mirror of
https://github.com/maxartz15/UnitySerializedReferenceUI.git
synced 2024-11-22 23:55:35 +01:00
1e8f80077f
Classes that has no empty parameters are not supported and not shown(activator can not create instances of them).
98 lines
3.9 KiB
C#
98 lines
3.9 KiB
C#
#if UNITY_EDITOR
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using System;
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using System.Collections.Generic;
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using System.Linq;
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using UnityEditor;
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using UnityEngine;
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using Object = UnityEngine.Object;
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public static class ManagedReferenceUtility
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{
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/// Creates instance of passed type and assigns it to managed reference
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public static object AssignNewInstanceOfTypeToManagedReference(this SerializedProperty serializedProperty, Type type)
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{
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var instance = Activator.CreateInstance(type);
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serializedProperty.serializedObject.Update();
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serializedProperty.managedReferenceValue = instance;
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serializedProperty.serializedObject.ApplyModifiedProperties();
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return instance;
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}
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/// Sets managed reference to null
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public static void SetManagedReferenceToNull(this SerializedProperty serializedProperty)
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{
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serializedProperty.serializedObject.Update();
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serializedProperty.managedReferenceValue = null;
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serializedProperty.serializedObject.ApplyModifiedProperties();
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}
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/// Collects appropriate types based on managed reference field type and filters. Filters all derive
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public static IEnumerable<Type> GetAppropriateTypesForAssigningToManagedReference(this SerializedProperty property, List<Func<Type, bool>> filters = null)
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{
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var fieldType = property.GetManagedReferenceFieldType();
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return GetAppropriateTypesForAssigningToManagedReference(fieldType, filters);
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}
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/// Filters derived types of field typ parameter and finds ones whose are compatible with managed reference and filters.
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public static IEnumerable<Type> GetAppropriateTypesForAssigningToManagedReference(Type fieldType, List<Func<Type, bool>> filters = null)
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{
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var appropriateTypes = new List<Type>();
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// Get and filter all appropriate types
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var derivedTypes = TypeCache.GetTypesDerivedFrom(fieldType);
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foreach (var type in derivedTypes)
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{
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// Skips unity engine Objects (because they are not serialized by SerializeReference)
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if (type.IsSubclassOf(typeof(Object)))
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continue;
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// Skip abstract classes because they should not be instantiated
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if (type.IsAbstract)
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continue;
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// Skip types that has no public empty constructors (activator can not create them)
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if (type.IsClass && type.GetConstructor(Type.EmptyTypes) == null) // Structs still can be created (strangely)
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continue;
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// Filter types by provided filters if there is ones
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if (filters != null && filters.All(f => f == null || f.Invoke(type)) == false)
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continue;
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appropriateTypes.Add(type);
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}
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return appropriateTypes;
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}
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/// Gets real type of managed reference
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public static Type GetManagedReferenceFieldType(this SerializedProperty property)
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{
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var realPropertyType = GetRealTypeFromTypename(property.managedReferenceFieldTypename);
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if (realPropertyType != null)
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return realPropertyType;
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Debug.LogError($"Can not get field type of managed reference : {property.managedReferenceFieldTypename}");
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return null;
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}
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/// Gets real type of managed reference's field typeName
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public static Type GetRealTypeFromTypename(string stringType)
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{
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var names = GetSplitNamesFromTypename(stringType);
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var realType = Type.GetType($"{names.ClassName}, {names.AssemblyName}");
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return realType;
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}
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/// Get assembly and class names from typeName
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public static (string AssemblyName, string ClassName) GetSplitNamesFromTypename(string typename)
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{
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if (string.IsNullOrEmpty(typename))
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return ("","");
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var typeSplitString = typename.Split(char.Parse(" "));
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var typeClassName = typeSplitString[1];
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var typeAssemblyName = typeSplitString[0];
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return (typeAssemblyName, typeClassName);
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}
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}
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#endif |