mirror of
https://git.eden-emu.dev/eden-emu/eden.git
synced 2026-10-05 05:37:10 +00:00
Compare commits
1 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| 87c87642ed |
@@ -0,0 +1,34 @@
|
||||
diff --git a/libavutil/hwcontext_vulkan.c b/libavutil/hwcontext_vulkan.c
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index 2859ee1..766961f 100644
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--- a/libavutil/hwcontext_vulkan.c
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+++ b/libavutil/hwcontext_vulkan.c
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@@ -1688,10 +1688,12 @@ static int setup_queue_families(AVHWDeviceContext *ctx, VkDeviceCreateInfo *cd)
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hwctx->nb_qf = 0;
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hwctx->queue_flags = 0;
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+/* SD gamemode vkroots crash
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#ifdef VK_KHR_internally_synchronized_queues
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if (p->vkctx.extensions & FF_VK_EXT_INTERNAL_QUEUE_SYNC)
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hwctx->queue_flags |= VK_DEVICE_QUEUE_CREATE_INTERNALLY_SYNCHRONIZED_BIT_KHR;
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#endif
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+*/
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/* Pick each queue family to use. */
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#define PICK_QF(type, vid_op) \
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diff --git a/libavutil/vulkan.c b/libavutil/vulkan.c
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index b2e575c..5b3c9cf 100644
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--- a/libavutil/vulkan.c
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+++ b/libavutil/vulkan.c
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@@ -574,10 +574,12 @@ int ff_vk_exec_pool_init(FFVulkanContext *s, AVVulkanDeviceQueueFamily *qf,
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e->qf = qf->idx;
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VkDeviceQueueInfo2 qinfo = {
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.sType = VK_STRUCTURE_TYPE_DEVICE_QUEUE_INFO_2,
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+/* SD gamemode vkroots crash
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#ifdef VK_KHR_internally_synchronized_queues
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.flags = internal_queue_sync ?
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VK_DEVICE_QUEUE_CREATE_INTERNALLY_SYNCHRONIZED_BIT_KHR : 0,
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#endif
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+*/
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.queueFamilyIndex = qf->idx,
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.queueIndex = e->qi,
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};
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+3
-3
@@ -70,16 +70,16 @@
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"version": "v1.3.18"
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},
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"ffmpeg": {
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"hash": "ed177621176b3961bdcaa339187d3a7688c1c8b060b79c4bb0257cbc67ad7021ae5d5adca5303b45625abbbe3d9aafdd87ce777b8690ac295290d744c875489a",
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"hash": "68f46abf0d5dc47ab95083d59e273131a8df7948b82e62db00f00fa416e1d0bd24b799671b5a60752209bb2ac0f75295055ed0085c89a98113323cde23b69710",
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"repo": "FFmpeg/FFmpeg",
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"version": "c7b5f1537d"
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"version": "6efe500d2e"
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},
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"ffmpeg-ci": {
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"ci": true,
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"name": "ffmpeg",
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"package": "FFmpeg",
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"repo": "crueter-ci/FFmpeg",
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"version": "9.0.2-1790726865-946fcce07b"
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"version": "9.0.1-1788120736-bf1b838f2a"
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},
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"fmt": {
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"hash": "f0da82c545b01692e9fd30fdfb613dbb8dd9716983dcd0ff19ac2a8d36f74beb5540ef38072fdecc1e34191b3682a8542ecbf3a61ef287dbba0a2679d4e023f2",
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@@ -23,7 +23,6 @@ import org.yuzu.yuzu_emu.model.Driver.Companion.toDriver
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import org.yuzu.yuzu_emu.utils.GpuDriverHelper
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import org.yuzu.yuzu_emu.NativeLibrary
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import org.yuzu.yuzu_emu.utils.GpuDriverMetadata
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import org.yuzu.yuzu_emu.utils.DirectoryInitialization
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import org.yuzu.yuzu_emu.utils.NativeConfig
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import java.io.File
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@@ -147,11 +146,11 @@ class DriverViewModel : ViewModel() {
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private fun wipeGameShaders(game: Game) {
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viewModelScope.launch {
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withContext(Dispatchers.IO) {
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val userDirectory = DirectoryInitialization.userDirectory
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val externalFilesDir = YuzuApplication.appContext.getExternalFilesDir(null)
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?: return@withContext
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val shaderDir = File(
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userDirectory +
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"/cache/shader/" + game.settingsName.lowercase()
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externalFilesDir.absolutePath +
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"/shader/" + game.settingsName.lowercase()
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)
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if (shaderDir.exists()) {
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shaderDir.deleteRecursively()
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@@ -250,10 +250,9 @@ std::shared_ptr<FrontendApplet> FrontendAppletHolder::GetApplet(std::shared_ptr<
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return std::make_shared<PhotoViewer>(system, applet, mode, *frontend.photo_viewer);
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case AppletId::NetConnect:
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return std::make_shared<NetConnect>(system, applet, mode, *frontend.net_connect);
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case AppletId::None:
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return nullptr;
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default:
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UNIMPLEMENTED_MSG("No frontend implementation exists for applet_id={:02X} program_id={:016X}! Using stub applet.", static_cast<u8>(id), applet->program_id);
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LOG_ERROR(Service_AM, "No backend implementation exists for applet_id={:02X} program_id={:016X}"
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"Falling back to stub applet", static_cast<u8>(id), applet->program_id);
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return std::make_shared<StubApplet>(system, applet, id, mode);
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}
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}
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+1
-1
@@ -757,7 +757,7 @@ struct Memory::Impl {
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};
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auto& gpu = system.GPU();
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gpu_device_memory->ApplyOpOnPointer(
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p, scratch_buffers[core], [&](DAddr address) { gpu.InvalidateRegion(address, size, true); });
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p, scratch_buffers[core], [&](DAddr address) { gpu.InvalidateRegion(address, size); });
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}
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Core::System& system;
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@@ -38,8 +38,6 @@ struct HostTranslateInfo {
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///< passthrough shaders
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bool support_conditional_barrier{}; ///< True when the device supports barriers in conditional
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///< control flow
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bool support_attribute_texture_handle{}; ///< True when the host binds texture handles that
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///< arrive as vertex attributes
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void ApplyDescriptorLimitPolicy() noexcept {
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if (min_ssbo_alignment == 0) {
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@@ -268,10 +268,6 @@ static inline u32 ReadCbufCached(Environment& env, u32 index, u32 offset) {
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return v;
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}
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static inline bool IsAttributeHandle(const ConstBufferAddr& cbuf) {
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return cbuf.index == ATTRIBUTE_HANDLE_CBUF_INDEX;
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}
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static inline u32 GetTextureHandleCached(Environment& env, const ConstBufferAddr& cbuf) {
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// Must all be uniquely different variables
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// If has secondary, then it will be cbuf.secondary_{index|offset}, else its 0.
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@@ -291,23 +287,14 @@ static inline u32 GetTextureHandleCached(Environment& env, const ConstBufferAddr
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// Cached variants of existing helpers
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static inline TextureType ReadTextureTypeCached(Environment& env, const ConstBufferAddr& cbuf) {
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if (IsAttributeHandle(cbuf)) {
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return TextureType::Color2D;
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}
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return env.ReadTextureType(GetTextureHandleCached(env, cbuf));
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}
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static inline TexturePixelFormat ReadTexturePixelFormatCached(Environment& env,
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const ConstBufferAddr& cbuf) {
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if (IsAttributeHandle(cbuf)) {
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return TexturePixelFormat::A8B8G8R8_UNORM;
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}
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return env.ReadTexturePixelFormat(GetTextureHandleCached(env, cbuf));
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}
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static inline bool IsTexturePixelFormatIntegerCached(Environment& env,
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const ConstBufferAddr& cbuf) {
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if (IsAttributeHandle(cbuf)) {
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return false;
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}
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return env.IsTexturePixelFormatInteger(GetTextureHandleCached(env, cbuf));
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}
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@@ -479,43 +466,15 @@ std::optional<ConstBufferAddr> TryGetConstBuffer(const IR::Inst* inst, Environme
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};
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}
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bool IsAttributeSourcedHandle(const IR::Value& handle) {
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if (handle.IsImmediate()) {
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return false;
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}
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const IR::Inst* inst{handle.InstRecursive()};
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if (inst->GetOpcode() == IR::Opcode::BitCastU32F32 && !inst->Arg(0).IsImmediate()) {
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inst = inst->Arg(0).InstRecursive();
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}
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return inst->GetOpcode() == IR::Opcode::GetAttribute ||
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inst->GetOpcode() == IR::Opcode::GetAttributeU32;
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}
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TextureInst MakeInst(Environment& env, IR::Block* block, IR::Inst& inst, const HostTranslateInfo& host_info) {
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ConstBufferAddr addr;
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if (IsBindless(inst)) {
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const std::optional<ConstBufferAddr> track_addr{TrackCached(inst.Arg(0), env, host_info)};
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if (track_addr) {
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addr = *track_addr;
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} else if (host_info.support_attribute_texture_handle &&
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IsAttributeSourcedHandle(inst.Arg(0))) {
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// The handle travels with the vertices (sprite batches pick the texture per quad), so
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// there is no constant buffer to read it from. The host binds the handle of each run
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// of vertices that share one.
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addr = ConstBufferAddr{
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.index = ATTRIBUTE_HANDLE_CBUF_INDEX,
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.offset = 0,
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.shift_left = 0,
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.secondary_index = 0,
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.secondary_offset = 0,
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.secondary_shift_left = 0,
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.dynamic_offset = {},
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.count = 1,
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.has_secondary = false,
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};
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} else {
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if (!track_addr) {
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throw NotImplementedException("Failed to track bindless texture constant buffer");
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} else {
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addr = *track_addr;
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}
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} else {
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addr = ConstBufferAddr{
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@@ -38,10 +38,6 @@ enum class TextureType : u32 {
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};
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constexpr u32 NUM_TEXTURE_TYPES = 9;
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/// Constant buffer index marking a texture handle that the shader receives as a vertex attribute
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/// instead of reading it from a constant buffer. The host supplies the handle of each draw run.
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constexpr u32 ATTRIBUTE_HANDLE_CBUF_INDEX = 0xFFFF;
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enum class TexturePixelFormat {
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A8B8G8R8_UNORM,
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A8B8G8R8_SNORM,
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+3
-13
@@ -226,17 +226,7 @@ struct GPU::Impl {
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}
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/// Notify rasterizer that any caches of the specified region should be invalidated
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void InvalidateRegion(DAddr addr, u64 size, bool preserve_gpu_writes) {
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VideoCore::RasterizerInterface* rasterizer = renderer->ReadRasterizer();
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if (preserve_gpu_writes && rasterizer->MustFlushRegion(addr, size, VideoCommon::CacheType::BufferCache)) {
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const u64 fence = RequestSyncOperation([rasterizer, addr, size] {
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rasterizer->FlushRegion(addr, size, VideoCommon::CacheType::BufferCache);
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rasterizer->OnCacheInvalidation(addr, size);
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});
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gpu_thread.TickGPU(is_async);
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WaitForSyncOperation(fence);
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return;
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}
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void InvalidateRegion(DAddr addr, u64 size) {
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gpu_thread.InvalidateRegion(addr, size);
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}
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@@ -528,8 +518,8 @@ void GPU::FlushRegion(DAddr addr, u64 size) {
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impl->FlushRegion(addr, size);
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}
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void GPU::InvalidateRegion(DAddr addr, u64 size, bool preserve_gpu_writes) {
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impl->InvalidateRegion(addr, size, preserve_gpu_writes);
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void GPU::InvalidateRegion(DAddr addr, u64 size) {
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impl->InvalidateRegion(addr, size);
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}
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bool GPU::OnCPUWrite(DAddr addr, u64 size) {
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@@ -248,7 +248,7 @@ public:
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void FlushRegion(DAddr addr, u64 size);
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/// Notify rasterizer that any caches of the specified region should be invalidated
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void InvalidateRegion(DAddr addr, u64 size, bool preserve_gpu_writes = false);
|
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void InvalidateRegion(DAddr addr, u64 size);
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|
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/// Notify rasterizer that CPU is trying to write this area. It returns true if the area is
|
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/// sensible, false otherwise, addr and size must be a valid combination
|
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|
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@@ -276,9 +276,6 @@ GraphicsPipeline::GraphicsPipeline(
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num_textures += Shader::NumDescriptors(info->texture_descriptors);
|
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num_image_elements += Shader::NumDescriptors(info->texture_descriptors);
|
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num_image_elements += Shader::NumDescriptors(info->image_descriptors);
|
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for (const auto& desc : info->texture_descriptors) {
|
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uses_attribute_handle |= desc.cbuf_index == Shader::ATTRIBUTE_HANDLE_CBUF_INDEX;
|
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}
|
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num_descriptor_entries += NumDescriptorEntries(*info);
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}
|
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fragment_has_color0_output = stage_infos[NUM_STAGES - 1].stores_frag_color[0];
|
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@@ -378,9 +375,6 @@ bool GraphicsPipeline::ConfigureImpl(bool is_indexed) {
|
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}
|
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const auto& cbufs{maxwell3d->state.shader_stages[stage].const_buffers};
|
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const auto read_handle{[&](const auto& desc, u32 index) {
|
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if (desc.cbuf_index == Shader::ATTRIBUTE_HANDLE_CBUF_INDEX) {
|
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return TexturePair(attribute_handle, via_header_index);
|
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}
|
||||
ASSERT(cbufs[desc.cbuf_index].enabled);
|
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const u32 index_offset{index << desc.size_shift};
|
||||
const u32 offset{desc.cbuf_offset + index_offset};
|
||||
|
||||
@@ -110,16 +110,6 @@ public:
|
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return configure_func(this, is_indexed);
|
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}
|
||||
|
||||
/// True when a shader samples a texture whose handle arrives as a vertex attribute.
|
||||
[[nodiscard]] bool UsesAttributeHandle() const noexcept {
|
||||
return uses_attribute_handle;
|
||||
}
|
||||
|
||||
/// Handle bound to those textures by the next Configure.
|
||||
void SetAttributeHandle(u32 handle) noexcept {
|
||||
attribute_handle = handle;
|
||||
}
|
||||
|
||||
[[nodiscard]] GraphicsPipeline* Next(const GraphicsPipelineCacheKey& current_key) noexcept {
|
||||
if (key == current_key) {
|
||||
return this;
|
||||
@@ -178,8 +168,6 @@ private:
|
||||
u32 num_descriptor_entries{};
|
||||
size_t num_image_elements{};
|
||||
u32 num_textures{};
|
||||
u32 attribute_handle{};
|
||||
bool uses_attribute_handle{};
|
||||
bool fragment_has_color0_output{};
|
||||
|
||||
vk::DescriptorSetLayout descriptor_set_layout;
|
||||
|
||||
@@ -479,7 +479,6 @@ PipelineCache::PipelineCache(Tegra::MaxwellDeviceMemoryManager& device_memory_,
|
||||
.support_viewport_index_layer = device.IsExtShaderViewportIndexLayerSupported(),
|
||||
.support_geometry_shader_passthrough = device.IsNvGeometryShaderPassthroughSupported(),
|
||||
.support_conditional_barrier = device.SupportsConditionalBarriers(),
|
||||
.support_attribute_texture_handle = true,
|
||||
};
|
||||
host_info.ApplyDescriptorLimitPolicy();
|
||||
|
||||
|
||||
@@ -248,15 +248,6 @@ void RasterizerVulkan::PrepareDraw(bool is_indexed, Func&& draw_func) {
|
||||
std::scoped_lock lock{buffer_cache.mutex, texture_cache.mutex};
|
||||
// update engine as channel may be different.
|
||||
pipeline->SetEngine(maxwell3d, gpu_memory);
|
||||
attribute_handle_pipeline = nullptr;
|
||||
attribute_handle_runs.clear();
|
||||
if (split_attribute_handles && pipeline->UsesAttributeHandle()) {
|
||||
CollectAttributeHandleRuns(is_indexed);
|
||||
if (!attribute_handle_runs.empty()) {
|
||||
attribute_handle_pipeline = pipeline;
|
||||
pipeline->SetAttributeHandle(attribute_handle_runs.front().handle);
|
||||
}
|
||||
}
|
||||
if (!pipeline->Configure(is_indexed))
|
||||
return;
|
||||
|
||||
@@ -268,110 +259,22 @@ void RasterizerVulkan::PrepareDraw(bool is_indexed, Func&& draw_func) {
|
||||
draw_func();
|
||||
}
|
||||
|
||||
void RasterizerVulkan::CollectAttributeHandleRuns(bool is_indexed) {
|
||||
using VertexAttribute = Maxwell::VertexAttribute;
|
||||
const auto& regs = maxwell3d->regs;
|
||||
const auto& draw_state = maxwell3d->draw_manager.draw_state;
|
||||
const u32 total = is_indexed ? draw_state.index_buffer.count : draw_state.vertex_buffer.count;
|
||||
if (total == 0) {
|
||||
return;
|
||||
}
|
||||
// The handle is an integer attribute; sprite batches repeat it on every vertex of a quad.
|
||||
const VertexAttribute* source{};
|
||||
for (const auto& attr : regs.vertex_attrib_format) {
|
||||
if (attr.constant || attr.size == VertexAttribute::Size::Invalid) {
|
||||
continue;
|
||||
}
|
||||
if (attr.type == VertexAttribute::Type::UInt || attr.type == VertexAttribute::Type::SInt) {
|
||||
source = &attr;
|
||||
break;
|
||||
}
|
||||
}
|
||||
const auto& stream = regs.vertex_streams[source ? source->buffer.Value() : 0];
|
||||
if (!source || !stream.IsEnabled()) {
|
||||
attribute_handle_runs.push_back({0, total, 0});
|
||||
return;
|
||||
}
|
||||
// Only plain triangle lists are split; anything else keeps the handle of its first vertex.
|
||||
const u32 primitive_size =
|
||||
draw_state.topology == Maxwell::PrimitiveTopology::Triangles ? 3 : total;
|
||||
const GPUVAddr base_address = stream.Address() + source->offset;
|
||||
const auto read_handle = [&](u32 position) {
|
||||
u32 vertex;
|
||||
if (is_indexed) {
|
||||
const auto& index_buffer = draw_state.index_buffer;
|
||||
const GPUVAddr address =
|
||||
index_buffer.IndexStart() + size_t{position} * index_buffer.FormatSizeInBytes();
|
||||
u32 index{};
|
||||
gpu_memory->ReadBlockUnsafe(address, &index, index_buffer.FormatSizeInBytes());
|
||||
vertex = static_cast<u32>(draw_state.base_index + index);
|
||||
} else {
|
||||
vertex = draw_state.vertex_buffer.first + position;
|
||||
}
|
||||
return gpu_memory->Read<u32>(base_address + static_cast<GPUVAddr>(vertex) * stream.stride);
|
||||
};
|
||||
for (u32 position = 0; position + primitive_size <= total; position += primitive_size) {
|
||||
const u32 handle = read_handle(position);
|
||||
if (!attribute_handle_runs.empty() && attribute_handle_runs.back().handle == handle) {
|
||||
attribute_handle_runs.back().count += primitive_size;
|
||||
} else {
|
||||
attribute_handle_runs.push_back({position, primitive_size, handle});
|
||||
}
|
||||
}
|
||||
if (attribute_handle_runs.empty()) {
|
||||
attribute_handle_runs.push_back({0, total, read_handle(0)});
|
||||
} else {
|
||||
const u32 covered = attribute_handle_runs.back().first + attribute_handle_runs.back().count;
|
||||
if (covered < total) {
|
||||
attribute_handle_runs.back().count += total - covered;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
void RasterizerVulkan::Draw(bool is_indexed, u32 instance_count) {
|
||||
split_attribute_handles = true;
|
||||
SCOPE_EXIT {
|
||||
split_attribute_handles = false;
|
||||
};
|
||||
PrepareDraw(is_indexed, [this, is_indexed, instance_count] {
|
||||
const auto& draw_state = maxwell3d->draw_manager.draw_state;
|
||||
const u32 num_instances{instance_count};
|
||||
const DrawParams draw_params{MakeDrawParams(draw_state, num_instances, is_indexed)};
|
||||
|
||||
const auto record_draw = [this](const DrawParams& params) {
|
||||
scheduler.Record([params](vk::CommandBuffer cmdbuf) {
|
||||
if (params.is_indexed) {
|
||||
cmdbuf.DrawIndexed(params.num_vertices, params.num_instances,
|
||||
params.first_index, params.base_vertex,
|
||||
params.base_instance);
|
||||
} else {
|
||||
cmdbuf.Draw(params.num_vertices, params.num_instances, params.base_vertex,
|
||||
params.base_instance);
|
||||
}
|
||||
});
|
||||
};
|
||||
if (attribute_handle_pipeline && attribute_handle_runs.size() > 1) {
|
||||
// The first run is already configured, each further one binds its own texture.
|
||||
for (size_t i = 0; i < attribute_handle_runs.size(); ++i) {
|
||||
const AttributeHandleRun& run = attribute_handle_runs[i];
|
||||
if (i != 0) {
|
||||
attribute_handle_pipeline->SetAttributeHandle(run.handle);
|
||||
if (!attribute_handle_pipeline->Configure(is_indexed)) {
|
||||
continue;
|
||||
}
|
||||
}
|
||||
DrawParams run_params = draw_params;
|
||||
run_params.num_vertices = run.count;
|
||||
if (is_indexed) {
|
||||
run_params.first_index += run.first;
|
||||
} else {
|
||||
run_params.base_vertex += run.first;
|
||||
}
|
||||
record_draw(run_params);
|
||||
scheduler.Record([draw_params](vk::CommandBuffer cmdbuf) {
|
||||
if (draw_params.is_indexed) {
|
||||
cmdbuf.DrawIndexed(draw_params.num_vertices, draw_params.num_instances,
|
||||
draw_params.first_index, draw_params.base_vertex,
|
||||
draw_params.base_instance);
|
||||
} else {
|
||||
cmdbuf.Draw(draw_params.num_vertices, draw_params.num_instances,
|
||||
draw_params.base_vertex, draw_params.base_instance);
|
||||
}
|
||||
} else {
|
||||
record_draw(draw_params);
|
||||
}
|
||||
});
|
||||
|
||||
// Log draw call
|
||||
if (GPU::Logging::IsActive() &&
|
||||
|
||||
@@ -157,20 +157,6 @@ private:
|
||||
template <typename Func>
|
||||
void PrepareDraw(bool is_indexed, Func&&);
|
||||
|
||||
/// A stretch of a draw whose vertices all carry the same texture handle.
|
||||
struct AttributeHandleRun {
|
||||
u32 first;
|
||||
u32 count;
|
||||
u32 handle;
|
||||
};
|
||||
|
||||
/// Splits the current draw wherever the texture handle carried in the vertex data changes.
|
||||
void CollectAttributeHandleRuns(bool is_indexed);
|
||||
|
||||
std::vector<AttributeHandleRun> attribute_handle_runs;
|
||||
GraphicsPipeline* attribute_handle_pipeline{};
|
||||
bool split_attribute_handles{};
|
||||
|
||||
void FlushWork();
|
||||
|
||||
void UpdateDynamicStates();
|
||||
|
||||
+11
-15
@@ -12,29 +12,25 @@ namespace Yuzu {
|
||||
|
||||
inline bool ContainsAllWords(const QString& haystack, const QString& userinput) {
|
||||
const QStringList userinput_split = userinput.split(QLatin1Char{' '}, Qt::SkipEmptyParts);
|
||||
return std::all_of(userinput_split.begin(), userinput_split.end(), [&haystack](const QString& s) {
|
||||
return haystack.contains(s);
|
||||
});
|
||||
return std::all_of(userinput_split.begin(), userinput_split.end(),
|
||||
[&haystack](const QString& s) { return haystack.contains(s); });
|
||||
}
|
||||
|
||||
inline bool FilterMatches(const QString& filter, const QStandardItem* item) {
|
||||
if (filter.isEmpty())
|
||||
return true;
|
||||
|
||||
auto const sluggify = [](const QString& s) {
|
||||
QString o(s.normalized(QString::NormalizationForm_D).toLower());
|
||||
return o.replace(QRegularExpression(QStringLiteral("[^a-z\\s]")), QStringLiteral(""));
|
||||
};
|
||||
|
||||
const auto norm_filter = sluggify(filter);
|
||||
const auto program_id = item->data(GameListItemPath::ProgramIdRole).toULongLong();
|
||||
const QString file_path = sluggify(item->data(GameListItemPath::FullPathRole).toString());
|
||||
const QString file_title = sluggify(item->data(GameListItemPath::TitleRole).toString());
|
||||
|
||||
const QString file_path = item->data(GameListItemPath::FullPathRole).toString().toLower();
|
||||
const QString file_title = item->data(GameListItemPath::TitleRole).toString().toLower();
|
||||
const QString file_program_id = QStringLiteral("%1").arg(program_id, 16, 16, QLatin1Char{'0'});
|
||||
const QString file_name = sluggify(file_path.mid(file_path.lastIndexOf(QLatin1Char{'/'}) + 1) + QLatin1Char{' '} + file_title);
|
||||
return (ContainsAllWords(file_name, norm_filter)
|
||||
|| ContainsAllWords(file_title, norm_filter))
|
||||
|| (file_program_id.size() == 16 && file_program_id.contains(norm_filter));
|
||||
|
||||
const QString file_name =
|
||||
file_path.mid(file_path.lastIndexOf(QLatin1Char{'/'}) + 1) + QLatin1Char{' '} + file_title;
|
||||
|
||||
return Yuzu::ContainsAllWords(file_name, filter) ||
|
||||
(file_program_id.size() == 16 && file_program_id.contains(filter));
|
||||
}
|
||||
|
||||
} // namespace Yuzu
|
||||
|
||||
Reference in New Issue
Block a user