mirror of
https://github.com/ZuneDev/ZuneUIXTools.git
synced 2026-07-27 13:11:59 -07:00
483 lines
18 KiB
C#
483 lines
18 KiB
C#
using Microsoft.CodeAnalysis.CSharp.Syntax;
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using Microsoft.Iris.Asm;
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using Microsoft.Iris.Debug.Data;
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using Microsoft.Iris.DecompXml.Mock;
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using Microsoft.Iris.Markup;
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using System;
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using System.Collections.Generic;
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using System.Globalization;
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using System.Linq;
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using System.Text;
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using System.Xml;
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using System.Xml.Linq;
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namespace Microsoft.Iris.DecompXml;
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public partial class Decompiler
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{
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private static readonly XNamespace _nsUix = XNamespace.Get("http://schemas.microsoft.com/2007/uix");
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private readonly DecompileContext _context;
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private Decompiler(DecompileContext context)
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{
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_context = context;
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}
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public static Decompiler Load(LoadResult loadResult, LoadResult dataTableLoadResult = null)
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{
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if (loadResult is not MarkupLoadResult markupLoadResult)
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throw new ArgumentException($"Disassembly can only be performed on markup. Expected '{nameof(MarkupLoadResult)}', got '{loadResult?.GetType().Name}'.", nameof(loadResult));
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if (dataTableLoadResult is not MarkupLoadResult and not null)
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throw new ArgumentException($"Data table must be markup. Expected '{nameof(MarkupLoadResult)}', got '{dataTableLoadResult?.GetType().Name}'.", nameof(dataTableLoadResult));
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DecompileContext context = new(markupLoadResult, (MarkupLoadResult)dataTableLoadResult);
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return new(context);
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}
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public XDocument Decompile()
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{
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XElement xRoot = new(_nsUix + "UIX", new XAttribute("xmlns", _nsUix));
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foreach (var export in _context.LoadResult.ExportTable.Cast<MarkupTypeSchema>())
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{
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var name = export.Name;
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XElement xExport = new(_nsUix + export.MarkupType.ToString(),
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new XAttribute("Name", name));
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var baseType = export.MarkupTypeBase;
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if (baseType is not null)
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{
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var baseTypeName = _context.GetQualifiedName(baseType);
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xExport.SetAttributeValue("Base", baseTypeName);
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}
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if (export is ClassTypeSchema classExport)
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{
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if (classExport.IsShared)
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xExport.SetAttributeValue("Shared", true);
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}
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if (export.InitializePropertiesOffset is not uint.MaxValue)
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AnalyzeMethodForInit(export.InitializePropertiesOffset, xExport, export, name + "_prop");
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if (export.InitializeLocalsInputOffset is not uint.MaxValue)
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AnalyzeMethodForInit(export.InitializeLocalsInputOffset, xExport, export, name + "_locl");
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if (export.InitialEvaluateOffsets is { Length: > 0 })
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{
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var xScripts = GetOrCreateElement(xExport, _nsUix + "Scripts");
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foreach (var offset in export.InitialEvaluateOffsets)
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{
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var syntaxTree = DecompileScript(offset, export);
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var scriptText = FormatScript(syntaxTree);
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XElement xScript = new(_nsUix + "Script", scriptText);
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xScripts.Add(xScript);
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}
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}
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if (export.FinalEvaluateOffsets is { Length: > 0 })
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{
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throw new NotImplementedException();
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}
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if (export.Methods is { Length: > 0 })
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{
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var xScripts = GetOrCreateElement(xExport, _nsUix + "Scripts");
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foreach (var method in export.Methods.OfType<MarkupMethodSchema>())
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{
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var methodSyntax = DecompileMethodDeclaration(method, export);
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var scriptText = FormatScript(methodSyntax.SyntaxTree);
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XElement xScript = new(_nsUix + "Script", scriptText);
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xScripts.Add(xScript);
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}
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}
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if (export.RefreshGroupOffsets is { Length: > 0 })
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{
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var xScripts = GetOrCreateElement(xExport, _nsUix + "Scripts");
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foreach (var offset in export.RefreshGroupOffsets)
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{
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var scriptText = AnalyzeRefreshMethod(offset, export, $"{name}_rfsh_0x{offset:X}");
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XElement xScript = new(_nsUix + "Script", scriptText);
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xScripts.Add(xScript);
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}
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}
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if (export.InitializeContentOffset is not uint.MaxValue)
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AnalyzeMethodForInit(export.InitializeContentOffset, xExport, export, name + "_cont");
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xRoot.Add(xExport);
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}
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XDocument xDoc = new(xRoot);
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// Add all namespaces to root element
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var xNamespaceDeclarations = _context.GetUsedNamespaces()
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.Select(p => new XAttribute(XNamespace.Xmlns + p.Key, p.Value))
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.ToArray();
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xDoc.Root.Add(xNamespaceDeclarations);
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return xDoc;
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}
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public string DecompileToSource()
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{
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var xmlDoc = Decompile();
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XmlWriterSettings writerSettings = new()
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{
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Indent = true,
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NamespaceHandling = NamespaceHandling.OmitDuplicates,
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Encoding = Encoding.UTF8,
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};
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StringBuilder sb = new();
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using (XmlWriter writer = XmlWriter.Create(sb, writerSettings))
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{
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xmlDoc.WriteTo(writer);
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}
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return sb.ToString();
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}
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private Stack<object> AnalyzeMethodForInit(uint startOffset, XElement elemToInit, MarkupTypeSchema initType, string methodName = "")
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{
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var methodBody = _context.GetMethodBody(startOffset).ToArray();
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Stack<object> stack = new([elemToInit]);
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for (int i = 0; i < methodBody.Length; i++)
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{
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var instruction = methodBody[i];
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try
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{
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switch (instruction.OpCode)
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{
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case OpCode.PushConstant:
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var constant = _context.GetConstant(instruction.Operands.First());
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stack.Push(constant);
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break;
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case OpCode.PushNull:
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stack.Push(null);
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break;
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case OpCode.ConstructObject:
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var typeToCtor = _context.GetImportedType(instruction.Operands.ElementAt(0));
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var xObj = new XElement(_context.GetXName(typeToCtor));
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stack.Push(new IrisObject(xObj, typeToCtor));
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break;
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case OpCode.LookupSymbol:
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var symbolIndex = (ushort)instruction.Operands.ElementAt(0).Value;
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stack.Push(initType.SymbolReferenceTable[symbolIndex]);
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break;
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case OpCode.PropertyInitialize:
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var propertyToInit = _context.GetImportedProperty(instruction.Operands.ElementAt(0));
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var newPropValue = stack.Pop();
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var target = stack.Pop();
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var xTarget = (XElement)ToXmlFriendlyObject(target);
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PropertyAssignOnXElement(xTarget, propertyToInit, IrisObject.Create(newPropValue, propertyToInit.PropertyType, _context));
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stack.Push(new IrisObject(xTarget, propertyToInit.Owner));
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break;
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case OpCode.PropertyDictionaryAdd:
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var targetDictProperty = _context.GetImportedProperty(instruction.Operands.ElementAt(0));
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var keyReference = instruction.Operands.ElementAt(1);
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var key = _context.GetConstant(keyReference).Value.ToString();
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var dictValue = stack.Pop();
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var dictValueType = initType.InheritableSymbolsTable?
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.FirstOrDefault(s => s.Name == key)?
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.Type;
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var targetInstance = (XElement)stack.Peek();
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PropertyDictionaryAddOnXElement(targetInstance, targetDictProperty, IrisObject.Create(dictValue, dictValueType, _context), key);
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break;
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case OpCode.PropertyListAdd:
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var valueToAdd = stack.Pop();
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TypeSchema valueToAddType = null;
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if (valueToAdd is SymbolReference symRef)
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{
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valueToAddType = initType.InheritableSymbolsTable?
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.FirstOrDefault(s => s.Name == symRef.Symbol)?
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.Type;
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}
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var valueToAddObj = IrisObject.Create(valueToAdd, valueToAddType, _context);
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var targetInstance2 = (XElement)ToXmlFriendlyObject(stack.Peek());
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var targetListPropertyIndex = (ushort)instruction.Operands.First().Value;
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if (targetListPropertyIndex != ushort.MaxValue)
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{
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var targetListProperty = _context.ImportTables.PropertyImports[targetListPropertyIndex];
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if (valueToAddObj.Type is null)
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{
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var valueRuntimeType = targetListProperty.PropertyType.RuntimeType.GetGenericArguments().FirstOrDefault();
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valueToAddType = _context.ImportTables.TypeImports.FirstOrDefault(t => t.RuntimeType == valueRuntimeType);
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valueToAddObj = valueToAddObj with { Type = valueToAddType };
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}
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PropertyListAddOnXElement(targetInstance2, targetListProperty, valueToAddObj);
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}
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else
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{
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PropertyListAddOnXElement(targetInstance2, valueToAddObj);
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}
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break;
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case OpCode.InitializeInstance:
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case OpCode.JumpIfDictionaryContains:
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case OpCode.ConstructListenerStorage:
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// These instructions are inconsequential for determining how objects are initialized
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break;
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case OpCode.ConstructObjectParam:
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case OpCode.PushThis:
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case OpCode.MethodInvoke:
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case OpCode.MethodInvokePeek:
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case OpCode.MethodInvokeStatic:
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case OpCode.MethodInvokePushLastParam:
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case OpCode.MethodInvokeStaticPushLastParam:
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case OpCode.PropertyGet:
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case OpCode.PropertyGetPeek:
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case OpCode.PropertyGetStatic:
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case OpCode.Operation:
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// These instructions only appear in initializers as inline expressions
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if (!TryDecompileExpression(instruction, stack))
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throw new NotImplementedException();
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break;
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case not OpCode.ReturnVoid:
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Console.WriteLine($"Unsupported instruction: {instruction}");
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break;
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}
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}
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catch (Exception ex)
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{
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throw new Exception($"Failed to analyze instruction `{instruction}` @ 0x{instruction.Offset:X}, {methodName}[{i}]", ex);
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}
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}
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return stack;
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}
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private string AnalyzeRefreshMethod(uint startOffset, MarkupTypeSchema initType, string methodName = "")
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{
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var methodBody = _context.GetMethodBody(startOffset).ToArray();
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Stack<object> stack = new();
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for (int i = 0; i < methodBody.Length; i++)
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{
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var instruction = methodBody[i];
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try
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{
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switch (instruction.OpCode)
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{
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case OpCode.Listen:
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case OpCode.DestructiveListen:
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var listenerIndex = (ushort)instruction.Operands.ElementAt(0).Value;
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var listenerType = (ListenerType)(byte)instruction.Operands.ElementAt(1).Value;
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var watchIndex = (ushort)instruction.Operands.ElementAt(2).Value;
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var scriptId = (uint)instruction.Operands.ElementAt(3).Value;
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var refreshOffset = uint.MaxValue;
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if (instruction.OpCode is OpCode.DestructiveListen)
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refreshOffset = (uint)instruction.Operands.ElementAt(4).Value;
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var markupTypeSchema = initType.ResolveScriptId(scriptId, out var scriptOffset);
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string watch = null;
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InstructionObjectSource watchSource = InstructionObjectSource.Dynamic;
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switch (listenerType)
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{
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case ListenerType.Property:
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watch = _context.ImportTables.PropertyImports[watchIndex].Name;
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watchSource = InstructionObjectSource.PropertyImports;
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break;
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case ListenerType.Event:
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watch = _context.ImportTables.EventImports[watchIndex].Name;
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watchSource = InstructionObjectSource.EventImports;
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break;
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case ListenerType.Symbol:
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watch = initType.SymbolReferenceTable[watchIndex].Symbol;
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watchSource = InstructionObjectSource.SymbolReference;
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break;
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}
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//object handlerObj = stack.Peek();
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break;
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}
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}
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catch (Exception ex)
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{
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throw new Exception($"Failed to analyze instruction `{instruction}` @ 0x{instruction.Offset:X}, {methodName}[{i}]", ex);
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}
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}
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return "";
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}
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private static XElement GetOrCreateElement(XElement parent, XName name)
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{
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var elem = parent.Element(name);
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if (elem is null)
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{
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elem = new XElement(name);
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parent.Add(elem);
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}
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return elem;
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}
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private object ToXmlFriendlyObject(object obj)
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{
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if (obj is Disassembler.RawConstantInfo rci)
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{
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obj = rci.Value;
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}
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else if (obj is IrisObject irisObj)
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{
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obj = irisObj.Object;
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}
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return obj switch
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{
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string str => str,
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null => "{null}",
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bool b => b ? "true" : "false",
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IStringEncodable strEnc => strEnc.EncodeString(),
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ExpressionSyntax expr => FormatInlineExpression(expr),
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SymbolReference symRef => '{' + symRef.Symbol + '}',
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IFormattable formattable => formattable.ToString(null, CultureInfo.InvariantCulture),
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Layout.ILayout layoutObj
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when Layout.PredefinedLayouts.TryConvertToString(layoutObj, out var layoutName)
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=> layoutName,
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XElement xElem => xElem,
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_ => SerializeToXml(obj)
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};
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}
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private XElement SerializeToXml(object obj)
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{
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var type = Disassembler.GuessTypeSchema(obj.GetType(), _context.LoadResult);
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XElement xObj = new(_context.GetXName(type));
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var defaultObj = type.ConstructDefault();
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foreach (var prop in type.Properties)
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{
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var defaultPropValue = prop.GetValue(defaultObj);
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var propValue = prop.GetValue(obj);
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if (propValue == defaultPropValue || propValue.Equals(defaultPropValue))
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continue;
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PropertyAssignOnXElement(xObj, prop, new(propValue, prop.PropertyType));
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}
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return xObj;
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}
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private XObject PropertyAssignOnXElement(XElement xTarget, PropertySchema property, IrisObject value)
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{
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object xfValue = ToXmlFriendlyObject(value);
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switch (xfValue)
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{
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case XElement xValue:
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var xProperty = GetOrCreateElement(xTarget, _nsUix + property.Name);
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// Flatten collections
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if (typeof(System.Collections.IList).IsAssignableFrom(value.Type.RuntimeType)
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|| typeof(System.Collections.IDictionary).IsAssignableFrom(value.Type.RuntimeType))
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{
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xProperty.Add(xValue.Elements());
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}
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else
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{
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xProperty.Add(xValue);
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}
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return xProperty;
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case string strValue:
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var xAttr = new XAttribute(property.Name, strValue);
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xTarget.Add(xAttr);
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return xAttr;
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default:
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throw new InvalidOperationException();
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}
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}
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private XElement PropertyListAddOnXElement(XElement xTarget, PropertySchema property, IrisObject value)
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{
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var xList = GetOrCreateElement(xTarget, _nsUix + property.Name);
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return PropertyListAddOnXElement(xList, value);
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}
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private XElement PropertyListAddOnXElement(XElement xList, IrisObject value)
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{
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object xValue = ToXmlFriendlyObject(value);
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XElement xListEntry;
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switch (xValue)
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{
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case string strValue:
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xListEntry = new(_context.GetXName(value.Type));
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xListEntry.SetAttributeValue(value.Type.Name, strValue);
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break;
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case XElement xValueELem:
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xListEntry = xValueELem;
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break;
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default:
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throw new InvalidOperationException();
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}
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xList.Add(xListEntry);
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return xListEntry;
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}
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private XElement PropertyDictionaryAddOnXElement(XElement xDictionary, IrisObject value, string key)
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{
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var xDictionaryEntry = PropertyListAddOnXElement(xDictionary, value);
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xDictionaryEntry.SetAttributeValue("Name", key);
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return xDictionaryEntry;
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}
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private XElement PropertyDictionaryAddOnXElement(XElement xTarget, PropertySchema property, IrisObject value, string key)
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{
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var xDictionary = GetOrCreateElement(xTarget, _nsUix + property.Name);
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return PropertyDictionaryAddOnXElement(xDictionary, value, key);
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}
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}
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