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z-bar-qt/Plugins/ZShell/Internal/wallpaperimage.cpp
zach a41c0adb3e
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move carouselview to standalone c++ component, fix crash due to memory leak in wallpaper object creation
2026-08-16 17:59:23 +02:00

354 lines
8.7 KiB
C++

#include "wallpaperimage.hpp"
#include <QStandardPaths>
#include <QCryptographicHash>
#include <QDir>
#include <QFileInfo>
#include <QImageReader>
#include <QtConcurrent>
#include <QQuickWindow>
namespace ZShell::internal {
QThreadPool* WallpaperImage::loadPool() {
static QThreadPool* pool = [] {
auto* p = new QThreadPool();
p->setMaxThreadCount(4);
return p;
}();
return pool;
}
WallpaperImage::WallpaperImage(QQuickItem* parent) : QQuickItem(parent) {
setFlag(ItemHasContents, true);
m_loadDebounceTimer.setSingleShot(true);
connect(
&m_loadDebounceTimer,
&QTimer::timeout,
this,
&WallpaperImage::beginLoad);
connect(
&m_imageWatcher,
&QFutureWatcher<QImage>::finished,
this,
&WallpaperImage::handleImageLoaded);
}
WallpaperImage::~WallpaperImage() {
m_requestGeneration->fetch_add(1, std::memory_order_relaxed);
m_imageWatcher.disconnect();
if (m_texture) delete m_texture;
if (m_previousTexture) delete m_previousTexture;
}
void WallpaperImage::setStatus(const Status s) {
if (m_status == s) return;
m_status = s;
emit statusChanged();
}
void WallpaperImage::setSource(const QUrl& source) {
if (m_source == source) return;
m_source = source;
emit sourceChanged();
setStatus(Loading);
m_loadDebounceTimer.start(80);
}
void WallpaperImage::setScreenResolution(const QSize& screenResolution) {
if (m_screenResolution == screenResolution) return;
m_screenResolution = screenResolution;
emit screenResolutionChanged();
beginLoad();
}
void WallpaperImage::setZoom(qreal zoom) {
if (qFuzzyCompare(m_zoom, zoom)) return;
m_zoom = zoom;
emit zoomChanged();
update();
}
void WallpaperImage::setFadeDuration(int ms) {
if (ms < 0) ms = 0;
if (m_fadeDuration == ms) return;
m_fadeDuration = ms;
emit fadeDurationChanged();
}
void WallpaperImage::setCropX(qreal x) {
if (qFuzzyCompare(m_cropX, x)) return;
m_cropX = x;
emit cropXChanged();
update();
}
void WallpaperImage::setCropY(qreal y) {
if (qFuzzyCompare(m_cropY, y)) return;
m_cropY = y;
emit cropYChanged();
update();
}
void WallpaperImage::setCropWidth(qreal w) {
if (w <= 0.0) w = 1.0;
if (qFuzzyCompare(m_cropWidth, w)) return;
m_cropWidth = w;
emit cropWidthChanged();
update();
}
void WallpaperImage::setCropHeight(qreal h) {
if (h <= 0.0) h = 1.0;
if (qFuzzyCompare(m_cropHeight, h)) return;
m_cropHeight = h;
emit cropHeightChanged();
update();
}
QString WallpaperImage::getCacheFilePath() const {
if (m_source.isEmpty() || m_screenResolution.isEmpty()) return QString();
QString cachePath =
QStandardPaths::writableLocation(QStandardPaths::GenericCacheLocation) +
"/zshell/imagecache";
QDir().mkpath(cachePath);
QString id = m_source.toString() + "_" +
QString::number(m_screenResolution.width()) + "x" +
QString::number(m_screenResolution.height());
QByteArray hash =
QCryptographicHash::hash(id.toUtf8(), QCryptographicHash::Md5).toHex();
return cachePath + "/" + hash + ".png";
}
void WallpaperImage::beginLoad() {
if (m_source.isEmpty()) {
setStatus(Null);
return;
}
const quint64 requestId =
m_requestGeneration->fetch_add(1, std::memory_order_relaxed) + 1;
QString cacheFile = getCacheFilePath();
QString sourceFile = m_source.isLocalFile() ? m_source.toLocalFile()
: m_source.toString();
if (sourceFile.startsWith("qrc:/")) sourceFile = sourceFile.mid(3);
QSize targetRes = m_screenResolution;
auto generation = m_requestGeneration;
QFuture<QImage> future = QtConcurrent::run(
loadPool(),
[sourceFile, cacheFile, targetRes, requestId, generation]() -> QImage {
auto stale = [&] {
return generation->load(std::memory_order_relaxed) != requestId;
};
if (stale()) return QImage();
if (!targetRes.isEmpty() && !cacheFile.isEmpty() &&
QFileInfo::exists(cacheFile)) {
QImage cached(cacheFile);
if (!cached.isNull()) return cached;
}
if (stale()) return QImage();
QImage original;
QImageReader reader(sourceFile);
if (!targetRes.isEmpty() &&
reader.supportsOption(QImageIOHandler::Size)) {
QSize actual = reader.size();
if (actual.isValid() &&
(actual.width() > targetRes.width() ||
actual.height() > targetRes.height())) {
QSize scaledSize =
actual.scaled(targetRes, Qt::KeepAspectRatioByExpanding);
reader.setScaledSize(scaledSize);
}
original = reader.read();
} else {
original = QImage(sourceFile);
}
if (original.isNull()) return QImage();
if (stale()) return QImage();
if (targetRes.isEmpty()) return original;
QImage scaled = (original.width() > targetRes.width() ||
original.height() > targetRes.height())
? original.scaled(
targetRes,
Qt::KeepAspectRatioByExpanding,
Qt::SmoothTransformation)
: original;
if (stale()) return scaled;
if (!cacheFile.isEmpty()) scaled.save(cacheFile, "PNG");
return scaled;
});
m_imageWatcher.setFuture(future);
}
void WallpaperImage::handleImageLoaded() {
QImage result = m_imageWatcher.result();
if (result.isNull()) {
setStatus(Error);
return;
}
m_pendingImage = result;
m_hasPending = true;
setStatus(Ready);
update();
}
QRectF WallpaperImage::computeSourceRect(QSGTexture* texture) const {
QSize texSize = texture->textureSize();
qreal cW = m_cropWidth / m_zoom;
qreal cH = m_cropHeight / m_zoom;
QRectF reqRect(
m_cropX * texSize.width(),
m_cropY * texSize.height(),
cW * texSize.width(),
cH * texSize.height());
QRectF bounds = boundingRect();
if (bounds.isEmpty() || reqRect.isEmpty()) return reqRect;
qreal targetRatio = bounds.width() / bounds.height();
qreal reqRatio = reqRect.width() / reqRect.height();
QRectF sourceRect = reqRect;
if (reqRatio > targetRatio) {
qreal newWidth = reqRect.height() * targetRatio;
qreal xOffset = (reqRect.width() - newWidth) / 2.0;
sourceRect.setX(reqRect.x() + xOffset);
sourceRect.setWidth(newWidth);
} else if (reqRatio < targetRatio) {
qreal newHeight = reqRect.width() / targetRatio;
qreal yOffset = (reqRect.height() - newHeight) / 2.0;
sourceRect.setY(reqRect.y() + yOffset);
sourceRect.setHeight(newHeight);
}
return sourceRect;
}
void WallpaperImage::configureImageNode(
QSGImageNode* node, QSGTexture* texture) {
node->setTexture(texture);
node->setRect(boundingRect());
node->setFiltering(QSGTexture::Linear);
QRectF sourceRect = computeSourceRect(texture);
node->setSourceRect(sourceRect);
if (texture == m_texture) {
QSize texSize = texture->textureSize();
QRectF normalizedActual(
sourceRect.x() / texSize.width(),
sourceRect.y() / texSize.height(),
sourceRect.width() / texSize.width(),
sourceRect.height() / texSize.height());
bool changed = false;
auto updateIfChanged = [&](qreal& dst, qreal value) {
if (!qFuzzyCompare(dst, value)) {
dst = value;
changed = true;
}
};
updateIfChanged(m_actualCropX, normalizedActual.x());
updateIfChanged(m_actualCropY, normalizedActual.y());
updateIfChanged(m_actualCropWidth, normalizedActual.width());
updateIfChanged(m_actualCropHeight, normalizedActual.height());
if (changed) emit actualCropChanged();
}
}
QSGNode* WallpaperImage::updatePaintNode(
QSGNode* oldNode, UpdatePaintNodeData*) {
Q_UNUSED(oldNode);
if (m_hasPending) {
if (m_previousTexture) {
delete m_previousTexture;
m_previousTexture = nullptr;
}
m_previousTexture = m_texture;
m_texture = window()->createTextureFromImage(
m_pendingImage, QQuickWindow::TextureHasAlphaChannel);
m_pendingImage = QImage();
m_hasPending = false;
if (m_previousTexture && m_fadeDuration > 0) {
m_fading = true;
m_fadeTimer.restart();
} else {
if (m_previousTexture) {
delete m_previousTexture;
m_previousTexture = nullptr;
}
m_fading = false;
}
}
if (!m_texture) {
return m_rootNode;
}
if (!m_rootNode) {
m_rootNode = new QSGNode();
m_newOpacityNode = new QSGOpacityNode();
m_newImageNode = window()->createImageNode();
m_newOpacityNode->appendChildNode(m_newImageNode);
m_rootNode->appendChildNode(m_newOpacityNode);
m_oldOpacityNode = new QSGOpacityNode();
m_oldImageNode = window()->createImageNode();
m_oldOpacityNode->appendChildNode(m_oldImageNode);
m_rootNode->appendChildNode(m_oldOpacityNode);
}
configureImageNode(m_newImageNode, m_texture);
m_newOpacityNode->setOpacity(1.0);
if (m_fading && m_previousTexture) {
qreal progress =
qBound(0.0, qreal(m_fadeTimer.elapsed()) / m_fadeDuration, 1.0);
configureImageNode(m_oldImageNode, m_previousTexture);
m_oldOpacityNode->setOpacity(1.0 - progress);
if (progress >= 1.0) {
m_fading = false;
delete m_previousTexture;
m_previousTexture = nullptr;
m_oldOpacityNode->setOpacity(0.0);
} else {
update();
}
} else {
m_oldOpacityNode->setOpacity(0.0);
}
return m_rootNode;
}
} // namespace ZShell::internal