Implement software scope rendering for backend-neutral display paths
The Waveform, Vectorscope and Histogram panels were black when running on the Vulkan / backend-neutral render path because ScopeBase::OnPaint() returned early with a TODO. The viewer emits GPU textures that live in the viewer's own renderer; on Vulkan each ManagedDisplayWidget has a separate device, so those textures cannot be sampled directly. Fix by: - Adding a backend-neutral branch in ScopeBase::OnPaint() that downloads the reference texture (cross-renderer if needed), color-manages it into a U8 offscreen texture, downloads it to a QImage, and draws via QPainter. - Adding a pure virtual DrawScopeSoftware() to ScopeBase and implementing it for WaveformScope, VectorscopeScope and HistogramScope. - Fixing the managed_tex_up_to_date_ flag that was never set to true in the OpenGL path, which caused the color-managed scope texture to be recreated on every paint. All gtest suites pass.
This commit is contained in:
@@ -21,6 +21,7 @@
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#include "histogram.h"
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#include <array>
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#include <QPainter>
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#include <QtMath>
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#include <QVector2D>
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@@ -148,4 +149,105 @@ void HistogramScope::DrawScope(TexturePtr managed_tex, QVariant pipeline)
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p.drawLines(histogram_lines);
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}
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void HistogramScope::DrawScopeSoftware(QPainter &p, const QImage &image)
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{
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const float histogram_scale = 0.80f;
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const float histogram_base = 2.5f;
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const int histogram_dim_x = qCeil((width() - 1.0) * histogram_scale);
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const int histogram_dim_y = qCeil((height() - 1.0) * histogram_scale);
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const int histogram_start_dim_x =
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qFloor(((width() - 1.0) - histogram_dim_x) / 2.0f);
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const int histogram_start_dim_y =
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qFloor(((height() - 1.0) - histogram_dim_y) / 2.0f);
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const int histogram_end_dim_x = width() - 1 - histogram_start_dim_x;
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std::array<int, 256> r_counts{};
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std::array<int, 256> g_counts{};
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std::array<int, 256> b_counts{};
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const int src_w = image.width();
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const int src_h = image.height();
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// Limit analysis resolution to keep CPU usage reasonable.
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const int step_x = qMax(1, src_w / 512);
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const int step_y = qMax(1, src_h / 512);
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for (int sy = 0; sy < src_h; sy += step_y) {
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const uchar *src_line = image.constScanLine(sy);
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for (int sx = 0; sx < src_w; sx += step_x) {
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const uchar *src = src_line + sx * 4;
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r_counts[src[0]]++;
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g_counts[src[1]]++;
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b_counts[src[2]]++;
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}
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}
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int max_count = 1;
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for (int i = 0; i < 256; ++i) {
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max_count = qMax(max_count, r_counts[i]);
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max_count = qMax(max_count, g_counts[i]);
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max_count = qMax(max_count, b_counts[i]);
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}
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auto draw_channel = [&](const std::array<int, 256> &counts, const QColor &color) {
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QPen pen(color);
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pen.setWidth(2);
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p.setPen(pen);
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QVector<QPointF> points;
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points.reserve(256);
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for (int i = 0; i < 256; ++i) {
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float x = histogram_start_dim_x +
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(float(i) / 255.0f) * histogram_dim_x;
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float normalized = float(counts[i]) / float(max_count);
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float y = histogram_start_dim_y +
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histogram_dim_y *
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(1.0f - pow(normalized, 1.0f / histogram_base));
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points.append(QPointF(x, y));
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}
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p.drawPolyline(points.constData(), points.size());
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};
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p.setCompositionMode(QPainter::CompositionMode_Plus);
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draw_channel(r_counts, QColor(255, 0, 0));
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draw_channel(g_counts, QColor(0, 255, 0));
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draw_channel(b_counts, QColor(0, 0, 255));
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// Draw percentage line overlays
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QFont font = p.font();
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font.setPixelSize(10);
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QFontMetrics font_metrics = QFontMetrics(font);
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QString label;
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std::vector<float> histogram_increments = { 0.00, 0.25, 0.50, 1.0 };
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int histogram_steps = histogram_increments.size();
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QVector<QLine> histogram_lines(histogram_steps + 1);
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int font_x_offset = 0;
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int font_y_offset = font_metrics.capHeight() / 2.0f;
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p.setCompositionMode(QPainter::CompositionMode_SourceOver);
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p.setPen(QColor(0.0, 0.6 * 255.0, 0.0));
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p.setFont(font);
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for (std::vector<float>::iterator it = histogram_increments.begin();
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it != histogram_increments.end(); it++) {
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histogram_lines[it - histogram_increments.begin()].setLine(
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histogram_start_dim_x,
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(histogram_dim_y * pow(1.0 - *it, histogram_base)) +
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histogram_start_dim_y,
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histogram_end_dim_x,
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(histogram_dim_y * pow(1.0 - *it, histogram_base)) +
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histogram_start_dim_y);
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label = QString::number(*it * 100, 'f', 1) + "%";
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font_x_offset = QtUtils::QFontMetricsWidth(font_metrics, label) + 4;
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p.drawText(histogram_start_dim_x - font_x_offset,
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(histogram_dim_y * pow(1.0 - *it, histogram_base)) +
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histogram_start_dim_y + font_y_offset,
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label);
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}
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p.drawLines(histogram_lines);
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}
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}
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@@ -45,6 +45,8 @@ protected:
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virtual void DrawScope(TexturePtr managed_tex, QVariant pipeline) override;
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virtual void DrawScopeSoftware(QPainter &p, const QImage &image) override;
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private:
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QVariant pipeline_secondary_;
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TexturePtr texture_row_sums_;
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@@ -33,6 +33,7 @@ ScopeBase::ScopeBase(QWidget *parent)
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: super(parent)
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, texture_(nullptr)
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, managed_tex_up_to_date_(false)
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, software_image_up_to_date_(false)
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{
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EnableDefaultContextMenu();
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}
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@@ -41,6 +42,7 @@ void ScopeBase::SetBuffer(TexturePtr frame)
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{
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texture_ = frame;
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managed_tex_up_to_date_ = false;
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software_image_up_to_date_ = false;
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update();
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}
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@@ -60,17 +62,103 @@ void ScopeBase::DrawScope(TexturePtr managed_tex, QVariant pipeline)
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renderer()->Blit(pipeline, job, GetViewportParams());
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}
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void ScopeBase::UpdateSoftwareImage()
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{
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if (!texture_ || texture_->IsDummy() || !renderer()) {
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software_image_ = QImage();
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software_image_up_to_date_ = true;
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return;
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}
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// Backend-neutral widgets each have their own renderer instance (e.g. a
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// separate Vulkan device). The reference texture emitted by the viewer lives
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// in the viewer's renderer, so we must download it to the CPU and re-upload
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// it into this scope's renderer before we can sample it.
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TexturePtr source_tex = texture_;
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if (texture_->renderer() && texture_->renderer() != renderer()) {
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FramePtr temp_frame = Frame::Create();
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temp_frame->set_video_params(texture_->params());
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temp_frame->allocate();
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texture_->Download(temp_frame->data(), temp_frame->linesize_pixels());
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local_texture_ = renderer()->CreateTexture(
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temp_frame->video_params(), temp_frame->data(),
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temp_frame->linesize_pixels());
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source_tex = local_texture_;
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}
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if (!source_tex || source_tex->IsDummy()) {
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software_image_ = QImage();
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software_image_up_to_date_ = true;
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return;
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}
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const int texture_width = static_cast<int>(width() * devicePixelRatioF());
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const int texture_height = static_cast<int>(height() * devicePixelRatioF());
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const VideoParams offscreen_params(
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texture_width, texture_height, PixelFormat::U8,
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VideoParams::kRGBAChannelCount);
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if (!software_tex_ || software_tex_->params() != offscreen_params) {
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software_tex_ = renderer()->CreateTexture(offscreen_params);
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software_buffer_.resize(
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texture_width * texture_height *
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VideoParams::GetBytesPerPixel(PixelFormat::U8,
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VideoParams::kRGBAChannelCount));
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}
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if (!software_tex_ || software_tex_->IsDummy()) {
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software_image_ = QImage();
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software_image_up_to_date_ = true;
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return;
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}
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ColorTransformJob job;
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job.SetColorProcessor(color_service());
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job.SetInputTexture(source_tex);
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job.SetInputAlphaAssociation(kAlphaNone);
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job.SetClearDestinationEnabled(true);
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job.SetForceOpaque(true);
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renderer()->BlitColorManaged(job, software_tex_.get());
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renderer()->DownloadFromTexture(software_tex_->id(), software_tex_->params(),
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software_buffer_.data(), 0);
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software_image_ = QImage(
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reinterpret_cast<const uchar *>(software_buffer_.constData()),
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texture_width, texture_height,
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texture_width *
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VideoParams::GetBytesPerPixel(PixelFormat::U8,
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VideoParams::kRGBAChannelCount),
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QImage::Format_RGBA8888_Premultiplied);
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software_image_.setDevicePixelRatio(devicePixelRatioF());
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software_image_up_to_date_ = true;
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}
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void ScopeBase::OnInit()
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{
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super::OnInit();
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pipeline_ = renderer()->CreateNativeShader(GenerateShaderCode());
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if (!IsBackendNeutral()) {
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pipeline_ = renderer()->CreateNativeShader(GenerateShaderCode());
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}
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}
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void ScopeBase::OnPaint()
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{
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if (IsBackendNeutral()) {
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// TODO: implement backend-neutral scope display
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if (!software_image_up_to_date_) {
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UpdateSoftwareImage();
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}
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QPainter p(paint_device());
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p.fillRect(rect(), Qt::black);
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if (!software_image_.isNull()) {
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DrawScopeSoftware(p, software_image_);
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}
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return;
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}
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@@ -89,6 +177,7 @@ void ScopeBase::OnPaint()
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job.SetInputAlphaAssociation(kAlphaNone);
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renderer()->BlitColorManaged(job, managed_tex_.get());
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managed_tex_up_to_date_ = true;
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}
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DrawScope(managed_tex_, pipeline_);
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@@ -97,6 +186,10 @@ void ScopeBase::OnPaint()
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void ScopeBase::OnDestroy()
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{
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local_texture_ = nullptr;
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software_tex_ = nullptr;
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software_buffer_.clear();
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software_image_ = QImage();
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managed_tex_ = nullptr;
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texture_ = nullptr;
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pipeline_.clear();
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@@ -51,13 +51,23 @@ protected:
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virtual ShaderCode GenerateShaderCode() = 0;
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/**
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* @brief Draw function
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* @brief GPU-accelerated draw function used on OpenGL backends.
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*
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* Override this if your sub-class scope needs extra drawing.
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*/
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virtual void DrawScope(TexturePtr managed_tex, QVariant pipeline);
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/**
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* @brief Software draw function used on backend-neutral paths (e.g. Vulkan).
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*
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* Implementations receive an 8-bit sRGB/display-ready image and should draw
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* the scope visualization with QPainter.
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*/
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virtual void DrawScopeSoftware(QPainter &p, const QImage &image) = 0;
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private:
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void UpdateSoftwareImage();
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QVariant pipeline_;
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TexturePtr texture_;
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@@ -65,6 +75,13 @@ private:
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TexturePtr managed_tex_;
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bool managed_tex_up_to_date_;
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TexturePtr software_tex_;
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QByteArray software_buffer_;
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QImage software_image_;
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bool software_image_up_to_date_;
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TexturePtr local_texture_;
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};
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}
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@@ -129,4 +129,106 @@ void VectorscopeScope::DrawScope(TexturePtr managed_tex, QVariant pipeline)
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}
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}
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void VectorscopeScope::DrawScopeSoftware(QPainter &p, const QImage &image)
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{
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const float vectorscope_scale = 0.80f;
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const float vectorscope_gain = 1.45f;
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const float vectorscope_intensity = 0.035f;
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QImage buf(width(), height(), QImage::Format_ARGB32_Premultiplied);
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buf.fill(Qt::transparent);
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double luma_coeffs[3] = { 0.0, 0.0, 0.0 };
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color_manager()->GetDefaultLumaCoefs(luma_coeffs);
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const int src_w = image.width();
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const int src_h = image.height();
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// Limit analysis resolution to keep CPU usage reasonable.
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const int step_x = qMax(1, src_w / 256);
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const int step_y = qMax(1, src_h / 256);
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float scope_size = qMin(width(), height()) * vectorscope_scale;
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QPointF center(width() * 0.5, height() * 0.5);
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float radius = scope_size * 0.5;
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for (int sy = 0; sy < src_h; sy += step_y) {
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const uchar *src_line = image.constScanLine(sy);
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for (int sx = 0; sx < src_w; sx += step_x) {
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const uchar *src = src_line + sx * 4;
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float r = src[0] / 255.0f;
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float g = src[1] / 255.0f;
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float b = src[2] / 255.0f;
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float y = r * luma_coeffs[0] + g * luma_coeffs[1] +
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b * luma_coeffs[2];
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float cb = (b - y) / qMax(2.0f * (1.0f - luma_coeffs[2]), 0.0001f);
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float cr = (r - y) / qMax(2.0f * (1.0f - luma_coeffs[0]), 0.0001f);
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QPointF point = center +
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QPointF(cr * vectorscope_gain * radius,
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-cb * vectorscope_gain * radius);
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int px = qRound(point.x());
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int py = qRound(point.y());
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if (px < 0 || px >= width() || py < 0 || py >= height()) {
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continue;
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}
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QRgb *dst_line = reinterpret_cast<QRgb *>(buf.scanLine(py));
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QRgb cur = dst_line[px];
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int add = qRound(255.0f * vectorscope_intensity);
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int nr = qMin(255, qRed(cur) + int(r * add));
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int ng = qMin(255, qGreen(cur) + int(g * add));
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int nb = qMin(255, qBlue(cur) + int(b * add));
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int na = qMax(qMax(nr, ng), nb);
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dst_line[px] = qRgba(nr, ng, nb, na);
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}
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}
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p.setCompositionMode(QPainter::CompositionMode_Plus);
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p.drawImage(0, 0, buf);
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// Draw overlay (circle, cross-hairs, targets)
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QFont font = p.font();
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font.setPixelSize(10);
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QFontMetrics font_metrics = QFontMetrics(font);
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p.setCompositionMode(QPainter::CompositionMode_SourceOver);
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p.setPen(QColor(0, 153, 0));
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p.setFont(font);
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p.drawEllipse(center, radius, radius);
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p.drawLine(QPointF(center.x() - radius, center.y()),
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QPointF(center.x() + radius, center.y()));
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p.drawLine(QPointF(center.x(), center.y() - radius),
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QPointF(center.x(), center.y() + radius));
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struct Target {
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const char *label;
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float angle;
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};
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const Target targets[] = {
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{ "R", 0.0f }, { "Mg", 60.0f }, { "B", 120.0f },
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{ "Cy", 180.0f }, { "G", 240.0f }, { "Yl", 300.0f },
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};
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const float label_radius = radius + 12.0f;
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const float marker_radius = radius * 0.72f;
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constexpr float kPi = 3.14159265358979323846f;
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for (const Target &target : targets) {
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float radians = target.angle * kPi / 180.0f;
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QPointF direction(qCos(radians), -qSin(radians));
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QPointF marker = center + direction * marker_radius;
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QPointF label_pos = center + direction * label_radius;
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QString label = QString::fromUtf8(target.label);
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p.drawEllipse(marker, 3.0, 3.0);
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p.drawText(label_pos.x() -
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QtUtils::QFontMetricsWidth(font_metrics, label) * 0.5,
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label_pos.y() + font_metrics.capHeight() * 0.5, label);
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}
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}
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}
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@@ -38,6 +38,8 @@ protected:
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virtual ShaderCode GenerateShaderCode() override;
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virtual void DrawScope(TexturePtr managed_tex, QVariant pipeline) override;
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virtual void DrawScopeSoftware(QPainter &p, const QImage &image) override;
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};
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}
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@@ -120,4 +120,97 @@ void WaveformScope::DrawScope(TexturePtr managed_tex, QVariant pipeline)
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p.drawLines(ire_lines);
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}
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void WaveformScope::DrawScopeSoftware(QPainter &p, const QImage &image)
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{
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const float waveform_scale = 0.80f;
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const int waveform_dim_x = qCeil((width() - 1.0) * waveform_scale);
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const int waveform_dim_y = qCeil((height() - 1.0) * waveform_scale);
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const int waveform_start_dim_x =
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qFloor(((width() - 1.0) - waveform_dim_x) / 2.0f);
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const int waveform_start_dim_y =
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qFloor(((height() - 1.0) - waveform_dim_y) / 2.0f);
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const int waveform_end_dim_x = width() - 1 - waveform_start_dim_x;
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QImage buf(width(), height(), QImage::Format_ARGB32_Premultiplied);
|
||||
buf.fill(Qt::transparent);
|
||||
|
||||
const int src_w = image.width();
|
||||
const int src_h = image.height();
|
||||
|
||||
// Limit analysis resolution to keep CPU usage reasonable on large frames.
|
||||
const int step_x = qMax(1, src_w / 512);
|
||||
const int step_y = qMax(1, src_h / 512);
|
||||
|
||||
for (int sy = 0; sy < src_h; sy += step_y) {
|
||||
const uchar *src_line = image.constScanLine(sy);
|
||||
for (int sx = 0; sx < src_w; sx += step_x) {
|
||||
const uchar *src = src_line + sx * 4;
|
||||
float r = src[0] / 255.0f;
|
||||
float g = src[1] / 255.0f;
|
||||
float b = src[2] / 255.0f;
|
||||
|
||||
int scope_x = waveform_start_dim_x +
|
||||
int((float(sx) / float(src_w)) * waveform_dim_x);
|
||||
if (scope_x < waveform_start_dim_x ||
|
||||
scope_x >= waveform_end_dim_x) {
|
||||
continue;
|
||||
}
|
||||
|
||||
auto mark = [&](float value, int add_r, int add_g, int add_b) {
|
||||
int scope_y = waveform_start_dim_y +
|
||||
int((1.0f - value) * waveform_dim_y);
|
||||
if (scope_y < waveform_start_dim_y ||
|
||||
scope_y >= waveform_start_dim_y + waveform_dim_y) {
|
||||
return;
|
||||
}
|
||||
QRgb *dst_line = reinterpret_cast<QRgb *>(buf.scanLine(scope_y));
|
||||
QRgb cur = dst_line[scope_x];
|
||||
int nr = qMin(255, qRed(cur) + add_r);
|
||||
int ng = qMin(255, qGreen(cur) + add_g);
|
||||
int nb = qMin(255, qBlue(cur) + add_b);
|
||||
int na = qMax(qMax(nr, ng), nb);
|
||||
dst_line[scope_x] = qRgba(nr, ng, nb, na);
|
||||
};
|
||||
|
||||
mark(r, 30, 0, 0);
|
||||
mark(g, 0, 30, 0);
|
||||
mark(b, 0, 0, 30);
|
||||
}
|
||||
}
|
||||
|
||||
p.setCompositionMode(QPainter::CompositionMode_Plus);
|
||||
p.drawImage(0, 0, buf);
|
||||
|
||||
// Draw IRE line overlays
|
||||
QFont font;
|
||||
font.setPixelSize(10);
|
||||
QFontMetrics font_metrics = QFontMetrics(font);
|
||||
QString label;
|
||||
float ire_increment = 0.1f;
|
||||
int ire_steps = qRound(1.0 / ire_increment);
|
||||
QVector<QLine> ire_lines(ire_steps + 1);
|
||||
int font_x_offset = 0;
|
||||
int font_y_offset = font_metrics.capHeight() / 2.0f;
|
||||
|
||||
p.setPen(QColor(0.0, 0.6 * 255.0, 0.0));
|
||||
p.setFont(font);
|
||||
|
||||
for (int i = 0; i <= ire_steps; i++) {
|
||||
ire_lines[i].setLine(
|
||||
waveform_start_dim_x,
|
||||
(waveform_dim_y * (i * ire_increment)) + waveform_start_dim_y,
|
||||
waveform_end_dim_x,
|
||||
(waveform_dim_y * (i * ire_increment)) + waveform_start_dim_y);
|
||||
label = QString::number(1.0 - (i * ire_increment), 'f', 1);
|
||||
font_x_offset = QtUtils::QFontMetricsWidth(font_metrics, label) + 4;
|
||||
|
||||
p.drawText(waveform_start_dim_x - font_x_offset,
|
||||
(waveform_dim_y * (i * ire_increment)) +
|
||||
waveform_start_dim_y + font_y_offset,
|
||||
label);
|
||||
}
|
||||
|
||||
p.drawLines(ire_lines);
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
@@ -38,6 +38,8 @@ protected:
|
||||
virtual ShaderCode GenerateShaderCode() override;
|
||||
|
||||
virtual void DrawScope(TexturePtr managed_tex, QVariant pipeline) override;
|
||||
|
||||
virtual void DrawScopeSoftware(QPainter &p, const QImage &image) override;
|
||||
};
|
||||
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user