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https://github.com/citra-emu/citra.git
synced 2024-12-18 17:10:06 +00:00
Settings: Change resolution scaling to an integer instead of a float
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@ -88,7 +88,7 @@ void Config::ReadValues() {
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Settings::values.use_hw_renderer = sdl2_config->GetBoolean("Renderer", "use_hw_renderer", true);
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Settings::values.use_shader_jit = sdl2_config->GetBoolean("Renderer", "use_shader_jit", true);
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Settings::values.resolution_factor =
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(float)sdl2_config->GetReal("Renderer", "resolution_factor", 1.0);
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static_cast<u16>(sdl2_config->GetInteger("Renderer", "resolution_factor", 1));
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Settings::values.use_vsync = sdl2_config->GetBoolean("Renderer", "use_vsync", false);
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Settings::values.toggle_framelimit =
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sdl2_config->GetBoolean("Renderer", "toggle_framelimit", true);
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@ -73,7 +73,8 @@ void Config::ReadValues() {
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qt_config->beginGroup("Renderer");
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Settings::values.use_hw_renderer = qt_config->value("use_hw_renderer", true).toBool();
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Settings::values.use_shader_jit = qt_config->value("use_shader_jit", true).toBool();
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Settings::values.resolution_factor = qt_config->value("resolution_factor", 1.0).toFloat();
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Settings::values.resolution_factor =
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static_cast<u16>(qt_config->value("resolution_factor", 1).toInt());
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Settings::values.use_vsync = qt_config->value("use_vsync", false).toBool();
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Settings::values.toggle_framelimit = qt_config->value("toggle_framelimit", true).toBool();
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@ -236,7 +237,7 @@ void Config::SaveValues() {
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qt_config->beginGroup("Renderer");
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qt_config->setValue("use_hw_renderer", Settings::values.use_hw_renderer);
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qt_config->setValue("use_shader_jit", Settings::values.use_shader_jit);
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qt_config->setValue("resolution_factor", (double)Settings::values.resolution_factor);
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qt_config->setValue("resolution_factor", Settings::values.resolution_factor);
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qt_config->setValue("use_vsync", Settings::values.use_vsync);
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qt_config->setValue("toggle_framelimit", Settings::values.toggle_framelimit);
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@ -20,81 +20,11 @@ ConfigureGraphics::ConfigureGraphics(QWidget* parent)
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ConfigureGraphics::~ConfigureGraphics() {}
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enum class Resolution : int {
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Auto,
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Scale1x,
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Scale2x,
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Scale3x,
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Scale4x,
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Scale5x,
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Scale6x,
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Scale7x,
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Scale8x,
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Scale9x,
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Scale10x,
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};
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float ToResolutionFactor(Resolution option) {
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switch (option) {
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case Resolution::Auto:
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return 0.f;
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case Resolution::Scale1x:
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return 1.f;
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case Resolution::Scale2x:
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return 2.f;
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case Resolution::Scale3x:
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return 3.f;
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case Resolution::Scale4x:
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return 4.f;
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case Resolution::Scale5x:
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return 5.f;
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case Resolution::Scale6x:
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return 6.f;
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case Resolution::Scale7x:
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return 7.f;
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case Resolution::Scale8x:
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return 8.f;
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case Resolution::Scale9x:
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return 9.f;
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case Resolution::Scale10x:
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return 10.f;
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}
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return 0.f;
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}
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Resolution FromResolutionFactor(float factor) {
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if (factor == 0.f) {
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return Resolution::Auto;
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} else if (factor == 1.f) {
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return Resolution::Scale1x;
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} else if (factor == 2.f) {
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return Resolution::Scale2x;
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} else if (factor == 3.f) {
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return Resolution::Scale3x;
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} else if (factor == 4.f) {
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return Resolution::Scale4x;
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} else if (factor == 5.f) {
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return Resolution::Scale5x;
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} else if (factor == 6.f) {
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return Resolution::Scale6x;
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} else if (factor == 7.f) {
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return Resolution::Scale7x;
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} else if (factor == 8.f) {
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return Resolution::Scale8x;
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} else if (factor == 9.f) {
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return Resolution::Scale9x;
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} else if (factor == 10.f) {
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return Resolution::Scale10x;
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}
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return Resolution::Auto;
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}
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void ConfigureGraphics::setConfiguration() {
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ui->toggle_hw_renderer->setChecked(Settings::values.use_hw_renderer);
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ui->resolution_factor_combobox->setEnabled(Settings::values.use_hw_renderer);
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ui->toggle_shader_jit->setChecked(Settings::values.use_shader_jit);
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ui->resolution_factor_combobox->setCurrentIndex(
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static_cast<int>(FromResolutionFactor(Settings::values.resolution_factor)));
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ui->resolution_factor_combobox->setCurrentIndex(Settings::values.resolution_factor);
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ui->toggle_vsync->setChecked(Settings::values.use_vsync);
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ui->toggle_framelimit->setChecked(Settings::values.toggle_framelimit);
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ui->layout_combobox->setCurrentIndex(static_cast<int>(Settings::values.layout_option));
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@ -105,7 +35,7 @@ void ConfigureGraphics::applyConfiguration() {
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Settings::values.use_hw_renderer = ui->toggle_hw_renderer->isChecked();
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Settings::values.use_shader_jit = ui->toggle_shader_jit->isChecked();
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Settings::values.resolution_factor =
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ToResolutionFactor(static_cast<Resolution>(ui->resolution_factor_combobox->currentIndex()));
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static_cast<u16>(ui->resolution_factor_combobox->currentIndex());
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Settings::values.use_vsync = ui->toggle_vsync->isChecked();
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Settings::values.toggle_framelimit = ui->toggle_framelimit->isChecked();
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Settings::values.layout_option =
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@ -29,7 +29,7 @@ struct Rectangle {
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T right;
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T bottom;
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Rectangle() {}
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Rectangle() = default;
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Rectangle(T left, T top, T right, T bottom)
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: left(left), top(top), right(right), bottom(bottom) {}
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@ -16,8 +16,8 @@ static const float TOP_SCREEN_ASPECT_RATIO =
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static const float BOT_SCREEN_ASPECT_RATIO =
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static_cast<float>(Core::kScreenBottomHeight) / Core::kScreenBottomWidth;
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float FramebufferLayout::GetScalingRatio() const {
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return static_cast<float>(top_screen.GetWidth()) / Core::kScreenTopWidth;
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u16 FramebufferLayout::GetScalingRatio() const {
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return static_cast<u16>(((top_screen.GetWidth() - 1) / Core::kScreenTopWidth) + 1);
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}
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// Finds the largest size subrectangle contained in window area that is confined to the aspect ratio
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@ -21,7 +21,7 @@ struct FramebufferLayout {
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* Returns the ration of pixel size of the top screen, compared to the native size of the 3DS
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* screen.
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*/
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float GetScalingRatio() const;
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u16 GetScalingRatio() const;
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};
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/**
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@ -95,7 +95,7 @@ struct Values {
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// Renderer
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bool use_hw_renderer;
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bool use_shader_jit;
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float resolution_factor;
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u16 resolution_factor;
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bool use_vsync;
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bool toggle_framelimit;
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@ -525,12 +525,27 @@ CachedSurface* RasterizerCacheOpenGL::GetTextureSurface(
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return GetSurface(params, false, true);
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}
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// If the resolution
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static u16 GetResolutionScaleFactor() {
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return !Settings::values.resolution_factor
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? VideoCore::g_emu_window->GetFramebufferLayout().GetScalingRatio()
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: Settings::values.resolution_factor;
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}
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std::tuple<CachedSurface*, CachedSurface*, MathUtil::Rectangle<int>>
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RasterizerCacheOpenGL::GetFramebufferSurfaces(
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const Pica::FramebufferRegs::FramebufferConfig& config) {
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const auto& regs = Pica::g_state.regs;
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// update resolution_scale_factor and reset cache if changed
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static u16 resolution_scale_factor = GetResolutionScaleFactor();
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if (resolution_scale_factor != GetResolutionScaleFactor()) {
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resolution_scale_factor = GetResolutionScaleFactor();
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FlushAll();
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InvalidateRegion(0, 0xffffffff, nullptr);
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}
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// Make sur that framebuffers don't overlap if both color and depth are being used
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u32 fb_area = config.GetWidth() * config.GetHeight();
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bool framebuffers_overlap =
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@ -561,12 +576,6 @@ RasterizerCacheOpenGL::GetFramebufferSurfaces(
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color_params.height = depth_params.height = config.GetHeight();
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color_params.is_tiled = depth_params.is_tiled = true;
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// Set the internal resolution, assume the same scaling factor for top and bottom screens
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float resolution_scale_factor = Settings::values.resolution_factor;
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if (resolution_scale_factor == 0.0f) {
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// Auto - scale resolution to the window size
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resolution_scale_factor = VideoCore::g_emu_window->GetFramebufferLayout().GetScalingRatio();
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}
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// Scale the resolution by the specified factor
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color_params.res_scale_width = resolution_scale_factor;
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depth_params.res_scale_width = resolution_scale_factor;
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@ -41,7 +41,7 @@ struct LightSrc {
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};
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layout (std140) uniform shader_data {
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vec2 framebuffer_scale;
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int framebuffer_scale;
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int alphatest_ref;
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float depth_scale;
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float depth_offset;
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