Files
ZuneUIXTools/libs/UIX.DecompXml/Decompiler.Script.cs
T

714 lines
30 KiB
C#

using Microsoft.CodeAnalysis;
using Microsoft.CodeAnalysis.CSharp;
using Microsoft.CodeAnalysis.CSharp.Extensions;
using Microsoft.CodeAnalysis.CSharp.Syntax;
using Microsoft.Iris.Asm.Models;
using Microsoft.Iris.DecompXml.Mock;
using Microsoft.Iris.Markup;
using Microsoft.Iris.Markup.UIX;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Threading;
using static Microsoft.CodeAnalysis.CSharp.SyntaxFactory;
namespace Microsoft.Iris.DecompXml;
partial class Decompiler
{
private static readonly TypeSchema _listType = UIXTypes.MapIDToType(UIXTypeID.List);
private static readonly TypeSchema _dictionaryType = UIXTypes.MapIDToType(UIXTypeID.Dictionary);
private SyntaxTree DecompileScript(uint startOffset, MarkupTypeSchema export, string? attributeName = null)
{
var statements = DecompileMethod(startOffset, export, attributeName);
return CreateTree(statements);
}
public List<StatementSyntax> DecompileMethod(uint startOffset, MarkupTypeSchema export, string? attributeName = null)
{
var methodBody = _context.GetMethodBody(startOffset).ToArray();
var controlBlocks = ControlFlowAnalyzer.CreateGraph(methodBody);
var dotGraph = ControlFlowAnalyzer.SerializeToGraphviz(controlBlocks);
//Console.WriteLine(dotGraph);
Stack<CodeBlockInfo> blockStack = [];
blockStack.Push(new(0, methodBody[^1].Offset, SyntaxKind.Block, null));
Stack<object> stack = new();
for (int i = 0; i < methodBody.Length; i++)
{
var instruction = methodBody[i];
// TODO: Handle for loops
if (instruction.Offset == blockStack.Peek().EndOffset)
{
// Make sure there is only one top-level block
if (blockStack.Count > 1)
{
var currentBlock = blockStack.Pop();
currentBlock.FinalizeBlock(blockStack.Peek());
}
else
{
// End of function
if (i + 1 != methodBody.Length)
throw new InvalidOperationException("Expected end of function!");
}
}
var opCode = instruction.OpCode;
try
{
switch (opCode)
{
case OpCode.PushConstant:
var constant = _context.GetConstant(instruction.Operands.First());
stack.Push(IrisExpression.ToSyntax(constant, _context));
break;
case OpCode.PushNull:
stack.Push(LiteralExpression(SyntaxKind.NullLiteralExpression));
break;
case OpCode.DiscardValue:
var value = stack.Pop();
if (value is ExpressionSyntax expr)
{
var lastStatement = blockStack.Peek().Statements[^1];
if (!lastStatement.DescendantNodes().Any(n => n.IsEquivalentTo(expr)))
blockStack.Peek().Statements.Add(ExpressionStatement(expr));
}
break;
case OpCode.LookupSymbol:
var symbolIndex = (ushort)instruction.Operands.ElementAt(0).Value;
stack.Push(export.SymbolReferenceTable[symbolIndex]);
break;
case OpCode.WriteSymbol:
case OpCode.WriteSymbolPeek:
var writeSymbolIndex = (ushort)instruction.Operands.First().Value;
var newSymbolValue = opCode is OpCode.WriteSymbolPeek
? stack.Peek() : stack.Pop();
var symbolAssignmentExpr = AssignmentExpression(SyntaxKind.SimpleAssignmentExpression,
IrisExpression.ToSyntax(export.SymbolReferenceTable[writeSymbolIndex]),
IrisExpression.ToSyntax(newSymbolValue, _context)
);
blockStack.Peek().Statements.Add(ExpressionStatement(symbolAssignmentExpr));
break;
case OpCode.PropertyAssign:
case OpCode.PropertyAssignStatic:
var propToSet = _context.GetImportedProperty(instruction.Operands.First());
var propSetTarget = opCode is OpCode.PropertyAssignStatic
? propToSet.Owner
: stack.Pop();
var newPropValue = IrisExpression.ToSyntax(stack.Peek(), _context);
var propertySetExpression = AssignmentExpression(SyntaxKind.SimpleAssignmentExpression,
MemberAccessExpression(SyntaxKind.SimpleMemberAccessExpression,
IrisExpression.ToSyntax(propSetTarget, _context),
IdentifierName(propToSet.Name)
),
newPropValue
);
blockStack.Peek().Statements.Add(ExpressionStatement(propertySetExpression));
break;
case OpCode.VerifyTypeCast:
var objToCast = stack.Pop();
var typeToCastTo = _context.GetImportedType(instruction.Operands.First());
stack.Push(CastExpression(
IrisExpression.ToSyntax(typeToCastTo, _context),
IrisExpression.ToSyntax(objToCast, _context)
));
break;
case OpCode.JumpIfFalse:
case OpCode.JumpIfFalsePeek:
case OpCode.JumpIfTruePeek:
var jumpToOffset = (uint)instruction.Operands.First().Value;
// TODO: What about for loops?
if (instruction.Offset > jumpToOffset)
{
}
var isPeek = opCode is OpCode.JumpIfFalsePeek or OpCode.JumpIfTruePeek or OpCode.JumpIfNullPeek;
var rawJumpCondition = IrisExpression.ToSyntax(isPeek ? stack.Peek() : stack.Pop(), _context);
var jumpCondition = opCode switch
{
OpCode.JumpIfFalse or
OpCode.JumpIfFalsePeek => rawJumpCondition,
OpCode.JumpIfTruePeek => LogicalNotOf(rawJumpCondition),
OpCode.JumpIfNullPeek => BinaryExpression(SyntaxKind.ExclamationEqualsToken,
rawJumpCondition,
LiteralExpression(SyntaxKind.NullLiteralExpression)),
_ => throw new NotImplementedException()
};
//var ifBlock = new CodeBlockInfo(instruction.Offset, jumpToOffset, SyntaxKind.IfStatement, jumpCondition);
//blockStack.Push(ifBlock);
var ifBlock = IfStatement(SimplifyExpression(jumpCondition),
GotoStatement(SyntaxKind.GotoStatement, IdentifierName($"UIB_{jumpToOffset:X4}")))
.WithLeadingTrivia(Comment($"/* UIB_{instruction.Offset:X4} */"));
blockStack.Peek().Statements.Add(ifBlock);
break;
case OpCode.Jump:
var jumpOffset = (uint)instruction.Operands.First().Value;
// TODO
blockStack.Peek().Statements.Add(GotoStatement(SyntaxKind.GotoStatement, IdentifierName($"UIB_{jumpOffset:X4}")));
break;
case OpCode.ReturnValue:
var returnStatement = ReturnStatement(IrisExpression.ToSyntax(stack.Pop(), _context));
blockStack.Peek().Statements.Add(returnStatement);
break;
case OpCode.ReturnVoid:
// Include return statement when we're not in the main block (which would return anyway)
// or when we're not at the end of the function
if (blockStack.Count > 1 || i + 1 < methodBody.Length)
blockStack.Peek().Statements.Add(ReturnStatement());
break;
case OpCode.ClearSymbol:
// Ignore these instructions
break;
default:
if (!TryDecompileExpression(instruction, stack, blockStack))
{
var unsupportedComment = Comment($"// Unsupported instruction: {instruction}");
blockStack.Peek().Statements.Add(EmptyStatement().WithLeadingTrivia(unsupportedComment));
}
break;
}
}
catch (Exception ex)
{
throw new Exception($"Failed to decompile instruction `{instruction}` @ 0x{instruction.Offset:X} in script for {export.Name}", ex);
}
}
if (blockStack.Count > 1)
throw new InvalidOperationException($"Failed to decompile script for {export.Name}, more than one top-level code block");
else if (blockStack.Count < 0)
throw new InvalidOperationException($"Failed to decompile script for {export.Name}, no top-level code blocks");
// Unwrap top-most block to avoid extra curly braces around entire script
var statements = blockStack.Pop().Statements;
if (attributeName is not null)
{
var scriptAttribute = Attribute(IdentifierName(attributeName));
statements[0] = statements[0]
.WithAttributeLists(SingletonList(AttributeList([scriptAttribute])));
}
return statements;
}
private MethodDeclarationSyntax DecompileMethodDeclaration(MarkupMethodSchema method, MarkupTypeSchema export)
{
var targetType = export.ResolveScriptId(method.CodeOffset, out var offset);
var methodBody = DecompileMethod(offset, export);
var parameters = method.ParameterTypes
.Zip(method.ParameterNames, (t, n) => Parameter(Identifier(n)).WithType(IrisExpression.ToSyntax(t, _context)));
var modifiers = new SyntaxTokenList();
// See ValidateMethod for handling of virtual and override keywords
if (method.IsVirtual)
modifiers.Add(Token(SyntaxKind.VirtualKeyword));
else if (((MarkupTypeSchema)method.Owner).VirtualMethods.Contains(method))
modifiers.Add(Token(SyntaxKind.OverrideKeyword));
var methodDeclaration = MethodDeclaration(
IrisExpression.ToSyntax(method.ReturnType, _context),
method.Name
);
return methodDeclaration
.WithParameterList(ParameterList([..parameters]))
.WithBody(Block(methodBody))
.WithModifiers(modifiers);
}
private void AnalyzeRefreshMethod(uint startOffset, MarkupTypeSchema initType, string methodName = "")
{
var methodBody = _context.GetMethodBody(startOffset).ToArray();
Stack<object> stack = new();
stack.Push(initType);
for (int i = 0; i < methodBody.Length; i++)
{
var instruction = methodBody[i];
try
{
switch (instruction.OpCode)
{
case OpCode.LookupSymbol:
var symbolIndex = (ushort)instruction.Operands.ElementAt(0).Value;
stack.Push(initType.SymbolReferenceTable[symbolIndex]);
break;
case OpCode.Listen:
case OpCode.DestructiveListen:
var listenerIndex = (ushort)instruction.Operands.ElementAt(0).Value;
var listenerType = (ListenerType)(byte)instruction.Operands.ElementAt(1).Value;
var watchIndex = (ushort)instruction.Operands.ElementAt(2).Value;
var scriptId = (uint)instruction.Operands.ElementAt(3).Value;
var refreshOffset = uint.MaxValue;
if (instruction.OpCode is OpCode.DestructiveListen)
refreshOffset = (uint)instruction.Operands.ElementAt(4).Value;
string watch = null;
switch (listenerType)
{
case ListenerType.Property:
watch = _context.ImportTables.PropertyImports[watchIndex].Name;
break;
case ListenerType.Event:
watch = _context.ImportTables.EventImports[watchIndex].Name;
break;
case ListenerType.Symbol:
watch = initType.SymbolReferenceTable[watchIndex].Symbol;
break;
}
// What does this mean?
if (scriptId is uint.MaxValue)
break;
object handlerObj = stack.Peek();
try
{
var markupTypeSchema = initType.ResolveScriptId(scriptId, out var scriptOffset);
var scriptContent = _context.GetScriptContent(initType, scriptOffset);
var scriptRoot = scriptContent.GetRoot();
var nodesDbg = scriptRoot.DescendantNodes()
.OfType<MemberAccessExpressionSyntax>()
.Select(m => $"{m.Expression}.{m.Name}")
.ToArray();
SyntaxNode node = scriptRoot
.DescendantNodes()
.OfType<MemberAccessExpressionSyntax>()
.FirstOrDefault(n => n.Expression.ToString() == $"{handlerObj}" && n.Name.ToString() == watch);
if (node is not null)
{
var octothorpeTrivia = SkippedTokensTrivia()
.AddTokens(BadToken(TriviaList(), "#", TriviaList()));
SyntaxNode newNode = node
.WithLeadingTrivia(TriviaList(Trivia(octothorpeTrivia)))
.WithTrailingTrivia(TriviaList(Trivia(octothorpeTrivia)));
SyntaxNode? parent = node.Parent;
while (parent is not null)
{
newNode = node.Parent.ReplaceNode(node, newNode);
node = node.Parent;
parent = node.Parent;
}
_context.SetScriptContent(initType, scriptOffset, newNode.SyntaxTree);
}
}
catch { }
break;
}
}
catch (Exception ex)
{
throw new Exception($"Failed to analyze instruction `{instruction}` @ 0x{instruction.Offset:X}, {methodName}[{i}]", ex);
}
}
}
public static SyntaxTree CreateTree(IEnumerable<StatementSyntax> statements)
{
return SyntaxTree(
CompilationUnit().WithMembers(
[.. statements.Select(GlobalStatement)]
)
);
}
public static string FormatInlineExpression(ExpressionSyntax expr, CancellationToken token = default) => '{' + FormatSyntaxNode(expr, token) + '}';
public static string FormatScript(SyntaxTree tree, CancellationToken token = default) => FormatSyntaxNode(tree.GetRoot(token), token);
public static string FormatScript(IEnumerable<StatementSyntax> statements, CancellationToken token = default) => FormatScript(CreateTree(statements), token);
public static string FormatSyntaxNode(SyntaxNode root, CancellationToken token = default)
{
return root
.NormalizeWhitespace()
.SyntaxTree
.GetText(token)
.ToString();
}
private bool TryDecompileExpression(Instruction instruction, Stack<object> stack, Stack<CodeBlockInfo> blockStack = null)
{
var opCode = instruction.OpCode;
switch (opCode)
{
case OpCode.PushThis:
stack.Push(ThisExpression());
break;
case OpCode.ConstructObject:
case OpCode.ConstructObjectParam:
var typeToCtor = _context.GetImportedType(instruction.Operands.First());
List<ArgumentSyntax> ctorParameters = [];
if (opCode is OpCode.ConstructObjectParam)
{
var ctorSchema = _context.GetImportedConstructor(instruction.Operands.ElementAt(1));
int ctorParameterCount = ctorSchema.ParameterTypes.Length;
ctorParameters.Capacity = ctorParameterCount;
for (ctorParameterCount--; ctorParameterCount >= 0; ctorParameterCount--)
{
var parameter = IrisExpression.ToSyntax(stack.Pop(), _context);
ctorParameters.Add(Argument(parameter));
}
ctorParameters.Reverse();
}
stack.Push(ObjectCreationExpression(
IrisExpression.ToSyntax(typeToCtor, _context),
ArgumentList([..ctorParameters]),
null
));
break;
case OpCode.MethodInvoke:
case OpCode.MethodInvokePeek:
case OpCode.MethodInvokeStatic:
case OpCode.MethodInvokePushLastParam:
case OpCode.MethodInvokeStaticPushLastParam:
var methodSchema = _context.GetImportedMethod(instruction.Operands.First());
int parameterCount = methodSchema.ParameterTypes.Length;
var parameters = new ArgumentSyntax[parameterCount];
for (parameterCount--; parameterCount >= 0; parameterCount--)
{
var parameter = IrisExpression.ToSyntax(stack.Pop(), _context);
parameters[parameterCount] = Argument(parameter);
}
bool isStatic = opCode is OpCode.MethodInvokeStatic or OpCode.MethodInvokeStaticPushLastParam;
bool peek = opCode is OpCode.MethodInvokePeek;
bool pushLastParam = opCode is OpCode.MethodInvokePushLastParam or OpCode.MethodInvokeStaticPushLastParam;
var targetObj = opCode switch
{
OpCode.MethodInvokeStatic or
OpCode.MethodInvokeStaticPushLastParam => methodSchema.Owner,
_ when peek => stack.Peek(),
_ => stack.Pop(),
};
var methodTargetExpression = IrisExpression.ToSyntax(targetObj, _context);
ExpressionSyntax methodResult;
if ((methodSchema.Owner == _listType || methodSchema.Owner == _dictionaryType) && methodSchema.Name == "get_Item")
{
// Use brackets for list and dictionary indexing
methodResult = ElementAccessExpression(methodTargetExpression, BracketedArgumentList([.. parameters]));
}
else
{
var methodExpression = MemberAccessExpression(SyntaxKind.SimpleMemberAccessExpression,
methodTargetExpression,
IdentifierName(methodSchema.Name)
);
methodResult = InvocationExpression(methodExpression, ArgumentList([.. parameters]));
}
if (methodSchema.ReturnType != VoidSchema.Type)
{
stack.Push(methodResult);
}
else
{
blockStack?.Peek().Statements.Add(ExpressionStatement(methodResult));
}
if (pushLastParam)
{
stack.Push(parameters[^1].Expression);
}
break;
case OpCode.PropertyGet:
case OpCode.PropertyGetPeek:
case OpCode.PropertyGetStatic:
var propToGet = _context.GetImportedProperty(instruction.Operands.First());
var propGetTarget = instruction.OpCode switch
{
OpCode.PropertyGet => stack.Pop(),
OpCode.PropertyGetPeek => stack.Peek(),
_ => propToGet.Owner,
};
var propertyGetExpression = MemberAccessExpression(SyntaxKind.SimpleMemberAccessExpression,
IrisExpression.ToSyntax(propGetTarget, _context),
IdentifierName(propToGet.Name)
);
stack.Push(propertyGetExpression);
break;
case OpCode.Operation:
DecompileOperation(instruction, stack);
break;
case OpCode.IsCheck:
var typeToCheckFor = _context.GetImportedType(instruction.Operands.First());
var objToCheck = stack.Pop();
stack.Push(IsPatternExpression(
IrisExpression.ToSyntax(objToCheck, _context),
TypePattern(IrisExpression.ToSyntax(typeToCheckFor, _context))
));
break;
case OpCode.TypeOf:
var typeOfSchema = _context.GetImportedType(instruction.Operands.First());
var typeOfExpr = TypeOfExpression(IrisExpression.ToSyntax(typeOfSchema, _context));
stack.Push(typeOfExpr);
break;
case OpCode.ConvertType:
var destinationTypeSchema = _context.GetImportedType(instruction.Operands.First());
var typeCastExpr = CastExpression(
IrisExpression.ToSyntax(destinationTypeSchema, _context),
Parenthesize(IrisExpression.ToSyntax(stack.Pop(), _context))
);
stack.Push(typeCastExpr);
break;
default:
return false;
}
return true;
}
private ExpressionSyntax DecompileOperation(Instruction instruction, Stack<object> stack)
{
var op = (OperationType)(int)(byte)instruction.Operands.ElementAt(1).Value;
var isUnary = TypeSchema.IsUnaryOperation(op);
var opSyntax = OperationToSyntaxKind(op);
ExpressionSyntax operationExpr;
if (isUnary)
{
var left = Parenthesize(IrisExpression.ToSyntax(stack.Pop(), _context));
var isPostfix = op is OperationType.PostIncrement or OperationType.PostDecrement;
operationExpr = isPostfix
? PostfixUnaryExpression(opSyntax, left)
: PrefixUnaryExpression(opSyntax, left);
}
else
{
var right = IrisExpression.ToSyntax(stack.Pop(), _context);
var left = IrisExpression.ToSyntax(stack.Pop(), _context);
operationExpr = BinaryExpression(opSyntax,
Parenthesize(left),
Parenthesize(right)
);
}
operationExpr = SimplifyExpression(operationExpr);
stack.Push(operationExpr);
return operationExpr;
}
private static ExpressionSyntax LogicalNotOf(ExpressionSyntax originalExpression)
{
ExpressionSyntax negatedExpression = null;
var innerExpression = originalExpression;
if (originalExpression is ParenthesizedExpressionSyntax parenthesizedExpression)
innerExpression = parenthesizedExpression.Expression;
if (innerExpression is IsPatternExpressionSyntax isPatternExpression)
{
var baseTypePattern = isPatternExpression.Pattern;
negatedExpression = isPatternExpression.WithPattern(UnaryPattern(baseTypePattern));
}
if (innerExpression is BinaryExpressionSyntax binaryExpression)
{
var notOperatorToken = SyntaxKind.None;
var operatorToken = binaryExpression.OperatorToken.Kind();
switch (operatorToken)
{
case SyntaxKind.EqualsEqualsToken:
notOperatorToken = SyntaxKind.ExclamationEqualsToken;
break;
case SyntaxKind.ExclamationEqualsToken:
notOperatorToken = SyntaxKind.EqualsEqualsToken;
break;
case SyntaxKind.LessThanToken:
notOperatorToken = SyntaxKind.GreaterThanEqualsToken;
break;
case SyntaxKind.GreaterThanToken:
notOperatorToken = SyntaxKind.LessThanEqualsToken;
break;
case SyntaxKind.LessThanEqualsToken:
notOperatorToken = SyntaxKind.GreaterThanToken;
break;
case SyntaxKind.GreaterThanEqualsToken:
notOperatorToken = SyntaxKind.LessThanToken;
break;
case SyntaxKind.AmpersandAmpersandToken:
case SyntaxKind.BarBarToken:
// Apply De Morgan's laws
var invertedOperatorToken = operatorToken is SyntaxKind.AmpersandAmpersandToken
? SyntaxKind.LogicalOrExpression : SyntaxKind.LogicalAndExpression;
negatedExpression = BinaryExpression(invertedOperatorToken,
LogicalNotOf(binaryExpression.Left),
LogicalNotOf(binaryExpression.Right));
break;
}
if (negatedExpression is null)
{
if (notOperatorToken is SyntaxKind.None)
throw new Exception($"Cannot take logical not of expression:\r\n{originalExpression}");
negatedExpression = binaryExpression.WithOperatorToken(Token(notOperatorToken));
}
}
negatedExpression ??= PrefixUnaryExpression(SyntaxKind.LogicalNotExpression, Parenthesize(originalExpression));
if (originalExpression is ParenthesizedExpressionSyntax)
negatedExpression = Parenthesize(negatedExpression);
return negatedExpression;
//dynamic zuneUI = "";
//dynamic configuration = "";
//if ((zuneUI.ZuneShell.DefaultInstance.CurrentPage is QuickplayPage)
// || ((zuneUI.ZuneShell.DefaultInstance.CurrentPage is StartupPage) && string.IsNullOrEmpty(zuneUI.Shell.SessionStartupPath) && (configuration.ClientConfiguration.Shell.StartupPage == zuneUI.Shell.MainFrame.Quickplay.DefaultUIPath))
// || ((zuneUI.ZuneShell.DefaultInstance.CurrentPage is StartupPage) && (zuneUI.Shell.SessionStartupPath == zuneUI.Shell.MainFrame.Quickplay.DefaultUIPath)))
//{
//}
}
private static ExpressionSyntax Parenthesize(ExpressionSyntax expression)
{
var parenExpression = ParenthesizedExpression(expression);
return SimplifyExpression(parenExpression);
}
private static ExpressionSyntax SimplifyExpression(ExpressionSyntax expression)
{
if (expression is PrefixUnaryExpressionSyntax prefixedExpression)
{
expression = prefixedExpression.WithOperand(SimplifyExpression(prefixedExpression.Operand));
}
else if (expression is PostfixUnaryExpressionSyntax postfixedExpression)
{
expression = postfixedExpression.WithOperand(SimplifyExpression(postfixedExpression.Operand));
}
else if (expression is BinaryExpressionSyntax binaryExpression)
{
expression = binaryExpression
.WithLeft(SimplifyExpression(binaryExpression.Left))
.WithRight(SimplifyExpression(binaryExpression.Right));
}
if (expression is ParenthesizedExpressionSyntax parenExpression
&& parenExpression.CanRemoveParentheses(null, default))
return SimplifyExpression(parenExpression.Expression);
return expression;
}
private record QuickplayPage;
private record StartupPage;
private static SyntaxKind OperationToSyntaxKind(OperationType operation)
{
return operation switch
{
OperationType.MathAdd => SyntaxKind.AddExpression,
OperationType.MathSubtract => SyntaxKind.SubtractExpression,
OperationType.MathMultiply => SyntaxKind.MultiplyExpression,
OperationType.MathDivide => SyntaxKind.DivideExpression,
OperationType.MathModulus => SyntaxKind.ModuloExpression,
OperationType.MathNegate => SyntaxKind.UnaryMinusExpression,
OperationType.LogicalAnd => SyntaxKind.LogicalAndExpression,
OperationType.LogicalOr => SyntaxKind.LogicalOrExpression,
OperationType.LogicalNot => SyntaxKind.LogicalNotExpression,
OperationType.RelationalEquals => SyntaxKind.EqualsExpression,
OperationType.RelationalNotEquals => SyntaxKind.NotEqualsExpression,
OperationType.RelationalLessThan => SyntaxKind.LessThanExpression,
OperationType.RelationalGreaterThan => SyntaxKind.GreaterThanExpression,
OperationType.RelationalLessThanEquals => SyntaxKind.LessThanOrEqualExpression,
OperationType.RelationalGreaterThanEquals => SyntaxKind.GreaterThanOrEqualExpression,
OperationType.RelationalIs => SyntaxKind.IsExpression,
OperationType.PostIncrement => SyntaxKind.PostIncrementExpression,
OperationType.PostDecrement => SyntaxKind.PostDecrementExpression,
_ => throw new ArgumentException($"Invalid operation type '{operation}'", nameof(operation))
};
}
}