vulkan_device: don't use fixed cap for memory limits
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5361027ef0
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@ -384,6 +384,12 @@ struct Values {
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AstcRecompression::Bc3,
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AstcRecompression::Bc3,
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"astc_recompression",
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"astc_recompression",
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Category::RendererAdvanced};
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Category::RendererAdvanced};
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SwitchableSetting<VramUsageMode, true> vram_usage_mode{linkage,
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VramUsageMode::Conservative,
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VramUsageMode::Conservative,
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VramUsageMode::Aggressive,
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"vram_usage_mode",
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Category::RendererAdvanced};
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SwitchableSetting<bool> async_presentation{linkage,
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SwitchableSetting<bool> async_presentation{linkage,
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#ifdef ANDROID
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#ifdef ANDROID
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true,
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true,
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@ -122,6 +122,8 @@ ENUM(AstcRecompression, Uncompressed, Bc1, Bc3);
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ENUM(VSyncMode, Immediate, Mailbox, Fifo, FifoRelaxed);
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ENUM(VSyncMode, Immediate, Mailbox, Fifo, FifoRelaxed);
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ENUM(VramUsageMode, Conservative, Aggressive);
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ENUM(RendererBackend, OpenGL, Vulkan, Null);
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ENUM(RendererBackend, OpenGL, Vulkan, Null);
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ENUM(ShaderBackend, Glsl, Glasm, SpirV);
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ENUM(ShaderBackend, Glsl, Glasm, SpirV);
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@ -1297,10 +1297,6 @@ u64 Device::GetDeviceMemoryUsage() const {
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}
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}
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void Device::CollectPhysicalMemoryInfo() {
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void Device::CollectPhysicalMemoryInfo() {
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// Account for resolution scaling in memory limits
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const size_t normal_memory = 6_GiB;
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const size_t scaler_memory = 1_GiB * Settings::values.resolution_info.ScaleUp(1);
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// Calculate limits using memory budget
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// Calculate limits using memory budget
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VkPhysicalDeviceMemoryBudgetPropertiesEXT budget{};
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VkPhysicalDeviceMemoryBudgetPropertiesEXT budget{};
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budget.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_MEMORY_BUDGET_PROPERTIES_EXT;
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budget.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_MEMORY_BUDGET_PROPERTIES_EXT;
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@ -1331,7 +1327,15 @@ void Device::CollectPhysicalMemoryInfo() {
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if (!is_integrated) {
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if (!is_integrated) {
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const u64 reserve_memory = std::min<u64>(device_access_memory / 8, 1_GiB);
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const u64 reserve_memory = std::min<u64>(device_access_memory / 8, 1_GiB);
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device_access_memory -= reserve_memory;
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device_access_memory -= reserve_memory;
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device_access_memory = std::min<u64>(device_access_memory, normal_memory + scaler_memory);
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if (Settings::values.vram_usage_mode.GetValue() != Settings::VramUsageMode::Aggressive) {
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// Account for resolution scaling in memory limits
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const size_t normal_memory = 6_GiB;
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const size_t scaler_memory = 1_GiB * Settings::values.resolution_info.ScaleUp(1);
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device_access_memory =
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std::min<u64>(device_access_memory, normal_memory + scaler_memory);
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}
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return;
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return;
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}
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}
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const s64 available_memory = static_cast<s64>(device_access_memory - device_initial_usage);
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const s64 available_memory = static_cast<s64>(device_access_memory - device_initial_usage);
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@ -164,6 +164,11 @@ std::unique_ptr<TranslationMap> InitializeTranslations(QWidget* parent) {
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"the emulator to decompress to an intermediate format any card supports, RGBA8.\n"
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"the emulator to decompress to an intermediate format any card supports, RGBA8.\n"
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"This option recompresses RGBA8 to either the BC1 or BC3 format, saving VRAM but "
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"This option recompresses RGBA8 to either the BC1 or BC3 format, saving VRAM but "
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"negatively affecting image quality."));
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"negatively affecting image quality."));
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INSERT(Settings, vram_usage_mode, tr("VRAM Usage Mode:"),
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tr("Selects whether the emulator should prefer to conserve memory or make maximum usage "
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"of available video memory for performance. Has no effect on integrated graphics. "
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"Aggressive mode may severely impact the performance of other applications such as "
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"recording software."));
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INSERT(
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INSERT(
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Settings, vsync_mode, tr("VSync Mode:"),
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Settings, vsync_mode, tr("VSync Mode:"),
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tr("FIFO (VSync) does not drop frames or exhibit tearing but is limited by the screen "
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tr("FIFO (VSync) does not drop frames or exhibit tearing but is limited by the screen "
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@ -315,6 +320,11 @@ std::unique_ptr<ComboboxTranslationMap> ComboboxEnumeration(QWidget* parent) {
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PAIR(AstcRecompression, Bc1, tr("BC1 (Low quality)")),
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PAIR(AstcRecompression, Bc1, tr("BC1 (Low quality)")),
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PAIR(AstcRecompression, Bc3, tr("BC3 (Medium quality)")),
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PAIR(AstcRecompression, Bc3, tr("BC3 (Medium quality)")),
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}});
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}});
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translations->insert({Settings::EnumMetadata<Settings::VramUsageMode>::Index(),
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{
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PAIR(VramUsageMode, Conservative, tr("Conservative")),
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PAIR(VramUsageMode, Aggressive, tr("Aggressive")),
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}});
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translations->insert({Settings::EnumMetadata<Settings::RendererBackend>::Index(),
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translations->insert({Settings::EnumMetadata<Settings::RendererBackend>::Index(),
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{
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{
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#ifdef HAS_OPENGL
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#ifdef HAS_OPENGL
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