mirror-chatterino2/src/messages/Image.cpp

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#include "messages/Image.hpp"
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#include "Application.hpp"
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#include "common/NetworkRequest.hpp"
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#include "debug/AssertInGuiThread.hpp"
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#include "debug/Log.hpp"
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#include "singletons/Emotes.hpp"
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#include "singletons/WindowManager.hpp"
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#include "util/DebugCount.hpp"
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#include "util/PostToThread.hpp"
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#include <QBuffer>
#include <QImageReader>
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#include <QNetworkAccessManager>
#include <QNetworkReply>
#include <QNetworkRequest>
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#include <QTimer>
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#include <functional>
#include <thread>
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namespace chatterino {
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namespace {
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const QPixmap *getPixmap(const Pixmap &pixmap)
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{
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if (pixmap.which() == 0)
return boost::get<const QPixmap *>(pixmap);
else
return boost::get<std::unique_ptr<QPixmap>>(pixmap).get();
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}
// Frames
Frames::Frames()
{
DebugCount::increase("images");
}
Frames::Frames(std::vector<Frame> &&frames)
: items_(std::move(frames))
{
DebugCount::increase("images");
if (this->animated()) DebugCount::increase("animated images");
}
Frames::~Frames()
{
DebugCount::decrease("images");
if (this->animated()) DebugCount::decrease("animated images");
}
void Frames::advance()
{
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this->durationOffset_ += GIF_FRAME_LENGTH;
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while (true) {
this->index_ %= this->items_.size();
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if (this->durationOffset_ > this->items_[this->index_].duration) {
this->durationOffset_ -= this->items_[this->index_].duration;
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this->index_ = (this->index_ + 1) % this->items_.size();
} else {
break;
}
}
}
bool Frames::animated() const
{
return this->items_.size() > 1;
}
const QPixmap *Frames::current() const
{
if (this->items_.size() == 0) return nullptr;
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return getPixmap(this->items_[this->index_].pixmap);
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}
const QPixmap *Frames::first() const
{
if (this->items_.size() == 0) return nullptr;
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return getPixmap(this->items_.front().pixmap);
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}
// functions
std::vector<Frame> readFrames(QImageReader &reader, const Url &url)
{
std::vector<Frame> frames;
if (reader.imageCount() <= 0) {
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Log("Error while reading image {}: '{}'", url.string,
reader.errorString());
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return frames;
}
QImage image;
for (int index = 0; index < reader.imageCount(); ++index) {
if (reader.read(&image)) {
auto pixmap = std::make_unique<QPixmap>(QPixmap::fromImage(image));
int duration = std::max(20, reader.nextImageDelay());
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frames.push_back(Frame{std::move(pixmap), duration});
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}
}
if (frames.size() != 0) {
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Log("Error while reading image {}: '{}'", url.string,
reader.errorString());
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}
return frames;
}
void queueLoadedEvent()
{
static auto eventQueued = false;
if (!eventQueued) {
eventQueued = true;
QTimer::singleShot(250, [] {
getApp()->windows->incGeneration();
getApp()->windows->layoutChannelViews();
eventQueued = false;
});
}
}
} // namespace
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// IMAGE2
std::atomic<bool> Image::loadedEventQueued{false};
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ImagePtr Image::fromUrl(const Url &url, qreal scale)
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{
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static std::unordered_map<Url, std::weak_ptr<Image>> cache;
static std::mutex mutex;
std::lock_guard<std::mutex> lock(mutex);
auto shared = cache[url].lock();
if (!shared) {
cache[url] = shared = ImagePtr(new Image(url, scale));
} else {
// Warn("same image loaded multiple times: {}", url.string);
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}
return shared;
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}
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ImagePtr Image::fromOwningPixmap(std::unique_ptr<QPixmap> pixmap, qreal scale)
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{
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return ImagePtr(new Image(std::move(pixmap), scale));
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}
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ImagePtr Image::fromNonOwningPixmap(QPixmap *pixmap, qreal scale)
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{
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return ImagePtr(new Image(pixmap, scale));
}
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ImagePtr Image::getEmpty()
{
static auto empty = ImagePtr(new Image);
return empty;
}
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Image::Image()
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: empty_(true)
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{
}
Image::Image(const Url &url, qreal scale)
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: url_(url)
, scale_(scale)
, shouldLoad_(true)
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{
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}
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Image::Image(std::unique_ptr<QPixmap> owning, qreal scale)
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: scale_(scale)
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{
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std::vector<Frame> vec;
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vec.push_back(Frame{std::move(owning)});
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this->frames_ = std::move(vec);
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}
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Image::Image(QPixmap *nonOwning, qreal scale)
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: scale_(scale)
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{
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std::vector<Frame> vec;
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vec.push_back(Frame{nonOwning});
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this->frames_ = std::move(vec);
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}
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const Url &Image::url() const
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{
return this->url_;
}
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const QPixmap *Image::pixmap() const
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{
assertInGuiThread();
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if (this->shouldLoad_) {
const_cast<Image *>(this)->shouldLoad_ = false;
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const_cast<Image *>(this)->load();
}
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return this->frames_.current();
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}
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qreal Image::scale() const
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{
return this->scale_;
}
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bool Image::empty() const
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{
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return this->empty_;
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}
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bool Image::animated() const
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{
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assertInGuiThread();
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return this->frames_.animated();
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}
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int Image::width() const
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{
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assertInGuiThread();
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if (auto pixmap = this->frames_.first())
return pixmap->width() * this->scale_;
else
return 16;
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}
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int Image::height() const
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{
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assertInGuiThread();
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if (auto pixmap = this->frames_.first())
return pixmap->height() * this->scale_;
else
return 16;
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}
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void Image::load()
{
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NetworkRequest req(this->url().string);
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req.setCaller(&this->object_);
req.setUseQuickLoadCache(true);
req.onSuccess([this, weak = weakOf(this)](auto result) -> Outcome {
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assertInGuiThread();
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auto shared = weak.lock();
if (!shared) return Failure;
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// const cast since we are only reading from it
QBuffer buffer(const_cast<QByteArray *>(&result.getData()));
buffer.open(QIODevice::ReadOnly);
QImageReader reader(&buffer);
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this->frames_ = readFrames(reader, this->url());
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return Success;
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});
req.onError([this, weak = weakOf(this)](int) {
auto shared = weak.lock();
if (!shared) return false;
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this->frames_ = std::vector<Frame>();
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return false;
});
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req.execute();
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}
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bool Image::operator==(const Image &other) const
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{
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if (this->empty() && other.empty()) return true;
if (!this->url_.string.isEmpty() && this->url_ == other.url_) return true;
if (this->frames_.first() == other.frames_.first()) return true;
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return false;
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}
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bool Image::operator!=(const Image &other) const
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{
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return !this->operator==(other);
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}
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} // namespace chatterino