Files
tdesktop/Telegram/SourceFiles/test/test_capture.cpp
2026-08-16 14:02:42 +04:00

413 lines
11 KiB
C++

/*
This file is part of Telegram Desktop,
the official desktop application for the Telegram messaging service.
For license and copyright information please follow this link:
https://github.com/telegramdesktop/tdesktop/blob/master/LEGAL
*/
#ifdef _DEBUG
#include "test/test_capture.h"
#include "test/test_log.h"
#include "ui/ui_utility.h"
#include "styles/palette.h"
#include <QtGui/QPainter>
namespace Test {
namespace {
constexpr auto kBlankSpreadThreshold = 6;
constexpr auto kContactSheetGap = 8;
constexpr auto kCoverageSamples = 32;
constexpr auto kUnpaintedMinPermille = 100;
constexpr auto kBackgroundOwnerHops = 6;
[[nodiscard]] QString WithPngExtension(const QString &name) {
return name.endsWith(u".png"_q, Qt::CaseInsensitive)
? name
: (name + u".png"_q);
}
[[nodiscard]] QString RectText(const QRect &rect) {
return u"%1,%2 %3x%4"_q
.arg(rect.x())
.arg(rect.y())
.arg(rect.width())
.arg(rect.height());
}
[[nodiscard]] QString MisframedDetails(
not_null<QWidget*> widget,
const QRect &logicalRect) {
const auto bounds = widget->rect();
if (!logicalRect.isEmpty() && bounds.contains(logicalRect)) {
return QString();
}
const auto inside = bounds.intersected(logicalRect);
return u"requested rect is not fully inside the grabbed widget: "
u"requested=%1 widget=%2 inside=%3 rows=%4/%5 columns=%6/%7"_q
.arg(RectText(logicalRect), RectText(bounds), RectText(inside))
.arg(inside.height())
.arg(logicalRect.height())
.arg(inside.width())
.arg(logicalRect.width());
}
[[nodiscard]] std::vector<QPoint> SamplePoints(const QSize &size) {
auto result = std::vector<QPoint>();
const auto columns = std::min(size.width(), kCoverageSamples);
const auto rows = std::min(size.height(), kCoverageSamples);
if (columns < 1 || rows < 1) {
return result;
}
result.reserve(columns * rows);
for (auto y = 0; y != rows; ++y) {
for (auto x = 0; x != columns; ++x) {
result.push_back(QPoint(
((2 * x + 1) * size.width()) / (2 * columns),
((2 * y + 1) * size.height()) / (2 * rows)));
}
}
return result;
}
[[nodiscard]] int SampledMatchPermille(
const QImage &image,
const QColor &color) {
const auto points = SamplePoints(image.size());
if (points.empty()) {
return 0;
}
const auto reference = color.rgb();
auto matched = 0;
for (const auto &point : points) {
if (image.pixelColor(point).rgb() == reference) {
++matched;
}
}
return (1000 * matched) / int(points.size());
}
[[nodiscard]] int UnpaintedPermille(
not_null<QWidget*> widget,
const QRect &logicalRect) {
if (widget->testAttribute(Qt::WA_OpaquePaintEvent)) {
return 0;
}
const auto rect = logicalRect.isEmpty()
? widget->rect()
: logicalRect.intersected(widget->rect());
if (rect.isEmpty()) {
return 0;
}
const auto firstSentinel = QColor(255, 0, 255);
const auto secondSentinel = QColor(0, 255, 0);
const auto first = Ui::GrabWidgetToImage(widget, rect, firstSentinel);
const auto second = Ui::GrabWidgetToImage(widget, rect, secondSentinel);
if (first.isNull() || first.size() != second.size()) {
return 0;
}
const auto points = SamplePoints(first.size());
if (points.empty()) {
return 0;
}
const auto firstRgb = firstSentinel.rgb();
const auto secondRgb = secondSentinel.rgb();
auto unpainted = 0;
for (const auto &point : points) {
if (first.pixelColor(point).rgb() == firstRgb
&& second.pixelColor(point).rgb() == secondRgb) {
++unpainted;
}
}
return (1000 * unpainted) / int(points.size());
}
[[nodiscard]] QString WidgetDescription(not_null<QWidget*> widget) {
const auto &instance = *widget;
return u"%1 %2"_q.arg(
QString::fromUtf8(typeid(instance).name()),
RectText(widget->geometry()));
}
[[nodiscard]] QString BackgroundOwnerDetails(
not_null<QWidget*> widget,
const QRect &logicalRect) {
const auto rect = logicalRect.isEmpty() ? widget->rect() : logicalRect;
const auto top = widget->window();
auto ancestor = (widget.get() == top) ? nullptr : widget->parentWidget();
for (auto hop = 0; ancestor && (hop != kBackgroundOwnerHops); ++hop) {
const auto mapped = Ui::MapFrom(ancestor, widget, rect)
.intersected(ancestor->rect());
if (!mapped.isEmpty()) {
const auto unpainted = UnpaintedPermille(ancestor, mapped);
if (unpainted < kUnpaintedMinPermille) {
return u"grab %1 instead (unpainted %2/1000)"_q
.arg(WidgetDescription(ancestor))
.arg(unpainted);
}
}
ancestor = (ancestor == top) ? nullptr : ancestor->parentWidget();
}
return u"no ancestor within %1 parents paints a background"_q
.arg(kBackgroundOwnerHops);
}
[[nodiscard]] QString BlankRootDetails(
not_null<QWidget*> widget,
const QImage &image,
const QRect &logicalRect,
bool logCoverage = true) {
if (image.isNull()
|| widget->testAttribute(Qt::WA_OpaquePaintEvent)
|| widget->testAttribute(Qt::WA_NoSystemBackground)) {
return QString();
}
const auto harnessThemeBase = st::windowBg->c;
const auto baseMatched = SampledMatchPermille(image, harnessThemeBase);
if (!baseMatched) {
return QString();
}
const auto unpainted = UnpaintedPermille(widget, logicalRect);
if (logCoverage) {
Note(u"capture coverage: harnessThemeBase=%1/1000 unpainted=%2/1000 "
u"(threshold %3/1000)"_q
.arg(baseMatched)
.arg(unpainted)
.arg(kUnpaintedMinPermille));
}
if (unpainted < kUnpaintedMinPermille) {
return QString();
}
return u"render root paints no background of its own: %1 has neither "
u"Qt::WA_OpaquePaintEvent nor Qt::WA_NoSystemBackground, and %2/1000 "
u"sampled points were painted by neither the widget nor its "
u"children; the harness theme base is active st::windowBg %3 "
u"(%4/1000 of the grab matches that base) "
u"- %5"_q
.arg(WidgetDescription(widget))
.arg(unpainted)
.arg(harnessThemeBase.name())
.arg(baseMatched)
.arg(BackgroundOwnerDetails(widget, logicalRect));
}
} // namespace
QImage GrabWidget(not_null<QWidget*> widget) {
return Ui::GrabWidgetToImage(widget, QRect(), st::windowBg->c);
}
QImage GrabRect(
not_null<QWidget*> widget,
const QRect &logicalRect) {
const auto bounded = logicalRect.intersected(widget->rect());
return bounded.isEmpty()
? QImage()
: Ui::GrabWidgetToImage(widget, bounded, st::windowBg->c);
}
bool LooksBlank(const QImage &image) {
if (image.isNull() || image.width() < 2 || image.height() < 2) {
return true;
}
auto minLuma = 255;
auto maxLuma = 0;
const auto columns = std::min(image.width(), 32);
const auto rows = std::min(image.height(), 32);
for (auto y = 0; y != rows; ++y) {
for (auto x = 0; x != columns; ++x) {
const auto pixel = image.pixelColor(
(x * (image.width() - 1)) / std::max(columns - 1, 1),
(y * (image.height() - 1)) / std::max(rows - 1, 1));
const auto luma = int(std::round(255 * pixel.lightnessF()));
minLuma = std::min(minLuma, luma);
maxLuma = std::max(maxLuma, luma);
}
}
return (maxLuma - minLuma) < kBlankSpreadThreshold;
}
bool PreparedWidgetCapture::prepare(QWidget *widget) {
_widget = nullptr;
_image = QImage();
_globalGeometry = QRect();
if (!widget) {
_pendingReason = u"target does not exist"_q;
return false;
} else if (!widget->isVisible()) {
_pendingReason = u"target is not visible: %1"_q.arg(
WidgetDescription(widget));
return false;
} else if (widget->size().isEmpty()) {
_pendingReason = u"target has empty geometry: %1"_q.arg(
WidgetDescription(widget));
return false;
}
const auto image = GrabWidget(widget);
if (LooksBlank(image)) {
_pendingReason = u"target grab still looks blank: %1"_q.arg(
WidgetDescription(widget));
return false;
}
const auto blankRoot = BlankRootDetails(widget, image, QRect(), false);
if (!blankRoot.isEmpty()) {
_pendingReason = blankRoot;
return false;
}
_widget = widget;
_image = image;
_globalGeometry = QRect(widget->mapToGlobal(QPoint()), widget->size());
_pendingReason = QString();
return true;
}
void PreparedWidgetCapture::invalidate(QString reason) {
_widget = nullptr;
_image = QImage();
_globalGeometry = QRect();
_pendingReason = std::move(reason);
}
bool PreparedWidgetCapture::save(const QString &name) {
if (!_widget || _image.isNull()) {
Fail(
u"prepared capture %1"_q.arg(name),
_pendingReason.isEmpty()
? u"no accepted frame"_q
: _pendingReason);
return false;
}
LogGeometry(name, _globalGeometry);
const auto path = SaveImage(_image, name);
if (path.isEmpty()) {
Fail(u"prepared capture %1"_q.arg(name), u"could not save image"_q);
return false;
}
return true;
}
QString PreparedWidgetCapture::pendingReason() const {
return _pendingReason;
}
QString SaveImage(const QImage &image, const QString &name) {
if (image.isNull()) {
return QString();
}
const auto path = ScreenshotsDir() + WithPngExtension(name);
if (!image.save(path, "PNG")) {
return QString();
}
LogRaw(u"SCREENSHOT: %1"_q.arg(path));
return path;
}
bool CaptureWidget(not_null<QWidget*> widget, const QString &name) {
LogGeometry(name, QRect(widget->mapToGlobal(QPoint()), widget->size()));
if (!widget->isVisible()) {
Fail(u"capture %1"_q.arg(name), u"widget is not visible"_q);
return false;
}
const auto image = GrabWidget(widget);
if (LooksBlank(image)) {
Fail(u"capture %1"_q.arg(name), u"grabbed image looks blank"_q);
return false;
}
const auto blankRoot = BlankRootDetails(widget, image, QRect());
if (!blankRoot.isEmpty()) {
Fail(u"capture %1"_q.arg(name), blankRoot);
return false;
}
return !SaveImage(image, name).isEmpty();
}
bool CaptureRect(
not_null<QWidget*> widget,
const QRect &logicalRect,
const QString &name) {
LogGeometry(name, logicalRect);
if (!widget->isVisible()) {
Fail(u"capture %1"_q.arg(name), u"widget is not visible"_q);
return false;
}
const auto misframed = MisframedDetails(widget, logicalRect);
if (!misframed.isEmpty()) {
Fail(u"capture %1"_q.arg(name), misframed);
return false;
}
const auto image = GrabRect(widget, logicalRect);
if (LooksBlank(image)) {
Fail(u"capture %1"_q.arg(name), u"grabbed image looks blank"_q);
return false;
}
const auto blankRoot = BlankRootDetails(widget, image, logicalRect);
if (!blankRoot.isEmpty()) {
Fail(u"capture %1"_q.arg(name), blankRoot);
return false;
}
return !SaveImage(image, name).isEmpty();
}
bool CaptureMappedRect(
not_null<QWidget*> widget,
not_null<QWidget*> rectOrigin,
const QRect &logicalRect,
const QString &name) {
return CaptureRect(
widget,
Ui::MapFrom(widget, rectOrigin, logicalRect),
name);
}
QImage Crop(const QImage &image, const QRect &pixelRect) {
const auto bounded = pixelRect.intersected(image.rect());
return bounded.isEmpty() ? QImage() : image.copy(bounded);
}
QImage Zoom(const QImage &image, int factor) {
return (image.isNull() || factor <= 1)
? image
: image.scaled(
image.size() * factor,
Qt::KeepAspectRatio,
Qt::FastTransformation);
}
QImage ContactSheet(const std::vector<QImage> &images) {
auto width = 0;
auto height = 0;
for (const auto &image : images) {
if (image.isNull()) {
continue;
}
width += image.width() + (width ? kContactSheetGap : 0);
height = std::max(height, image.height());
}
if (!width) {
return QImage();
}
auto result = QImage(width, height, QImage::Format_ARGB32_Premultiplied);
result.fill(Qt::white);
auto painter = QPainter(&result);
auto x = 0;
for (const auto &image : images) {
if (image.isNull()) {
continue;
}
auto copy = image;
copy.setDevicePixelRatio(1.);
painter.drawImage(x, 0, copy);
x += copy.width() + kContactSheetGap;
}
painter.end();
return result;
}
} // namespace Test
#endif // _DEBUG