// Decompiled with JetBrains decompiler // Type: Microsoft.Iris.Markup.UIX.DoubleSchema // Assembly: UIX, Version=4.8.0.0, Culture=neutral, PublicKeyToken=ddd0da4d3e678217 // MVID: A56C6C9D-B7F6-46A9-8BDE-B3D9B8D60B11 // Assembly location: C:\Program Files\Zune\UIX.dll using Microsoft.Iris.Library; using System; using System.Globalization; namespace Microsoft.Iris.Markup.UIX { internal static class DoubleSchema { public static UIXTypeSchema Type; private static object Construct() => 0.0; private static void EncodeBinary(ManagedByteCodeWriter writer, object instanceObj) { double num = (double)instanceObj; writer.WriteDouble(num); } private static object DecodeBinary(ManagedByteCodeReader reader) => reader.ReadDouble(); private static Result ConvertFromString(object valueObj, out object instanceObj) { string s = (string)valueObj; instanceObj = null; double result; if (!double.TryParse(s, NumberStyles.Float, NumberFormatInfo.InvariantInfo, out result)) return Result.Fail("Unable to convert \"{0}\" to type '{1}'", s, "Double"); instanceObj = result; return Result.Success; } private static Result ConvertFromBoolean(object valueObj, out object instanceObj) { bool flag = (bool)valueObj; instanceObj = null; double num = flag ? 1.0 : 0.0; instanceObj = num; return Result.Success; } private static Result ConvertFromByte(object valueObj, out object instanceObj) { byte num1 = (byte)valueObj; instanceObj = null; double num2 = num1; instanceObj = num2; return Result.Success; } private static Result ConvertFromInt32(object valueObj, out object instanceObj) { int num1 = (int)valueObj; instanceObj = null; double num2 = num1; instanceObj = num2; return Result.Success; } private static Result ConvertFromInt64(object valueObj, out object instanceObj) { long num1 = (long)valueObj; instanceObj = null; double num2 = num1; instanceObj = num2; return Result.Success; } private static Result ConvertFromSingle(object valueObj, out object instanceObj) { float num1 = (float)valueObj; instanceObj = null; double num2 = num1; instanceObj = num2; return Result.Success; } private static object CallToStringString(object instanceObj, object[] parameters) => ((double)instanceObj).ToString((string)parameters[0]); private static object CallIsNaNDouble(object instanceObj, object[] parameters) => BooleanBoxes.Box(double.IsNaN((double)parameters[0])); private static object CallIsNegativeInfinityDouble(object instanceObj, object[] parameters) => BooleanBoxes.Box(double.IsNegativeInfinity((double)parameters[0])); private static object CallIsPositiveInfinityDouble(object instanceObj, object[] parameters) => BooleanBoxes.Box(double.IsPositiveInfinity((double)parameters[0])); private static bool IsConversionSupported(TypeSchema fromType) => BooleanSchema.Type.IsAssignableFrom(fromType) || ByteSchema.Type.IsAssignableFrom(fromType) || (Int32Schema.Type.IsAssignableFrom(fromType) || Int64Schema.Type.IsAssignableFrom(fromType)) || (SingleSchema.Type.IsAssignableFrom(fromType) || StringSchema.Type.IsAssignableFrom(fromType)); private static Result TryConvertFrom( object from, TypeSchema fromType, out object instance) { Result result = Result.Fail("Unsupported"); instance = null; if (BooleanSchema.Type.IsAssignableFrom(fromType)) { result = ConvertFromBoolean(from, out instance); if (!result.Failed) return result; } if (ByteSchema.Type.IsAssignableFrom(fromType)) { result = ConvertFromByte(from, out instance); if (!result.Failed) return result; } if (Int32Schema.Type.IsAssignableFrom(fromType)) { result = ConvertFromInt32(from, out instance); if (!result.Failed) return result; } if (Int64Schema.Type.IsAssignableFrom(fromType)) { result = ConvertFromInt64(from, out instance); if (!result.Failed) return result; } if (SingleSchema.Type.IsAssignableFrom(fromType)) { result = ConvertFromSingle(from, out instance); if (!result.Failed) return result; } if (StringSchema.Type.IsAssignableFrom(fromType)) { result = ConvertFromString(from, out instance); if (!result.Failed) return result; } return result; } private static bool IsOperationSupported(OperationType op) { switch (op) { case OperationType.MathAdd: case OperationType.MathSubtract: case OperationType.MathMultiply: case OperationType.MathDivide: case OperationType.MathModulus: case OperationType.RelationalEquals: case OperationType.RelationalNotEquals: case OperationType.RelationalLessThan: case OperationType.RelationalGreaterThan: case OperationType.RelationalLessThanEquals: case OperationType.RelationalGreaterThanEquals: case OperationType.MathNegate: return true; default: return false; } } private static object ExecuteOperation(object leftObj, object rightObj, OperationType op) { double num1 = (double)leftObj; if (op == OperationType.MathNegate) return -num1; double num2 = (double)rightObj; switch (op - 1) { case 0: return num1 + num2; case OperationType.MathAdd: return num1 - num2; case OperationType.MathSubtract: return num1 * num2; case OperationType.MathMultiply: return num1 / num2; case OperationType.MathDivide: return num1 % num2; case OperationType.LogicalOr: return BooleanBoxes.Box(num1 == num2); case OperationType.RelationalEquals: return BooleanBoxes.Box(num1 != num2); case OperationType.RelationalNotEquals: return BooleanBoxes.Box(num1 < num2); case OperationType.RelationalLessThan: return BooleanBoxes.Box(num1 > num2); case OperationType.RelationalGreaterThan: return BooleanBoxes.Box(num1 <= num2); case OperationType.RelationalLessThanEquals: return BooleanBoxes.Box(num1 >= num2); default: return null; } } private static object CallTryParseStringDouble(object instanceObj, object[] parameters) { string parameter1 = (string)parameters[0]; double parameter2 = (double)parameters[1]; object instanceObj1; return ConvertFromString(parameter1, out instanceObj1).Failed ? parameter2 : instanceObj1; } public static void Pass1Initialize() => Type = new UIXTypeSchema(61, "Double", "double", 153, typeof(double), UIXTypeFlags.Immutable); public static void Pass2Initialize() { UIXMethodSchema uixMethodSchema1 = new UIXMethodSchema(61, "ToString", new short[1] { 208 }, 208, new InvokeHandler(CallToStringString), false); UIXMethodSchema uixMethodSchema2 = new UIXMethodSchema(61, "IsNaN", new short[1] { 61 }, 15, new InvokeHandler(CallIsNaNDouble), true); UIXMethodSchema uixMethodSchema3 = new UIXMethodSchema(61, "IsNegativeInfinity", new short[1] { 61 }, 15, new InvokeHandler(CallIsNegativeInfinityDouble), true); UIXMethodSchema uixMethodSchema4 = new UIXMethodSchema(61, "IsPositiveInfinity", new short[1] { 61 }, 15, new InvokeHandler(CallIsPositiveInfinityDouble), true); UIXMethodSchema uixMethodSchema5 = new UIXMethodSchema(61, "TryParse", new short[2] { 208, 61 }, 61, new InvokeHandler(CallTryParseStringDouble), true); Type.Initialize(new DefaultConstructHandler(Construct), null, null, new MethodSchema[5] { uixMethodSchema1, uixMethodSchema2, uixMethodSchema3, uixMethodSchema4, uixMethodSchema5 }, null, null, new TypeConverterHandler(TryConvertFrom), new SupportsTypeConversionHandler(IsConversionSupported), new EncodeBinaryHandler(EncodeBinary), new DecodeBinaryHandler(DecodeBinary), new PerformOperationHandler(ExecuteOperation), new SupportsOperationHandler(IsOperationSupported)); } } }