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153 行
5.0 KiB

using System;
using System.Collections.Generic;
using System.Linq;
using UnityEditor.Graphing;
using UnityEditor.Graphing.Util;
using UnityEngine;
using UnityEngine.Experimental.Rendering;
using UnityEngine.Experimental.UIElements;
namespace UnityEditor.ShaderGraph
{
[Serializable]
public abstract class MasterNode<T> : AbstractMaterialNode, IMasterNode, IHasSettings
where T : class, ISubShader
{
[NonSerialized]
List<T> m_SubShaders = new List<T>();
[SerializeField]
List<SerializationHelper.JSONSerializedElement> m_SerializableSubShaders = new List<SerializationHelper.JSONSerializedElement>();
public override bool hasPreview
{
get { return true; }
}
public override bool allowedInSubGraph
{
get { return false; }
}
public override PreviewMode previewMode
{
get { return PreviewMode.Preview3D; }
}
public Type supportedSubshaderType
{
get { return typeof(T); }
}
public IEnumerable<T> subShaders
{
get { return m_SubShaders; }
}
public void AddSubShader(T subshader)
{
if (m_SubShaders.Contains(subshader))
return;
m_SubShaders.Add(subshader);
Dirty(ModificationScope.Graph);
}
public void RemoveSubShader(T subshader)
{
m_SubShaders.RemoveAll(x => x == subshader);
Dirty(ModificationScope.Graph);
}
public string GetShader(GenerationMode mode, string outputName, out List<PropertyCollector.TextureInfo> configuredTextures)
{
var activeNodeList = ListPool<INode>.Get();
NodeUtils.DepthFirstCollectNodesFromNode(activeNodeList, this);
var shaderProperties = new PropertyCollector();
var abstractMaterialGraph = owner as AbstractMaterialGraph;
if (abstractMaterialGraph != null)
abstractMaterialGraph.CollectShaderProperties(shaderProperties, mode);
foreach (var activeNode in activeNodeList.OfType<AbstractMaterialNode>())
activeNode.CollectShaderProperties(shaderProperties, mode);
var finalShader = new ShaderStringBuilder();
finalShader.AppendLine(@"Shader ""{0}""", outputName);
using (finalShader.BlockScope())
{
finalShader.AppendLine("Properties");
using (finalShader.BlockScope())
{
finalShader.AppendLine(shaderProperties.GetPropertiesBlock(0));
}
foreach (var subShader in m_SubShaders)
finalShader.AppendLines(subShader.GetSubshader(this, mode));
finalShader.AppendLine(@"FallBack ""Hidden/InternalErrorShader""");
}
configuredTextures = shaderProperties.GetConfiguredTexutres();
return finalShader.ToString();
}
public bool IsPipelineCompatible(IRenderPipeline renderPipeline)
{
return true;
}
public override void OnBeforeSerialize()
{
base.OnBeforeSerialize();
m_SerializableSubShaders = SerializationHelper.Serialize<T>(m_SubShaders);
}
public override void OnAfterDeserialize()
{
m_SubShaders = SerializationHelper.Deserialize<T>(m_SerializableSubShaders, GraphUtil.GetLegacyTypeRemapping());
m_SubShaders.RemoveAll(x => x == null);
m_SerializableSubShaders = null;
base.OnAfterDeserialize();
}
public override void UpdateNodeAfterDeserialization()
{
base.UpdateNodeAfterDeserialization();
foreach (var assembly in AppDomain.CurrentDomain.GetAssemblies())
{
foreach (var type in assembly.GetTypesOrNothing())
{
var isValid = !type.IsAbstract && type.IsPublic && !type.IsGenericType && type.IsClass && typeof(T).IsAssignableFrom(type);
if (isValid && !subShaders.Any(s => s.GetType() == type))
{
try
{
var subShader = (T)Activator.CreateInstance(type);
AddSubShader(subShader);
}
catch (Exception e)
{
Debug.LogException(e);
}
}
}
}
}
public VisualElement CreateSettingsElement()
{
var container = new VisualElement();
var commonSettingsElement = CreateCommonSettingsElement();
if (commonSettingsElement != null)
container.Add(commonSettingsElement);
return container;
}
protected virtual VisualElement CreateCommonSettingsElement()
{
return null;
}
}
}