using System; using System.Collections.Generic; using System.IO; using CPU = Cosmos.Assembler.x86; using CPUx86 = Cosmos.Assembler.x86; using System.Reflection; using Cosmos.IL2CPU.X86; using Cosmos.IL2CPU.ILOpCodes; using Cosmos.Assembler; using SysReflection = System.Reflection; namespace Cosmos.IL2CPU.X86.IL { [Cosmos.IL2CPU.OpCode( ILOpCode.Code.Castclass )] public class Castclass : ILOp { public Castclass( Cosmos.Assembler.Assembler aAsmblr ) : base( aAsmblr ) { } public override void Execute( MethodInfo aMethod, ILOpCode aOpCode ) { string xCurrentMethodLabel = GetLabel( aMethod, aOpCode ); OpType xType = ( OpType )aOpCode; string xTypeID = GetTypeIDLabel(xType.Value); //mTypeId = GetService().GetTypeIdLabel( mCastAsType ); // todo: throw an exception when the class does not support the cast! string mReturnNullLabel = xCurrentMethodLabel + "_ReturnNull"; new CPUx86.Mov { DestinationReg = CPUx86.Registers.EAX, SourceReg = CPUx86.Registers.ESP, SourceIsIndirect = true }; new CPUx86.Compare { DestinationReg = CPUx86.Registers.EAX, SourceValue = 0 }; new CPUx86.ConditionalJump { Condition = CPUx86.ConditionalTestEnum.Zero, DestinationLabel = mReturnNullLabel }; new CPUx86.Push { DestinationReg = CPUx86.Registers.EAX, DestinationIsIndirect = true }; new CPUx86.Push { DestinationRef = Cosmos.Assembler.ElementReference.New( xTypeID ), DestinationIsIndirect = true }; SysReflection.MethodBase xMethodIsInstance = ReflectionUtilities.GetMethodBase( typeof( VTablesImpl ), "IsInstance", "System.Int32", "System.Int32" ); // new OpMethod( ILOpCode.Code.Call, 0, 0, xMethodIsInstance, aOpCode.CurrentExceptionHandler ) ); IL.Call.DoExecute(Assembler, aMethod, xMethodIsInstance, aOpCode, xCurrentMethodLabel, xCurrentMethodLabel + "_After_IsInstance_Call", DebugEnabled); new Label( xCurrentMethodLabel + "_After_IsInstance_Call" ); new CPUx86.Pop { DestinationReg = CPUx86.Registers.EAX }; new CPUx86.Compare { DestinationReg = CPUx86.Registers.EAX, SourceValue = 0 }; new CPUx86.ConditionalJump { Condition = CPUx86.ConditionalTestEnum.Equal, DestinationLabel = mReturnNullLabel }; new CPUx86.Jump { DestinationLabel = ILOp.GetLabel(aMethod, aOpCode.NextPosition) }; new Label( mReturnNullLabel ); new CPUx86.Add { DestinationReg = CPUx86.Registers.ESP, SourceValue = 4 }; string xAllocInfoLabelName = LabelName.Get( GCImplementationRefs.AllocNewObjectRef ); #warning TODO: Emit new exceptions //new Newobj( Assembler ).Execute( aMethod, aOpCode ); //Newobj.Assemble( Assembler, // typeof( InvalidCastException ).GetConstructor( new Type[ 0 ] ), // GetService().GetTypeIdLabel( typeof( InvalidCastException ) ), // mThisLabel, // mMethodInfo, // mCurrentILOffset, // mThisLabel + "_After_NewException", // GetService().GetTypeInfo( typeof( InvalidCastException ) ), // GetService().GetMethodInfo( typeof( InvalidCastException ).GetConstructor( new Type[ 0 ] ), false ), // GetServiceProvider(), // xAllocInfo.LabelName ); new Label( xCurrentMethodLabel + "_After_NewException" ); //Call.EmitExceptionLogic( Assembler, ( uint )mCurrentILOffset, mMethodInfo, mNextOpLabel, false, null ); } // using System; // using System.Collections.Generic; // using System.IO; // // // using CPU = Cosmos.Assembler.x86; // using CPUx86 = Cosmos.Assembler.x86; // using System.Reflection; // using Cosmos.IL2CPU.X86; // using Cosmos.IL2CPU.Compiler; // // namespace Cosmos.IL2CPU.IL.X86 { // [Cosmos.Assembler.OpCode(OpCodeEnum.Castclass)] // public class Castclass: Op { // private string mTypeId; // private string mThisLabel; // private string mNextOpLabel; // private Type mCastAsType; // private int mCurrentILOffset; // private MethodInformation mMethodInfo; // // public static void ScanOp(ILReader aReader, MethodInformation aMethodInfo, SortedList aMethodData, IServiceProvider aProvider) // { // Type xType = aReader.OperandValueType; // if (xType == null) // { // throw new Exception("Unable to determine Type!"); // } // aProvider.GetService().GetTypeInfo(xType); // Call.ScanOp(Engine.GetMethodBase(typeof(VTablesImpl), // "IsInstance", // "System.Int32", // "System.Int32"), aProvider); // Newobj.ScanOp(typeof(InvalidCastException).GetConstructor(new Type[0]), aProvider); // } // // public Castclass(ILReader aReader, MethodInformation aMethodInfo) // : base(aReader, aMethodInfo) { // Type xType = aReader.OperandValueType; // if (xType == null) { // throw new Exception("Unable to determine Type!"); // } // mCastAsType = xType; // mThisLabel = GetInstructionLabel(aReader); // mNextOpLabel = GetInstructionLabel(aReader.NextPosition); // mCurrentILOffset = (int)aReader.Position; // mMethodInfo = aMethodInfo; // } // // public override void DoAssemble() { // mTypeId = GetService().GetTypeIdLabel(mCastAsType); // // todo: throw an exception when the class does not support the cast! // string mReturnNullLabel = mThisLabel + "_ReturnNull"; // new CPUx86.Move { DestinationReg = CPUx86.Registers.EAX, SourceReg = CPUx86.Registers.ESP, SourceIsIndirect = true }; // new CPUx86.Compare { DestinationReg = CPUx86.Registers.EAX, SourceValue = 0 }; // new CPUx86.ConditionalJump { Condition = CPUx86.ConditionalTestEnum.Zero, DestinationLabel = mReturnNullLabel }; // new CPUx86.Push { DestinationReg = CPUx86.Registers.EAX, DestinationIsIndirect = true }; // new CPUx86.Push{DestinationRef=Cosmos.Assembler.ElementReference.New(mTypeId), DestinationIsIndirect=true}; // Assembler.Stack.Push(new StackContent(4, typeof(object))); // Assembler.Stack.Push(new StackContent(4, typeof(object))); // MethodBase xMethodIsInstance = ReflectionUtilities.GetMethodBase(typeof(VTablesImpl), "IsInstance", "System.Int32", "System.Int32"); // Op xOp = new Call(xMethodIsInstance, (uint)mCurrentILOffset, mMethodInfo.DebugMode, mThisLabel + "_After_IsInstance_Call"); // xOp.Assembler = Assembler; // xOp.SetServiceProvider(GetServiceProvider()); // xOp.Assemble(); // new Label(mThisLabel + "_After_IsInstance_Call"); // Assembler.Stack.Pop(); // new CPUx86.Pop { DestinationReg = CPUx86.Registers.EAX }; // new CPUx86.Compare { DestinationReg = CPUx86.Registers.EAX, SourceValue = 0 }; // new CPUx86.ConditionalJump { Condition = CPUx86.ConditionalTestEnum.NotEqual, DestinationLabel = mNextOpLabel }; // new Label(mReturnNullLabel); // new CPUx86.Add { DestinationReg = CPUx86.Registers.ESP, SourceValue = 4 }; // var xAllocInfo = GetService().GetMethodInfo(GCImplementationRefs.AllocNewObjectRef, // false); // Newobj.Assemble(Assembler, // typeof(InvalidCastException).GetConstructor(new Type[0]), // GetService().GetTypeIdLabel(typeof(InvalidCastException)), // mThisLabel, // mMethodInfo, // mCurrentILOffset, // mThisLabel + "_After_NewException", // GetService().GetTypeInfo(typeof(InvalidCastException)), // GetService().GetMethodInfo(typeof(InvalidCastException).GetConstructor(new Type[0]), false), // GetServiceProvider(), // xAllocInfo.LabelName); // new Label(mThisLabel + "_After_NewException"); // Call.EmitExceptionLogic(Assembler, (uint)mCurrentILOffset, mMethodInfo, mNextOpLabel, false, null); // } // } // } } }