4 Commits

Author SHA1 Message Date
AndreaRigoni
987d783fdb starting udate geant sloid 2026-04-16 11:07:06 +00:00
AndreaRigoni
83af9a180f wrapper fix 2026-04-16 11:05:26 +00:00
AndreaRigoni
865282aefc refactor: improve Geant4 solid synchronization and update documentation for VTK integration 2026-04-16 06:51:16 +00:00
AndreaRigoni
24ec326715 feat: implement configurable font settings for VTK viewports and GUI elements with persistent preferences. 2026-04-15 14:50:46 +00:00
34 changed files with 758 additions and 168 deletions

View File

@@ -10,6 +10,7 @@
#include <QList> #include <QList>
#include <QShortcut> #include <QShortcut>
#include <QItemSelectionModel> #include <QItemSelectionModel>
#include <functional>
ContextPanel::ContextPanel(QWidget* parent) ContextPanel::ContextPanel(QWidget* parent)
: QWidget(parent) : QWidget(parent)
@@ -58,6 +59,8 @@ ContextPanel::ContextPanel(QWidget* parent)
m_layout->addWidget(m_splitter); m_layout->addWidget(m_splitter);
connect(m_propertiesPanel, &PropertiesPanel::propertyUpdated, this, &ContextPanel::propertyUpdated);
connect(m_treeView->selectionModel(), &QItemSelectionModel::selectionChanged, connect(m_treeView->selectionModel(), &QItemSelectionModel::selectionChanged,
this, &ContextPanel::onSelectionChanged); this, &ContextPanel::onSelectionChanged);
@@ -103,15 +106,34 @@ void ContextPanel::selectObject(uLib::Object* obj) {
return; return;
} }
for (int i = 0; i < m_model->rowCount(); ++i) { // Recursive search helper
QModelIndex idx = m_model->index(i, 0); std::function<QModelIndex(const QModelIndex&)> findIdx = [&](const QModelIndex& parent) -> QModelIndex {
if (idx.internalPointer() == obj) { for (int i = 0; i < m_model->rowCount(parent); ++i) {
QSignalBlocker blocker(m_treeView->selectionModel()); QModelIndex idx = m_model->index(i, 0, parent);
m_treeView->selectionModel()->select(idx, QItemSelectionModel::ClearAndSelect | QItemSelectionModel::Rows); if (idx.internalPointer() == obj) return idx;
m_treeView->scrollTo(idx);
m_propertiesPanel->setObject(obj); // Explicitly update properties too if (m_model->rowCount(idx) > 0) {
return; QModelIndex childIdx = findIdx(idx);
if (childIdx.isValid()) return childIdx;
}
} }
return QModelIndex();
};
QModelIndex targetIdx = findIdx(QModelIndex());
if (targetIdx.isValid()) {
QSignalBlocker blocker(m_treeView->selectionModel());
// Expand parents so the selection is visible
QModelIndex p = targetIdx.parent();
while (p.isValid()) {
m_treeView->expand(p);
p = p.parent();
}
m_treeView->selectionModel()->select(targetIdx, QItemSelectionModel::ClearAndSelect | QItemSelectionModel::Rows);
m_treeView->scrollTo(targetIdx);
m_propertiesPanel->setObject(obj);
} }
} }

View File

@@ -25,6 +25,7 @@ public:
signals: signals:
void objectSelected(uLib::Object* obj); void objectSelected(uLib::Object* obj);
void propertyUpdated();
private slots: private slots:
void onSelectionChanged(const QItemSelection& selected, const QItemSelection& deselected); void onSelectionChanged(const QItemSelection& selected, const QItemSelection& deselected);

View File

@@ -6,6 +6,8 @@
#include "Core/ObjectsContext.h" #include "Core/ObjectsContext.h"
#include "Vtk/vtkObjectsContext.h" #include "Vtk/vtkObjectsContext.h"
#include "Vtk/vtkQViewport.h" #include "Vtk/vtkQViewport.h"
#include "Vtk/vtkViewportProperties.h"
#include <Vtk/uLibVtkInterface.h>
#include <QVBoxLayout> #include <QVBoxLayout>
#include <QHBoxLayout> #include <QHBoxLayout>
#include <QSplitter> #include <QSplitter>
@@ -22,7 +24,7 @@
#include "PreferencesDialog.h" #include "PreferencesDialog.h"
#include "Settings.h" #include "Settings.h"
MainPanel::MainPanel(QWidget* parent) : QWidget(parent), m_context(nullptr), m_mainVtkContext(nullptr) { MainPanel::MainPanel(QWidget* parent) : QWidget(parent), m_context(nullptr), m_mainVtkContext(nullptr), m_viewportProps(nullptr) {
this->setObjectName("MainPanel"); this->setObjectName("MainPanel");
this->setAttribute(Qt::WA_StyledBackground); this->setAttribute(Qt::WA_StyledBackground);
auto* mainLayout = new QVBoxLayout(this); auto* mainLayout = new QVBoxLayout(this);
@@ -99,6 +101,13 @@ MainPanel::MainPanel(QWidget* parent) : QWidget(parent), m_context(nullptr), m_m
} }
}); });
connect(m_contextPanel, &ContextPanel::propertyUpdated, [this](){
auto viewports = this->findChildren<uLib::Vtk::QViewport*>();
for (auto* vp : viewports) {
vp->Render();
}
});
// Set initial sizes: Context(250), Viewport(600), Properties(250) // Set initial sizes: Context(250), Viewport(600), Properties(250)
QList<int> sizes; QList<int> sizes;
sizes << 250 << 600 << 250; sizes << 250 << 600 << 250;
@@ -244,15 +253,21 @@ void MainPanel::onExit() {
void MainPanel::onPreferences() { void MainPanel::onPreferences() {
uLib::Qt::PreferencesDialog dlg(this); uLib::Qt::PreferencesDialog dlg(this);
if (dlg.exec() == QDialog::Accepted) { if (dlg.exec() == QDialog::Accepted) {
// Apply theme // Apply theme and GUI font
auto theme = uLib::Qt::Settings::Instance().GetTheme(); auto theme = uLib::Qt::Settings::Instance().GetTheme();
StyleManager::applyStyle(qApp, theme == uLib::Qt::Settings::Dark ? "dark" : "bright"); auto guiFont = uLib::Qt::Settings::Instance().GetGuiFont();
StyleManager::applyStyle(qApp, theme == uLib::Qt::Settings::Dark ? "dark" : "bright", guiFont);
// Apply rendering preference to all viewports // Apply rendering and font preferences to all viewports
bool throttled = uLib::Qt::Settings::Instance().GetThrottledRendering(); bool throttled = uLib::Qt::Settings::Instance().GetThrottledRendering();
auto font = uLib::Qt::Settings::Instance().GetFont();
auto fontColor = uLib::Qt::Settings::Instance().GetFontColor();
auto viewports = this->findChildren<uLib::Vtk::QViewport*>(); auto viewports = this->findChildren<uLib::Vtk::QViewport*>();
for (auto* vp : viewports) { for (auto* vp : viewports) {
vp->SetThrottledRendering(throttled); vp->SetThrottledRendering(throttled);
vp->SetFont(font);
vp->SetFontColor(fontColor);
vp->Render(); vp->Render();
} }
} }

View File

@@ -12,6 +12,7 @@ namespace uLib {
class ObjectsContext; class ObjectsContext;
namespace Vtk { namespace Vtk {
class ObjectsContext; class ObjectsContext;
class ViewportProperties;
} }
} }
@@ -40,6 +41,7 @@ private:
ContextPanel* m_contextPanel; ContextPanel* m_contextPanel;
uLib::ObjectsContext* m_context; uLib::ObjectsContext* m_context;
uLib::Vtk::ObjectsContext* m_mainVtkContext; uLib::Vtk::ObjectsContext* m_mainVtkContext;
uLib::Vtk::ViewportProperties* m_viewportProps;
}; };
#endif // MAINPANEL_H #endif // MAINPANEL_H

View File

@@ -5,6 +5,8 @@
#include <QPushButton> #include <QPushButton>
#include <QLabel> #include <QLabel>
#include <QGroupBox> #include <QGroupBox>
#include <QColorDialog>
#include <QFormLayout>
namespace uLib { namespace uLib {
namespace Qt { namespace Qt {
@@ -64,6 +66,77 @@ PreferencesDialog::PreferencesDialog(QWidget* parent) : QDialog(parent) {
mainLayout->addWidget(unitsGroup); mainLayout->addWidget(unitsGroup);
// ── Font Configuration ──────────────────────────────────────────────────
auto* fontGroup = new QGroupBox("Viewport Font Configuration", this);
auto* fontLayout = new QFormLayout(fontGroup);
fontLayout->setLabelAlignment(::Qt::AlignRight);
FontConfig currentFont = Settings::Instance().GetFont();
m_currentFontColor = Settings::Instance().GetFontColor();
m_fontFamilies = new QComboBox(fontGroup);
m_fontFamilies->addItems({"Arial", "Courier", "Times"});
m_fontFamilies->setCurrentText(QString::fromStdString(currentFont.family));
m_fontSize = new QSpinBox(fontGroup);
m_fontSize->setRange(6, 72);
m_fontSize->setValue(currentFont.size);
m_fontBold = new QCheckBox("Bold", fontGroup);
m_fontBold->setChecked(currentFont.bold);
m_fontItalic = new QCheckBox("Italic", fontGroup);
m_fontItalic->setChecked(currentFont.italic);
m_fontColorBtn = new QPushButton(fontGroup);
m_fontColorBtn->setFixedWidth(60);
updateFontColorButton();
connect(m_fontColorBtn, &QPushButton::clicked, [this](){
QColor c = QColor::fromRgbF(m_currentFontColor.x(), m_currentFontColor.y(), m_currentFontColor.z());
QColor selected = QColorDialog::getColor(c, this, "Select Font Color");
if (selected.isValid()) {
m_currentFontColor = Vector3d(selected.redF(), selected.greenF(), selected.blueF());
updateFontColorButton();
}
});
fontLayout->addRow("Family:", m_fontFamilies);
fontLayout->addRow("Size:", m_fontSize);
fontLayout->addRow(m_fontBold);
fontLayout->addRow(m_fontItalic);
fontLayout->addRow("Color:", m_fontColorBtn);
mainLayout->addWidget(fontGroup);
// ── GUI Font Configuration ──────────────────────────────────────────────
auto* guiFontGroup = new QGroupBox("GUI Font Configuration", this);
auto* guiFontLayout = new QFormLayout(guiFontGroup);
guiFontLayout->setLabelAlignment(::Qt::AlignRight);
FontConfig currentGuiFont = Settings::Instance().GetGuiFont();
m_guiFontFamilies = new QComboBox(guiFontGroup);
m_guiFontFamilies->setEditable(true);
m_guiFontFamilies->addItems({"Inter", "Roboto", "Segoe UI", "Arial", "Ubuntu"});
m_guiFontFamilies->setCurrentText(QString::fromStdString(currentGuiFont.family));
m_guiFontSize = new QSpinBox(guiFontGroup);
m_guiFontSize->setRange(6, 48);
m_guiFontSize->setValue(currentGuiFont.size);
m_guiFontBold = new QCheckBox("Bold", guiFontGroup);
m_guiFontBold->setChecked(currentGuiFont.bold);
m_guiFontItalic = new QCheckBox("Italic", guiFontGroup);
m_guiFontItalic->setChecked(currentGuiFont.italic);
guiFontLayout->addRow("Family:", m_guiFontFamilies);
guiFontLayout->addRow("Size:", m_guiFontSize);
guiFontLayout->addRow(m_guiFontBold);
guiFontLayout->addRow(m_guiFontItalic);
mainLayout->addWidget(guiFontGroup);
mainLayout->addStretch(); mainLayout->addStretch();
// ── Buttons ───────────────────────────────────────────────────────────── // ── Buttons ─────────────────────────────────────────────────────────────
@@ -92,8 +165,20 @@ void PreferencesDialog::onAccept() {
Settings::Instance().SetPreferredUnit(pair.first, pair.second->currentText().toStdString()); Settings::Instance().SetPreferredUnit(pair.first, pair.second->currentText().toStdString());
} }
FontConfig font(m_fontFamilies->currentText().toStdString(), m_fontSize->value(), m_fontBold->isChecked(), m_fontItalic->isChecked());
Settings::Instance().SetFont(font);
Settings::Instance().SetFontColor(m_currentFontColor);
FontConfig guiFont(m_guiFontFamilies->currentText().toStdString(), m_guiFontSize->value(), m_guiFontBold->isChecked(), m_guiFontItalic->isChecked());
Settings::Instance().SetGuiFont(guiFont);
accept(); accept();
} }
void PreferencesDialog::updateFontColorButton() {
QColor c = QColor::fromRgbF(m_currentFontColor.x(), m_currentFontColor.y(), m_currentFontColor.z());
m_fontColorBtn->setStyleSheet(QString("background-color: %1; border: 1px solid #555; height: 18px;").arg(c.name()));
}
} // namespace Qt } // namespace Qt
} // namespace uLib } // namespace uLib

View File

@@ -4,6 +4,8 @@
#include <QDialog> #include <QDialog>
#include <QCheckBox> #include <QCheckBox>
#include <QComboBox> #include <QComboBox>
#include <QSpinBox>
#include <QPushButton>
#include <map> #include <map>
#include <string> #include <string>
#include "Settings.h" #include "Settings.h"
@@ -23,6 +25,22 @@ private:
QCheckBox* m_throttledRendering; QCheckBox* m_throttledRendering;
QComboBox* m_themeCombo; QComboBox* m_themeCombo;
std::map<Settings::Dimension, QComboBox*> m_unitCombos; std::map<Settings::Dimension, QComboBox*> m_unitCombos;
// Font Configuration
QComboBox* m_fontFamilies;
QSpinBox* m_fontSize;
QCheckBox* m_fontBold;
QCheckBox* m_fontItalic;
QPushButton* m_fontColorBtn;
Vector3d m_currentFontColor;
// GUI Font Configuration
QComboBox* m_guiFontFamilies;
QSpinBox* m_guiFontSize;
QCheckBox* m_guiFontBold;
QCheckBox* m_guiFontItalic;
void updateFontColorButton();
}; };
} // namespace Qt } // namespace Qt

View File

@@ -30,6 +30,10 @@ PropertiesPanel::PropertiesPanel(QWidget* parent) : QWidget(parent) {
// Editor // Editor
m_editor = new uLib::Qt::PropertyEditor(this); m_editor = new uLib::Qt::PropertyEditor(this);
m_layout->addWidget(m_editor, 1); m_layout->addWidget(m_editor, 1);
connect(m_editor, &uLib::Qt::PropertyEditor::propertyUpdated, [this](uLib::PropertyBase*){
emit propertyUpdated();
});
} }
void PropertiesPanel::setObject(uLib::Object* obj) { void PropertiesPanel::setObject(uLib::Object* obj) {

View File

@@ -24,6 +24,9 @@ public:
/** @brief Sets the object to be inspected. */ /** @brief Sets the object to be inspected. */
void setObject(uLib::Object* obj); void setObject(uLib::Object* obj);
signals:
void propertyUpdated();
private: private:
QVBoxLayout* m_layout; QVBoxLayout* m_layout;
QWidget* m_titleBar; QWidget* m_titleBar;

View File

@@ -11,6 +11,7 @@
#include <QColorDialog> #include <QColorDialog>
#include <QFrame> #include <QFrame>
#include <QSlider> #include <QSlider>
#include <QFontDialog>
#include "Settings.h" #include "Settings.h"
namespace uLib { namespace uLib {
@@ -151,7 +152,7 @@ DoublePropertyWidget::DoublePropertyWidget(Property<double>* prop, QWidget* pare
} }
m_Edit->setValue(prop->Get()); m_Edit->setValue(prop->Get());
m_Layout->addWidget(m_Edit, 1); m_Layout->addWidget(m_Edit, 1);
connect(m_Edit, &UnitLineEdit::valueManualChanged, [this](double val){ m_Prop->Set(val); }); connect(m_Edit, &UnitLineEdit::valueManualChanged, [this](double val){ m_Prop->Set(val); emit updated(); });
m_Connection = uLib::Object::connect(m_Prop, &Property<double>::Updated, [this](){ m_Connection = uLib::Object::connect(m_Prop, &Property<double>::Updated, [this](){
m_Edit->setValue(m_Prop->Get()); m_Edit->setValue(m_Prop->Get());
}); });
@@ -169,7 +170,7 @@ FloatPropertyWidget::FloatPropertyWidget(Property<float>* prop, QWidget* parent)
} }
m_Edit->setValue(prop->Get()); m_Edit->setValue(prop->Get());
m_Layout->addWidget(m_Edit, 1); m_Layout->addWidget(m_Edit, 1);
connect(m_Edit, &UnitLineEdit::valueManualChanged, [this](double val){ m_Prop->Set((float)val); }); connect(m_Edit, &UnitLineEdit::valueManualChanged, [this](double val){ m_Prop->Set((float)val); emit updated(); });
m_Connection = uLib::Object::connect(m_Prop, &Property<float>::Updated, [this](){ m_Connection = uLib::Object::connect(m_Prop, &Property<float>::Updated, [this](){
m_Edit->setValue((double)m_Prop->Get()); m_Edit->setValue((double)m_Prop->Get());
}); });
@@ -188,7 +189,7 @@ IntPropertyWidget::IntPropertyWidget(Property<int>* prop, QWidget* parent)
} }
m_Edit->setValue(prop->Get()); m_Edit->setValue(prop->Get());
m_Layout->addWidget(m_Edit, 1); m_Layout->addWidget(m_Edit, 1);
connect(m_Edit, &UnitLineEdit::valueManualChanged, [this](double val){ m_Prop->Set((int)val); }); connect(m_Edit, &UnitLineEdit::valueManualChanged, [this](double val){ m_Prop->Set((int)val); emit updated(); });
m_Connection = uLib::Object::connect(m_Prop, &Property<int>::Updated, [this](){ m_Connection = uLib::Object::connect(m_Prop, &Property<int>::Updated, [this](){
m_Edit->setValue((double)m_Prop->Get()); m_Edit->setValue((double)m_Prop->Get());
}); });
@@ -199,7 +200,7 @@ BoolPropertyWidget::BoolPropertyWidget(Property<bool>* prop, QWidget* parent)
m_CheckBox = new QCheckBox(this); m_CheckBox = new QCheckBox(this);
m_CheckBox->setChecked(prop->Get()); m_CheckBox->setChecked(prop->Get());
m_Layout->addWidget(m_CheckBox, 1); m_Layout->addWidget(m_CheckBox, 1);
connect(m_CheckBox, &QCheckBox::toggled, [this](bool val){ if (m_Prop->Get() != val) m_Prop->Set(val); }); connect(m_CheckBox, &QCheckBox::toggled, [this](bool val){ if (m_Prop->Get() != val) { m_Prop->Set(val); emit updated(); } });
m_Connection = uLib::Object::connect(m_Prop, &Property<bool>::Updated, [this](){ m_Connection = uLib::Object::connect(m_Prop, &Property<bool>::Updated, [this](){
if (m_CheckBox->isChecked() != m_Prop->Get()) { if (m_CheckBox->isChecked() != m_Prop->Get()) {
QSignalBlocker blocker(m_CheckBox); QSignalBlocker blocker(m_CheckBox);
@@ -222,7 +223,7 @@ RangePropertyWidget::RangePropertyWidget(Property<double>* prop, QWidget* parent
m_Layout->addWidget(m_Edit, 0); m_Layout->addWidget(m_Edit, 0);
connect(m_Slider, &QSlider::valueChanged, this, &RangePropertyWidget::onSliderChanged); connect(m_Slider, &QSlider::valueChanged, this, &RangePropertyWidget::onSliderChanged);
connect(m_Edit, &UnitLineEdit::valueManualChanged, [this](double val){ m_Prop->Set(val); }); connect(m_Edit, &UnitLineEdit::valueManualChanged, [this](double val){ m_Prop->Set(val); emit updated(); });
m_Connection = uLib::Object::connect(m_Prop, &Property<double>::Updated, [this](){ m_Connection = uLib::Object::connect(m_Prop, &Property<double>::Updated, [this](){
this->updateUi(); this->updateUi();
@@ -244,6 +245,7 @@ void RangePropertyWidget::updateUi() {
void RangePropertyWidget::onSliderChanged(int val) { void RangePropertyWidget::onSliderChanged(int val) {
double realVal = m_Prop->GetMin() + (val / 100.0) * (m_Prop->GetMax() - m_Prop->GetMin()); double realVal = m_Prop->GetMin() + (val / 100.0) * (m_Prop->GetMax() - m_Prop->GetMin());
m_Prop->Set(realVal); m_Prop->Set(realVal);
emit updated();
} }
ColorPropertyWidget::ColorPropertyWidget(Property<Vector3d>* prop, QWidget* parent) ColorPropertyWidget::ColorPropertyWidget(Property<Vector3d>* prop, QWidget* parent)
@@ -276,6 +278,7 @@ void ColorPropertyWidget::onClicked() {
QColor selected = QColorDialog::getColor(current, this, "Select Color"); QColor selected = QColorDialog::getColor(current, this, "Select Color");
if (selected.isValid()) { if (selected.isValid()) {
m_Prop->Set(Vector3d(selected.redF(), selected.greenF(), selected.blueF())); m_Prop->Set(Vector3d(selected.redF(), selected.greenF(), selected.blueF()));
emit updated();
} }
} }
@@ -286,7 +289,7 @@ StringPropertyWidget::StringPropertyWidget(Property<std::string>* prop, QWidget*
m_Layout->addWidget(m_LineEdit, 1); m_Layout->addWidget(m_LineEdit, 1);
connect(m_LineEdit, &QLineEdit::editingFinished, [this](){ connect(m_LineEdit, &QLineEdit::editingFinished, [this](){
std::string val = m_LineEdit->text().toStdString(); std::string val = m_LineEdit->text().toStdString();
if (m_Prop->Get() != val) m_Prop->Set(val); if (m_Prop->Get() != val) { m_Prop->Set(val); emit updated(); }
}); });
m_Connection = uLib::Object::connect(m_Prop, &Property<std::string>::Updated, [this](){ m_Connection = uLib::Object::connect(m_Prop, &Property<std::string>::Updated, [this](){
if (m_LineEdit->text().toStdString() != m_Prop->Get()) { if (m_LineEdit->text().toStdString() != m_Prop->Get()) {
@@ -297,6 +300,40 @@ StringPropertyWidget::StringPropertyWidget(Property<std::string>* prop, QWidget*
} }
StringPropertyWidget::~StringPropertyWidget() {} StringPropertyWidget::~StringPropertyWidget() {}
FontPropertyWidget::FontPropertyWidget(Property<FontConfig>* prop, QWidget* parent)
: PropertyWidgetBase(prop, parent), m_Prop(prop) {
m_Button = new QPushButton(this);
m_Button->setMinimumWidth(100);
this->updateButtonText();
m_Layout->addWidget(m_Button, 1);
connect(m_Button, &QPushButton::clicked, this, &FontPropertyWidget::onClicked);
m_Connection = uLib::Object::connect(m_Prop, &Property<FontConfig>::Updated, [this](){
this->updateButtonText();
});
}
FontPropertyWidget::~FontPropertyWidget() {}
void FontPropertyWidget::updateButtonText() {
FontConfig f = m_Prop->Get();
m_Button->setText(QString::fromStdString(f.family) + " " + QString::number(f.size));
}
void FontPropertyWidget::onClicked() {
FontConfig current = m_Prop->Get();
QFont font(QString::fromStdString(current.family), current.size);
font.setBold(current.bold);
font.setItalic(current.italic);
bool ok;
QFont selected = QFontDialog::getFont(&ok, font, this, "Select Font");
if (ok) {
FontConfig newF(selected.family().toStdString(), selected.pointSize(), selected.bold(), selected.italic());
m_Prop->Set(newF);
emit updated();
}
}
class GroupHeaderWidget : public QWidget { class GroupHeaderWidget : public QWidget {
public: public:
GroupHeaderWidget(const QString& name, QWidget* parent = nullptr) : QWidget(parent) { GroupHeaderWidget(const QString& name, QWidget* parent = nullptr) : QWidget(parent) {
@@ -332,8 +369,9 @@ public:
// Get initial value // Get initial value
if (auto* p = dynamic_cast<Property<int>*>(prop)) { if (auto* p = dynamic_cast<Property<int>*>(prop)) {
m_Combo->setCurrentIndex(p->Get()); m_Combo->setCurrentIndex(p->Get());
connect(m_Combo, &QComboBox::currentIndexChanged, [p](int index){ connect(m_Combo, &QComboBox::currentIndexChanged, [this, p](int index){
p->Set(index); p->Set(index);
emit updated();
}); });
// Store connection in base m_Connection so it's auto-disconnected on destruction. // Store connection in base m_Connection so it's auto-disconnected on destruction.
m_Connection = uLib::Object::connect(p, &Property<int>::Updated, [this, p](){ m_Connection = uLib::Object::connect(p, &Property<int>::Updated, [this, p](){
@@ -374,6 +412,9 @@ PropertyEditor::PropertyEditor(QWidget* parent) : QWidget(parent), m_Object(null
registerFactory<std::string>([](PropertyBase* p, QWidget* parent){ registerFactory<std::string>([](PropertyBase* p, QWidget* parent){
return new StringPropertyWidget(static_cast<Property<std::string>*>(p), parent); return new StringPropertyWidget(static_cast<Property<std::string>*>(p), parent);
}); });
registerFactory<FontConfig>([](PropertyBase* p, QWidget* parent){
return new FontPropertyWidget(static_cast<Property<FontConfig>*>(p), parent);
});
// Register EnumProperty specifically (needs to check type since it holds Property<int> but is EnumProperty) // Register EnumProperty specifically (needs to check type since it holds Property<int> but is EnumProperty)
m_Factories[std::type_index(typeid(EnumProperty))] = [](PropertyBase* p, QWidget* parent) { m_Factories[std::type_index(typeid(EnumProperty))] = [](PropertyBase* p, QWidget* parent) {
@@ -462,6 +503,12 @@ void PropertyEditor::setObject(::uLib::Object* obj, bool displayOnly) {
} }
if (widget) { if (widget) {
if (auto* propWidget = qobject_cast<PropertyWidgetBase*>(widget)) {
connect(propWidget, &PropertyWidgetBase::updated, [this, prop](){
emit propertyUpdated(prop);
});
}
if (!groupName.empty()) { if (!groupName.empty()) {
// Indent grouped properties // Indent grouped properties
widget->setContentsMargins(16, 0, 0, 0); widget->setContentsMargins(16, 0, 0, 0);

View File

@@ -17,6 +17,7 @@ class QSlider;
#include "Core/Property.h" #include "Core/Property.h"
#include "Core/Object.h" #include "Core/Object.h"
#include "Core/Signal.h" #include "Core/Signal.h"
#include "Core/FontConfig.h"
#include "Math/Dense.h" #include "Math/Dense.h"
#include "Settings.h" #include "Settings.h"
@@ -32,6 +33,9 @@ public:
virtual ~PropertyWidgetBase(); virtual ~PropertyWidgetBase();
PropertyBase* getProperty() const { return m_BaseProperty; } PropertyBase* getProperty() const { return m_BaseProperty; }
signals:
void updated();
protected: protected:
PropertyBase* m_BaseProperty; PropertyBase* m_BaseProperty;
QHBoxLayout* m_Layout; QHBoxLayout* m_Layout;
@@ -121,7 +125,10 @@ public:
connect(m_Edits[i], &UnitLineEdit::valueManualChanged, [this, i](double val){ connect(m_Edits[i], &UnitLineEdit::valueManualChanged, [this, i](double val){
VecT v = m_Prop->Get(); VecT v = m_Prop->Get();
v(i) = (typename VecT::Scalar)val; v(i) = (typename VecT::Scalar)val;
if (m_Prop->Get() != v) m_Prop->Set(v); if (m_Prop->Get() != v) {
m_Prop->Set(v);
emit updated();
}
}); });
} }
updateEdits(); updateEdits();
@@ -191,6 +198,19 @@ private:
QLineEdit* m_LineEdit; QLineEdit* m_LineEdit;
}; };
class FontPropertyWidget : public PropertyWidgetBase {
Q_OBJECT
public:
FontPropertyWidget(Property<FontConfig>* prop, QWidget* parent = nullptr);
virtual ~FontPropertyWidget();
private slots:
void onClicked();
private:
void updateButtonText();
Property<FontConfig>* m_Prop;
QPushButton* m_Button;
};
class PropertyEditor : public QWidget { class PropertyEditor : public QWidget {
Q_OBJECT Q_OBJECT
public: public:
@@ -202,6 +222,9 @@ public:
m_Factories[std::type_index(typeid(T))] = factory; m_Factories[std::type_index(typeid(T))] = factory;
} }
signals:
void propertyUpdated(PropertyBase* prop = nullptr);
private: private:
void clear(); void clear();
uLib::Object* m_Object; uLib::Object* m_Object;

View File

@@ -4,6 +4,8 @@
#include <string> #include <string>
#include <map> #include <map>
#include "Math/Units.h" #include "Math/Units.h"
#include "Core/FontConfig.h"
#include "Math/Dense.h"
namespace uLib { namespace uLib {
namespace Qt { namespace Qt {
@@ -75,11 +77,23 @@ public:
Theme GetTheme() const { return m_Theme; } Theme GetTheme() const { return m_Theme; }
void SetTheme(Theme theme) { m_Theme = theme; } void SetTheme(Theme theme) { m_Theme = theme; }
FontConfig GetFont() const { return m_Font; }
void SetFont(const FontConfig& font) { m_Font = font; }
FontConfig GetGuiFont() const { return m_GuiFont; }
void SetGuiFont(const FontConfig& font) { m_GuiFont = font; }
Vector3d GetFontColor() const { return m_FontColor; }
void SetFontColor(const Vector3d& color) { m_FontColor = color; }
private: private:
Settings() : m_ThrottledRendering(true), m_Theme(Dark) {} Settings() : m_ThrottledRendering(true), m_Theme(Dark), m_Font("Arial", 10), m_GuiFont("Inter", 9), m_FontColor(1.0, 1.0, 1.0) {}
std::map<Dimension, std::string> m_PreferredUnits; std::map<Dimension, std::string> m_PreferredUnits;
bool m_ThrottledRendering; bool m_ThrottledRendering;
Theme m_Theme; Theme m_Theme;
FontConfig m_Font;
FontConfig m_GuiFont;
Vector3d m_FontColor;
}; };
} // namespace Qt } // namespace Qt

View File

@@ -1,11 +1,15 @@
#include "StyleManager.h" #include "StyleManager.h"
#include <QApplication> #include <QApplication>
#include "Core/FontConfig.h"
static const QString DARK_THEME = R"( static const QString DARK_THEME = R"(
QWidget#MenuPanel { background-color: #2b2b2b; border-bottom: 1px solid #111; } QWidget#MenuPanel { background-color: #2b2b2b; border-bottom: 1px solid #111; }
QLabel#LogoLabel { font-weight: bold; color: #0078d7; font-size: 14px; letter-spacing: 1px; } QLabel#LogoLabel { font-weight: bold; color: #0078d7; font-size: 14px; letter-spacing: 1px; }
QPushButton#MenuButton { background: transparent; color: #ccc; border: none; padding: 5px 10px; } QPushButton#MenuButton { background: transparent; color: #ccc; border: none; padding: 5px 10px; }
QPushButton#MenuButton:hover { background: #3c3c3c; color: white; border-radius: 4px; } QPushButton#MenuButton:hover { background: #3c3c3c; color: white; border-radius: 4px; }
QPushButton { background-color: #3e3e42; color: white; border: 1px solid #555; padding: 4px 12px; border-radius: 2px; }
QPushButton:hover { background-color: #505050; border-color: #0078d7; }
QPushButton:pressed { background-color: #0078d7; }
QWidget#PaneTitleBar { background-color: #333; color: white; border-bottom: 2px solid #222; } QWidget#PaneTitleBar { background-color: #333; color: white; border-bottom: 2px solid #222; }
QLabel#TitleLabel { font-weight: bold; margin-left: 2px; } QLabel#TitleLabel { font-weight: bold; margin-left: 2px; }
QToolButton#PaneCloseButton { border: none; font-weight: bold; background: transparent; color: #ccc; } QToolButton#PaneCloseButton { border: none; font-weight: bold; background: transparent; color: #ccc; }
@@ -23,8 +27,11 @@ QScrollArea > QWidget > QWidget { background: transparent; }
/* Property Widgets Styling */ /* Property Widgets Styling */
QLabel { color: #cccccc; } QLabel { color: #cccccc; }
QDoubleSpinBox, QSpinBox, QLineEdit { background: #3c3c3c; color: #f1f1f1; border: 1px solid #3e3e42; padding: 2px 4px; border-radius: 2px; selection-background-color: #0078d7; } QDoubleSpinBox, QSpinBox, QLineEdit, QComboBox { background: #3c3c3c; color: #f1f1f1; border: 1px solid #3e3e42; padding: 2px 4px; border-radius: 2px; selection-background-color: #0078d7; }
QDoubleSpinBox:focus, QSpinBox:focus, QLineEdit:focus { border-color: #0078d7; } QDoubleSpinBox:focus, QSpinBox:focus, QLineEdit:focus, QComboBox:focus { border-color: #0078d7; }
QComboBox::drop-down { border-left-width: 1px; border-left-color: #3e3e42; border-left-style: solid; width: 20px; border-top-right-radius: 2px; border-bottom-right-radius: 2px; }
QComboBox::down-arrow { image: none; border: 5px solid transparent; border-top-color: #ccc; margin-top: 5px; }
QAbstractItemView { background-color: #2b2b2b; color: white; border: 1px solid #3e3e42; selection-background-color: #0078d7; outline: 0; }
QCheckBox { color: #cccccc; spacing: 5px; } QCheckBox { color: #cccccc; spacing: 5px; }
QCheckBox::indicator { width: 14px; height: 14px; border: 1px solid #3e3e42; background: #333337; border-radius: 2px; } QCheckBox::indicator { width: 14px; height: 14px; border: 1px solid #3e3e42; background: #333337; border-radius: 2px; }
QCheckBox::indicator:checked { background: #0078d7; border-color: #005a9e; } QCheckBox::indicator:checked { background: #0078d7; border-color: #005a9e; }
@@ -42,6 +49,11 @@ QScrollBar:vertical { background: #1e1e1e; width: 12px; margin: 0px; }
QScrollBar::handle:vertical { background: #3e3e42; min-height: 20px; border-radius: 6px; margin: 2px; } QScrollBar::handle:vertical { background: #3e3e42; min-height: 20px; border-radius: 6px; margin: 2px; }
QScrollBar::handle:vertical:hover { background: #505050; } QScrollBar::handle:vertical:hover { background: #505050; }
QScrollBar::add-line:vertical, QScrollBar::sub-line:vertical { height: 0px; } QScrollBar::add-line:vertical, QScrollBar::sub-line:vertical { height: 0px; }
/* Dialogs & Preferences */
QDialog { background-color: #252526; color: #f1f1f1; }
QGroupBox { font-weight: bold; color: #0078d7; border: 1px solid #3e3e42; margin-top: 1.1em; padding-top: 0.5em; border-radius: 4px; }
QGroupBox::title { subcontrol-origin: margin; subcontrol-position: top left; padding: 0 3px; left: 10px; }
)"; )";
static const QString BRIGHT_THEME = R"( static const QString BRIGHT_THEME = R"(
@@ -49,6 +61,9 @@ QWidget#MenuPanel { background-color: #f3f3f3; border-bottom: 1px solid #ccc; }
QLabel#LogoLabel { font-weight: bold; color: #005a9e; font-size: 14px; letter-spacing: 1px; } QLabel#LogoLabel { font-weight: bold; color: #005a9e; font-size: 14px; letter-spacing: 1px; }
QPushButton#MenuButton { background: transparent; color: #333; border: none; padding: 5px 10px; } QPushButton#MenuButton { background: transparent; color: #333; border: none; padding: 5px 10px; }
QPushButton#MenuButton:hover { background: #e5e5e5; color: black; border-radius: 4px; } QPushButton#MenuButton:hover { background: #e5e5e5; color: black; border-radius: 4px; }
QPushButton { background-color: #ffffff; color: #333; border: 1px solid #cccccc; padding: 4px 12px; border-radius: 2px; }
QPushButton:hover { background-color: #f2f2f2; border-color: #0078d7; }
QPushButton:pressed { background-color: #0078d7; color: white; }
QWidget#PaneTitleBar { background-color: #eeeeee; color: black; border-bottom: 2px solid #ddd; } QWidget#PaneTitleBar { background-color: #eeeeee; color: black; border-bottom: 2px solid #ddd; }
QLabel#TitleLabel { font-weight: bold; margin-left: 2px; } QLabel#TitleLabel { font-weight: bold; margin-left: 2px; }
QToolButton#PaneCloseButton { border: none; font-weight: bold; background: transparent; color: #666; } QToolButton#PaneCloseButton { border: none; font-weight: bold; background: transparent; color: #666; }
@@ -66,8 +81,11 @@ QScrollArea > QWidget > QWidget { background: transparent; }
/* Property Widgets Styling */ /* Property Widgets Styling */
QLabel { color: #333333; } QLabel { color: #333333; }
QDoubleSpinBox, QSpinBox, QLineEdit { background: #ffffff; color: #333333; border: 1px solid #cccccc; padding: 2px 4px; border-radius: 2px; selection-background-color: #0078d7; } QDoubleSpinBox, QSpinBox, QLineEdit, QComboBox { background: #ffffff; color: #333333; border: 1px solid #cccccc; padding: 2px 4px; border-radius: 2px; selection-background-color: #0078d7; }
QDoubleSpinBox:focus, QSpinBox:focus, QLineEdit:focus { border-color: #0078d7; } QDoubleSpinBox:focus, QSpinBox:focus, QLineEdit:focus, QComboBox:focus { border-color: #0078d7; }
QComboBox::drop-down { border-left-width: 1px; border-left-color: #cccccc; border-left-style: solid; width: 20px; border-top-right-radius: 2px; border-bottom-right-radius: 2px; }
QComboBox::down-arrow { image: none; border: 5px solid transparent; border-top-color: #666; margin-top: 5px; }
QAbstractItemView { background-color: #ffffff; color: #333; border: 1px solid #cccccc; selection-background-color: #0078d7; outline: 0; }
QCheckBox { color: #333333; spacing: 5px; } QCheckBox { color: #333333; spacing: 5px; }
QCheckBox::indicator { width: 14px; height: 14px; border: 1px solid #cccccc; background: #ffffff; border-radius: 2px; } QCheckBox::indicator { width: 14px; height: 14px; border: 1px solid #cccccc; background: #ffffff; border-radius: 2px; }
QCheckBox::indicator:checked { background: #0078d7; border-color: #005a9e; } QCheckBox::indicator:checked { background: #0078d7; border-color: #005a9e; }
@@ -85,14 +103,26 @@ QScrollBar:vertical { background: #ffffff; width: 12px; margin: 0px; }
QScrollBar::handle:vertical { background: #cccccc; min-height: 20px; border-radius: 6px; margin: 2px; } QScrollBar::handle:vertical { background: #cccccc; min-height: 20px; border-radius: 6px; margin: 2px; }
QScrollBar::handle:vertical:hover { background: #aaaaaa; } QScrollBar::handle:vertical:hover { background: #aaaaaa; }
QScrollBar::add-line:vertical, QScrollBar::sub-line:vertical { height: 0px; } QScrollBar::add-line:vertical, QScrollBar::sub-line:vertical { height: 0px; }
/* Dialogs & Preferences */
QDialog { background-color: #f3f3f3; color: #333; }
QGroupBox { font-weight: bold; color: #005a9e; border: 1px solid #cccccc; margin-top: 1.1em; padding-top: 0.5em; border-radius: 4px; }
QGroupBox::title { subcontrol-origin: margin; subcontrol-position: top left; padding: 0 3px; left: 10px; }
)"; )";
void StyleManager::applyStyle(QApplication* app, const QString& themeName) { void StyleManager::applyStyle(QApplication* app, const QString& themeName, const uLib::FontConfig& fontCfg) {
if (!app) return; if (!app) return;
if (themeName == "bright") { QString baseStyle = (themeName == "bright") ? BRIGHT_THEME : DARK_THEME;
app->setStyleSheet(BRIGHT_THEME);
} else { QString fontStyle = QString(
app->setStyleSheet(DARK_THEME); // default "QWidget { font-family: '%1'; font-size: %2pt; }\n"
} ).arg(QString::fromStdString(fontCfg.family))
.arg(fontCfg.size);
// If bold/italic are needed globally
if (fontCfg.bold) fontStyle += "QWidget { font-weight: bold; }\n";
if (fontCfg.italic) fontStyle += "QWidget { font-style: italic; }\n";
app->setStyleSheet(fontStyle + baseStyle);
} }

View File

@@ -5,9 +5,11 @@
class QApplication; class QApplication;
namespace uLib { class FontConfig; }
class StyleManager { class StyleManager {
public: public:
static void applyStyle(QApplication* app, const QString& themeName); static void applyStyle(QApplication* app, const QString& themeName, const uLib::FontConfig& font);
}; };
#endif // STYLEMANAGER_H #endif // STYLEMANAGER_H

View File

@@ -125,6 +125,10 @@ void ViewportPane::setViewport(QWidget* viewport, const QString& title) {
m_areaSplitter->setStretchFactor(0, 1); m_areaSplitter->setStretchFactor(0, 1);
} }
uLib::Vtk::Viewport* ViewportPane::viewport() const {
return dynamic_cast<uLib::Vtk::Viewport*>(m_viewport);
}
void ViewportPane::addVtkViewport() { void ViewportPane::addVtkViewport() {
auto* viewport = new uLib::Vtk::QViewport(this); auto* viewport = new uLib::Vtk::QViewport(this);
setViewport(viewport, "VTK Viewport"); setViewport(viewport, "VTK Viewport");

View File

@@ -8,6 +8,7 @@
namespace uLib { namespace uLib {
class Object; class Object;
namespace Qt { class PropertyEditor; } namespace Qt { class PropertyEditor; }
namespace Vtk { class Viewport; }
} }
class QSplitter; class QSplitter;
@@ -24,6 +25,7 @@ public:
void addRootCanvas(); void addRootCanvas();
QWidget* currentViewport() const { return m_viewport; } QWidget* currentViewport() const { return m_viewport; }
uLib::Vtk::Viewport* viewport() const;
/** @brief Update the display properties for the given object. */ /** @brief Update the display properties for the given object. */
void setObject(uLib::Object* obj); void setObject(uLib::Object* obj);

View File

@@ -3,6 +3,8 @@
#include "MainPanel.h" #include "MainPanel.h"
#include "ViewportPane.h" #include "ViewportPane.h"
#include "StyleManager.h" #include "StyleManager.h"
#include "Settings.h"
#include "Core/FontConfig.h"
#include "Math/ContainerBox.h" #include "Math/ContainerBox.h"
#include <HEP/Geant/Scene.h> #include <HEP/Geant/Scene.h>
@@ -29,7 +31,9 @@ using namespace uLib::literals;
int main(int argc, char** argv) { int main(int argc, char** argv) {
QApplication app(argc, argv); QApplication app(argc, argv);
StyleManager::applyStyle(&app, "dark"); auto theme = uLib::Qt::Settings::Instance().GetTheme();
auto initialGuiFont = uLib::Qt::Settings::Instance().GetGuiFont();
StyleManager::applyStyle(&app, theme == uLib::Qt::Settings::Dark ? "dark" : "bright", initialGuiFont);
std::cout << "Starting gcompose Qt application..." << std::endl; std::cout << "Starting gcompose Qt application..." << std::endl;
// ContainerBox world_box(Vector3f(1, 1, 1)); // ContainerBox world_box(Vector3f(1, 1, 1));

View File

@@ -3,9 +3,32 @@
Geant4 integration in uLib is done through the `HEP/Geant` module. Geant4 integration in uLib is done through the `HEP/Geant` module.
The module represets a set of wrapper for geant objects that are also deriving from uLib::Object so they can be used in the uLib::Object tree and visualized with the uLib::Vtk module and driven py properties. The module represets a set of wrapper for geant objects that are also deriving from uLib::Object so they can be used in the uLib::Object tree and visualized with the uLib::Vtk module and driven py properties.
# Geant Solid integration # Geant Solid Integration
Geant4 solids in `uLib` are encapsulated within the `uLib::Geant::Solid` hierarchy, with primary implementations such as `BoxSolid` and `TessellatedSolid`. These classes act as reactive wrappers around native Geant4 `G4VSolid` objects, bridging the gap between Geant4's static geometry and `uLib`'s dynamic property system.
### Property Mapping and Synchronization
The integration relies on a mapping between `uLib` properties and Geant4 parameters. This allows geometry to be driven by Qt-based property panels or interactive VTK handles. When a property is modified, the library handles the update through the following mechanism:
* **Parameter Application**: If the underlying Geant4 object supports dynamic updates (e.g., changing box dimensions via `SetXHalfLength`), `uLib` applies the change directly to the existing object.
* **Solid Re-instantiation**: In cases where Geant4 does not support on-the-fly parameter changes, the library transparently recreates the underlying `G4VSolid`. This ensures that the simulation model always reflects the current state of the design environment.
* **Global Signaling**: Once the underlying Geant4 state is synchronized, the `uLib::Geant::Solid` emits an `updated()` signal. This triggers cascading updates across all dependent observers, such as the VTK rendering pipeline and the Geant4 scene manager, ensuring visual and logical consistency.
## VTK Visualization Layer
The visualization of Geant4 solids in VTK is managed by the `uLib::Vtk::GeantSolid` class and its specializations (e.g., `vtkBoxSolid`). This class serves as a bridge between the domain model (`uLib::Geant::Solid`) and the VTK rendering pipeline, inheriting from `uLib::Vtk::Prop3D` to leverage the framework's standard transformation and property management features.
### Geometry Extraction and Rendering
Since Geant4 solids are defined by analytical or tessellated boundary representations, `GeantSolid` converts them into a format suitable for VTK:
1. **Faceted Representation**: It retrieves the `G4Polyhedron` tessellation from the underlying `G4VSolid`.
2. **PolyData Mapping**: The vertices and facets of the polyhedron are extracted and mapped to a `vtkPolyData` object.
3. **Actor Configuration**: This geometry is assigned to a `vtkActor`, which is then added to the `Prop3D`. Default visual properties—such as semi-transparent surfaces and edge visibility—are applied to aid in debugging and design.
### Transform Synchronization
The spatial state (Translation, Rotation, and Scale) is synchronized between the Geant4 geometry tree and the VTK viewer ensuring a consistent representation across both domains.
* **Geant4 to VTK (Forward)**: When a solid's placement is updated in Geant4, `GeantSolid` extracts the translation and rotation from the associated `G4VPhysicalVolume`. These are converted into a `vtkTransform` and applied to the actor, aligning the visual model with the simulation's coordinate system.
* **VTK to Geant4 (Interactive)**: Interaction in the viewer (e.g., using a transformation handler) triggers the `SyncFromVtk()` method. This pushes the new transformation matrix back to the `uLib::Geant::Solid` domain object, which then updates the Geant4 physical volume.
* **Feedback Loop Prevention**: To avoid infinite recursion during interactive updates, the synchronization logic utilizes temporary signal blocking. This ensures that a transform update originating from VTK does not trigger a redundant re-update of the VTK representation from the domain model.
Geant solid in uLib is represented by the `uLib::Geant::Solid` class and mainly BoxSolid and TessellatedSolid. The solids in Geant does not have the possibility to set properties on the fly so we need to create a new solid every time we want to change the properties of a solid. This is done by creating a new `uLib::Geant::Solid` object and setting the properties of the new solid. The new solid is then added to the `uLib::Geant::Solid` object as a child. The old solid is then removed from the `uLib::Geant::Solid` object as a child. The old solid is then deleted. However id some of the properties can be set then the library will drive the change in the solid update.
The idea is to have a mapping of solid properties that can be used in uLib for Qt representation or vtk representation. then when the property is changed the signaling will update the property in uLib and then the solid will be updated. If the Geant property can be applied to the G4 object underneath then the update will apply the change, in case it is not possible to apply the change to the G4 object underneath then the G4 element will be recreated.
In any case a updated singal is emitted and the related element that use that solid is updated ( for instance the scene ).

48
src/Core/FontConfig.h Normal file
View File

@@ -0,0 +1,48 @@
#ifndef U_CORE_FONTCONFIG_H
#define U_CORE_FONTCONFIG_H
#include <string>
#include <ostream>
#include <boost/serialization/nvp.hpp>
namespace uLib {
/**
* @struct FontConfig
* @brief Basic font configuration for text properties.
*/
struct FontConfig {
std::string family;
int size;
bool bold;
bool italic;
FontConfig() : family("Arial"), size(10), bold(false), italic(false) {}
FontConfig(const std::string& fam, int sz, bool b = false, bool i = false)
: family(fam), size(sz), bold(b), italic(i) {}
bool operator==(const FontConfig& other) const {
return family == other.family && size == other.size &&
bold == other.bold && italic == other.italic;
}
bool operator!=(const FontConfig& other) const { return !(*this == other); }
template<class Archive>
void serialize(Archive& ar, const unsigned int version) {
ar & boost::serialization::make_nvp("family", family);
ar & boost::serialization::make_nvp("size", size);
ar & boost::serialization::make_nvp("bold", bold);
ar & boost::serialization::make_nvp("italic", italic);
}
};
inline std::ostream& operator<<(std::ostream& os, const FontConfig& f) {
os << f.family << " " << f.size;
if (f.bold) os << " Bold";
if (f.italic) os << " Italic";
return os;
}
} // namespace uLib
#endif // U_CORE_FONTCONFIG_H

View File

@@ -67,6 +67,12 @@ public:
static uLib::ObjectRegistrar<className> ULIB_REG_CONCAT( \ static uLib::ObjectRegistrar<className> ULIB_REG_CONCAT( \
g_ObjectRegistrar_, __LINE__)(registeredName); g_ObjectRegistrar_, __LINE__)(registeredName);
// Object Wrapper
template <typename T> class ObjectWrapper { template <typename T> class ObjectWrapper {
public: public:
ObjectWrapper(const std::string &className) { ObjectWrapper(const std::string &className) {
@@ -75,6 +81,7 @@ public:
} }
ObjectWrapper(T *model) : m_model(model) {} ObjectWrapper(T *model) : m_model(model) {}
ObjectWrapper(T &model) : m_model(model) {}
template <typename U = T, template <typename U = T,
typename = std::enable_if_t<std::is_default_constructible_v<U>>> typename = std::enable_if_t<std::is_default_constructible_v<U>>>

View File

@@ -16,7 +16,7 @@ int main() {
std::cout << "Testing ObjectWrapper with Non-Default Constructible type..." << std::endl; std::cout << "Testing ObjectWrapper with Non-Default Constructible type..." << std::endl;
NonDefault nd(10); NonDefault nd(10);
uLib::ObjectWrapper<NonDefault> w2(&nd); uLib::ObjectWrapper<NonDefault> w2(nd);
// The following would NOT compile without SFINAE: // The following would NOT compile without SFINAE:
// uLib::ObjectWrapper<NonDefault> w3; // uLib::ObjectWrapper<NonDefault> w3;

View File

@@ -150,11 +150,58 @@ int testing_hrt_class() {
class B : public virtual Object {
uLibTypeMacro(B, Object)
ULIB_SERIALIZE_ACCESS
public:
B() : m_b(1234567), m_a(nullptr) {}
int m_b;
// reference to A (serializes through ID)
A *m_a;
};
ULIB_SERIALIZABLE_OBJECT(B)
ULIB_SERIALIZE_OBJECT(B, Object) {
ar & "Object B : " & "--> m_b = " & AR(m_b) & "--> m_a = " & AR(m_a);
}
int test_referece_serialization() {
A a;
{
B b,b2 ;
b.m_a = &a;
b2.m_a = &a;
std::ofstream file("test_ref.xml");
Archive::xml_oarchive(file) << NVP(b) << NVP(b2);
}
B b,b2;
{
std::ifstream file("test_ref.xml");
Archive::xml_iarchive(file) >> NVP(b) >> NVP(b2);
}
return (b.m_a->a() == a.a() && b2.m_a->a() == a.a());
}
int main() { int main() {
BEGIN_TESTING(Serialize Test); BEGIN_TESTING(Serialize Test);
TEST1(test_V3f()); TEST1(test_V3f());
TEST1(testing_xml_class()); TEST1(testing_xml_class());
TEST1(test_referece_serialization());
// TEST1(testing_hrt_class()); // TEST1(testing_hrt_class());
END_TESTING; END_TESTING;

View File

@@ -35,12 +35,14 @@
#include <Geant4/G4TriangularFacet.hh> #include <Geant4/G4TriangularFacet.hh>
#include <Geant4/G4Box.hh> #include <Geant4/G4Box.hh>
#include <Geant4/G4PVPlacement.hh> #include <Geant4/G4PVPlacement.hh>
#include <cstddef>
#include "Math/Dense.h" #include "Math/Dense.h"
#include "Math/Transform.h" #include "Math/Transform.h"
#include "Solid.h" #include "Solid.h"
#include "uLibInterface.hh"
namespace uLib { namespace uLib {
namespace Geant { namespace Geant {
@@ -55,18 +57,17 @@ public:
}; };
Solid::Solid() Solid::Solid()
: m_Name("unnamed_solid"), m_Material(NULL), m_Logical(NULL), m_Physical(NULL), : m_Material(nullptr), m_Logical(nullptr) {
m_Position(new G4ThreeVector(0,0,0)), m_Rotation(NULL) {} }
Solid::Solid(const char *name) Solid::Solid(const char *name)
: m_Name(name), m_Material(NULL), m_Logical(NULL), m_Physical(NULL), : m_Name(name), m_Material(nullptr), m_Logical(nullptr) {
m_Position(new G4ThreeVector(0,0,0)), m_Rotation(NULL) {}
Solid::~Solid() {
if (m_Position) delete m_Position;
if (m_Rotation) delete m_Rotation;
} }
Solid::~Solid() {}
void Solid::Update() {}
void Solid::SetNistMaterial(const char *name) { void Solid::SetNistMaterial(const char *name) {
G4NistManager *nist = G4NistManager::Instance(); G4NistManager *nist = G4NistManager::Instance();
G4Material *mat = nist->FindOrBuildMaterial(name); G4Material *mat = nist->FindOrBuildMaterial(name);
@@ -85,30 +86,12 @@ void Solid::SetMaterial(G4Material *material) {
} }
void Solid::SetTransform(Matrix4f transform) { void Solid::SetTransform(Matrix4f transform) {
uLib::AffineTransform t; m_Transform.FromMatrix(transform);
t.SetMatrix(transform); m_Transform.Updated();
// 2. Extract position and rotation for Geant4
Vector3f pos = t.GetPosition();
if (!m_Position) m_Position = new G4ThreeVector();
*m_Position = G4ThreeVector(pos(0), pos(1), pos(2));
// Create a G4 rotation matrix from the 4x4 matrix
Matrix3f m = t.GetRotation();
if (!m_Rotation) m_Rotation = new G4RotationMatrix();
m_Rotation->set(G4ThreeVector(m(0,0), m(1,0), m(2,0)),
G4ThreeVector(m(0,1), m(1,1), m(2,1)),
G4ThreeVector(m(0,2), m(1,2), m(2,2)));
// 3. If object is already placed, update its transformation
if (m_Physical) {
m_Physical->SetTranslation(*m_Position);
m_Physical->SetRotation(m_Rotation);
}
std::cout << "Solid " << GetName() << " position: " << pos << " rotation: " << m << std::endl;
} }
void Solid::SetParent(Solid *parent) { void Solid::SetParent(Solid *parent) {
if (!m_Logical) { if (!m_Logical) {
std::cerr << "logical volume not created for solid " << GetName() << std::endl; std::cerr << "logical volume not created for solid " << GetName() << std::endl;
@@ -131,8 +114,8 @@ void Solid::SetParent(Solid *parent) {
// G4PVPlacement // G4PVPlacement
m_Physical = new G4PVPlacement( m_Physical = new G4PVPlacement(
m_Rotation, // Rotation ToG4Transform(m_Transform), // Rotation
*m_Position, // Position (translation) inside the parent GetPosition(), // Position (translation) inside the parent
m_Logical, // The logical volume of this solid (the child) m_Logical, // The logical volume of this solid (the child)
GetName(), // Name of the physical volume GetName(), // Name of the physical volume
parentLogical, // The logical volume of the parent (nullptr if it's the World volume) parentLogical, // The logical volume of the parent (nullptr if it's the World volume)
@@ -180,11 +163,14 @@ void TessellatedSolid::Update() {
BoxSolid::BoxSolid(const char *name) : BoxSolid::BoxSolid(const char *name) :
BaseClass(name), BaseClass(name),
m_Density(1.0),
m_ContainerBox(new ContainerBox()), m_ContainerBox(new ContainerBox()),
m_Solid(new G4Box(name, 1, 1, 1)) m_Solid(new G4Box(name, 1, 1, 1))
{} {}
BoxSolid::BoxSolid(const char *name, ContainerBox *box) : BaseClass(name) { BoxSolid::BoxSolid(const char *name, ContainerBox *box) :
BaseClass(name),
m_Density(1.0) {
m_Solid = new G4Box(name, 1, 1, 1); m_Solid = new G4Box(name, 1, 1, 1);
m_ContainerBox = box; m_ContainerBox = box;
Object::connect(box, &ContainerBox::Updated, this, &BoxSolid::Update); Object::connect(box, &ContainerBox::Updated, this, &BoxSolid::Update);
@@ -194,6 +180,7 @@ BoxSolid::BoxSolid(const char *name, ContainerBox *box) : BaseClass(name) {
Update(); Update();
} }
void BoxSolid::Update() { void BoxSolid::Update() {
if (m_ContainerBox) { if (m_ContainerBox) {
Vector3f size = m_ContainerBox->GetSize(); Vector3f size = m_ContainerBox->GetSize();

View File

@@ -28,11 +28,15 @@
#include "Core/Object.h" #include "Core/Object.h"
#include "Geant/Matter.h" #include "Geant/Matter.h"
#include "Math/Transform.h"
#include <Geant4/G4LogicalVolume.hh> #include <Geant4/G4LogicalVolume.hh>
#include "Math/ContainerBox.h" #include "Math/ContainerBox.h"
#include "Math/Dense.h" #include "Math/Dense.h"
#include "Math/TriangleMesh.h" #include "Math/TriangleMesh.h"
class G4Material; class G4Material;
class G4LogicalVolume; class G4LogicalVolume;
class G4TessellatedSolid; class G4TessellatedSolid;
@@ -42,27 +46,17 @@ namespace uLib {
namespace Geant { namespace Geant {
class Solid : public Object { class Solid : public Object {
public:
uLibTypeMacro(Solid, Object) uLibTypeMacro(Solid, Object)
ULIB_SERIALIZE_ACCESS
ULIB_DECLARE_PROPERTIES(Solid)
public:
Solid(); Solid();
Solid(const char *name); Solid(const char *name);
virtual ~Solid(); virtual ~Solid();
void SetNistMaterial(const char *name);
void SetMaterial(G4Material *material);
void SetSizeUnit(const char *unit);
// Implementiamo SetParent qui, per tutti.
virtual void SetParent(Solid *parent);
// Setters per la posizione (necessari per il piazzamento)
void SetTransform(Matrix4f transform);
uLibGetMacro(Material, G4Material *)
uLibGetSetMacro(Logical, G4LogicalVolume *)
uLibGetSetMacro(Physical, G4VPhysicalVolume *)
virtual G4VSolid* GetG4Solid() const { return nullptr; } virtual G4VSolid* GetG4Solid() const { return nullptr; }
inline const char *GetName() const { inline const char *GetName() const {
@@ -71,23 +65,57 @@ public:
template < typename Ar > template < typename Ar >
void serialize(Ar &ar, const unsigned int version) { void serialize(Ar &ar, const unsigned int version) {
ar & m_Name; ar & HRP("Name", m_Name);
ar & HRP("Material", m_Material);
} }
public slots:
virtual void Update();
protected: protected:
std::string m_Name; std::string m_Name;
G4Material *m_Material;
G4LogicalVolume *m_Logical;
G4VPhysicalVolume *m_Physical; // <-- Memorizza l'oggetto posizionato
G4ThreeVector *m_Position; // <-- Offset rispetto al centro del padre
G4RotationMatrix* m_Rotation; // <-- Rotazione rispetto al padre
}; };
class LogicalVolume : public Object {
uLibTypeMacro(LogicalVolume, Object)
ULIB_SERIALIZE_ACCESS
ULIB_DECLARE_PROPERTIES(LogicalVolume)
public:
LogicalVolume();
LogicalVolume(const char *name);
virtual ~LogicalVolume();
virtual G4VSolid* GetG4Solid() const { return nullptr; }
inline const char *GetName() const {
return m_Logical ? m_Logical->GetName().c_str() : m_Name.c_str();
}
template < typename Ar >
void serialize(Ar &ar, const unsigned int version) {
ar & HRP("Name", m_Name);
ar & HRP("Material", m_Material);
}
public slots:
virtual void Update();
protected:
std::string m_Name;
Material *m_Material;
G4LogicalVolume *m_Logical;
};
@@ -97,8 +125,10 @@ public:
TessellatedSolid(); TessellatedSolid();
TessellatedSolid(const char *name); TessellatedSolid(const char *name);
void SetMesh(TriangleMesh &mesh); void SetMesh(TriangleMesh &mesh);
uLibGetMacro(Solid, G4TessellatedSolid *) uLibGetMacro(Solid, G4TessellatedSolid *)
virtual G4VSolid* GetG4Solid() const override { return (G4VSolid*)m_Solid; } virtual G4VSolid* GetG4Solid() const override { return (G4VSolid*)m_Solid; }
const TriangleMesh& GetMesh() const { return m_Mesh; } const TriangleMesh& GetMesh() const { return m_Mesh; }
@@ -117,26 +147,30 @@ private :
class BoxSolid : public Solid { class BoxSolid : public Solid {
uLibTypeMacro(BoxSolid, Solid)
ULIB_SERIALIZE_ACCESS
ULIB_DECLARE_PROPERTIES(BoxSolid)
public: public:
uLibTypeMacro(BoxSolid, Solid)
BoxSolid(const char *name = ""); BoxSolid(const char *name = "");
BoxSolid(const char *name, ContainerBox *box); BoxSolid(const char *name, ContainerBox *box);
virtual G4VSolid* GetG4Solid() const override { return (G4VSolid*)m_Solid; } virtual G4VSolid* GetG4Solid() const override { return (G4VSolid*)m_Solid; }
ContainerBox* GetObject() const { return m_ContainerBox; } ContainerBox* GetObject() const { return m_ContainerBox; }
template < typename Ar > template < typename Ar >
void serialize(Ar &ar, const unsigned int version) { void serialize(Ar &ar, const unsigned int version) {
ar & boost::serialization::base_object<BaseClass>(*this); // ar & boost::serialization::base_object<BaseClass>(*this);
ar & m_ContainerBox; ar & HRP("Density", m_Density, "g/cm3");
} }
public slots: public slots:
void Update(); void Update();
private: private:
float m_Density;
ContainerBox *m_ContainerBox; ContainerBox *m_ContainerBox;
G4Box *m_Solid; G4Box *m_Solid;
}; };

View File

@@ -25,6 +25,32 @@ int main() {
TEST1(solid.GetMaterial()->GetName() == "G4_AIR"); TEST1(solid.GetMaterial()->GetName() == "G4_AIR");
} }
// Test BoxSolid //
{
Geant::BoxSolid boxsolid("test_boxsolid");
boxsolid.SetNistMaterial("G4_AIR");
TEST1(boxsolid.GetLogical() != nullptr);
// TEST1(boxsolid.GetSolid() != nullptr);
}
// Test BoxSolid with a container box //
{
ContainerBox box;
// box.SetPosition(Vector3f(1,1,1));
// box.SetRotation(Rotation(Vector3f(0,1,0), 45_deg));
Geant::BoxSolid boxsolid("test_boxsolid", &box);
boxsolid.SetNistMaterial("G4_AIR");
TEST1(boxsolid.GetLogical() != nullptr);
// TEST1(boxsolid.GetSolid() != nullptr);
// TEST1(boxsolid.GetSolid()->GetXHalfLength() == 0.5);
// TEST1(boxsolid.GetSolid()->GetYHalfLength() == 0.5);
// TEST1(boxsolid.GetSolid()->GetZHalfLength() == 0.5);
}
// Test TessellatedSolid with a simple mesh // // Test TessellatedSolid with a simple mesh //
{ {
Geant::TessellatedSolid tsolid("test_tessellated"); Geant::TessellatedSolid tsolid("test_tessellated");

View File

@@ -0,0 +1,51 @@
#ifndef ULIB_GEANT_ULIB_INTERFACE_HH
#define ULIB_GEANT_ULIB_INTERFACE_HH
#include "Math/Transform.h"
#include <Geant4/G4Transform3D.hh>
#include <Geant4/G4ThreeVector.hh>
#include <Geant4/G4RotationMatrix.hh>
namespace uLib {
namespace Geant {
/**
* @brief Converts a uLib::Matrix4f to a Geant4 G4Transform3D.
*/
inline G4Transform3D ToG4Transform(const Matrix4f& m) {
return G4Transform3D(
m(0, 0), m(0, 1), m(0, 2), m(0, 3),
m(1, 0), m(1, 1), m(1, 2), m(1, 3),
m(2, 0), m(2, 1), m(2, 2), m(2, 3)
);
}
/**
* @brief Converts a uLib::AffineTransform to a Geant4 G4Transform3D.
*/
inline G4Transform3D ToG4Transform(const AffineTransform& at) {
return ToG4Transform(at.GetMatrix());
}
/**
* @brief Converts a uLib::Vector3f to a Geant4 G4ThreeVector.
*/
inline G4ThreeVector ToG4Vector(const Vector3f& v) {
return G4ThreeVector(v(0), v(1), v(2));
}
/**
* @brief Converts a uLib::Matrix3f to a Geant4 G4RotationMatrix.
*/
inline G4RotationMatrix ToG4Rotation(const Matrix3f& m) {
G4RotationMatrix rot;
rot.set(G4ThreeVector(m(0, 0), m(1, 0), m(2, 0)),
G4ThreeVector(m(0, 1), m(1, 1), m(2, 1)),
G4ThreeVector(m(0, 2), m(1, 2), m(2, 2)));
return rot;
}
} // namespace Geant
} // namespace uLib
#endif // ULIB_GEANT_ULIB_INTERFACE_HH

View File

@@ -246,6 +246,7 @@ uLibTypeMacro(TRS, AffineTransform) ULIB_SERIALIZE_ACCESS
} }
Matrix4f GetMatrix() const { return this->GetAffineMatrix().matrix(); } Matrix4f GetMatrix() const { return this->GetAffineMatrix().matrix(); }
}; };
inline std::ostream &operator<<(std::ostream &os, const TRS &trs) { inline std::ostream &operator<<(std::ostream &os, const TRS &trs) {

View File

@@ -26,44 +26,11 @@ namespace Vtk {
BoxSolid::BoxSolid(Geant::BoxSolid *content) BoxSolid::BoxSolid(Geant::BoxSolid *content)
: GeantSolid(content), m_BoxContent(content) { : GeantSolid(content), m_BoxContent(content) {
this->InstallPipe();
// Connect the model's Updated event to updateTransform to ensure VTK sync
m_UpdateConnection = Object::connect(m_BoxContent, &uLib::Object::Updated, this, &BoxSolid::Update);
// Initial sync
this->Update();
} }
BoxSolid::~BoxSolid() { BoxSolid::~BoxSolid() {
} }
void BoxSolid::Update() {
ConnectionBlock blocker(m_UpdateConnection);
this->UpdateGeometry();
// Ensure base Prop3D properties (color, opacity, etc) and transform are applied
this->Prop3D::Update();
}
void BoxSolid::SyncFromVtk() {
this->Prop3D::SyncFromVtk();
if (auto* proxy = vtkProp3D::SafeDownCast(this->GetProxyProp())) {
if (vtkMatrix4x4* mat = proxy->GetUserMatrix()) {
m_BoxContent->SetTransform(VtkToMatrix4f(mat));
}
}
}
void BoxSolid::UpdateGeometry() {
// Sync geometry from G4VSolid provided by GeantSolid (tessellation)
GeantSolid::UpdateGeometry();
}
void BoxSolid::UpdateTransform() {
// Take transform from Prop3D base (which uses GetContent() -> ContainerBox TRS)
this->Prop3D::Update();
}
void BoxSolid::serialize_display(uLib::Archive::display_properties_archive &ar, void BoxSolid::serialize_display(uLib::Archive::display_properties_archive &ar,
const unsigned int version) { const unsigned int version) {
// Expose Geant solid properties and underlying Box/TRS properties // Expose Geant solid properties and underlying Box/TRS properties

View File

@@ -48,15 +48,6 @@ public:
BoxSolid(Geant::BoxSolid *content); BoxSolid(Geant::BoxSolid *content);
virtual ~BoxSolid(); virtual ~BoxSolid();
virtual void Update() override;
virtual void UpdateGeometry() override;
virtual void UpdateTransform() override;
virtual void SyncFromVtk() override;
virtual uLib::Object *GetContent() const override {
return m_BoxContent ? (::uLib::Object*)m_BoxContent->GetObject() : nullptr;
}
virtual void serialize_display(uLib::Archive::display_properties_archive &ar, virtual void serialize_display(uLib::Archive::display_properties_archive &ar,
const unsigned int version = 0) override; const unsigned int version = 0) override;
@@ -69,7 +60,6 @@ protected:
virtual void InstallPipe() override; virtual void InstallPipe() override;
Geant::BoxSolid *m_BoxContent; Geant::BoxSolid *m_BoxContent;
uLib::Connection m_UpdateConnection;
ULIB_DECLARE_PROPERTIES(BoxSolid) ULIB_DECLARE_PROPERTIES(BoxSolid)
}; };

View File

@@ -24,6 +24,7 @@
//////////////////////////////////////////////////////////////////////////////*/ //////////////////////////////////////////////////////////////////////////////*/
#include "vtkGeantSolid.h" #include "vtkGeantSolid.h"
#include "Core/Monitor.h"
#include <vtkActor.h> #include <vtkActor.h>
#include <vtkPolyData.h> #include <vtkPolyData.h>
@@ -34,6 +35,7 @@
#include <vtkSmartPointer.h> #include <vtkSmartPointer.h>
#include <vtkTransform.h> #include <vtkTransform.h>
#include <vtkMatrix4x4.h> #include <vtkMatrix4x4.h>
#include "Vtk/Math/vtkDense.h"
#include <Geant4/G4VSolid.hh> #include <Geant4/G4VSolid.hh>
#include <Geant4/G4Polyhedron.hh> #include <Geant4/G4Polyhedron.hh>
@@ -45,6 +47,14 @@ namespace Vtk {
GeantSolid::GeantSolid(Content *content) GeantSolid::GeantSolid(Content *content)
: m_SolidActor(vtkActor::New()), m_Content(content) { : m_SolidActor(vtkActor::New()), m_Content(content) {
this->InstallPipe(); this->InstallPipe();
if (m_Content) {
m_UpdateConnection = Object::connect(m_Content, &uLib::Object::Updated, [this]() {
std::cout << "GeantSolid: Signal Updated received." << std::endl;
this->Update();
});
// Mandatory initial update to generate geometry and apply initial transform
this->Update();
}
} }
GeantSolid::~GeantSolid() { GeantSolid::~GeantSolid() {
@@ -58,8 +68,21 @@ vtkPolyData *GeantSolid::GetPolyData() const {
} }
void GeantSolid::Update() { void GeantSolid::Update() {
ConnectionBlock blocker(m_UpdateConnection);
this->UpdateGeometry(); this->UpdateGeometry();
this->UpdateTransform(); this->UpdateTransform();
this->Prop3D::Update();
}
void GeantSolid::SyncFromVtk() {
if (!m_Content) return;
this->Prop3D::SyncFromVtk();
if (auto* proxy = vtkProp3D::SafeDownCast(this->GetProxyProp())) {
if (vtkMatrix4x4* mat = proxy->GetUserMatrix()) {
m_Content->SetTransform(VtkToMatrix4f(mat));
}
}
} }
void GeantSolid::UpdateGeometry() { void GeantSolid::UpdateGeometry() {
@@ -114,33 +137,36 @@ void GeantSolid::UpdateTransform() {
if (!m_Content || !m_SolidActor) if (!m_Content || !m_SolidActor)
return; return;
// Apply the Geant4 transform (position/rotation) if placed // Apply the Geant4 transform (position/rotation/scaling)
if (m_Content->GetPhysical()) { G4ThreeVector pos = m_Content->GetPosition();
auto *phys = m_Content->GetPhysical(); const G4RotationMatrix *rot = m_Content->GetRotation();
G4ThreeVector pos = phys->GetTranslation(); G4ThreeVector scale = m_Content->GetScaling();
const G4RotationMatrix *rot = phys->GetRotation();
vtkSmartPointer<vtkTransform> transform = vtkSmartPointer<vtkTransform>::New(); std::cout << "GeantSolid: Updating transform. Pos: " << pos.x() << " " << pos.y() << " " << pos.z()
transform->Identity(); << " Scale: " << scale.x() << " " << scale.y() << " " << scale.z() << std::endl;
transform->Translate(pos.x(), pos.y(), pos.z());
if (rot) { vtkNew<vtkTransform> transform;
// G4RotationMatrix stores the inverse of the rotation for placement transform->Identity();
G4RotationMatrix invRot = rot->inverse(); transform->Translate(pos.x(), pos.y(), pos.z());
double elements[16] = {
invRot.xx(), invRot.xy(), invRot.xz(), 0, if (rot) {
invRot.yx(), invRot.yy(), invRot.yz(), 0, G4RotationMatrix invRot = *rot;
invRot.zx(), invRot.zy(), invRot.zz(), 0, double elements[16] = {
0, 0, 0, 1 invRot.xx(), invRot.xy(), invRot.xz(), 0,
}; invRot.yx(), invRot.yy(), invRot.yz(), 0,
vtkSmartPointer<vtkMatrix4x4> mat = vtkSmartPointer<vtkMatrix4x4>::New(); invRot.zx(), invRot.zy(), invRot.zz(), 0,
mat->DeepCopy(elements); 0, 0, 0, 1
transform->Concatenate(mat); };
} vtkNew<vtkMatrix4x4> mat;
mat->DeepCopy(elements);
transform->Concatenate(mat);
}
transform->Scale(scale.x(), scale.y(), scale.z());
m_SolidActor->SetUserTransform(transform); m_SolidActor->SetUserTransform(transform);
m_SolidActor->Modified();
} }
}
void GeantSolid::InstallPipe() { void GeantSolid::InstallPipe() {
vtkSmartPointer<vtkPolyData> polyData = vtkSmartPointer<vtkPolyData>::New(); vtkSmartPointer<vtkPolyData> polyData = vtkSmartPointer<vtkPolyData>::New();

View File

@@ -52,15 +52,19 @@ public:
virtual class vtkPolyData *GetPolyData() const override; virtual class vtkPolyData *GetPolyData() const override;
virtual void Update() override; virtual void Update() override;
virtual void SyncFromVtk() override;
virtual void UpdateGeometry(); virtual void UpdateGeometry();
virtual void UpdateTransform(); virtual void UpdateTransform();
virtual uLib::Object *GetContent() const override { return (uLib::Object*)m_Content; }
protected: protected:
virtual void InstallPipe(); virtual void InstallPipe();
vtkActor *m_SolidActor;
Content *m_Content; Content *m_Content;
vtkActor *m_SolidActor;
uLib::Connection m_UpdateConnection;
}; };
} // namespace Vtk } // namespace Vtk

View File

@@ -33,6 +33,8 @@ public:
/** @brief Synchronizes all managed prop3ds back to their models. */ /** @brief Synchronizes all managed prop3ds back to their models. */
virtual void SyncFromVtk() override; virtual void SyncFromVtk() override;
virtual Object* GetContent() const override { return (Object*)m_Context; }
public: public:
virtual void Prop3DAdded(Prop3D* prop3d); virtual void Prop3DAdded(Prop3D* prop3d);
virtual void Prop3DRemoved(Prop3D* prop3d); virtual void Prop3DRemoved(Prop3D* prop3d);

View File

@@ -123,10 +123,9 @@ void Viewport::SetupPipeline(vtkRenderWindowInteractor* iren)
iren->SetInteractorStyle(style); iren->SetInteractorStyle(style);
// Corner annotation // Corner annotation
pv->m_Annotation->GetTextProperty()->SetColor(1, 1, 1); SetFontColor(Vector3d(1.0, 1.0, 1.0));
pv->m_Annotation->GetTextProperty()->SetFontFamilyToArial(); SetFont(FontConfig("Arial", 10));
pv->m_Annotation->GetTextProperty()->SetOpacity(0.5); pv->m_Annotation->GetTextProperty()->SetOpacity(0.5);
pv->m_Annotation->SetMaximumFontSize(10);
pv->m_Annotation->SetText(0, "uLib VTK viewer."); pv->m_Annotation->SetText(0, "uLib VTK viewer.");
pv->m_Renderer->AddViewProp(pv->m_Annotation); pv->m_Renderer->AddViewProp(pv->m_Annotation);
@@ -603,6 +602,44 @@ bool Viewport::GetParallelProjection() const
return false; return false;
} }
void Viewport::SetFont(const FontConfig& font) {
if (!pv->m_Annotation) return;
auto* prop = pv->m_Annotation->GetTextProperty();
if (font.family == "Arial") prop->SetFontFamilyToArial();
else if (font.family == "Courier") prop->SetFontFamilyToCourier();
else if (font.family == "Times") prop->SetFontFamilyToTimes();
else prop->SetFontFamilyToArial(); // fallback
pv->m_Annotation->SetMaximumFontSize(font.size);
prop->SetBold(font.bold);
prop->SetItalic(font.italic);
this->Render();
}
FontConfig Viewport::GetFont() const {
if (!pv->m_Annotation) return FontConfig();
auto* prop = pv->m_Annotation->GetTextProperty();
FontConfig f;
f.family = prop->GetFontFamilyAsString();
f.size = pv->m_Annotation->GetMaximumFontSize();
f.bold = prop->GetBold();
f.italic = prop->GetItalic();
return f;
}
void Viewport::SetFontColor(const Vector3d& color) {
if (!pv->m_Annotation) return;
pv->m_Annotation->GetTextProperty()->SetColor(color.x(), color.y(), color.z());
this->Render();
}
Vector3d Viewport::GetFontColor() const {
if (!pv->m_Annotation) return Vector3d(1,1,1);
double c[3];
pv->m_Annotation->GetTextProperty()->GetColor(c);
return Vector3d(c[0], c[1], c[2]);
}
void Viewport::SetGridAxis(Axis axis) void Viewport::SetGridAxis(Axis axis)
{ {
m_GridAxis = axis; m_GridAxis = axis;

View File

@@ -4,6 +4,8 @@
#include "uLibVtkInterface.h" #include "uLibVtkInterface.h"
#include <vector> #include <vector>
#include <map> #include <map>
#include "Core/FontConfig.h"
#include "Math/Dense.h"
namespace uLib { class Object; } namespace uLib { class Object; }
@@ -83,6 +85,12 @@ public:
void SetParallelProjection(bool parallel); void SetParallelProjection(bool parallel);
bool GetParallelProjection() const; bool GetParallelProjection() const;
// Font configuration
void SetFont(const FontConfig& font);
FontConfig GetFont() const;
void SetFontColor(const Vector3d& color);
Vector3d GetFontColor() const;
protected: protected:
void SetupPipeline(vtkRenderWindowInteractor* iren); void SetupPipeline(vtkRenderWindowInteractor* iren);

View File

@@ -0,0 +1,56 @@
#ifndef ULIB_VTK_VIEWPORTPROPERTIES_H
#define ULIB_VTK_VIEWPORTPROPERTIES_H
#include "uLibVtkInterface.h"
#include "vtkViewport.h"
#include "Core/Property.h"
namespace uLib {
namespace Vtk {
/**
* @class ViewportProperties
* @brief Exposes Viewport settings as a uLib::Object for the properties panel.
*/
class ViewportProperties : public uLib::Object {
public:
uLibTypeMacro(ViewportProperties, uLib::Object)
ViewportProperties(Viewport* vp) : m_Viewport(vp)
{
SetInstanceName("Viewport Settings");
// Initialize properties from viewport
Font.Set(vp->GetFont());
Color.Set(vp->GetFontColor());
GridVisible.Set(vp->GetGridVisible());
Parallel.Set(vp->GetParallelProjection());
// Connect properties to viewport setters
uLib::Object::connect(&Font, &Property<FontConfig>::Updated, [this](){
if (m_Viewport) m_Viewport->SetFont(Font.Get());
});
uLib::Object::connect(&Color, &Property<Vector3d>::Updated, [this](){
if (m_Viewport) m_Viewport->SetFontColor(Color.Get());
});
uLib::Object::connect(&GridVisible, &Property<bool>::Updated, [this](){
if (m_Viewport) m_Viewport->SetGridVisible(GridVisible.Get());
});
uLib::Object::connect(&Parallel, &Property<bool>::Updated, [this](){
if (m_Viewport) m_Viewport->SetParallelProjection(Parallel.Get());
});
}
ULIB_PROPERTY(FontConfig, Font, FontConfig())
ULIB_PROPERTY(Vector3d, Color, Vector3d(1.0, 1.0, 1.0))
ULIB_PROPERTY(bool, GridVisible, true)
ULIB_PROPERTY(bool, Parallel, false)
private:
Viewport* m_Viewport;
};
} // namespace Vtk
} // namespace uLib
#endif // ULIB_VTK_VIEWPORTPROPERTIES_H