1018 lines
30 KiB
C++
1018 lines
30 KiB
C++
/*
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This file is part of Telegram Desktop,
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the official desktop application for the Telegram messaging service.
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For license and copyright information please follow this link:
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https://github.com/telegramdesktop/tdesktop/blob/master/LEGAL
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*/
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#include "calls/calls_panel.h"
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#include "data/data_photo.h"
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#include "data/data_session.h"
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#include "data/data_user.h"
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#include "data/data_file_origin.h"
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#include "data/data_photo_media.h"
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#include "data/data_cloud_file.h"
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#include "data/data_changes.h"
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#include "calls/calls_emoji_fingerprint.h"
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#include "calls/calls_signal_bars.h"
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#include "calls/calls_userpic.h"
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#include "calls/calls_video_bubble.h"
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#include "ui/widgets/buttons.h"
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#include "ui/widgets/labels.h"
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#include "ui/widgets/shadow.h"
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#include "ui/widgets/window.h"
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#include "ui/effects/ripple_animation.h"
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#include "ui/image/image.h"
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#include "ui/wrap/fade_wrap.h"
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#include "ui/wrap/padding_wrap.h"
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#include "ui/platform/ui_platform_utility.h"
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#include "ui/empty_userpic.h"
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#include "ui/emoji_config.h"
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#include "core/application.h"
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#include "mainwindow.h"
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#include "lang/lang_keys.h"
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#include "main/main_session.h"
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#include "apiwrap.h"
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#include "platform/platform_specific.h"
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#include "base/platform/base_platform_info.h"
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#include "window/main_window.h"
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#include "layout.h"
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#include "app.h"
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#include "webrtc/webrtc_video_track.h"
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#include "styles/style_calls.h"
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#include "styles/style_history.h"
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#ifdef Q_OS_WIN
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#include "ui/platform/win/ui_window_title_win.h"
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#endif // Q_OS_WIN
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#include <QtWidgets/QDesktopWidget>
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#include <QtWidgets/QApplication>
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#include <QtGui/QWindow>
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namespace Calls {
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namespace {
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constexpr auto kTooltipShowTimeoutMs = 1000;
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} // namespace
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class Panel::Button final : public Ui::RippleButton {
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public:
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Button(QWidget *parent, const style::CallButton &stFrom, const style::CallButton *stTo = nullptr);
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void setProgress(float64 progress);
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void setOuterValue(float64 value);
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void setIconOverride(const style::icon *iconOverride);
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protected:
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void paintEvent(QPaintEvent *e) override;
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void onStateChanged(State was, StateChangeSource source) override;
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QImage prepareRippleMask() const override;
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QPoint prepareRippleStartPosition() const override;
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private:
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QPoint iconPosition(not_null<const style::CallButton*> st) const;
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void mixIconMasks();
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not_null<const style::CallButton*> _stFrom;
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const style::CallButton *_stTo = nullptr;
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float64 _progress = 0.;
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const style::icon *_iconOverride = nullptr;
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QImage _bgMask, _bg;
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QPixmap _bgFrom, _bgTo;
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QImage _iconMixedMask, _iconFrom, _iconTo, _iconMixed;
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float64 _outerValue = 0.;
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Ui::Animations::Simple _outerAnimation;
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};
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Panel::Button::Button(QWidget *parent, const style::CallButton &stFrom, const style::CallButton *stTo)
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: Ui::RippleButton(parent, stFrom.button.ripple)
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, _stFrom(&stFrom)
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, _stTo(stTo) {
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resize(_stFrom->button.width, _stFrom->button.height);
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_bgMask = prepareRippleMask();
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_bgFrom = App::pixmapFromImageInPlace(style::colorizeImage(_bgMask, _stFrom->bg));
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if (_stTo) {
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Assert(_stFrom->button.width == _stTo->button.width);
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Assert(_stFrom->button.height == _stTo->button.height);
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Assert(_stFrom->button.rippleAreaPosition == _stTo->button.rippleAreaPosition);
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Assert(_stFrom->button.rippleAreaSize == _stTo->button.rippleAreaSize);
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_bg = QImage(_bgMask.size(), QImage::Format_ARGB32_Premultiplied);
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_bg.setDevicePixelRatio(cRetinaFactor());
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_bgTo = App::pixmapFromImageInPlace(style::colorizeImage(_bgMask, _stTo->bg));
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_iconMixedMask = QImage(_bgMask.size(), QImage::Format_ARGB32_Premultiplied);
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_iconMixedMask.setDevicePixelRatio(cRetinaFactor());
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_iconFrom = QImage(_bgMask.size(), QImage::Format_ARGB32_Premultiplied);
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_iconFrom.setDevicePixelRatio(cRetinaFactor());
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_iconFrom.fill(Qt::black);
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{
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Painter p(&_iconFrom);
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p.drawImage((_stFrom->button.rippleAreaSize - _stFrom->button.icon.width()) / 2, (_stFrom->button.rippleAreaSize - _stFrom->button.icon.height()) / 2, _stFrom->button.icon.instance(Qt::white));
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}
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_iconTo = QImage(_bgMask.size(), QImage::Format_ARGB32_Premultiplied);
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_iconTo.setDevicePixelRatio(cRetinaFactor());
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_iconTo.fill(Qt::black);
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{
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Painter p(&_iconTo);
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p.drawImage((_stTo->button.rippleAreaSize - _stTo->button.icon.width()) / 2, (_stTo->button.rippleAreaSize - _stTo->button.icon.height()) / 2, _stTo->button.icon.instance(Qt::white));
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}
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_iconMixed = QImage(_bgMask.size(), QImage::Format_ARGB32_Premultiplied);
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_iconMixed.setDevicePixelRatio(cRetinaFactor());
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}
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}
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void Panel::Button::setOuterValue(float64 value) {
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if (_outerValue != value) {
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_outerAnimation.start([this] {
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if (_progress == 0. || _progress == 1.) {
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update();
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}
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}, _outerValue, value, Call::kSoundSampleMs);
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_outerValue = value;
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}
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}
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void Panel::Button::setIconOverride(const style::icon *iconOverride) {
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_iconOverride = iconOverride;
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update();
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}
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void Panel::Button::setProgress(float64 progress) {
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_progress = progress;
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update();
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}
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void Panel::Button::paintEvent(QPaintEvent *e) {
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Painter p(this);
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auto bgPosition = myrtlpoint(_stFrom->button.rippleAreaPosition);
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auto paintFrom = (_progress == 0.) || !_stTo;
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auto paintTo = !paintFrom && (_progress == 1.);
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auto outerValue = _outerAnimation.value(_outerValue);
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if (outerValue > 0.) {
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auto outerRadius = paintFrom ? _stFrom->outerRadius : paintTo ? _stTo->outerRadius : (_stFrom->outerRadius * (1. - _progress) + _stTo->outerRadius * _progress);
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auto outerPixels = outerValue * outerRadius;
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auto outerRect = QRectF(myrtlrect(bgPosition.x(), bgPosition.y(), _stFrom->button.rippleAreaSize, _stFrom->button.rippleAreaSize));
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outerRect = outerRect.marginsAdded(QMarginsF(outerPixels, outerPixels, outerPixels, outerPixels));
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PainterHighQualityEnabler hq(p);
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if (paintFrom) {
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p.setBrush(_stFrom->outerBg);
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} else if (paintTo) {
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p.setBrush(_stTo->outerBg);
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} else {
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p.setBrush(anim::brush(_stFrom->outerBg, _stTo->outerBg, _progress));
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}
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p.setPen(Qt::NoPen);
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p.drawEllipse(outerRect);
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}
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if (paintFrom) {
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p.drawPixmap(bgPosition, _bgFrom);
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} else if (paintTo) {
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p.drawPixmap(bgPosition, _bgTo);
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} else {
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style::colorizeImage(_bgMask, anim::color(_stFrom->bg, _stTo->bg, _progress), &_bg);
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p.drawImage(bgPosition, _bg);
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}
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auto rippleColorInterpolated = QColor();
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auto rippleColorOverride = &rippleColorInterpolated;
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if (paintFrom) {
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rippleColorOverride = nullptr;
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} else if (paintTo) {
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rippleColorOverride = &_stTo->button.ripple.color->c;
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} else {
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rippleColorInterpolated = anim::color(_stFrom->button.ripple.color, _stTo->button.ripple.color, _progress);
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}
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paintRipple(p, _stFrom->button.rippleAreaPosition.x(), _stFrom->button.rippleAreaPosition.y(), rippleColorOverride);
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auto positionFrom = iconPosition(_stFrom);
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if (paintFrom) {
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const auto icon = _iconOverride ? _iconOverride : &_stFrom->button.icon;
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icon->paint(p, positionFrom, width());
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} else {
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auto positionTo = iconPosition(_stTo);
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if (paintTo) {
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_stTo->button.icon.paint(p, positionTo, width());
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} else {
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mixIconMasks();
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style::colorizeImage(_iconMixedMask, st::callIconFg->c, &_iconMixed);
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p.drawImage(myrtlpoint(_stFrom->button.rippleAreaPosition), _iconMixed);
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}
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}
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}
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QPoint Panel::Button::iconPosition(not_null<const style::CallButton*> st) const {
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auto result = st->button.iconPosition;
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if (result.x() < 0) {
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result.setX((width() - st->button.icon.width()) / 2);
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}
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if (result.y() < 0) {
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result.setY((height() - st->button.icon.height()) / 2);
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}
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return result;
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}
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void Panel::Button::mixIconMasks() {
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_iconMixedMask.fill(Qt::black);
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Painter p(&_iconMixedMask);
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PainterHighQualityEnabler hq(p);
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auto paintIconMask = [this, &p](const QImage &mask, float64 angle) {
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auto skipFrom = _stFrom->button.rippleAreaSize / 2;
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p.translate(skipFrom, skipFrom);
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p.rotate(angle);
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p.translate(-skipFrom, -skipFrom);
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p.drawImage(0, 0, mask);
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};
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p.save();
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paintIconMask(_iconFrom, (_stFrom->angle - _stTo->angle) * _progress);
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p.restore();
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p.setOpacity(_progress);
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paintIconMask(_iconTo, (_stTo->angle - _stFrom->angle) * (1. - _progress));
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}
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void Panel::Button::onStateChanged(State was, StateChangeSource source) {
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RippleButton::onStateChanged(was, source);
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auto over = isOver();
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auto wasOver = static_cast<bool>(was & StateFlag::Over);
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if (over != wasOver) {
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update();
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}
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}
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QPoint Panel::Button::prepareRippleStartPosition() const {
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return mapFromGlobal(QCursor::pos()) - _stFrom->button.rippleAreaPosition;
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}
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QImage Panel::Button::prepareRippleMask() const {
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return Ui::RippleAnimation::ellipseMask(QSize(_stFrom->button.rippleAreaSize, _stFrom->button.rippleAreaSize));
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}
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Panel::Panel(not_null<Call*> call)
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: _call(call)
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, _user(call->user())
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, _window(std::make_unique<Ui::Window>(Core::App().getModalParent()))
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#ifdef Q_OS_WIN
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, _controls(std::make_unique<Ui::Platform::TitleControls>(
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_window.get(),
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st::callTitle,
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[=](bool maximized) { toggleFullScreen(maximized); }))
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#endif // Q_OS_WIN
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, _bodySt(&st::callBodyLayout)
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, _answerHangupRedial(widget(), st::callAnswer, &st::callHangup)
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, _decline(widget(), object_ptr<Button>(widget(), st::callHangup))
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, _cancel(widget(), object_ptr<Button>(widget(), st::callCancel))
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, _camera(widget(), st::callCameraMute, &st::callCameraUnmute)
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, _mute(widget(), st::callMicrophoneMute, &st::callMicrophoneUnmute)
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, _name(widget(), st::callName)
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, _status(widget(), st::callStatus) {
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_decline->setDuration(st::callPanelDuration);
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_cancel->setDuration(st::callPanelDuration);
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initWindow();
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initWidget();
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initControls();
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initLayout();
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initBottomShadow();
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showAndActivate();
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}
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Panel::~Panel() = default;
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void Panel::showAndActivate() {
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_window->raise();
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_window->setWindowState(_window->windowState() | Qt::WindowActive);
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_window->activateWindow();
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_window->setFocus();
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}
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void Panel::replaceCall(not_null<Call*> call) {
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reinitWithCall(call);
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updateControlsGeometry();
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}
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void Panel::initWindow() {
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_window->setWindowIcon(
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QIcon(QPixmap::fromImage(Image::Empty()->original(), Qt::ColorOnly)));
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_window->setTitle(u" "_q);
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_window->setTitleStyle(st::callTitle);
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_window->events(
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) | rpl::start_with_next([=](not_null<QEvent*> e) {
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if (e->type() == QEvent::Close) {
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handleClose();
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} else if (e->type() == QEvent::KeyPress) {
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if ((static_cast<QKeyEvent*>(e.get())->key() == Qt::Key_Escape)
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&& _window->isFullScreen()) {
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_window->showNormal();
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}
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}
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}, _window->lifetime());
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_window->setBodyTitleArea([=](QPoint widgetPoint) {
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using Flag = Ui::WindowTitleHitTestFlag;
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if (!widget()->rect().contains(widgetPoint)) {
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return Flag::None | Flag(0);
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}
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#ifdef Q_OS_WIN
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if (_controls->geometry().contains(widgetPoint)) {
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return Flag::None | Flag(0);
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}
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#endif // Q_OS_WIN
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const auto buttonWidth = st::callCancel.button.width;
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const auto buttonsWidth = buttonWidth * 4;
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const auto inControls = _fingerprintArea.contains(widgetPoint)
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|| QRect(
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(widget()->width() - buttonsWidth) / 2,
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_answerHangupRedial->y(),
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buttonsWidth,
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_answerHangupRedial->height()).contains(widgetPoint)
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|| (!_outgoingPreviewInBody
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&& _outgoingVideoBubble->geometry().contains(widgetPoint));
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return inControls
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? Flag::None
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: (Flag::Move | Flag::FullScreen);
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});
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#ifdef Q_OS_WIN
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// On Windows we replace snap-to-top maximizing with fullscreen.
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//
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// We have to switch first to showNormal, so that showFullScreen
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// will remember correct normal window geometry and next showNormal
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// will show it instead of a moving maximized window.
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//
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// We have to do it in InvokeQueued, otherwise it still captures
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// the maximized window geometry and saves it.
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//
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// I couldn't find a less glitchy way to do that *sigh*.
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const auto object = _window->windowHandle();
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const auto signal = &QWindow::windowStateChanged;
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QObject::connect(object, signal, [=](Qt::WindowState state) {
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if (state == Qt::WindowMaximized) {
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InvokeQueued(object, [=] {
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_window->showNormal();
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_window->showFullScreen();
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});
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}
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});
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#endif // Q_OS_WIN
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}
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void Panel::initWidget() {
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widget()->setMouseTracking(true);
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widget()->paintRequest(
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) | rpl::start_with_next([=](QRect clip) {
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paint(clip);
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}, widget()->lifetime());
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widget()->events(
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) | rpl::start_with_next([=](not_null<QEvent*> e) {
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if (e->type() == QEvent::MouseMove) {
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handleMouseMove(static_cast<QMouseEvent*>(e.get()));
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} else if (e->type() == QEvent::Resize) {
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updateControlsGeometry();
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}
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}, widget()->lifetime());
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}
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void Panel::initControls() {
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_hangupShown = (_call->type() == Type::Outgoing);
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_mute->setClickedCallback([=] {
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if (_call) {
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_call->setMuted(!_call->muted());
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}
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});
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_camera->setClickedCallback([=] {
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if (_call) {
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_call->videoOutgoing()->setState(
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(_call->videoOutgoing()->state() == Webrtc::VideoState::Active)
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? Webrtc::VideoState::Inactive
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: Webrtc::VideoState::Active);
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}
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});
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_updateDurationTimer.setCallback([this] {
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if (_call) {
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updateStatusText(_call->state());
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}
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});
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_updateOuterRippleTimer.setCallback([this] {
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if (_call) {
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_answerHangupRedial->setOuterValue(_call->getWaitingSoundPeakValue());
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} else {
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_answerHangupRedial->setOuterValue(0.);
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_updateOuterRippleTimer.cancel();
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}
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});
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_answerHangupRedial->setClickedCallback([this] {
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if (!_call || _hangupShownProgress.animating()) {
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return;
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}
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auto state = _call->state();
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if (state == State::Busy) {
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_call->redial();
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} else if (_call->isIncomingWaiting()) {
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_call->answer();
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} else {
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_call->hangup();
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}
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});
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auto hangupCallback = [this] {
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if (_call) {
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_call->hangup();
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}
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};
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_decline->entity()->setClickedCallback(hangupCallback);
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_cancel->entity()->setClickedCallback(hangupCallback);
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reinitWithCall(_call);
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_decline->finishAnimating();
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_cancel->finishAnimating();
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}
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void Panel::setIncomingSize(QSize size) {
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if (_incomingFrameSize == size) {
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return;
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}
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widget()->update(incomingFrameGeometry());
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_incomingFrameSize = size;
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widget()->update(incomingFrameGeometry());
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showControls();
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}
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void Panel::reinitWithCall(Call *call) {
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_callLifetime.destroy();
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_call = call;
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if (!_call) {
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_outgoingVideoBubble = nullptr;
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return;
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}
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_user = _call->user();
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_signalBars.create(
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widget(),
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_call,
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st::callPanelSignalBars,
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[=] { widget()->rtlupdate(signalBarsRect()); });
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auto remoteMuted = _call->remoteAudioStateValue(
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) | rpl::map([=](Call::RemoteAudioState state) {
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return (state == Call::RemoteAudioState::Muted);
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});
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rpl::duplicate(
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remoteMuted
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) | rpl::start_with_next([=](bool muted) {
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if (muted) {
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createRemoteAudioMute();
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} else {
|
|
_remoteAudioMute.destroy();
|
|
}
|
|
}, _callLifetime);
|
|
_userpic = std::make_unique<Userpic>(
|
|
widget(),
|
|
_user,
|
|
std::move(remoteMuted));
|
|
_outgoingVideoBubble = std::make_unique<VideoBubble>(
|
|
widget(),
|
|
_call->videoOutgoing());
|
|
|
|
_call->mutedValue(
|
|
) | rpl::start_with_next([=](bool mute) {
|
|
_mute->setProgress(mute ? 1. : 0.);
|
|
}, _callLifetime);
|
|
|
|
_call->videoOutgoing()->stateValue(
|
|
) | rpl::start_with_next([=](Webrtc::VideoState state) {
|
|
_camera->setProgress((state == Webrtc::VideoState::Active) ? 0. : 1.);
|
|
}, _callLifetime);
|
|
|
|
_call->stateValue(
|
|
) | rpl::start_with_next([=](State state) {
|
|
stateChanged(state);
|
|
}, _callLifetime);
|
|
|
|
_call->videoIncoming()->renderNextFrame(
|
|
) | rpl::start_with_next([=] {
|
|
setIncomingSize(_call->videoIncoming()->frame({}).size());
|
|
if (_incomingFrameSize.isEmpty()) {
|
|
return;
|
|
}
|
|
const auto incoming = incomingFrameGeometry();
|
|
const auto outgoing = outgoingFrameGeometry();
|
|
if (incoming.intersects(outgoing)) {
|
|
widget()->update(incoming.united(outgoing));
|
|
} else {
|
|
widget()->update(incoming);
|
|
}
|
|
}, _callLifetime);
|
|
|
|
_call->videoOutgoing()->renderNextFrame(
|
|
) | rpl::start_with_next([=] {
|
|
const auto incoming = incomingFrameGeometry();
|
|
const auto outgoing = outgoingFrameGeometry();
|
|
if (incoming.intersects(outgoing)) {
|
|
widget()->update(incoming.united(outgoing));
|
|
} else {
|
|
widget()->update(outgoing);
|
|
}
|
|
}, _callLifetime);
|
|
|
|
rpl::combine(
|
|
_call->stateValue(),
|
|
_call->videoOutgoing()->renderNextFrame()
|
|
) | rpl::start_with_next([=](State state, auto) {
|
|
if (state != State::Ended
|
|
&& state != State::EndedByOtherDevice
|
|
&& state != State::Failed
|
|
&& state != State::FailedHangingUp
|
|
&& state != State::HangingUp) {
|
|
refreshOutgoingPreviewInBody(state);
|
|
}
|
|
}, _callLifetime);
|
|
|
|
_name->setText(_user->name);
|
|
updateStatusText(_call->state());
|
|
}
|
|
|
|
void Panel::createRemoteAudioMute() {
|
|
_remoteAudioMute.create(
|
|
widget(),
|
|
object_ptr<Ui::FlatLabel>(
|
|
widget(),
|
|
tr::lng_call_microphone_off(
|
|
lt_user,
|
|
rpl::single(_user->shortName())),
|
|
st::callRemoteAudioMute),
|
|
st::callTooltipPadding);
|
|
|
|
_remoteAudioMute->paintRequest(
|
|
) | rpl::start_with_next([=] {
|
|
auto p = QPainter(_remoteAudioMute);
|
|
const auto height = _remoteAudioMute->height();
|
|
|
|
auto hq = PainterHighQualityEnabler(p);
|
|
p.setBrush(st::toastBg);
|
|
p.setPen(Qt::NoPen);
|
|
p.drawRoundedRect(_remoteAudioMute->rect(), height / 2, height / 2);
|
|
|
|
st::callTooltipMutedIcon.paint(
|
|
p,
|
|
st::callTooltipMutedIconPosition,
|
|
_remoteAudioMute->width());
|
|
}, _remoteAudioMute->lifetime());
|
|
|
|
showControls();
|
|
updateControlsGeometry();
|
|
}
|
|
|
|
void Panel::initLayout() {
|
|
initGeometry();
|
|
|
|
_name->setAttribute(Qt::WA_TransparentForMouseEvents);
|
|
_status->setAttribute(Qt::WA_TransparentForMouseEvents);
|
|
|
|
using UpdateFlag = Data::PeerUpdate::Flag;
|
|
_user->session().changes().peerUpdates(
|
|
UpdateFlag::Name
|
|
) | rpl::filter([=](const Data::PeerUpdate &update) {
|
|
// _user may change for the same Panel.
|
|
return (_call != nullptr) && (update.peer == _user);
|
|
}) | rpl::start_with_next([=](const Data::PeerUpdate &update) {
|
|
_name->setText(_call->user()->name);
|
|
updateControlsGeometry();
|
|
}, widget()->lifetime());
|
|
|
|
#ifdef Q_OS_WIN
|
|
_controls->raise();
|
|
#endif // Q_OS_WIN
|
|
}
|
|
|
|
void Panel::initBottomShadow() {
|
|
auto image = QImage(
|
|
QSize(1, st::callBottomShadowSize) * cIntRetinaFactor(),
|
|
QImage::Format_ARGB32_Premultiplied);
|
|
const auto colorFrom = uint32(0);
|
|
const auto colorTill = uint32(74);
|
|
const auto rows = image.height();
|
|
const auto step = (uint64(colorTill - colorFrom) << 32) / rows;
|
|
auto accumulated = uint64();
|
|
auto bytes = image.bits();
|
|
for (auto y = 0; y != rows; ++y) {
|
|
accumulated += step;
|
|
const auto color = (colorFrom + uint32(accumulated >> 32)) << 24;
|
|
for (auto x = 0; x != image.width(); ++x) {
|
|
*(reinterpret_cast<uint32*>(bytes) + x) = color;
|
|
}
|
|
bytes += image.bytesPerLine();
|
|
}
|
|
_bottomShadow = Images::PixmapFast(std::move(image));
|
|
}
|
|
|
|
void Panel::showControls() {
|
|
Expects(_call != nullptr);
|
|
|
|
widget()->showChildren();
|
|
_decline->setVisible(_decline->toggled());
|
|
_cancel->setVisible(_cancel->toggled());
|
|
|
|
const auto shown = !_incomingFrameSize.isEmpty();
|
|
_name->setVisible(!shown);
|
|
_status->setVisible(!shown);
|
|
_userpic->setVisible(!shown);
|
|
if (_remoteAudioMute) {
|
|
_remoteAudioMute->setVisible(shown);
|
|
}
|
|
}
|
|
|
|
void Panel::hideBeforeDestroy() {
|
|
_window->hide();
|
|
reinitWithCall(nullptr);
|
|
}
|
|
|
|
void Panel::initGeometry() {
|
|
const auto center = Core::App().getPointForCallPanelCenter();
|
|
const auto initRect = QRect(0, 0, st::callWidth, st::callHeight);
|
|
_window->setGeometry(initRect.translated(center - initRect.center()));
|
|
_window->setMinimumSize({ st::callWidthMin, st::callHeightMin });
|
|
_window->show();
|
|
updateControlsGeometry();
|
|
}
|
|
|
|
void Panel::refreshOutgoingPreviewInBody(State state) {
|
|
const auto inBody = (state != State::Established)
|
|
&& (_call->videoOutgoing()->state() != Webrtc::VideoState::Inactive)
|
|
&& !_call->videoOutgoing()->frameSize().isEmpty();
|
|
if (_outgoingPreviewInBody == inBody) {
|
|
return;
|
|
}
|
|
_outgoingPreviewInBody = inBody;
|
|
_bodySt = inBody ? &st::callBodyWithPreview : &st::callBodyLayout;
|
|
updateControlsGeometry();
|
|
}
|
|
|
|
void Panel::toggleFullScreen(bool fullscreen) {
|
|
if (fullscreen) {
|
|
_window->showFullScreen();
|
|
} else {
|
|
_window->showNormal();
|
|
}
|
|
}
|
|
|
|
QRect Panel::incomingFrameGeometry() const {
|
|
if (!_call || _incomingFrameSize.isEmpty()) {
|
|
return QRect();
|
|
}
|
|
const auto to = widget()->size();
|
|
const auto small = _incomingFrameSize.scaled(to, Qt::KeepAspectRatio);
|
|
const auto big = _incomingFrameSize.scaled(
|
|
to,
|
|
Qt::KeepAspectRatioByExpanding);
|
|
|
|
// If we cut out no more than 0.33 of the original, let's use expanding.
|
|
const auto use = ((big.width() * 3 <= to.width() * 4)
|
|
&& (big.height() * 3 <= to.height() * 4))
|
|
? big
|
|
: small;
|
|
const auto pos = QPoint(
|
|
(to.width() - use.width()) / 2,
|
|
(to.height() - use.height()) / 2);
|
|
return QRect(pos, use);
|
|
}
|
|
|
|
QRect Panel::outgoingFrameGeometry() const {
|
|
return _outgoingVideoBubble->geometry();
|
|
}
|
|
|
|
void Panel::updateFingerprintGeometry() {
|
|
auto realSize = Ui::Emoji::GetSizeNormal();
|
|
auto size = realSize / cIntRetinaFactor();
|
|
auto count = _fingerprint.size();
|
|
auto rectWidth = count * size + (count - 1) * st::callFingerprintSkip;
|
|
auto rectHeight = size;
|
|
auto left = (widget()->width() - rectWidth) / 2;
|
|
_fingerprintArea = QRect(
|
|
left,
|
|
st::callFingerprintTop + st::callFingerprintPadding.top(),
|
|
rectWidth,
|
|
rectHeight
|
|
).marginsAdded(st::callFingerprintPadding);
|
|
_fingerprintHeight = st::callFingerprintTop + _fingerprintArea.height() + st::callFingerprintBottom;
|
|
}
|
|
|
|
void Panel::updateControlsGeometry() {
|
|
if (widget()->size().isEmpty()) {
|
|
return;
|
|
}
|
|
updateFingerprintGeometry();
|
|
const auto innerHeight = std::max(widget()->height(), st::callHeightMin);
|
|
const auto innerWidth = widget()->width() - 2 * st::callInnerPadding;
|
|
const auto availableTop = _fingerprintHeight;
|
|
const auto available = widget()->height()
|
|
- st::callBottomControlsHeight
|
|
- availableTop;
|
|
const auto bodyPreviewSizeMax = st::callOutgoingPreviewMin
|
|
+ ((st::callOutgoingPreview
|
|
- st::callOutgoingPreviewMin)
|
|
* (innerHeight - st::callHeightMin)
|
|
/ (st::callHeight - st::callHeightMin));
|
|
const auto bodyPreviewSize = QSize(
|
|
std::min(
|
|
bodyPreviewSizeMax.width(),
|
|
std::min(innerWidth, st::callOutgoingPreviewMax.width())),
|
|
std::min(
|
|
bodyPreviewSizeMax.height(),
|
|
st::callOutgoingPreviewMax.height()));
|
|
const auto contentHeight = _bodySt->height
|
|
+ (_outgoingPreviewInBody ? bodyPreviewSize.height() : 0);
|
|
const auto remainingHeight = available - contentHeight;
|
|
const auto skipHeight = remainingHeight
|
|
/ (_outgoingPreviewInBody ? 3 : 2);
|
|
|
|
_bodyTop = availableTop + skipHeight;
|
|
_buttonsTop = availableTop + available;
|
|
const auto previewTop = _bodyTop + _bodySt->height + skipHeight;
|
|
|
|
_userpic->setGeometry(
|
|
(widget()->width() - _bodySt->photoSize) / 2,
|
|
_bodyTop + _bodySt->photoTop,
|
|
_bodySt->photoSize);
|
|
_userpic->setMuteLayout(
|
|
_bodySt->mutePosition,
|
|
_bodySt->muteSize,
|
|
_bodySt->muteStroke);
|
|
|
|
_name->moveToLeft(
|
|
(widget()->width() - _name->width()) / 2,
|
|
_bodyTop + _bodySt->nameTop);
|
|
updateStatusGeometry();
|
|
|
|
if (_remoteAudioMute) {
|
|
_remoteAudioMute->moveToLeft(
|
|
(widget()->width() - _remoteAudioMute->width()) / 2,
|
|
(_buttonsTop
|
|
- st::callRemoteAudioMuteSkip
|
|
- _remoteAudioMute->height()));
|
|
}
|
|
|
|
if (_outgoingPreviewInBody) {
|
|
_outgoingVideoBubble->updateGeometry(
|
|
VideoBubble::DragMode::None,
|
|
QRect(
|
|
(widget()->width() - bodyPreviewSize.width()) / 2,
|
|
previewTop,
|
|
bodyPreviewSize.width(),
|
|
bodyPreviewSize.height()));
|
|
} else {
|
|
updateOutgoingVideoBubbleGeometry();
|
|
}
|
|
|
|
auto bothWidth = _answerHangupRedial->width() + st::callCancel.button.width;
|
|
_decline->moveToLeft((widget()->width() - bothWidth) / 2, _buttonsTop);
|
|
_cancel->moveToLeft((widget()->width() - bothWidth) / 2, _buttonsTop);
|
|
|
|
updateHangupGeometry();
|
|
|
|
const auto skip = st::callSignalMargin + st::callSignalPadding;
|
|
const auto delta = (_signalBars->width() - _signalBars->height());
|
|
_signalBars->moveToLeft(skip, skip + delta / 2);
|
|
}
|
|
|
|
void Panel::updateOutgoingVideoBubbleGeometry() {
|
|
Expects(!_outgoingPreviewInBody);
|
|
|
|
const auto margins = QMargins{
|
|
st::callInnerPadding,
|
|
st::callInnerPadding,
|
|
st::callInnerPadding,
|
|
st::callInnerPadding,
|
|
};
|
|
const auto size = st::callOutgoingDefaultSize;
|
|
_outgoingVideoBubble->updateGeometry(
|
|
VideoBubble::DragMode::SnapToCorners,
|
|
widget()->rect().marginsRemoved(margins),
|
|
size);
|
|
}
|
|
|
|
void Panel::updateHangupGeometry() {
|
|
auto singleWidth = _answerHangupRedial->width();
|
|
auto bothWidth = singleWidth + st::callCancel.button.width;
|
|
auto rightFrom = (widget()->width() - bothWidth) / 2;
|
|
auto rightTo = (widget()->width() - singleWidth) / 2;
|
|
auto hangupProgress = _hangupShownProgress.value(_hangupShown ? 1. : 0.);
|
|
auto hangupRight = anim::interpolate(rightFrom, rightTo, hangupProgress);
|
|
_answerHangupRedial->moveToRight(hangupRight, _buttonsTop);
|
|
_answerHangupRedial->setProgress(hangupProgress);
|
|
_mute->moveToRight(hangupRight - _mute->width(), _buttonsTop);
|
|
_camera->moveToLeft(hangupRight - _mute->width(), _buttonsTop);
|
|
}
|
|
|
|
void Panel::updateStatusGeometry() {
|
|
_status->moveToLeft(
|
|
(widget()->width() - _status->width()) / 2,
|
|
_bodyTop + _bodySt->statusTop);
|
|
}
|
|
|
|
void Panel::paint(QRect clip) {
|
|
Painter p(widget());
|
|
|
|
p.fillRect(clip, st::callBgOpaque);
|
|
|
|
const auto incoming = incomingFrameGeometry();
|
|
if (!incoming.isEmpty()) {
|
|
Assert(_call != nullptr);
|
|
const auto frame = _call->videoIncoming()->frame(
|
|
Webrtc::FrameRequest());
|
|
if (!frame.isNull()) {
|
|
auto hq = PainterHighQualityEnabler(p);
|
|
p.drawImage(incoming, frame);
|
|
}
|
|
const auto shadowArea = QRect(
|
|
0,
|
|
widget()->height() - st::callBottomShadowSize,
|
|
widget()->width(),
|
|
st::callBottomShadowSize);
|
|
const auto fill = shadowArea.intersected(incoming);
|
|
if (!fill.isEmpty()) {
|
|
const auto factor = cIntRetinaFactor();
|
|
p.drawPixmap(
|
|
fill,
|
|
_bottomShadow,
|
|
QRect(
|
|
0,
|
|
factor * (fill.y() - shadowArea.y()),
|
|
factor,
|
|
factor * fill.height()));
|
|
}
|
|
}
|
|
_call->videoIncoming()->markFrameShown();
|
|
|
|
if (_signalBars->isDisplayed()) {
|
|
paintSignalBarsBg(p);
|
|
}
|
|
|
|
if (!_fingerprint.empty() && clip.intersects(_fingerprintArea)) {
|
|
const auto radius = _fingerprintArea.height() / 2;
|
|
auto hq = PainterHighQualityEnabler(p);
|
|
p.setBrush(st::callBgButton);
|
|
p.setPen(Qt::NoPen);
|
|
p.drawRoundedRect(_fingerprintArea, radius, radius);
|
|
|
|
const auto realSize = Ui::Emoji::GetSizeNormal();
|
|
const auto size = realSize / cIntRetinaFactor();
|
|
auto left = _fingerprintArea.left() + st::callFingerprintPadding.left();
|
|
const auto top = _fingerprintArea.top() + st::callFingerprintPadding.top();
|
|
for (const auto emoji : _fingerprint) {
|
|
Ui::Emoji::Draw(p, emoji, realSize, left, top);
|
|
left += st::callFingerprintSkip + size;
|
|
}
|
|
}
|
|
}
|
|
|
|
QRect Panel::signalBarsRect() const {
|
|
const auto size = 2 * st::callSignalPadding + _signalBars->width();
|
|
return QRect(
|
|
st::callSignalMargin,
|
|
st::callSignalMargin,
|
|
size,
|
|
size);
|
|
}
|
|
|
|
void Panel::paintSignalBarsBg(Painter &p) {
|
|
App::roundRect(
|
|
p,
|
|
signalBarsRect(),
|
|
st::callBgButton,
|
|
ImageRoundRadius::Small);
|
|
}
|
|
|
|
void Panel::handleClose() {
|
|
if (_call) {
|
|
_call->hangup();
|
|
}
|
|
}
|
|
|
|
void Panel::handleMouseMove(not_null<QMouseEvent*> e) {
|
|
if (_fingerprintArea.contains(e->pos())) {
|
|
Ui::Tooltip::Show(kTooltipShowTimeoutMs, this);
|
|
} else {
|
|
Ui::Tooltip::Hide();
|
|
}
|
|
}
|
|
|
|
not_null<Ui::RpWidget*> Panel::widget() const {
|
|
return _window->body();
|
|
}
|
|
|
|
QString Panel::tooltipText() const {
|
|
return tr::lng_call_fingerprint_tooltip(tr::now, lt_user, _user->name);
|
|
}
|
|
|
|
QPoint Panel::tooltipPos() const {
|
|
return QCursor::pos();
|
|
}
|
|
|
|
bool Panel::tooltipWindowActive() const {
|
|
return _window->isActiveWindow();
|
|
}
|
|
|
|
void Panel::stateChanged(State state) {
|
|
Expects(_call != nullptr);
|
|
|
|
updateStatusText(state);
|
|
|
|
if ((state != State::HangingUp)
|
|
&& (state != State::Ended)
|
|
&& (state != State::EndedByOtherDevice)
|
|
&& (state != State::FailedHangingUp)
|
|
&& (state != State::Failed)) {
|
|
auto toggleButton = [this](auto &&button, bool visible) {
|
|
button->toggle(
|
|
visible,
|
|
_window->isHidden()
|
|
? anim::type::instant
|
|
: anim::type::normal);
|
|
};
|
|
auto incomingWaiting = _call->isIncomingWaiting();
|
|
if (incomingWaiting) {
|
|
_updateOuterRippleTimer.callEach(Call::kSoundSampleMs);
|
|
}
|
|
toggleButton(_decline, incomingWaiting);
|
|
toggleButton(_cancel, (state == State::Busy));
|
|
auto hangupShown = !_decline->toggled()
|
|
&& !_cancel->toggled();
|
|
if (_hangupShown != hangupShown) {
|
|
_hangupShown = hangupShown;
|
|
_hangupShownProgress.start([this] { updateHangupGeometry(); }, _hangupShown ? 0. : 1., _hangupShown ? 1. : 0., st::callPanelDuration, anim::sineInOut);
|
|
}
|
|
if (_fingerprint.empty() && _call->isKeyShaForFingerprintReady()) {
|
|
fillFingerprint();
|
|
}
|
|
}
|
|
}
|
|
|
|
void Panel::fillFingerprint() {
|
|
Expects(_call != nullptr);
|
|
|
|
_fingerprint = ComputeEmojiFingerprint(_call);
|
|
updateControlsGeometry();
|
|
widget()->update();
|
|
}
|
|
|
|
void Panel::updateStatusText(State state) {
|
|
auto statusText = [this, state]() -> QString {
|
|
switch (state) {
|
|
case State::Starting:
|
|
case State::WaitingInit:
|
|
case State::WaitingInitAck: return tr::lng_call_status_connecting(tr::now);
|
|
case State::Established: {
|
|
if (_call) {
|
|
auto durationMs = _call->getDurationMs();
|
|
auto durationSeconds = durationMs / 1000;
|
|
startDurationUpdateTimer(durationMs);
|
|
return formatDurationText(durationSeconds);
|
|
}
|
|
return tr::lng_call_status_ended(tr::now);
|
|
} break;
|
|
case State::FailedHangingUp:
|
|
case State::Failed: return tr::lng_call_status_failed(tr::now);
|
|
case State::HangingUp: return tr::lng_call_status_hanging(tr::now);
|
|
case State::Ended:
|
|
case State::EndedByOtherDevice: return tr::lng_call_status_ended(tr::now);
|
|
case State::ExchangingKeys: return tr::lng_call_status_exchanging(tr::now);
|
|
case State::Waiting: return tr::lng_call_status_waiting(tr::now);
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case State::Requesting: return tr::lng_call_status_requesting(tr::now);
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case State::WaitingIncoming: return tr::lng_call_status_incoming(tr::now);
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case State::Ringing: return tr::lng_call_status_ringing(tr::now);
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case State::Busy: return tr::lng_call_status_busy(tr::now);
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|
}
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|
Unexpected("State in stateChanged()");
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|
};
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|
_status->setText(statusText());
|
|
updateStatusGeometry();
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|
}
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|
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void Panel::startDurationUpdateTimer(crl::time currentDuration) {
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auto msTillNextSecond = 1000 - (currentDuration % 1000);
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|
_updateDurationTimer.callOnce(msTillNextSecond + 5);
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|
}
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|
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} // namespace Calls
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