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116 行
3.7 KiB
116 行
3.7 KiB
using UnityEngine.Serialization;
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namespace UnityEngine.Experimental.Rendering.HDPipeline
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{
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// The HDRenderPipeline assumes linear lighting. Doesn't work with gamma.
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public class HDRenderPipelineAsset : RenderPipelineAsset, ISerializationCallbackReceiver
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{
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HDRenderPipelineAsset()
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{
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}
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protected override IRenderPipeline InternalCreatePipeline()
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{
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return new HDRenderPipeline(this);
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}
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[SerializeField]
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RenderPipelineResources m_RenderPipelineResources;
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public RenderPipelineResources renderPipelineResources
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{
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get { return m_RenderPipelineResources; }
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set { m_RenderPipelineResources = value; }
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}
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// To be able to turn on/off FrameSettings properties at runtime for debugging purpose without affecting the original one
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// we create a runtime copy (m_ActiveFrameSettings that is used, and any parametrization is done on serialized frameSettings)
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[SerializeField]
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[FormerlySerializedAs("serializedFrameSettings")]
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FrameSettings m_FrameSettings = new FrameSettings(); // This are the defaultFrameSettings for all the camera and apply to sceneView, public to be visible in the inspector
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// Not serialized, not visible, the settings effectively used
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FrameSettings m_FrameSettingsRuntime = new FrameSettings();
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public FrameSettings GetFrameSettings()
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{
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return m_FrameSettingsRuntime;
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}
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public ReflectionSystemParameters reflectionSystemParameters
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{
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get
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{
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return new ReflectionSystemParameters
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{
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maxPlanarReflectionProbes = 512,
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planarReflectionProbeSize = renderPipelineSettings.lightLoopSettings.planarReflectionTextureSize
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};
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} }
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// Store the various RenderPipelineSettings for each platform (for now only one)
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public RenderPipelineSettings renderPipelineSettings = new RenderPipelineSettings();
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// Return the current use RenderPipelineSettings (i.e for the current platform)
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public RenderPipelineSettings GetRenderPipelineSettings()
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{
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return renderPipelineSettings;
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}
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[SerializeField]
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public DiffusionProfileSettings diffusionProfileSettings;
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public override Shader GetDefaultShader()
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{
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return m_RenderPipelineResources.defaultShader;
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}
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public override Material GetDefaultMaterial()
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{
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return m_RenderPipelineResources.defaultDiffuseMaterial;
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}
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public override Material GetDefaultParticleMaterial()
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{
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return null;
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}
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public override Material GetDefaultLineMaterial()
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{
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return null;
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}
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public override Material GetDefaultTerrainMaterial()
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{
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return null;
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}
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public override Material GetDefaultUIMaterial()
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{
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return null;
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}
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public override Material GetDefaultUIOverdrawMaterial()
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{
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return null;
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}
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public override Material GetDefaultUIETC1SupportedMaterial()
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{
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return null;
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}
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public override Material GetDefault2DMaterial()
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{
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return null;
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}
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void ISerializationCallbackReceiver.OnBeforeSerialize()
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{
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}
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void ISerializationCallbackReceiver.OnAfterDeserialize()
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{
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// Modification of defaultFrameSettings in the inspector will call OnValidate().
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// We do a copy of the settings to those effectively used
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m_FrameSettings.CopyTo(m_FrameSettingsRuntime);
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}
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}
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}
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