - grey, so red keeps meaning trouble.
|
|
text = QString("<span style=\"color: gray;\">No lattice</span>");
|
|
|
|
indexed->setToolTip(tooltip);
|
|
indexed->setText(text);
|
|
} else {
|
|
indexed->setText("N/A");
|
|
}
|
|
|
|
if (image->ImageData().indexing_lattice_count.value_or(0) > 1)
|
|
multiple_lattices->setText("<span style=\"color: red;\"><b>Multiple lattices detected</b></span>");
|
|
else
|
|
multiple_lattices->setText("");
|
|
}
|