136 lines
5.2 KiB
C#
136 lines
5.2 KiB
C#
using UnityEngine;
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using UnityEditor.Graphing;
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using System;
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using System.Linq;
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using UnityEditor.ShaderGraph.Internal;
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using UnityEditor.ShaderGraph.Drawing.Controls;
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namespace UnityEditor.ShaderGraph
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{
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enum Channel
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{
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Red = 0,
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Green = 1,
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Blue = 2,
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Alpha = 3,
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}
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[Title("UV", "Parallax Mapping")]
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class ParallaxMappingNode : AbstractMaterialNode, IGeneratesBodyCode, IGeneratesFunction, IMayRequireViewDirection, IMayRequireMeshUV
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{
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public ParallaxMappingNode()
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{
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name = "Parallax Mapping";
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synonyms = new string[] { "offset mapping" };
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UpdateNodeAfterDeserialization();
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}
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// Input slots
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private const int kHeightmapSlotId = 1;
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private const string kHeightmapSlotName = "Heightmap";
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private const int kHeightmapSamplerSlotId = 2;
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private const string kHeightmapSamplerSlotName = "HeightmapSampler";
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private const int kAmplitudeSlotId = 3;
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private const string kAmplitudeSlotName = "Amplitude";
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private const int kUVsSlotId = 4;
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private const string kUVsSlotName = "UVs";
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// Output slots
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private const int kParallaxUVsOutputSlotId = 0;
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private const string kParallaxUVsOutputSlotName = "ParallaxUVs";
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public override bool hasPreview { get { return false; } }
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[SerializeField]
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private Channel m_Channel = Channel.Green;
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[EnumControl("Heightmap Sample Channel")]
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public Channel channel
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{
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get { return m_Channel; }
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set
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{
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if (m_Channel == value)
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return;
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m_Channel = value;
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Dirty(ModificationScope.Graph);
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}
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}
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public sealed override void UpdateNodeAfterDeserialization()
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{
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AddSlot(new Texture2DInputMaterialSlot(kHeightmapSlotId, kHeightmapSlotName, kHeightmapSlotName, ShaderStageCapability.Fragment));
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AddSlot(new SamplerStateMaterialSlot(kHeightmapSamplerSlotId, kHeightmapSamplerSlotName, kHeightmapSamplerSlotName, SlotType.Input));
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AddSlot(new Vector1MaterialSlot(kAmplitudeSlotId, kAmplitudeSlotName, kAmplitudeSlotName, SlotType.Input, 1, ShaderStageCapability.Fragment));
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AddSlot(new UVMaterialSlot(kUVsSlotId, kUVsSlotName, kUVsSlotName, UVChannel.UV0, ShaderStageCapability.Fragment));
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AddSlot(new Vector2MaterialSlot(kParallaxUVsOutputSlotId, kParallaxUVsOutputSlotName, kParallaxUVsOutputSlotName, SlotType.Output, Vector2.zero, ShaderStageCapability.Fragment));
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RemoveSlotsNameNotMatching(new[]
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{
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kParallaxUVsOutputSlotId,
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kHeightmapSlotId,
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kHeightmapSamplerSlotId,
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kAmplitudeSlotId,
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kUVsSlotId,
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});
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}
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public override void Setup()
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{
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base.Setup();
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var textureSlot = FindInputSlot<Texture2DInputMaterialSlot>(kHeightmapSlotId);
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textureSlot.defaultType = Texture2DShaderProperty.DefaultType.Black;
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}
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public void GenerateNodeFunction(FunctionRegistry registry, GenerationMode generationMode)
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{
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registry.RequiresIncludePath("Packages/com.unity.render-pipelines.core/ShaderLibrary/ParallaxMapping.hlsl");
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}
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public void GenerateNodeCode(ShaderStringBuilder sb, GenerationMode generationMode)
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{
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var heightmap = GetSlotValue(kHeightmapSlotId, generationMode);
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var samplerSlot = FindInputSlot<MaterialSlot>(kHeightmapSamplerSlotId);
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var edgesSampler = owner.GetEdges(samplerSlot.slotReference);
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var amplitude = GetSlotValue(kAmplitudeSlotId, generationMode);
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var uvs = GetSlotValue(kUVsSlotId, generationMode);
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sb.AppendLines(String.Format(@"$precision2 {5} = {0}.GetTransformedUV({4}) + ParallaxMappingChannel(TEXTURE2D_ARGS({0}.tex, {1}.samplerstate), IN.{2}, {3} * 0.01, {0}.GetTransformedUV({4}), {6});",
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heightmap,
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edgesSampler.Any() ? GetSlotValue(kHeightmapSamplerSlotId, generationMode) : heightmap,
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CoordinateSpace.Tangent.ToVariableName(InterpolatorType.ViewDirection),
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amplitude, // cm in the interface so we multiply by 0.01 in the shader to convert in meter
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uvs,
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GetSlotValue(kParallaxUVsOutputSlotId, generationMode),
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(int)channel
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));
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}
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public NeededCoordinateSpace RequiresViewDirection(ShaderStageCapability stageCapability = ShaderStageCapability.All)
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{
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return NeededCoordinateSpace.Tangent;
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}
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public bool RequiresMeshUV(UVChannel channel, ShaderStageCapability stageCapability)
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{
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using (var tempSlots = PooledList<MaterialSlot>.Get())
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{
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GetInputSlots(tempSlots);
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var result = false;
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foreach (var slot in tempSlots)
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{
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if (slot.RequiresMeshUV(channel))
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{
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result = true;
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break;
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}
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}
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tempSlots.Clear();
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return result;
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}
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}
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}
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}
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