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255 lines
9.2 KiB
255 lines
9.2 KiB
using System;
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using System.Runtime.InteropServices;
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using UnityEngine;
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using UnityEngine.Rendering;
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namespace FidelityFX
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{
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/// <summary>
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/// A collection of helper functions and data structures required by the FSR2 process.
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/// </summary>
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public static class Fsr2
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{
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// Allow overriding of certain Unity resource management behaviors by the programmer
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public static Fsr2Callbacks GlobalCallbacks { get; set; } = new Fsr2Callbacks();
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/// <summary>
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/// Creates a new FSR2 context with standard parameters that are appropriate for the current platform.
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/// </summary>
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public static Fsr2Context CreateContext(Vector2Int displaySize, Vector2Int maxRenderSize, InitializationFlags flags = 0)
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{
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if (SystemInfo.usesReversedZBuffer)
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flags |= InitializationFlags.EnableDepthInverted;
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else
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flags &= ~InitializationFlags.EnableDepthInverted;
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Debug.Log($"Setting up FSR2 with render size: {maxRenderSize.x}x{maxRenderSize.y}, display size: {displaySize.x}x{displaySize.y}, flags: {flags}");
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var contextDescription = new ContextDescription
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{
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Flags = flags,
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DisplaySize = displaySize,
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MaxRenderSize = maxRenderSize,
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Callbacks = GlobalCallbacks,
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};
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var context = new Fsr2Context();
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context.Create(contextDescription);
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return context;
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}
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public static float GetUpscaleRatioFromQualityMode(QualityMode qualityMode)
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{
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switch (qualityMode)
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{
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case QualityMode.Quality:
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return 1.5f;
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case QualityMode.Balanced:
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return 1.7f;
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case QualityMode.Performance:
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return 2.0f;
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case QualityMode.UltraPerformance:
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return 3.0f;
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case QualityMode.Native:
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default:
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return 1.0f;
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}
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}
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public static void GetRenderResolutionFromQualityMode(
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out int renderWidth, out int renderHeight,
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int displayWidth, int displayHeight, QualityMode qualityMode)
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{
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float ratio = GetUpscaleRatioFromQualityMode(qualityMode);
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renderWidth = (int)(displayWidth / ratio);
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renderHeight = (int)(displayHeight / ratio);
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}
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public static float GetMipmapBiasOffset(int renderWidth, int displayWidth)
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{
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return Mathf.Log((float)renderWidth / displayWidth, 2.0f) - 1.0f;
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}
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public static int GetJitterPhaseCount(int renderWidth, int displayWidth)
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{
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const float basePhaseCount = 8.0f;
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int jitterPhaseCount = (int)(basePhaseCount * Mathf.Pow((float)displayWidth / renderWidth, 2.0f));
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return jitterPhaseCount;
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}
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public static void GetJitterOffset(out float outX, out float outY, int index, int phaseCount)
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{
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outX = Halton((index % phaseCount) + 1, 2) - 0.5f;
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outY = Halton((index % phaseCount) + 1, 3) - 0.5f;
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}
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// Calculate halton number for index and base.
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private static float Halton(int index, int @base)
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{
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float f = 1.0f, result = 0.0f;
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for (int currentIndex = index; currentIndex > 0;) {
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f /= @base;
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result += f * (currentIndex % @base);
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currentIndex = (int)Mathf.Floor((float)currentIndex / @base);
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}
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return result;
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}
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public static float Lanczos2(float value)
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{
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return Mathf.Abs(value) < Mathf.Epsilon ? 1.0f :
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Mathf.Sin(Mathf.PI * value) / (Mathf.PI * value) * (Mathf.Sin(0.5f * Mathf.PI * value) / (0.5f * Mathf.PI * value));
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}
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public enum QualityMode
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{
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Native = 0,
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Quality = 1,
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Balanced = 2,
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Performance = 3,
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UltraPerformance = 4,
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}
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[Flags]
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public enum InitializationFlags
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{
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EnableHighDynamicRange = 1 << 0,
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EnableDisplayResolutionMotionVectors = 1 << 1,
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EnableMotionVectorsJitterCancellation = 1 << 2,
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EnableDepthInverted = 1 << 3,
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EnableDepthInfinite = 1 << 4,
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EnableAutoExposure = 1 << 5,
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EnableDynamicResolution = 1 << 6,
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EnableFP16Usage = 1 << 7,
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EnableDebugChecking = 1 << 8,
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}
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public enum MessageType
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{
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Error = 0,
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Warning = 1,
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}
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public struct ContextDescription
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{
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public InitializationFlags Flags;
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public Vector2Int MaxRenderSize;
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public Vector2Int DisplaySize;
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public Fsr2Callbacks Callbacks;
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}
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/// <summary>
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/// The input and output resources are all optional. If they are null, the Fsr2Context won't try to bind them to any shaders.
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/// This allows for customized and more efficient resource management outside of Fsr2Context, tailored to the specific scenario.
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/// </summary>
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public class DispatchDescription
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{
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public RenderTargetIdentifier? Color;
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public RenderTargetIdentifier? Depth;
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public RenderTargetIdentifier? MotionVectors;
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public RenderTargetIdentifier? Exposure;
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public RenderTargetIdentifier? Reactive;
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public RenderTargetIdentifier? TransparencyAndComposition;
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public RenderTargetIdentifier? Output;
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public Vector2 JitterOffset;
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public Vector2 MotionVectorScale;
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public Vector2Int RenderSize;
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public Vector2Int InputResourceSize;
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public bool EnableSharpening;
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public float Sharpness;
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public float FrameTimeDelta; // in seconds
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public float PreExposure;
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public bool Reset;
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public float CameraNear;
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public float CameraFar;
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public float CameraFovAngleVertical;
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public float ViewSpaceToMetersFactor;
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}
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/// <summary>
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/// The default values for Scale, CutoffThreshold, BinaryValue and Flags were taken from the FSR2 demo project.
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/// </summary>
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public class GenerateReactiveDescription
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{
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public RenderTargetIdentifier? ColorOpaqueOnly;
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public RenderTargetIdentifier? ColorPreUpscale;
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public RenderTargetIdentifier? OutReactive;
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public Vector2Int RenderSize;
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public float Scale = 1.0f;
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public float CutoffThreshold = 0.2f;
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public float BinaryValue = 0.9f;
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public GenerateReactiveFlags Flags = GenerateReactiveFlags.ApplyTonemap | GenerateReactiveFlags.ApplyThreshold | GenerateReactiveFlags.UseComponentsMax;
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}
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[Flags]
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public enum GenerateReactiveFlags
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{
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ApplyTonemap = 1 << 0,
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ApplyInverseTonemap = 1 << 1,
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ApplyThreshold = 1 << 2,
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UseComponentsMax = 1 << 3,
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}
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[Serializable, StructLayout(LayoutKind.Sequential)]
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internal struct Fsr2Constants
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{
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public Vector2Int renderSize;
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public Vector2Int maxRenderSize;
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public Vector2Int displaySize;
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public Vector2Int inputColorResourceDimensions;
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public Vector2Int lumaMipDimensions;
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public int lumaMipLevelToUse;
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public int frameIndex;
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public Vector4 deviceToViewDepth;
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public Vector2 jitterOffset;
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public Vector2 motionVectorScale;
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public Vector2 downscaleFactor;
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public Vector2 motionVectorJitterCancellation;
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public float preExposure;
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public float previousFramePreExposure;
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public float tanHalfFOV;
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public float jitterPhaseCount;
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public float deltaTime;
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public float dynamicResChangeFactor;
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public float viewSpaceToMetersFactor;
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}
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[Serializable, StructLayout(LayoutKind.Sequential)]
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internal struct SpdConstants
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{
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public uint mips;
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public uint numWorkGroups;
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public uint workGroupOffsetX, workGroupOffsetY;
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public uint renderSizeX, renderSizeY;
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}
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[Serializable, StructLayout(LayoutKind.Sequential)]
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internal struct GenerateReactiveConstants
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{
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public float scale;
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public float threshold;
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public float binaryValue;
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public uint flags;
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}
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[Serializable, StructLayout(LayoutKind.Sequential)]
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internal struct RcasConstants
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{
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public RcasConstants(uint sharpness, uint halfSharp)
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{
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this.sharpness = sharpness;
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this.halfSharp = halfSharp;
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dummy0 = dummy1 = 0;
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}
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public readonly uint sharpness;
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public readonly uint halfSharp;
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public readonly uint dummy0;
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public readonly uint dummy1;
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}
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}
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}
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