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220 lines
6.1 KiB
220 lines
6.1 KiB
#include <stdint.h>
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#include <vector>
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#include <queue>
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#include <mutex>
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#include "UnityPluginAPI/IUnityInterface.h"
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#include "UnityPluginAPI/IUnityLog.h"
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#include "UnityPluginAPI/IUnityGraphics.h"
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#include "UnityPluginAPI/IUnityRenderingExtensions.h"
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#include <d3d12.h>
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#include <dxgi.h>
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#include "UnityPluginAPI/IUnityGraphicsD3D12.h"
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#include "FSR3UnityTypes.h"
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static const int32_t BaseEventId = 0;
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static IUnityInterfaces* s_UnityInterfaces = nullptr;
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static IUnityLog* s_Log = nullptr;
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static IUnityGraphics* s_Graphics = nullptr;
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static IUnityGraphicsD3D12v7* s_GraphicsD3D12 = nullptr;
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static UnityGfxRenderer s_RendererType = kUnityGfxRendererNull;
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static void UNITY_INTERFACE_API OnGraphicsDeviceEvent(UnityGfxDeviceEventType eventType);
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static void UNITY_INTERFACE_API OnRenderEventAndData(int eventID, void* data);
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static void UNITY_INTERFACE_API OnSetTextureEvent(int eventID, void* data);
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struct FSR3Context
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{
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// TODO: contains FSR3 context object + related metadata (texture table etc)
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};
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static std::vector<FSR3Context> s_Contexts;
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static std::queue<uint32_t> s_FeatureSlots;
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static std::mutex s_FeatureMutex;
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// Unity plugin load event
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extern "C" void UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API UnityPluginLoad(IUnityInterfaces* unityInterfaces)
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{
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s_UnityInterfaces = unityInterfaces;
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s_Log = unityInterfaces->Get<IUnityLog>();
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s_Graphics = unityInterfaces->Get<IUnityGraphics>();
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s_Graphics->RegisterDeviceEventCallback(OnGraphicsDeviceEvent);
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// Run OnGraphicsDeviceEvent(initialize) manually on plugin load
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// to not miss the event in case the graphics device is already initialized
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OnGraphicsDeviceEvent(kUnityGfxDeviceEventInitialize);
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}
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// Unity plugin unload event
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extern "C" void UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API UnityPluginUnload()
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{
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s_Graphics->UnregisterDeviceEventCallback(OnGraphicsDeviceEvent);
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}
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static void UNITY_INTERFACE_API OnGraphicsDeviceEvent(UnityGfxDeviceEventType eventType)
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{
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switch (eventType)
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{
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case kUnityGfxDeviceEventInitialize:
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{
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s_RendererType = s_Graphics->GetRenderer();
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if (s_RendererType != kUnityGfxRendererD3D12)
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return;
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s_GraphicsD3D12 = s_UnityInterfaces->Get<IUnityGraphicsD3D12v7>();
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if (s_GraphicsD3D12 == nullptr)
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{
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UNITY_LOG_ERROR(s_Log, "Could not obtain D3D12 Graphics interface!");
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return;
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}
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break;
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}
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case kUnityGfxDeviceEventShutdown:
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{
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s_GraphicsD3D12 = nullptr;
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s_RendererType = kUnityGfxRendererNull;
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break;
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}
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case kUnityGfxDeviceEventBeforeReset:
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{
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break;
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}
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case kUnityGfxDeviceEventAfterReset:
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{
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break;
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}
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};
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}
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// Thread-safe allocation of FSR3 Context feature slot
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static uint32_t AllocateFeatureSlot()
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{
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std::lock_guard<std::mutex> lock(s_FeatureMutex);
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if (s_FeatureSlots.empty())
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{
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uint32_t featureSlot = (uint32_t)s_Contexts.size();
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s_Contexts.push_back(std::move(FSR3Context()));
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return featureSlot;
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}
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uint32_t featureSlot = s_FeatureSlots.front();
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s_FeatureSlots.pop();
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return featureSlot;
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}
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// Thread-safe freeing and clearing of FSR3 Context feature slot
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static void FreeFeatureSlot(uint32_t featureSlot)
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{
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std::lock_guard<std::mutex> lock(s_FeatureMutex);
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s_FeatureSlots.push(featureSlot);
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memset(&s_Contexts[featureSlot], 0, sizeof(FSR3Context));
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}
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extern "C" bool UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API AMDUP_InitApi()
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{
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// TODO: implement
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return false;
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}
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extern "C" void UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API AMDUP_ShutdownApi()
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{
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// TODO: implement
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}
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extern "C" uint32_t UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API AMDUP_GetDeviceVersion()
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{
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return 0x0u;
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}
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extern "C" UnityRenderingEventAndData UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API AMDUP_GetRenderEventCallback()
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{
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return OnRenderEventAndData;
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}
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extern "C" UnityRenderingEventAndData UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API AMDUP_GetSetTextureEventCallback()
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{
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return OnSetTextureEvent;
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}
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extern "C" uint32_t UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API AMDUP_CreateFeatureSlot()
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{
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return AllocateFeatureSlot();
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}
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extern "C" bool UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API AMDUP_GetRenderResolutionFromQualityMode(FSR3Quality qualityMode, uint32_t displayWidth, uint32_t displayHeight, uint32_t* renderWidth, uint32_t* renderHeight)
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{
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// TODO: implement
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return false;
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}
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extern "C" float UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API AMDUP_GetUpscaleRatioFromQualityMode(FSR3Quality qualityMode)
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{
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// TODO: implement
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return 1.0f;
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}
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extern "C" int32_t UNITY_INTERFACE_EXPORT UNITY_INTERFACE_API AMDUP_GetBaseEventId()
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{
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return BaseEventId;
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}
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// Plugin function to handle a specific rendering event
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static void UNITY_INTERFACE_API OnRenderEventAndData(int eventID, void* data)
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{
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// User rendering code
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switch (eventID)
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{
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case BaseEventId + FSR3PluginEvent::eDestroyFeature:
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{
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uint32_t featureSlot = (uint32_t)(int64_t)data;
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// TODO: destroy FSR3Context at feature slot index
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FreeFeatureSlot(featureSlot);
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break;
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}
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case BaseEventId + FSR3PluginEvent::eExecute:
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{
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auto* params = (FSR3CommandExecutionData*)data;
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break;
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}
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case BaseEventId + FSR3PluginEvent::ePostExecute:
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{
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auto* params = (FSR3CommandExecutionData*)data;
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break;
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}
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case BaseEventId + FSR3PluginEvent::eInit:
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{
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auto* params = (FSR3CommandInitializationData*)data;
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break;
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}
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}
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}
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static void UNITY_INTERFACE_API OnSetTextureEvent(int eventID, void* data)
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{
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auto* params = (UnityRenderingExtTextureUpdateParamsV2*)data;
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uint32_t featureSlot = (params->userData >> 16) & 0xFFFF;
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uint32_t textureSlot = (params->userData >> 1) & 0x7FFF; // TODO: could just use as numeric index to calculate a pointer offset
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uint32_t clearTextureTable = params->userData & 0x1;
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// User rendering code
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switch (eventID)
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{
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case kUnityRenderingExtEventUpdateTextureBeginV2:
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{
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break;
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}
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case kUnityRenderingExtEventUpdateTextureEndV2:
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{
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break;
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}
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}
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}
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