235 lines
		
	
	
	
		
			5.8 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			235 lines
		
	
	
	
		
			5.8 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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This file is part of Telegram Desktop,
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the official desktop version of Telegram messaging app, see https://telegram.org
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Telegram Desktop is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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It is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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Full license: https://github.com/telegramdesktop/tdesktop/blob/master/LICENSE
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Copyright (c) 2014 John Preston, https://desktop.telegram.org
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*/
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#include "stdafx.h"
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#include "animation.h"
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#include "mainwidget.h"
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#include "window.h"
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namespace {
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	AnimationManager *manager = 0;
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};
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namespace anim {
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    float64 linear(const float64 &delta, const float64 &dt) {
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		return delta * dt;
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	}
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	float64 sineInOut(const float64 &delta, const float64 &dt) {
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		return -(delta / 2) * (cos(M_PI * dt) - 1);
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	}
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    float64 halfSine(const float64 &delta, const float64 &dt) {
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		return delta * sin(M_PI * dt / 2);
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	}
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    float64 easeOutBack(const float64 &delta, const float64 &dt) {
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		static const float64 s = 1.70158;
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		const float64 t = dt - 1;
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		return delta * (t * t * ((s + 1) * t + s) + 1);
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	}
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    float64 easeInCirc(const float64 &delta, const float64 &dt) {
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		return -delta * (sqrt(1 - dt * dt) - 1);
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	}
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    float64 easeOutCirc(const float64 &delta, const float64 &dt) {
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		const float64 t = dt - 1;
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		return delta * sqrt(1 - t * t);
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	}
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    float64 easeInCubic(const float64 &delta, const float64 &dt) {
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		return delta * dt * dt * dt;
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	}
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	float64 easeOutCubic(const float64 &delta, const float64 &dt) {
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		const float64 t = dt - 1;
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		return delta * (t * t * t + 1);
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	}
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    float64 easeInQuint(const float64 &delta, const float64 &dt) {
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		const float64 t2 = dt * dt;
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		return delta * t2 * t2 * dt;
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	}
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    float64 easeOutQuint(const float64 &delta, const float64 &dt) {
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		const float64 t = dt - 1, t2 = t * t;
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		return delta * (t2 * t2 * t + 1);
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	}
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	void start(Animated *obj) {
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		if (!manager) return;
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		manager->start(obj);
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	}
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	void step(Animated *obj) {
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		if (!manager) return;
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		manager->step(obj);
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	}
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	void stop(Animated *obj) {
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		if (!manager) return;
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		manager->stop(obj);
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	}
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	void startManager() {
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		delete manager;
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		manager = new AnimationManager();
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	}
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	void stopManager() {
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		delete manager;
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		manager = 0;
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	}
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}
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bool AnimatedGif::animStep(float64 ms) {
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	int32 f = frame;
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	while (f < images.size() && ms > delays[f]) {
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		++f;
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		if (f == images.size() && images.size() < framesCount) {
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			if (reader->read(&img)) {
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				int64 d = reader->nextImageDelay(), delay = delays[f - 1];
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				if (!d) d = 1;
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				delay += d;
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				if (img.size() != QSize(w, h)) img = img.scaled(w, h, Qt::IgnoreAspectRatio, Qt::SmoothTransformation);
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				images.push_back(img);
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				frames.push_back(QPixmap());
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				delays.push_back(delay);
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				for (int32 i = 0; i < images.size(); ++i) {
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					if (!images[i].isNull() || !frames[i].isNull()) {
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						images[i] = QImage();
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						frames[i] = QPixmap();
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						break;
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					}
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				}
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			} else {
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				framesCount = images.size();
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			}
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		}
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		if (f == images.size()) {
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			if (!duration) {
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				duration = delays.isEmpty() ? 1 : delays.back();
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			}
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			f = 0;
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			for (int32 i = 0, s = delays.size() - 1; i <= s; ++i) {
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				delays[i] += duration;
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			}
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			if (images[f].isNull()) {
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				QString fname = reader->fileName();
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				delete reader;
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				reader = new QImageReader(fname);
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			}
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		}
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		if (images[f].isNull() && reader->read(&img)) {
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			if (img.size() != QSize(w, h)) img = img.scaled(w, h, Qt::IgnoreAspectRatio, Qt::SmoothTransformation);
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			images[f] = img;
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			frames[f] = QPixmap();
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		}
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	}
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	if (frame != f) {
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		frame = f;
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		if (msg && App::main()) {
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			App::main()->msgUpdated(msg->history()->peer->id, msg);
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		} else {
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			emit updated();
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		}
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	}
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	return true;
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}
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void AnimatedGif::start(HistoryItem *row, const QString &file) {
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	stop();
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	reader = new QImageReader(file);
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	if (!reader->canRead() || !reader->supportsAnimation()) {
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		stop();
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		return;
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	}
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	QSize s = reader->size();
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	w = s.width();
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	h = s.height();
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	framesCount = reader->imageCount();
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	if (!w || !h || !framesCount) {
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		stop();
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		return;
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	}
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	frames.reserve(framesCount);
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	images.reserve(framesCount);
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	delays.reserve(framesCount);
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	int32 sizeLeft = MediaViewImageSizeLimit, delay = 0;
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	for (bool read = reader->read(&img); read; read = reader->read(&img)) {
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		sizeLeft -= w * h * 4;
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		if (img.size() != s) img = img.scaled(w, h, Qt::IgnoreAspectRatio, Qt::SmoothTransformation);
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		images.push_back(img);
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		frames.push_back(QPixmap());
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		int32 d = reader->nextImageDelay();
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		if (!d) d = 1;
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		delay += d;
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		delays.push_back(delay);
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		if (sizeLeft < 0) break;
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	}
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	msg = row;
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	anim::start(this);
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	if (msg) {
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		msg->initDimensions();
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		if (App::main()) App::main()->itemResized(msg, true);
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	}
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}
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void AnimatedGif::stop(bool onItemRemoved) {
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	if (isNull()) return;
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	delete reader;
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	reader = 0;
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	HistoryItem *row = msg;
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	msg = 0;
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	frames.clear();
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	images.clear();
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	delays.clear();
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	w = h = frame = framesCount = duration = 0;
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	anim::stop(this);
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	if (row && !onItemRemoved) {
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		row->initDimensions();
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		if (App::main()) App::main()->itemResized(row, true);
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	}
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}
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const QPixmap &AnimatedGif::current(int32 width, int32 height, bool rounded) {
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	if (!width) width = w;
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	if (!height) height = h;
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	if ((frames[frame].isNull() || frames[frame].width() != width || frames[frame].height() != height) && !images[frame].isNull()) {
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		QImage img = images[frame];
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		if (img.width() != width || img.height() != height) img = img.scaled(width, height, Qt::IgnoreAspectRatio, Qt::SmoothTransformation);
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		if (rounded) imageRound(img);
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		frames[frame] = QPixmap::fromImage(img, Qt::ColorOnly);
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		frames[frame].setDevicePixelRatio(cRetinaFactor());
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	}
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	return frames[frame];
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}
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