771 lines
28 KiB
C#
771 lines
28 KiB
C#
using System;
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using System.Collections.Generic;
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using System.Reflection;
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using System.Text;
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using UnityEditor.Rendering;
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using UnityEngine;
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using UnityEngine.Rendering;
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using UnityEditor.ShaderGraph.Internal;
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using UnityEditor.Graphing;
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using UnityEngine.UIElements;
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using UnityEditor.ShaderGraph.Drawing;
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namespace UnityEditor.ShaderGraph.Serialization
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{
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static class MultiJsonInternal
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{
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#region Unknown Data Handling
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public class UnknownJsonObject : JsonObject
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{
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public string typeInfo;
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public string jsonData;
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public JsonData<JsonObject> castedObject;
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public UnknownJsonObject(string typeInfo)
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{
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this.typeInfo = typeInfo;
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}
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public override void Deserailize(string typeInfo, string jsonData)
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{
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this.jsonData = jsonData;
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}
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public override string Serialize()
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{
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return jsonData;
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}
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public override void OnAfterDeserialize(string json)
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{
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if (castedObject.value != null)
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{
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Enqueue(castedObject, json.Trim());
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}
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}
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public override void OnAfterMultiDeserialize(string json)
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{
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if (castedObject.value == null)
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{
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//Never got casted so nothing ever reffed this object
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//likely that some other unknown json object had a ref
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//to this thing. Need to include it in the serialization
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//step of the object still.
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if (jsonBlobs.TryGetValue(currentRoot.objectId, out var blobs))
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{
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blobs[objectId] = jsonData.Trim();
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}
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else
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{
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var lookup = new Dictionary<string, string>();
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lookup[objectId] = jsonData.Trim();
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jsonBlobs.Add(currentRoot.objectId, lookup);
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}
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}
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}
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public override T CastTo<T>()
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{
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if (castedObject.value != null)
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return castedObject.value.CastTo<T>();
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Type t = typeof(T);
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if (t == typeof(AbstractMaterialNode) || t.IsSubclassOf(typeof(AbstractMaterialNode)))
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{
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UnknownNodeType unt = new UnknownNodeType(jsonData);
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valueMap[objectId] = unt;
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s_ObjectIdField.SetValue(unt, objectId);
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castedObject = unt;
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return unt.CastTo<T>();
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}
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else if (t == typeof(Target) || t.IsSubclassOf(typeof(Target)))
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{
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UnknownTargetType utt = new UnknownTargetType(typeInfo, jsonData);
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valueMap[objectId] = utt;
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s_ObjectIdField.SetValue(utt, objectId);
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castedObject = utt;
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return utt.CastTo<T>();
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}
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else if (t == typeof(SubTarget) || t.IsSubclassOf(typeof(SubTarget)))
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{
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UnknownSubTargetType ustt = new UnknownSubTargetType(typeInfo, jsonData);
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valueMap[objectId] = ustt;
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s_ObjectIdField.SetValue(ustt, objectId);
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castedObject = ustt;
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return ustt.CastTo<T>();
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}
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else if (t == typeof(ShaderInput) || t.IsSubclassOf(typeof(ShaderInput)))
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{
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UnknownShaderPropertyType usp = new UnknownShaderPropertyType(typeInfo, jsonData);
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valueMap[objectId] = usp;
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s_ObjectIdField.SetValue(usp, objectId);
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castedObject = usp;
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return usp.CastTo<T>();
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}
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else if (t == typeof(MaterialSlot) || t.IsSubclassOf(typeof(MaterialSlot)))
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{
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UnknownMaterialSlotType umst = new UnknownMaterialSlotType(typeInfo, jsonData);
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valueMap[objectId] = umst;
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s_ObjectIdField.SetValue(umst, objectId);
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castedObject = umst;
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return umst.CastTo<T>();
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}
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else if (t == typeof(AbstractShaderGraphDataExtension) || t.IsSubclassOf(typeof(AbstractShaderGraphDataExtension)))
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{
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UnknownGraphDataExtension usge = new UnknownGraphDataExtension(typeInfo, jsonData);
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valueMap[objectId] = usge;
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s_ObjectIdField.SetValue(usge, objectId);
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castedObject = usge;
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return usge.CastTo<T>();
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}
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else
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{
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Debug.LogError($"Unable to evaluate type {typeInfo} : {jsonData}");
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}
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return null;
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}
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}
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public class UnknownTargetType : Target
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{
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public string jsonData;
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public UnknownTargetType() : base()
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{
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isHidden = true;
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}
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private List<BlockFieldDescriptor> m_activeBlocks = null;
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public UnknownTargetType(string displayName, string jsonData)
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{
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var split = displayName.Split('.');
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var last = split[split.Length - 1];
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this.displayName = last.Replace("Target", "") + " (Unknown)";
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isHidden = false;
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this.jsonData = jsonData;
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}
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public override void Deserailize(string typeInfo, string jsonData)
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{
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this.jsonData = jsonData;
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base.Deserailize(typeInfo, jsonData);
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}
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public override string Serialize()
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{
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return jsonData.Trim();
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}
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//When we first call GetActiveBlocks, we assume any unknown blockfielddescriptors are owned by this target
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public override void GetActiveBlocks(ref TargetActiveBlockContext context)
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{
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if (m_activeBlocks == null)
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{
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m_activeBlocks = new List<BlockFieldDescriptor>();
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foreach (var cur in context.currentBlocks)
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{
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if (cur.isUnknown && !string.IsNullOrEmpty(cur.displayName))
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{
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m_activeBlocks.Add(cur);
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}
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}
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}
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foreach (var block in m_activeBlocks)
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{
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context.AddBlock(block);
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}
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}
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public override void GetFields(ref TargetFieldContext context)
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{
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}
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public override void GetPropertiesGUI(ref TargetPropertyGUIContext context, Action onChange, Action<string> registerUndo)
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{
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context.AddHelpBox(MessageType.Warning, "Cannot find the code for this Target, a package may be missing.");
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}
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public override bool IsActive() => false;
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public override void Setup(ref TargetSetupContext context)
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{
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}
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public override bool WorksWithSRP(RenderPipelineAsset scriptableRenderPipeline) => false;
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}
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private class UnknownSubTargetType : SubTarget
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{
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public string jsonData;
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public UnknownSubTargetType() : base()
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{
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isHidden = true;
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}
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public UnknownSubTargetType(string displayName, string jsonData) : base()
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{
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isHidden = false;
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this.displayName = displayName;
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this.jsonData = jsonData;
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}
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public override void Deserailize(string typeInfo, string jsonData)
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{
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this.jsonData = jsonData;
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base.Deserailize(typeInfo, jsonData);
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}
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public override string Serialize()
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{
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return jsonData.Trim();
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}
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internal override Type targetType => typeof(UnknownTargetType);
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public override void GetActiveBlocks(ref TargetActiveBlockContext context)
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{
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}
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public override void GetFields(ref TargetFieldContext context)
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{
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}
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public override void GetPropertiesGUI(ref TargetPropertyGUIContext context, Action onChange, Action<string> registerUndo)
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{
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context.AddHelpBox(MessageType.Warning, "Cannot find the code for this SubTarget, a package may be missing.");
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}
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public override bool IsActive() => false;
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public override void Setup(ref TargetSetupContext context)
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{
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}
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}
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internal class UnknownShaderPropertyType : AbstractShaderProperty
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{
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public string jsonData;
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public UnknownShaderPropertyType(string displayName, string jsonData) : base()
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{
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this.displayName = displayName;
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this.jsonData = jsonData;
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}
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public override void Deserailize(string typeInfo, string jsonData)
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{
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this.jsonData = jsonData;
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base.Deserailize(typeInfo, jsonData);
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}
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public override string Serialize()
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{
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return jsonData.Trim();
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}
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internal override ConcreteSlotValueType concreteShaderValueType => ConcreteSlotValueType.Vector1;
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internal override bool isExposable => false;
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internal override bool isRenamable => false;
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internal override ShaderInput Copy()
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{
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// we CANNOT copy ourselves, as the serialized GUID in the jsonData would not match the json GUID
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return null;
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}
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public override PropertyType propertyType => PropertyType.Float;
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internal override void GetPropertyReferenceNames(List<string> result) { }
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internal override void GetPropertyDisplayNames(List<string> result) { }
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internal override string GetPropertyBlockString() { return ""; }
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internal override void AppendPropertyBlockStrings(ShaderStringBuilder builder)
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{
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builder.AppendLine("/* UNKNOWN PROPERTY: " + referenceName + " */");
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}
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internal override bool AllowHLSLDeclaration(HLSLDeclaration decl) => false;
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internal override void ForeachHLSLProperty(Action<HLSLProperty> action)
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{
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action(new HLSLProperty(HLSLType._float, referenceName, HLSLDeclaration.Global, concretePrecision));
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}
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internal override string GetPropertyAsArgumentString(string precisionString) { return ""; }
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internal override AbstractMaterialNode ToConcreteNode() { return null; }
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internal override PreviewProperty GetPreviewMaterialProperty()
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{
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return new PreviewProperty(propertyType)
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{
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name = referenceName,
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floatValue = 0.0f
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};
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}
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public override string GetPropertyTypeString() { return ""; }
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}
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internal class UnknownMaterialSlotType : MaterialSlot
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{
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// used to deserialize some data out of an unknown MaterialSlot
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class SerializerHelper
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{
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[SerializeField]
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public string m_DisplayName = null;
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[SerializeField]
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public SlotType m_SlotType = SlotType.Input;
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[SerializeField]
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public bool m_Hidden = false;
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[SerializeField]
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public string m_ShaderOutputName = null;
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[SerializeField]
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public ShaderStageCapability m_StageCapability = ShaderStageCapability.All;
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}
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public string jsonData;
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public UnknownMaterialSlotType(string displayName, string jsonData) : base()
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{
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// copy some minimal information to try to keep the UI as similar as possible
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var helper = new SerializerHelper();
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JsonUtility.FromJsonOverwrite(jsonData, helper);
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this.displayName = helper.m_DisplayName;
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this.hidden = helper.m_Hidden;
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this.stageCapability = helper.m_StageCapability;
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this.SetInternalData(helper.m_SlotType, helper.m_ShaderOutputName);
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// save the original json for saving
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this.jsonData = jsonData;
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}
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public override void Deserailize(string typeInfo, string jsonData)
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{
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this.jsonData = jsonData;
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base.Deserailize(typeInfo, jsonData);
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}
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public override string Serialize()
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{
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return jsonData.Trim();
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}
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public override bool isDefaultValue => true;
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public override SlotValueType valueType => SlotValueType.Vector1;
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public override ConcreteSlotValueType concreteValueType => ConcreteSlotValueType.Vector1;
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public override void AddDefaultProperty(PropertyCollector properties, GenerationMode generationMode) { }
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public override void CopyValuesFrom(MaterialSlot foundSlot)
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{
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// we CANNOT copy data from another slot, as the GUID in the serialized jsonData would not match our real GUID
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throw new NotSupportedException();
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}
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}
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[NeverAllowedByTarget]
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internal class UnknownNodeType : AbstractMaterialNode
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{
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public string jsonData;
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public UnknownNodeType() : base()
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{
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jsonData = null;
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isValid = false;
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SetOverrideActiveState(ActiveState.ExplicitInactive, false);
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SetActive(false, false);
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}
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public UnknownNodeType(string jsonData)
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{
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this.jsonData = jsonData;
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isValid = false;
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SetOverrideActiveState(ActiveState.ExplicitInactive, false);
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SetActive(false, false);
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}
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public override void OnAfterDeserialize(string json)
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{
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jsonData = json;
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base.OnAfterDeserialize(json);
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}
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public override string Serialize()
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{
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EnqueSlotsForSerialization();
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return jsonData.Trim();
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}
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public override void ValidateNode()
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{
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base.ValidateNode();
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owner.AddValidationError(objectId, "This node type could not be found. No function will be generated in the shader.", ShaderCompilerMessageSeverity.Warning);
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}
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// unknown node types cannot be copied, or else their GUID would not match the GUID in the serialized jsonDAta
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public override bool canCutNode => false;
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public override bool canCopyNode => false;
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}
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internal class UnknownGraphDataExtension : AbstractShaderGraphDataExtension
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{
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public string name;
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public string jsonData;
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internal override string displayName => name;
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internal UnknownGraphDataExtension() : base() { }
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internal UnknownGraphDataExtension(string displayName, string jsonData)
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{
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name = displayName;
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this.jsonData = jsonData;
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}
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public override void Deserailize(string typeInfo, string jsonData)
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{
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this.jsonData = jsonData;
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base.Deserailize(typeInfo, jsonData);
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}
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public override string Serialize()
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{
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return jsonData.Trim();
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}
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internal override void OnPropertiesGUI(VisualElement context, Action onChange, Action<string> registerUndo, GraphData owner)
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{
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var helpBox = new HelpBoxRow(MessageType.Info);
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helpBox.Add(new Label("Cannot find the code for this data extension, a package may be missing."));
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context.hierarchy.Add(helpBox);
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}
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}
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#endregion //Unknown Data Handling
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static readonly Dictionary<string, Type> k_TypeMap = CreateTypeMap();
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internal static bool isDeserializing;
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internal static readonly Dictionary<string, JsonObject> valueMap = new Dictionary<string, JsonObject>();
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static List<MultiJsonEntry> s_Entries;
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internal static bool isSerializing;
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internal static readonly List<JsonObject> serializationQueue = new List<JsonObject>();
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internal static readonly HashSet<string> serializedSet = new HashSet<string>();
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static JsonObject currentRoot = null;
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static Dictionary<string, Dictionary<string, string>> jsonBlobs = new Dictionary<string, Dictionary<string, string>>();
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static Dictionary<string, Type> CreateTypeMap()
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{
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var map = new Dictionary<string, Type>();
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foreach (var type in TypeCache.GetTypesDerivedFrom<JsonObject>())
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{
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if (type.FullName != null)
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{
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map[type.FullName] = type;
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}
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}
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foreach (var type in TypeCache.GetTypesWithAttribute(typeof(FormerNameAttribute)))
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{
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if (type.IsAbstract || !typeof(JsonObject).IsAssignableFrom(type))
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{
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continue;
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}
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foreach (var attribute in type.GetCustomAttributes(typeof(FormerNameAttribute), false))
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{
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var legacyAttribute = (FormerNameAttribute)attribute;
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map[legacyAttribute.fullName] = type;
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}
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}
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return map;
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}
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public static Type ParseType(string typeString)
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{
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k_TypeMap.TryGetValue(typeString, out var type);
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return type;
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}
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public static List<MultiJsonEntry> Parse(string str)
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{
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var result = new List<MultiJsonEntry>();
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const string separatorStr = "\n\n";
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var startIndex = 0;
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var raw = new FakeJsonObject();
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while (startIndex < str.Length)
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{
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var jsonBegin = str.IndexOf("{", startIndex, StringComparison.Ordinal);
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if (jsonBegin == -1)
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{
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break;
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}
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var jsonEnd = str.IndexOf(separatorStr, jsonBegin, StringComparison.Ordinal);
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if (jsonEnd == -1)
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{
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jsonEnd = str.IndexOf("\n\r\n", jsonBegin, StringComparison.Ordinal);
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if (jsonEnd == -1)
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{
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jsonEnd = str.LastIndexOf("}", StringComparison.Ordinal) + 1;
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}
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}
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var json = str.Substring(jsonBegin, jsonEnd - jsonBegin);
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JsonUtility.FromJsonOverwrite(json, raw);
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if (startIndex != 0 && string.IsNullOrWhiteSpace(raw.type))
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{
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throw new InvalidOperationException($"Type is null or whitespace in JSON:\n{json}");
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}
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result.Add(new MultiJsonEntry(raw.type, raw.id, json));
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raw.Reset();
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startIndex = jsonEnd + separatorStr.Length;
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}
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return result;
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}
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public static void Enqueue(JsonObject jsonObject, string json)
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{
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if (s_Entries == null)
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{
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throw new InvalidOperationException("Can only Enqueue during JsonObject.OnAfterDeserialize.");
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}
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valueMap.Add(jsonObject.objectId, jsonObject);
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s_Entries.Add(new MultiJsonEntry(jsonObject.GetType().FullName, jsonObject.objectId, json));
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}
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public static JsonObject CreateInstanceForDeserialization(string typeString)
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{
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if (!k_TypeMap.TryGetValue(typeString, out var type))
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{
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return new UnknownJsonObject(typeString);
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}
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var output = (JsonObject)Activator.CreateInstance(type, true);
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//This CreateInstance function is supposed to essentially create a blank copy of whatever class we end up deserializing into.
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//when we typically create new JsonObjects in all other cases, we want that object to be assumed to be the latest version.
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//This doesn't work if any json object was serialized before we had the idea of version, as the blank copy would have the
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//latest version on creation and since the serialized version wouldn't have a version member, it would not get overwritten
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//and we would automatically upgrade all previously serialized json objects incorrectly and without user action. To avoid this,
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//we default jsonObject version to 0, and if the serialized value has a different saved version it gets changed and if the serialized
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//version does not have a different saved value it remains 0 (earliest version)
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output.ChangeVersion(0);
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output.OnBeforeDeserialize();
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return output;
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}
|
|
|
|
private static FieldInfo s_ObjectIdField =
|
|
typeof(JsonObject).GetField("m_ObjectId", BindingFlags.Instance | BindingFlags.NonPublic);
|
|
|
|
public static void Deserialize(JsonObject root, List<MultiJsonEntry> entries, bool rewriteIds)
|
|
{
|
|
if (isDeserializing)
|
|
{
|
|
throw new InvalidOperationException("Nested MultiJson deserialization is not supported.");
|
|
}
|
|
|
|
try
|
|
{
|
|
isDeserializing = true;
|
|
currentRoot = root;
|
|
root.ChangeVersion(0); //Same issue as described in CreateInstance
|
|
for (var index = 0; index < entries.Count; index++)
|
|
{
|
|
var entry = entries[index];
|
|
try
|
|
{
|
|
JsonObject value = null;
|
|
if (index == 0)
|
|
{
|
|
value = root;
|
|
}
|
|
else
|
|
{
|
|
value = CreateInstanceForDeserialization(entry.type);
|
|
}
|
|
|
|
var id = entry.id;
|
|
|
|
if (id != null)
|
|
{
|
|
// Need to make sure that references looking for the old ID will find it in spite of
|
|
// ID rewriting.
|
|
valueMap[id] = value;
|
|
}
|
|
|
|
if (rewriteIds || entry.id == null)
|
|
{
|
|
id = value.objectId;
|
|
entries[index] = new MultiJsonEntry(entry.type, id, entry.json);
|
|
valueMap[id] = value;
|
|
}
|
|
|
|
s_ObjectIdField.SetValue(value, id);
|
|
}
|
|
catch (Exception e)
|
|
{
|
|
// External code could throw exceptions, but we don't want that to fail the whole thing.
|
|
// Potentially, the fallback type should also be used here.
|
|
Debug.LogException(e);
|
|
}
|
|
}
|
|
|
|
s_Entries = entries;
|
|
|
|
// Not a foreach because `entries` can be populated by calls to `Enqueue` as we go.
|
|
for (var i = 0; i < entries.Count; i++)
|
|
{
|
|
var entry = entries[i];
|
|
try
|
|
{
|
|
var value = valueMap[entry.id];
|
|
value.Deserailize(entry.type, entry.json);
|
|
// Set ID again as it could be overwritten from JSON.
|
|
s_ObjectIdField.SetValue(value, entry.id);
|
|
value.OnAfterDeserialize(entry.json);
|
|
}
|
|
catch (Exception e)
|
|
{
|
|
if (!String.IsNullOrEmpty(entry.id))
|
|
{
|
|
var value = valueMap[entry.id];
|
|
if (value != null)
|
|
{
|
|
Debug.LogError($"Exception thrown while deserialize object of type {entry.type}: {e.Message}");
|
|
}
|
|
}
|
|
Debug.LogException(e);
|
|
}
|
|
}
|
|
|
|
s_Entries = null;
|
|
|
|
foreach (var entry in entries)
|
|
{
|
|
try
|
|
{
|
|
var value = valueMap[entry.id];
|
|
value.OnAfterMultiDeserialize(entry.json);
|
|
}
|
|
catch (Exception e)
|
|
{
|
|
Debug.LogException(e);
|
|
}
|
|
}
|
|
}
|
|
finally
|
|
{
|
|
valueMap.Clear();
|
|
currentRoot = null;
|
|
isDeserializing = false;
|
|
}
|
|
}
|
|
|
|
public static string Serialize(JsonObject mainObject)
|
|
{
|
|
if (isSerializing)
|
|
{
|
|
throw new InvalidOperationException("Nested MultiJson serialization is not supported.");
|
|
}
|
|
|
|
try
|
|
{
|
|
isSerializing = true;
|
|
|
|
serializedSet.Add(mainObject.objectId);
|
|
serializationQueue.Add(mainObject);
|
|
|
|
var idJsonList = new List<(string, string)>();
|
|
|
|
// Not a foreach because the queue is populated by `JsonData<T>`s as we go.
|
|
for (var i = 0; i < serializationQueue.Count; i++)
|
|
{
|
|
var value = serializationQueue[i];
|
|
var json = value.Serialize();
|
|
idJsonList.Add((value.objectId, json));
|
|
}
|
|
|
|
if (jsonBlobs.TryGetValue(mainObject.objectId, out var blobs))
|
|
{
|
|
foreach (var blob in blobs)
|
|
{
|
|
if (!idJsonList.Contains((blob.Key, blob.Value)))
|
|
idJsonList.Add((blob.Key, blob.Value));
|
|
}
|
|
}
|
|
|
|
|
|
idJsonList.Sort((x, y) =>
|
|
// Main object needs to be placed first
|
|
x.Item1 == mainObject.objectId ? -1 :
|
|
y.Item1 == mainObject.objectId ? 1 :
|
|
// We sort everything else by ID to consistently maintain positions in the output
|
|
x.Item1.CompareTo(y.Item1));
|
|
|
|
|
|
const string k_NewLineString = "\n";
|
|
var sb = new StringBuilder();
|
|
foreach (var (id, json) in idJsonList)
|
|
{
|
|
sb.Append(json);
|
|
sb.Append(k_NewLineString);
|
|
sb.Append(k_NewLineString);
|
|
}
|
|
|
|
return sb.ToString();
|
|
}
|
|
finally
|
|
{
|
|
serializationQueue.Clear();
|
|
serializedSet.Clear();
|
|
isSerializing = false;
|
|
}
|
|
}
|
|
|
|
public static void PopulateValueMap(JsonObject mainObject)
|
|
{
|
|
if (isSerializing)
|
|
{
|
|
throw new InvalidOperationException("Nested MultiJson serialization is not supported.");
|
|
}
|
|
|
|
try
|
|
{
|
|
isSerializing = true;
|
|
|
|
serializedSet.Add(mainObject.objectId);
|
|
serializationQueue.Add(mainObject);
|
|
|
|
// Not a foreach because the queue is populated by `JsonRef<T>`s as we go.
|
|
for (var i = 0; i < serializationQueue.Count; i++)
|
|
{
|
|
var value = serializationQueue[i];
|
|
value.Serialize();
|
|
valueMap[value.objectId] = value;
|
|
}
|
|
}
|
|
finally
|
|
{
|
|
serializationQueue.Clear();
|
|
serializedSet.Clear();
|
|
isSerializing = false;
|
|
}
|
|
}
|
|
}
|
|
}
|