#include "carouselview.hpp" #include #include #include #include #include namespace ZShell::components { namespace { constexpr qreal kDragThreshold = 4.0; constexpr qreal kFlickFriction = 0.0022; constexpr qreal kMinFlickVelocity = 60.0; constexpr qreal kMaxFlickVelocity = 6000.0; constexpr int kMaxLayoutCapacity = 64; } // namespace CarouselView::CarouselView(QQuickItem* parent) : QQuickItem(parent) { setAcceptedMouseButtons(Qt::LeftButton); setFiltersChildMouseEvents(true); setFlag(QQuickItem::ItemHasContents, false); setClip(false); m_glideAnim = new QVariantAnimation(this); m_glideAnim->setEasingCurve(m_glideEasingType); connect( m_glideAnim, &QVariantAnimation::valueChanged, this, [this](const QVariant& v) { m_contentX = v.toReal(); wrapContentIfNeeded(); updateCurrentIndexFromContentX(true); relayout(); }); connect(m_glideAnim, &QVariantAnimation::finished, this, [this]() { updateCurrentIndexFromContentX(true); relayout(); }); m_flickAnim = new QVariantAnimation(this); m_flickAnim->setEasingCurve(QEasingCurve::Linear); connect( m_flickAnim, &QVariantAnimation::valueChanged, this, [this](const QVariant& v) { m_contentX = v.toReal(); wrapContentIfNeeded(); updateCurrentIndexFromContentX(true); relayout(); }); connect(m_flickAnim, &QVariantAnimation::finished, this, [this]() { snapToNearest(); }); } CarouselView::~CarouselView() { releaseAllItems(); } void CarouselView::setDelegate(QQmlComponent* c) { if (m_delegate == c) return; m_delegate = c; releaseAllItems(); emit delegateChanged(); relayout(); } bool CarouselView::childMouseEventFilter(QQuickItem* item, QEvent* event) { Q_UNUSED(item); auto* mouseEvent = dynamic_cast(event); if (!mouseEvent) return false; const QPointF pos = mapFromItem(item, mouseEvent->position()); switch (mouseEvent->type()) { case QEvent::MouseButtonPress: { if (mouseEvent->button() != Qt::LeftButton) return false; m_dragging = true; m_dragActive = false; m_pressPos = pos; m_pressContentX = m_contentX; m_dragTimer.start(); m_lastMoveX = pos.x(); m_lastMoveT = 0; m_velocity = 0; return false; } case QEvent::MouseMove: { if (!m_dragging) return false; const qreal dx = pos.x() - m_pressPos.x(); if (!m_dragActive && std::abs(dx) > kDragThreshold) { m_dragActive = true; m_pressContentX = m_contentX; cancelAnimations(); grabMouse(); } if (!m_dragActive) return false; m_contentX = m_pressContentX - dx; wrapContentIfNeeded(); updateCurrentIndexFromContentX(true); relayout(); const qint64 t = m_dragTimer.elapsed(); const qint64 dt = t - m_lastMoveT; if (dt > 0) { const qreal instVel = (m_lastMoveX - pos.x()) / (dt / 1000.0); m_velocity = m_velocity * 0.7 + instVel * 0.3; } m_lastMoveX = pos.x(); m_lastMoveT = t; mouseEvent->accept(); return true; } case QEvent::MouseButtonRelease: { if (!m_dragging) return false; if (!m_dragActive) { m_dragging = false; return false; } return false; } case QEvent::MouseButtonDblClick: return false; default: return false; } } void CarouselView::setModel(const QVariantList& m) { m_model = m; emit modelChanged(); const int newCount = m_model.size(); if (newCount == 0) { m_currentRealIndex = -1; m_currentItem = nullptr; emit currentItemChanged(); releaseAllItems(); rebuildArrangement(); return; } if (!m_initializedLayout) { m_centerBlockStart = 0; m_currentVirtualIndex = 0; m_contentX = contentXForIndex(0); m_currentRealIndex = realIndexOf(m_currentVirtualIndex); m_previewRealIndex = m_currentRealIndex; m_initializedLayout = true; m_layoutCapacity = qMax(m_layoutCapacity, layoutCapacityForWidth(m_maxWidth)); setImplicitWidth(targetWidthForMaxWidth(m_maxWidth)); rebuildArrangement(); relayout(); return; } m_layoutCapacity = qMax(m_layoutCapacity, layoutCapacityForWidth(m_maxWidth)); setImplicitWidth(targetWidthForMaxWidth(m_maxWidth)); rebuildArrangement(); centerInstantlyOnReal(qBound(0, m_currentRealIndex, newCount - 1)); } void CarouselView::setFocalWidth(qreal v) { if (qFuzzyCompare(m_focalWidth, v)) return; m_focalWidth = v; emit focalWidthChanged(); m_layoutCapacity = qMax(m_layoutCapacity, layoutCapacityForWidth(m_maxWidth)); setImplicitWidth(targetWidthForMaxWidth(m_maxWidth)); rebuildArrangement(); relayout(); } void CarouselView::setMinEdgeWidth(qreal v) { if (qFuzzyCompare(m_minEdgeWidth, v)) return; m_minEdgeWidth = v; emit minEdgeWidthChanged(); m_layoutCapacity = qMax(m_layoutCapacity, layoutCapacityForWidth(m_maxWidth)); setImplicitWidth(targetWidthForMaxWidth(m_maxWidth)); rebuildArrangement(); relayout(); } void CarouselView::setItemSpacing(qreal v) { if (qFuzzyCompare(m_itemSpacing, v)) return; m_itemSpacing = v; emit itemSpacingChanged(); m_layoutCapacity = qMax(m_layoutCapacity, layoutCapacityForWidth(m_maxWidth)); setImplicitWidth(targetWidthForMaxWidth(m_maxWidth)); rebuildArrangement(); relayout(); } void CarouselView::setTileHeight(qreal v) { if (qFuzzyCompare(m_tileHeight, v)) return; m_tileHeight = v; emit tileHeightChanged(); for (const Slot& s : std::as_const(m_slots)) { if (s.active && s.item) { QQmlProperty::write( s.item, QStringLiteral("tileHeight"), m_tileHeight); } } } void CarouselView::setMaxWidth(qreal v) { if (qFuzzyCompare(m_maxWidth, v)) return; m_maxWidth = v; emit maxWidthChanged(); const qreal targetWidth = targetWidthForMaxWidth(m_maxWidth); setImplicitWidth(targetWidth); m_layoutCapacity = qMax(m_layoutCapacity, layoutCapacityForWidth(m_maxWidth)); rebuildArrangement(); relayout(); } void CarouselView::setGlideDuration(int v) { if (m_glideDuration == v) return; m_glideDuration = v; emit glideDurationChanged(); } void CarouselView::setGlideEasingType(QEasingCurve::Type t) { if (m_glideEasingType == t) return; m_glideEasingType = t; m_glideAnim->setEasingCurve(t); emit glideEasingTypeChanged(); } void CarouselView::setDelegateProperties(const QVariantMap& v) { m_delegateProperties = v; emit delegatePropertiesChanged(); for (const Slot& s : std::as_const(m_slots)) { if (!s.active || !s.item) continue; for (auto it = m_delegateProperties.constBegin(); it != m_delegateProperties.constEnd(); ++it) { QQmlProperty::write(s.item, it.key(), it.value()); } } } void CarouselView::setCurrentIndex(int idx) { goToIndex(idx); } void CarouselView::updateCurrentItem() { QQuickItem* item = nullptr; for (const Slot& s : std::as_const(m_slots)) { if (s.active && s.virtualIndex == m_currentVirtualIndex) { item = s.item; break; } } if (item == m_currentItem) return; m_currentItem = item; emit currentItemChanged(); } void CarouselView::geometryChange(const QRectF& newGeo, const QRectF& oldGeo) { QQuickItem::geometryChange(newGeo, oldGeo); const qreal oldWidth = oldGeo.width(); const qreal newWidth = newGeo.width(); if (qFuzzyCompare(oldWidth, newWidth)) { return; } const qreal delta = (newWidth - oldWidth) / 2.0; m_contentX -= delta; auto shiftAnimation = [delta](QVariantAnimation* anim) { if (anim->state() != QAbstractAnimation::Running) { return; } anim->setStartValue(anim->startValue().toReal() - delta); anim->setEndValue(anim->endValue().toReal() - delta); }; shiftAnimation(m_glideAnim); shiftAnimation(m_flickAnim); rebuildArrangement(); relayout(); } CarouselView::Arrangement CarouselView::arrangementForCount(int n) const { Arrangement a; const qreal F = m_focalWidth; const qreal M = m_minEdgeWidth; const qreal sp = m_itemSpacing; if (F <= 0) { a.n = 0; a.width = 0; a.outerSpacing = 0; a.sizes = {F}; a.centers = {0}; return a; } if (n <= 0) { a.n = 0; a.width = F; a.outerSpacing = 0; a.sizes = {F}; a.centers = {0}; return a; } a.n = n; a.outerSpacing = sp; a.sizes.reserve(n + 1); a.centers.reserve(n + 1); a.sizes.append(F); const qreal ratio = std::pow(M / F, 1.0 / n); qreal sideWidth = 0; for (int i = 1; i <= n; ++i) { const qreal size = (i == n) ? M : F * std::pow(ratio, i); a.sizes.append(size); sideWidth += size; } a.width = F + 2.0 * n * sp + 2.0 * sideWidth; a.centers.append(0); qreal center = 0; for (int i = 1; i <= n; ++i) { center += a.sizes[i - 1] / 2.0 + sp + a.sizes[i] / 2.0; a.centers.append(center); } a.effectiveExtraWidth = 0; for (int i = 1; i <= n; ++i) { a.effectiveExtraWidth += pitch() - a.sizes[i]; } return a; } int CarouselView::layoutCapacityForWidth(qreal width) const { if (width <= 0 || m_focalWidth <= 0) { return 0; } int bestN = 0; for (int n = 1; n <= kMaxLayoutCapacity; ++n) { const Arrangement a = arrangementForCount(n); if (a.width > width) break; bestN = n; } return bestN; } qreal CarouselView::targetWidthForMaxWidth(qreal maxWidth) const { if (maxWidth <= 0 || m_focalWidth <= 0) { return 0; } const int n = layoutCapacityForWidth(maxWidth); return arrangementForCount(n).width; } void CarouselView::rebuildArrangement() { Arrangement& a = m_arrangement; a = Arrangement{}; const qreal W = width() > 0 ? width() : targetWidthForMaxWidth(m_maxWidth); if (W <= 0 || m_focalWidth <= 0) { a = arrangementForCount(0); a.width = W; return; } if (m_layoutCapacity <= 0) { m_layoutCapacity = layoutCapacityForWidth(m_maxWidth); } if (m_layoutCapacity <= 0) { a = arrangementForCount(0); a.width = W; return; } const Arrangement full = arrangementForCount(m_layoutCapacity); if (W >= full.width) { a = full; return; } int highN = 1; for (int n = 1; n <= m_layoutCapacity; ++n) { const Arrangement candidate = arrangementForCount(n); if (W < candidate.width) { highN = n; break; } } const int lowN = qMax(0, highN - 1); const Arrangement high = arrangementForCount(highN); const Arrangement low = arrangementForCount(lowN); if (high.width <= low.width) { a = low; return; } qreal t = (high.width - W) / (high.width - low.width); t = qBound(0.0, t, 1.0); a.n = highN; a.width = W; a.sizes.resize(highN + 1); a.sizes[0] = m_focalWidth; for (int i = 1; i < highN; ++i) { a.sizes[i] = high.sizes[i] + (low.sizes[i] - high.sizes[i]) * t; } a.sizes[highN] = high.sizes[highN] * (1.0 - t); a.outerSpacing = m_itemSpacing * (1.0 - t); a.centers.append(0); qreal center = 0; for (int i = 1; i <= highN; ++i) { const qreal gap = i == highN ? a.outerSpacing : m_itemSpacing; center += a.sizes[i - 1] / 2.0 + gap + a.sizes[i] / 2.0; a.centers.append(center); } a.effectiveExtraWidth = 0; for (int i = 1; i <= highN; ++i) { a.effectiveExtraWidth += pitch() - a.sizes[i]; } } qreal CarouselView::keylineSize(int io) const { const int n = m_arrangement.n; const int i = std::abs(io); if (i == 0) return m_focalWidth; if (i <= n) return m_arrangement.sizes[i]; return 0; } qreal CarouselView::sampleSize(qreal childLoc) const { const int n = m_arrangement.n; if (n <= 0) return 0; const int minIo = -(n + 2); const int maxIo = n + 2; const qreal p = pitch(); const int a = static_cast(std::floor(childLoc / p)); if (a < minIo) return keylineSize(minIo); if (a >= maxIo) return keylineSize(maxIo); const int b = a + 1; const qreal t = (childLoc - a * p) / p; return keylineSize(a) + (keylineSize(b) - keylineSize(a)) * t; } int CarouselView::realIndexOf(int virtualIndex) const { const int count = m_model.size(); if (count == 0) return -1; return ((virtualIndex % count) + count) % count; } qreal CarouselView::contentXForIndex(qreal index) const { return index * pitch() + pitch() / 2.0 - width() / 2.0; } int CarouselView::indexForContentX(qreal x) const { return static_cast( std::round((x + width() / 2.0 - pitch() / 2.0) / pitch())); } qreal CarouselView::snapTargetX(qreal x) const { return contentXForIndex(indexForContentX(x)); } void CarouselView::wrapContentIfNeeded() { const int count = m_model.size(); if (count == 0) return; const qreal blockWidth = count * pitch(); const qreal centerX = contentXForIndex(m_centerBlockStart); const int blocksFromCenter = static_cast(std::round((m_contentX - centerX) / blockWidth)); if (std::abs(blocksFromCenter) < 2) return; const int indexShift = blocksFromCenter * count; const qreal shift = indexShift * pitch(); m_contentX -= shift; m_currentVirtualIndex -= indexShift; auto shiftAnimation = [shift](QVariantAnimation* anim) { if (anim->state() != QAbstractAnimation::Running) { return; } anim->setStartValue(anim->startValue().toReal() - shift); anim->setEndValue(anim->endValue().toReal() - shift); }; shiftAnimation(m_glideAnim); shiftAnimation(m_flickAnim); for (Slot& s : m_slots) { if (s.active) s.virtualIndex -= indexShift; } } void CarouselView::updateCurrentIndexFromContentX(bool emitPreview) { const int count = m_model.size(); if (count == 0) return; const int newVirtual = static_cast( std::round((m_contentX + width() / 2.0 - pitch() / 2.0) / pitch())); if (newVirtual == m_currentVirtualIndex) { return; } m_currentVirtualIndex = newVirtual; const int newReal = realIndexOf(newVirtual); if (newReal != m_currentRealIndex) { m_currentRealIndex = newReal; emit currentIndexChanged(); } if (emitPreview && newReal != m_previewRealIndex) { m_previewRealIndex = newReal; if (newReal >= 0) { emit previewIndexChanged(newReal, m_model.at(newReal)); } } } QQuickItem* CarouselView::acquireItem() { if (!m_delegate) return nullptr; QQmlContext* ctx = QQmlEngine::contextForObject(this); QVariantMap initial; initial.insert(QStringLiteral("isCurrent"), false); initial.insert(QStringLiteral("modelData"), QVariant()); initial.insert(QStringLiteral("tileHeight"), m_tileHeight); initial.insert(QStringLiteral("tileWidth"), m_focalWidth); for (auto it = m_delegateProperties.constBegin(); it != m_delegateProperties.constEnd(); ++it) { initial.insert(it.key(), it.value()); } QObject* obj = m_delegate->createWithInitialProperties(initial, ctx); if (!obj) { qWarning( "CarouselView: failed to create delegate instance: %s", qPrintable(m_delegate->errorString())); return nullptr; } QQuickItem* item = qobject_cast(obj); if (!item) { qWarning("CarouselView: delegate root is not an Item"); delete obj; return nullptr; } item->setParentItem(this); QQmlEngine::setObjectOwnership(item, QQmlEngine::CppOwnership); const QMetaMethod activateSignal = item->metaObject()->method( item->metaObject()->indexOfSignal("requestActivate()")); if (activateSignal.isValid()) { static const QMetaMethod slot = metaObject()->method( metaObject()->indexOfSlot("handleDelegateActivate()")); connect(item, activateSignal, this, slot); } return item; } void CarouselView::applyPropertiesToItem(QQuickItem* item, int realIndex) const { if (!item) return; const bool isCurrent = realIndex == m_currentRealIndex; QQmlProperty::write(item, QStringLiteral("isCurrent"), isCurrent); QQmlProperty::write( item, QStringLiteral("modelData"), realIndex >= 0 && realIndex < m_model.size() ? m_model.at(realIndex) : QVariant()); QQmlProperty::write(item, QStringLiteral("tileHeight"), m_tileHeight); } void CarouselView::updateSlotContent(Slot& slot, int virtualIndex) { if (!slot.item) slot.item = acquireItem(); if (!slot.item) return; slot.virtualIndex = virtualIndex; slot.realIndex = realIndexOf(virtualIndex); slot.active = slot.realIndex >= 0; slot.item->setVisible(slot.active); if (slot.active) { applyPropertiesToItem(slot.item, slot.realIndex); } } qreal CarouselView::continuousIndex() const { return (m_contentX + width() / 2.0 - pitch() / 2.0) / pitch(); } void CarouselView::positionSlot(const Slot& slot) const { if (!slot.item || !slot.active) return; const qreal current = continuousIndex(); const int leftIndex = static_cast(std::floor(current)); const qreal fraction = current - leftIndex; const int v = slot.virtualIndex; const qreal childLoc = (qreal(v) - current) * pitch(); const qreal size = sampleSize(childLoc); if (size <= 0.5) { slot.item->setVisible(false); return; } const int n = m_arrangement.n; const auto rightGap = [this, n](int rightIndex) { return rightIndex == n ? m_arrangement.outerSpacing : m_itemSpacing; }; const auto leftGap = [this, n](int leftIndex) { return leftIndex == -n ? m_arrangement.outerSpacing : m_itemSpacing; }; qreal center = 0; if (std::abs(fraction) < 1e-6) { if (v == leftIndex) { center = 0; } else if (v < leftIndex) { qreal x = 0; qreal previousSize = sampleSize(0); for (int i = leftIndex - 1; i >= v; --i) { const qreal s = sampleSize((qreal(i) - current) * pitch()); const qreal gap = leftGap(i); x -= previousSize / 2.0 + gap + s / 2.0; previousSize = s; } center = x; } else { qreal x = 0; qreal previousSize = sampleSize(0); for (int i = leftIndex + 1; i <= v; ++i) { const qreal s = sampleSize((qreal(i) - current) * pitch()); const qreal gap = rightGap(i); x += previousSize / 2.0 + gap + s / 2.0; previousSize = s; } center = x; } } else { const qreal leftSize = sampleSize((qreal(leftIndex) - current) * pitch()); const qreal rightSize = sampleSize((qreal(leftIndex + 1) - current) * pitch()); qreal centerGap = m_itemSpacing; if (leftIndex == -n || leftIndex + 1 == n) { centerGap = m_arrangement.outerSpacing; } const qreal distance = leftSize / 2.0 + centerGap + rightSize / 2.0; const qreal leftCenter = -fraction * distance; const qreal rightCenter = (1.0 - fraction) * distance; if (v == leftIndex) { center = leftCenter; } else if (v == leftIndex + 1) { center = rightCenter; } else if (v < leftIndex) { qreal x = leftCenter; qreal previousSize = leftSize; for (int i = leftIndex - 1; i >= v; --i) { const qreal s = sampleSize((qreal(i) - current) * pitch()); const qreal gap = leftGap(i); x -= previousSize / 2.0 + gap + s / 2.0; previousSize = s; } center = x; } else { qreal x = rightCenter; qreal previousSize = rightSize; for (int i = leftIndex + 2; i <= v; ++i) { const qreal s = sampleSize((qreal(i) - current) * pitch()); const qreal gap = rightGap(i); x += previousSize / 2.0 + gap + s / 2.0; previousSize = s; } center = x; } } const qreal itemX = width() / 2.0 + center - size / 2.0; QQmlProperty::write(slot.item, QStringLiteral("tileWidth"), size); slot.item->setX(itemX); slot.item->setY(0); slot.item->setVisible(size > 0.5); } void CarouselView::releaseAllItems() { for (Slot& s : m_slots) { if (s.item) s.item->deleteLater(); } m_slots.clear(); } void CarouselView::relayout() { const int count = m_model.size(); if (count == 0 || width() <= 0 || m_focalWidth <= 0) { for (Slot& s : m_slots) { if (s.item) s.item->setVisible(false); } updateCurrentItem(); return; } const int half = m_layoutCapacity + 2; const int lo = m_currentVirtualIndex - half; const int hi = m_currentVirtualIndex + half; const int needed = hi - lo + 1; while (m_slots.size() < needed) m_slots.append(Slot{}); QHash virtualToSlot; virtualToSlot.reserve(m_slots.size()); for (int i = 0; i < m_slots.size(); ++i) { if (m_slots[i].active) { virtualToSlot.insert(m_slots[i].virtualIndex, i); } } QVector slotUsedThisPass(m_slots.size(), false); for (int v = lo; v <= hi; ++v) { auto it = virtualToSlot.find(v); if (it != virtualToSlot.end()) { slotUsedThisPass[it.value()] = true; applyPropertiesToItem( m_slots[it.value()].item, m_slots[it.value()].realIndex); continue; } int freeSlot = -1; for (int i = 0; i < m_slots.size(); ++i) { if (slotUsedThisPass[i]) continue; if (m_slots[i].active && m_slots[i].virtualIndex >= lo && m_slots[i].virtualIndex <= hi) { continue; } freeSlot = i; break; } if (freeSlot < 0) { m_slots.append(Slot{}); slotUsedThisPass.append(false); freeSlot = m_slots.size() - 1; } updateSlotContent(m_slots[freeSlot], v); slotUsedThisPass[freeSlot] = true; } for (int i = 0; i < m_slots.size(); ++i) { if (!slotUsedThisPass[i] && m_slots[i].item) { m_slots[i].active = false; m_slots[i].item->setVisible(false); } } for (const Slot& s : std::as_const(m_slots)) { positionSlot(s); } updateCurrentItem(); } void CarouselView::cancelAnimations() { if (m_glideAnim->state() == QAbstractAnimation::Running) { m_glideAnim->stop(); } if (m_flickAnim->state() == QAbstractAnimation::Running) { m_flickAnim->stop(); } } void CarouselView::glideTo(qreal dest) { if (std::abs(dest - m_contentX) < 0.5) return; cancelAnimations(); m_glideAnim->setDuration(m_glideDuration); m_glideAnim->setStartValue(m_contentX); m_glideAnim->setEndValue(dest); m_glideAnim->start(); } void CarouselView::snapToNearest() { if (m_model.isEmpty()) return; glideTo(contentXForIndex(m_currentVirtualIndex)); } void CarouselView::goToIndex(int realIndex) { const int count = m_model.size(); if (count == 0) return; realIndex = qBound(0, realIndex, count - 1); const int curBlock = static_cast(std::floor(qreal(m_currentVirtualIndex) / count)); const int current = m_currentVirtualIndex; int target = curBlock * count + realIndex; if (target - current > count / 2) target -= count; else if (current - target > count / 2) target += count; glideTo(contentXForIndex(target)); } void CarouselView::incrementCurrentIndex() { if (m_model.isEmpty()) return; glideTo(contentXForIndex(m_currentVirtualIndex + 1)); } void CarouselView::decrementCurrentIndex() { if (m_model.isEmpty()) return; glideTo(contentXForIndex(m_currentVirtualIndex - 1)); } void CarouselView::jumpToIndex(int realIndex) { centerInstantlyOnReal(realIndex); } void CarouselView::centerInstantlyOnReal(int realIndex) { const int count = m_model.size(); if (count == 0) return; realIndex = qBound(0, realIndex, count - 1); cancelAnimations(); const int curBlock = static_cast(std::floor(qreal(m_currentVirtualIndex) / count)); const int current = m_currentVirtualIndex; int target = curBlock * count + realIndex; if (target - current > count / 2) target -= count; else if (current - target > count / 2) target += count; m_currentVirtualIndex = target; m_contentX = contentXForIndex(target); const bool changed = realIndex != m_currentRealIndex; m_currentRealIndex = realIndex; m_previewRealIndex = realIndex; if (changed) emit currentIndexChanged(); emit previewIndexChanged(realIndex, m_model.at(realIndex)); relayout(); } void CarouselView::mousePressEvent(QMouseEvent* event) { m_dragging = true; m_dragActive = false; m_pressPos = event->position(); m_pressContentX = m_contentX; m_dragTimer.start(); m_lastMoveX = event->position().x(); m_lastMoveT = 0; m_velocity = 0; event->accept(); } void CarouselView::mouseMoveEvent(QMouseEvent* event) { if (!m_dragging) return; const qreal dx = event->position().x() - m_pressPos.x(); if (!m_dragActive && std::abs(dx) > kDragThreshold) { m_dragActive = true; m_pressContentX = m_contentX; cancelAnimations(); grabMouse(); } if (!m_dragActive) return; m_contentX = m_pressContentX - dx; wrapContentIfNeeded(); updateCurrentIndexFromContentX(true); relayout(); const qint64 t = m_dragTimer.elapsed(); const qint64 dt = t - m_lastMoveT; if (dt > 0) { const qreal instVel = (m_lastMoveX - event->position().x()) / (dt / 1000.0); m_velocity = m_velocity * 0.7 + instVel * 0.3; } m_lastMoveX = event->position().x(); m_lastMoveT = t; event->accept(); } void CarouselView::mouseReleaseEvent(QMouseEvent* event) { if (!m_dragging) return; m_dragging = false; ungrabMouse(); if (!m_dragActive) { cancelAnimations(); snapToNearest(); event->accept(); return; } m_dragActive = false; qreal v = qBound(-kMaxFlickVelocity, m_velocity, kMaxFlickVelocity); if (std::abs(v) < kMinFlickVelocity) { snapToNearest(); event->accept(); return; } const qreal duration = std::abs(v) / (kFlickFriction * 1000.0); const qreal distance = (v * (duration / 1000.0)) / 2.0; const qreal rawDest = m_contentX + distance; const qreal dest = contentXForIndex(indexForContentX(rawDest)); cancelAnimations(); m_flickAnim->setDuration( static_cast(qBound(120, duration, 900))); m_flickAnim->setEasingCurve(QEasingCurve::OutCubic); m_flickAnim->setStartValue(m_contentX); m_flickAnim->setEndValue(dest); m_flickAnim->start(); event->accept(); } void CarouselView::mouseUngrabEvent() { m_dragging = false; m_dragActive = false; } void CarouselView::wheelEvent(QWheelEvent* event) { const int steps = event->angleDelta().y() / 120; if (steps > 0) decrementCurrentIndex(); else if (steps < 0) incrementCurrentIndex(); event->accept(); } void CarouselView::handleDelegateActivate() { QQuickItem* item = qobject_cast(sender()); if (!item) return; for (const Slot& s : std::as_const(m_slots)) { if (s.item != item || !s.active) { continue; } if (s.realIndex == m_currentRealIndex) { emit activated(s.realIndex, m_model.at(s.realIndex)); } else { goToIndex(s.realIndex); } return; } } } // namespace ZShell::components