ToAny() 공개 정적인 메소드

Pops the value on the stack, converts it to an object, then pushes the result onto the stack.
public static ToAny ( ILGenerator generator, PrimitiveType fromType ) : void
generator ILGenerator The IL generator.
fromType PrimitiveType The type to convert from.
리턴 void
예제 #1
0
        /// <summary>
        /// Generates CIL for the logical operators.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        private void GenerateLogical(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Get the statically-determined types of the left and right operands.
            PrimitiveType leftType  = this.Left.ResultType;
            PrimitiveType rightType = this.Right.ResultType;

            // Load the left-hand side operand.
            this.Left.GenerateCode(generator, optimizationInfo);

            // Make sure the output type is consistant.
            if (leftType != rightType)
            {
                if (PrimitiveTypeUtilities.IsNumeric(leftType) == true && PrimitiveTypeUtilities.IsNumeric(rightType) == true)
                {
                    EmitConversion.ToNumber(generator, leftType);
                    leftType = PrimitiveType.Number;
                }
                else
                {
                    EmitConversion.ToAny(generator, leftType);
                    leftType = PrimitiveType.Any;
                }
            }

            // Duplicate and convert to a Boolean.
            generator.Duplicate();
            EmitConversion.ToBool(generator, leftType);

            // Stack contains "left, (bool)left"
            var endOfIf = generator.CreateLabel();

            if (this.OperatorType == OperatorType.LogicalAnd)
            {
                generator.BranchIfFalse(endOfIf);
            }
            else
            {
                generator.BranchIfTrue(endOfIf);
            }

            // Stack contains "left".  Load the right-hand side operand.
            generator.Pop();
            this.Right.GenerateCode(generator, optimizationInfo);

            // Make sure the output type is consistant.
            if (leftType != rightType)
            {
                if (PrimitiveTypeUtilities.IsNumeric(leftType) == true && PrimitiveTypeUtilities.IsNumeric(rightType) == true)
                {
                    EmitConversion.ToNumber(generator, rightType);
                }
                else
                {
                    EmitConversion.ToAny(generator, rightType);
                }
            }

            // Define the label used above.
            generator.DefineLabelPosition(endOfIf);
        }
        /// <summary>
        /// Generates CIL for the typeof expression.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        private void GenerateTypeof(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // If a return value is not expected, generate only the side-effects.

            /*if (optimizationInfo.SuppressReturnValue == true)
             * {
             *  this.GenerateSideEffects(generator, optimizationInfo);
             *  return;
             * }*/

            if (this.Operand is NameExpression)
            {
                // Unresolvable references must return "undefined" rather than throw an error.
                ((NameExpression)this.Operand).GenerateGet(generator, optimizationInfo, false);
            }
            else
            {
                // Emit code for resolving the value of the operand.
                this.Operand.GenerateCode(generator, optimizationInfo);
            }

            // Convert to System.Object.
            EmitConversion.ToAny(generator, this.Operand.ResultType);

            // Call TypeUtilities.TypeOf(operand).
            generator.Call(ReflectionHelpers.TypeUtilities_TypeOf);
        }
예제 #3
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        /// <summary>
        /// Generates CIL for the statement.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Generate code for the start of the statement.
            var statementLocals = new StatementLocals();

            GenerateStartOfStatement(generator, optimizationInfo, statementLocals);

            if (this.ContributesToEvalResult == true && optimizationInfo.EvalResult != null)
            {
                // Emit the expression.
                this.Expression.GenerateCode(generator, optimizationInfo);

                // Store the result.
                EmitConversion.ToAny(generator, this.Expression.ResultType);
                generator.StoreVariable(optimizationInfo.EvalResult);
            }
            else
            {
                // Emit the expression.
                optimizationInfo.IgnoreReturnValue          = this.Expression;
                optimizationInfo.ReturnValueWasNotGenerated = false;
                this.Expression.GenerateCode(generator, optimizationInfo);
                if (!optimizationInfo.ReturnValueWasNotGenerated)
                {
                    generator.Pop();
                }
            }

            // Generate code for the end of the statement.
            GenerateEndOfStatement(generator, optimizationInfo, statementLocals);
        }
예제 #4
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        /// <summary>
        /// Stores the value on the top of the stack in the reference.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        /// <param name="valueType"> The primitive type of the value that is on the top of the stack. </param>
        public void GenerateSet(ILGenerator generator, OptimizationInfo optimizationInfo, PrimitiveType valueType)
        {
            // TODO: Optimize this.
            //
            // ++ or --
            // GenerateReference
            // DuplicateReference
            // GenerateGet
            // ToNumber
            // if (postfix) Dup/Store in variable
            // Increment/Decrement
            // if (prefix) Dup/Store in variable
            // GenerateSet
            // Load variable
            //
            // +=
            // GenerateReference
            // DuplicateReference
            // GenerateGet
            // Dup/Store in variable
            // GenerateSet
            // Load variable
            //
            // for (in/of)
            // GenerateReference
            // LoadVariable(enumerator)
            // GenerateGet
            // GenerateSet
            //
            // =
            // GenerateReference
            // target.GenerateGet
            // Dup/Store in variable
            // GenerateSet
            // Load variable

            // If we have allocated an IL variable, use it.
            var variableInfo = Scope.FindStaticVariable(Name);

            if (variableInfo != null && variableInfo.Store != null)
            {
                EmitConversion.Convert(generator, valueType, variableInfo.Type);
                generator.StoreVariable(variableInfo.Store);
                return;
            }

            // Fallback: call RuntimeScope.SetValue() or RuntimeScope.SetValueStrict().
            var temp = generator.CreateTemporaryVariable(valueType);

            generator.StoreVariable(temp);
            Scope.GenerateReference(generator, optimizationInfo);
            generator.LoadString(Name);
            generator.LoadVariable(temp);
            EmitConversion.ToAny(generator, valueType);
            generator.LoadInt32(optimizationInfo.SourceSpan.StartLine);
            generator.LoadStringOrNull(optimizationInfo.Source.Path);
            generator.Call(optimizationInfo.StrictMode ? ReflectionHelpers.RuntimeScope_SetValueStrict : ReflectionHelpers.RuntimeScope_SetValue);
            generator.ReleaseTemporaryVariable(temp);
        }
예제 #5
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        /// <summary>
        /// Generates an array containing the argument values for a tagged template literal.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        /// <param name="templateLiteral"> The template literal expression containing the parameter
        /// values. </param>
        internal void GenerateTemplateArgumentsArray(ILGenerator generator, OptimizationInfo optimizationInfo, TemplateLiteralExpression templateLiteral)
        {
            // Generate an array containing the value of each argument.
            generator.LoadInt32(templateLiteral.Values.Count + 1);
            generator.NewArray(typeof(object));

            // Load the first parameter.
            generator.Duplicate();
            generator.LoadInt32(0);

            // The first parameter to the tag function is an array of strings.
            var stringsExpression = new List <Expression>(templateLiteral.Strings.Count);

            foreach (var templateString in templateLiteral.Strings)
            {
                stringsExpression.Add(new LiteralExpression(templateString));
            }
            new LiteralExpression(stringsExpression).GenerateCode(generator, optimizationInfo);
            generator.Duplicate();

            // Now we need the name of the property.
            generator.LoadString("raw");

            // Now generate an array of raw strings.
            var rawStringsExpression = new List <Expression>(templateLiteral.RawStrings.Count);

            foreach (var rawString in templateLiteral.RawStrings)
            {
                rawStringsExpression.Add(new LiteralExpression(rawString));
            }
            new LiteralExpression(rawStringsExpression).GenerateCode(generator, optimizationInfo);

            // Freeze array by calling ObjectInstance Freeze(ObjectInstance).
            generator.CallStatic(ReflectionHelpers.ObjectConstructor_Freeze);

            // Now store the raw strings as a property of the base strings array.
            generator.LoadBoolean(optimizationInfo.StrictMode);
            generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_Object);

            // Freeze array by calling ObjectInstance Freeze(ObjectInstance).
            generator.CallStatic(ReflectionHelpers.ObjectConstructor_Freeze);

            // Store in the array.
            generator.StoreArrayElement(typeof(object));

            // Values are passed as subsequent parameters.
            for (int i = 0; i < templateLiteral.Values.Count; i++)
            {
                generator.Duplicate();
                generator.LoadInt32(i + 1);
                templateLiteral.Values[i].GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, templateLiteral.Values[i].ResultType);
                generator.StoreArrayElement(typeof(object));
            }
        }
예제 #6
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        /// <summary>
        /// Generates CIL for the in operator.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        private void GenerateIn(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Emit the left-hand side expression and convert it to a string.
            this.Left.GenerateCode(generator, optimizationInfo);
            EmitConversion.ToString(generator, this.Left.ResultType);

            // Store the left-hand side expression in a temporary variable.
            var temp = generator.CreateTemporaryVariable(typeof(string));

            generator.StoreVariable(temp);

            // Emit the right-hand side expression.
            this.Right.GenerateCode(generator, optimizationInfo);
            EmitConversion.ToAny(generator, this.Right.ResultType);

            // Check the right-hand side is a javascript object - if not, throw an exception.
            generator.Duplicate();
            generator.IsInstance(typeof(ObjectInstance));
            var endOfTypeCheck = generator.CreateLabel();

            generator.BranchIfTrue(endOfTypeCheck);

            // Throw an nicely formatted exception.
            var rightValue = generator.CreateTemporaryVariable(typeof(object));

            generator.StoreVariable(rightValue);
            generator.LoadEnumValue(ErrorType.TypeError);
            generator.LoadString("The in operator expected an object, but found '{0}' instead");
            generator.LoadInt32(1);
            generator.NewArray(typeof(object));
            generator.Duplicate();
            generator.LoadInt32(0);
            generator.LoadVariable(rightValue);
            generator.Call(ReflectionHelpers.TypeUtilities_TypeOf);
            generator.StoreArrayElement(typeof(object));
            generator.Call(ReflectionHelpers.String_Format);
            generator.LoadInt32(optimizationInfo.SourceSpan.StartLine);
            generator.LoadStringOrNull(optimizationInfo.Source.Path);
            generator.LoadStringOrNull(optimizationInfo.FunctionName);
            generator.NewObject(ReflectionHelpers.JavaScriptException_Constructor_Error);
            generator.Throw();
            generator.DefineLabelPosition(endOfTypeCheck);
            generator.ReleaseTemporaryVariable(rightValue);
            generator.ReinterpretCast(typeof(ObjectInstance));

            // Load the left-hand side expression from the temporary variable.
            generator.LoadVariable(temp);

            // Call ObjectInstance.HasProperty(object)
            generator.Call(ReflectionHelpers.ObjectInstance_HasProperty);

            // Allow the temporary variable to be reused.
            generator.ReleaseTemporaryVariable(temp);
        }
예제 #7
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        /// <summary>
        /// Generates CIL for the instanceof operator.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        private void GenerateInstanceOf(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Emit the left-hand side expression and convert it to an object.
            this.Left.GenerateCode(generator, optimizationInfo);
            EmitConversion.ToAny(generator, this.Left.ResultType);

            // Store the left-hand side expression in a temporary variable.
            var temp = generator.CreateTemporaryVariable(typeof(object));

            generator.StoreVariable(temp);

            // Emit the right-hand side expression.
            this.Right.GenerateCode(generator, optimizationInfo);
            EmitConversion.ToAny(generator, this.Right.ResultType);

            // Check the right-hand side is a function - if not, throw an exception.
            generator.IsInstance(typeof(Library.FunctionInstance));
            generator.Duplicate();
            var endOfTypeCheck = generator.CreateLabel();

            generator.BranchIfNotNull(endOfTypeCheck);

            // Throw an nicely formatted exception.
            var rightValue = generator.CreateTemporaryVariable(typeof(object));

            generator.StoreVariable(rightValue);
            EmitHelpers.LoadScriptEngine(generator);
            generator.LoadString("TypeError");
            generator.LoadString("The instanceof operator expected a function, but found '{0}' instead");
            generator.LoadInt32(1);
            generator.NewArray(typeof(object));
            generator.Duplicate();
            generator.LoadInt32(0);
            generator.LoadVariable(rightValue);
            generator.Call(ReflectionHelpers.TypeUtilities_TypeOf);
            generator.StoreArrayElement(typeof(object));
            generator.Call(ReflectionHelpers.String_Format);
            generator.NewObject(ReflectionHelpers.JavaScriptException_Constructor_Error);
            generator.Throw();
            generator.DefineLabelPosition(endOfTypeCheck);
            generator.ReleaseTemporaryVariable(rightValue);

            // Load the left-hand side expression from the temporary variable.
            generator.LoadVariable(temp);

            // Call FunctionInstance.HasInstance(object)
            generator.Call(ReflectionHelpers.FunctionInstance_HasInstance);

            // Allow the temporary variable to be reused.
            generator.ReleaseTemporaryVariable(temp);
        }
예제 #8
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        /// <summary>
        /// Generates CIL for the statement.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Generate code for the start of the statement.
            var statementLocals = new StatementLocals();

            GenerateStartOfStatement(generator, optimizationInfo, statementLocals);

            // Emit the return value.
            if (this.Value == null)
            {
                EmitHelpers.EmitUndefined(generator);
            }
            else
            {
                this.Value.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, this.Value.ResultType);
            }

            // Determine if this is the last statement in the function.
            bool lastStatement = optimizationInfo.AbstractSyntaxTree is BlockStatement &&
                                 ((BlockStatement)optimizationInfo.AbstractSyntaxTree).Statements.Count > 0 &&
                                 ((BlockStatement)optimizationInfo.AbstractSyntaxTree).Statements[((BlockStatement)optimizationInfo.AbstractSyntaxTree).Statements.Count - 1] == this;

            // The first return statement initializes the variable that holds the return value.
            if (optimizationInfo.ReturnVariable == null)
            {
                optimizationInfo.ReturnVariable = generator.DeclareVariable(typeof(object), "returnValue");
            }

            // Store the return value in a variable.
            generator.StoreVariable(optimizationInfo.ReturnVariable);

            // There is no need to jump to the end of the function if this is the last statement.
            if (lastStatement == false)
            {
                // The first return statement that needs to branch creates the return label.  This is
                // defined in FunctionmethodGenerator.GenerateCode() at the end of the function.
                if (optimizationInfo.ReturnTarget == null)
                {
                    optimizationInfo.ReturnTarget = generator.CreateLabel();
                }

                // Branch to the end of the function.  Note: the return statement might be branching
                // from inside a try { } or finally { } block to outside.  EmitLongJump() handles this.
                optimizationInfo.EmitLongJump(generator, optimizationInfo.ReturnTarget);
            }

            // Generate code for the end of the statement.
            GenerateEndOfStatement(generator, optimizationInfo, statementLocals);
        }
        /// <summary>
        /// Generates an array containing the argument values.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        internal void GenerateArgumentsArray(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Emit the arguments.  The arguments operand can be non-existant, a single expression,
            // or a comma-delimited list.
            if (this.OperandCount < 2)
            {
                // No parameters passed.  Create an empty array.
                generator.LoadInt32(0);
                generator.NewArray(typeof(object));
            }
            else
            {
                // One or more arguments.
                IList <Expression> arguments;
                var argumentsOperand = this.GetRawOperand(1);
                if (argumentsOperand is ListExpression)
                {
                    // Multiple parameters were passed to the function.
                    arguments = ((ListExpression)argumentsOperand).Items;
                }
                else if (argumentsOperand is TemplateLiteralExpression)
                {
                    // Tagged template literal.
                    var templateLiteral = (TemplateLiteralExpression)argumentsOperand;
                    GenerateTemplateArgumentsArray(generator, optimizationInfo, templateLiteral);
                    return;
                }
                else
                {
                    // A single parameter was passed to the function.
                    arguments = new List <Expression>(1)
                    {
                        argumentsOperand
                    };
                }

                // Generate an array containing the value of each argument.
                generator.LoadInt32(arguments.Count);
                generator.NewArray(typeof(object));
                for (int i = 0; i < arguments.Count; i++)
                {
                    generator.Duplicate();
                    generator.LoadInt32(i);
                    arguments[i].GenerateCode(generator, optimizationInfo);
                    EmitConversion.ToAny(generator, arguments[i].ResultType);
                    generator.StoreArrayElement(typeof(object));
                }
            }
        }
예제 #10
0
        /// <summary>
        /// Generates CIL for the statement.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Generate code for the start of the statement.
            var statementLocals = new StatementLocals();
            GenerateStartOfStatement(generator, optimizationInfo, statementLocals);

            // Emit code to throw the given value.
            this.Value.GenerateCode(generator, optimizationInfo);
            EmitConversion.ToAny(generator, this.Value.ResultType);
            generator.LoadInt32(0);
            generator.LoadNull();
            generator.NewObject(ReflectionHelpers.JavaScriptException_Constructor_Object);
            generator.Throw();

            // Generate code for the end of the statement.
            GenerateEndOfStatement(generator, optimizationInfo, statementLocals);
        }
예제 #11
0
        /// <summary>
        /// Generates CIL for the expression.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Operands for ArrayConstructor.New() are: an ArrayConstructor instance (ArrayConstructor), an array (object[])
            // ArrayConstructor
            EmitHelpers.LoadScriptEngine(generator);
            generator.Call(ReflectionHelpers.ScriptEngine_Array);

            // object[]
            generator.LoadInt32(Items.Count);
            generator.NewArray(typeof(object));
            for (int i = 0; i < Items.Count; i++)
            {
                // Operands for StoreArrayElement() are: an array (object[]), index (int), value (object).
                // Array
                generator.Duplicate();

                // Index
                generator.LoadInt32(i);

                // Value
                var elementExpression = Items[i];
                if (elementExpression == null)
                {
                    generator.LoadNull();
                }
                else
                {
                    elementExpression.GenerateCode(generator, optimizationInfo);
                    EmitConversion.ToAny(generator, elementExpression.ResultType);
                }

                // Store the element value.
                generator.StoreArrayElement(typeof(object));
            }

            // ArrayConstructor.New(object[])
            generator.Call(ReflectionHelpers.Array_New);
        }
예제 #12
0
        /// <summary>
        /// Generates CIL for the statement.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Generate code for the start of the statement.
            var statementLocals = new StatementLocals()
            {
                NonDefaultBreakStatementBehavior = true
            };

            GenerateStartOfStatement(generator, optimizationInfo, statementLocals);

            // We need a label for each case clause and one for the default case.
            var     jumpTargets  = new ILLabel[this.CaseClauses.Count];
            int     defaultIndex = -1;
            ILLabel endOfSwitch  = generator.CreateLabel();

            // Generate code for the switch value.
            var startOfSwitch = generator.CreateLabel();

            this.Value.GenerateCode(generator, optimizationInfo);
            EmitConversion.ToAny(generator, this.Value.ResultType);

            // Save the switch value in a variable.
            var switchValue = generator.CreateTemporaryVariable(typeof(object));

            generator.StoreVariable(switchValue);

            for (int i = 0; i < this.CaseClauses.Count; i++)
            {
                var caseClause = this.CaseClauses[i];

                // Create a label for each clause.
                jumpTargets[i] = generator.CreateLabel();

                if (caseClause.Value == null)
                {
                    // This is a default clause.
                    defaultIndex = i;
                    continue;
                }

                // TypeComparer.StrictEquals(switchValue, caseValue)
                generator.LoadVariable(switchValue);
                caseClause.Value.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, caseClause.Value.ResultType);
                generator.Call(ReflectionHelpers.TypeComparer_StrictEquals);

                // if (TypeComparer.StrictEquals(switchValue, caseValue) == true)
                //     goto case i
                generator.BranchIfTrue(jumpTargets[i]);
            }

            // None of the cases matched, jump to the default clause or the end of the switch.
            if (defaultIndex >= 0)
            {
                generator.Branch(jumpTargets[defaultIndex]);
            }
            else
            {
                generator.Branch(endOfSwitch);
            }

            for (int i = 0; i < this.CaseClauses.Count; i++)
            {
                // Define a label at the start of the case clause.
                generator.DefineLabelPosition(jumpTargets[i]);

                // Set up the information needed by the break statement.
                optimizationInfo.PushBreakOrContinueInfo(this.Labels, endOfSwitch, null, labelledOnly: false);

                // Emit the case clause statements.
                foreach (var statement in this.CaseClauses[i].BodyStatements)
                {
                    statement.GenerateCode(generator, optimizationInfo);
                }

                // Revert the information needed by the break statement.
                optimizationInfo.PopBreakOrContinueInfo();
            }

            // Define a label for the end of the switch statement.
            generator.DefineLabelPosition(endOfSwitch);

            // Release the switch value variable for use elsewhere.
            generator.ReleaseTemporaryVariable(switchValue);

            // Generate code for the end of the statement.
            GenerateEndOfStatement(generator, optimizationInfo, statementLocals);
        }
예제 #13
0
        /// <summary>
        /// Generates IL for the script.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        protected override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Method signature: object FunctionDelegate(Compiler.Scope scope, object thisObject, Library.FunctionInstance functionObject, object[] arguments)

            // Initialize the scope (note: the initial scope for a function is always declarative).
            this.InitialScope.GenerateScopeCreation(generator, optimizationInfo);

            // In ES3 the "this" value must be an object.  See 10.4.3 in the spec.
            if (this.StrictMode == false && this.MethodOptimizationHints.HasThis == true)
            {
                // if (thisObject == null || thisObject == Null.Value || thisObject == Undefined.Value)
                EmitHelpers.LoadThis(generator);
                generator.LoadNull();
                generator.CompareEqual();
                EmitHelpers.LoadThis(generator);
                EmitHelpers.EmitNull(generator);
                generator.CompareEqual();
                generator.BitwiseOr();
                EmitHelpers.LoadThis(generator);
                EmitHelpers.EmitUndefined(generator);
                generator.CompareEqual();
                generator.BitwiseOr();

                // {
                var startOfFalse = generator.CreateLabel();
                generator.BranchIfFalse(startOfFalse);

                // thisObject = engine.Global;
                EmitHelpers.LoadScriptEngine(generator);
                generator.Call(ReflectionHelpers.ScriptEngine_Global);

                // } else {
                var endOfIf = generator.CreateLabel();
                generator.Branch(endOfIf);
                generator.DefineLabelPosition(startOfFalse);

                // thisObject = TypeConverter.ToObject(thisObject);
                EmitHelpers.LoadThis(generator);
                EmitConversion.ToObject(generator, PrimitiveType.Any, optimizationInfo);

                // }
                generator.DefineLabelPosition(endOfIf);
                EmitHelpers.StoreThis(generator);
            }

            // Transfer the function name into the scope.
            if (string.IsNullOrEmpty(this.Name) == false &&
                (this.DeclarationType != FunctionDeclarationType.Getter && this.DeclarationType != FunctionDeclarationType.Setter) &&
                this.Arguments.Any(a => a.Name == this.Name) == false &&
                optimizationInfo.MethodOptimizationHints.HasVariable(this.Name))
            {
                EmitHelpers.LoadFunction(generator);
                var functionName = new NameExpression(this.InitialScope, this.Name);
                functionName.GenerateSet(generator, optimizationInfo, PrimitiveType.Any, false);
            }

            // Transfer the arguments object into the scope.
            if (this.MethodOptimizationHints.HasArguments == true && this.Arguments.Any(a => a.Name == "arguments") == false)
            {
                // prototype
                EmitHelpers.LoadScriptEngine(generator);
                generator.Call(ReflectionHelpers.ScriptEngine_Object);
                generator.Call(ReflectionHelpers.FunctionInstance_InstancePrototype);
                // callee
                EmitHelpers.LoadFunction(generator);
                generator.CastClass(typeof(Library.UserDefinedFunction));
                // scope
                EmitHelpers.LoadScope(generator);
                generator.CastClass(typeof(DeclarativeScope));
                // argumentValues
                EmitHelpers.LoadArgumentsArray(generator);
                generator.NewObject(ReflectionHelpers.Arguments_Constructor);
                var arguments = new NameExpression(this.InitialScope, "arguments");
                arguments.GenerateSet(generator, optimizationInfo, PrimitiveType.Any, false);
            }

            // Transfer the argument values into the scope.
            // Note: the arguments array can be smaller than expected.
            if (this.Arguments.Count > 0)
            {
                for (int i = 0; i < this.Arguments.Count; i++)
                {
                    // Check if a duplicate argument name exists.
                    bool duplicate = false;
                    for (int j = i + 1; j < this.Arguments.Count; j++)
                    {
                        if (this.Arguments[i].Name == this.Arguments[j].Name)
                        {
                            duplicate = true;
                            break;
                        }
                    }
                    if (duplicate == true)
                    {
                        continue;
                    }

                    var loadDefaultValue = generator.CreateLabel();
                    var storeValue       = generator.CreateLabel();

                    // Check if an array element exists.
                    EmitHelpers.LoadArgumentsArray(generator);
                    generator.LoadArrayLength();
                    generator.LoadInt32(i);
                    generator.BranchIfLessThanOrEqual(loadDefaultValue);

                    // Load the parameter value from the parameters array.
                    EmitHelpers.LoadArgumentsArray(generator);
                    generator.LoadInt32(i);
                    generator.LoadArrayElement(typeof(object));

                    if (this.Arguments[i].DefaultValue == null)
                    {
                        // Branch to the part where it stores the value.
                        generator.Branch(storeValue);

                        // Load undefined.
                        generator.DefineLabelPosition(loadDefaultValue);
                        EmitHelpers.EmitUndefined(generator);
                    }
                    else
                    {
                        // Check if it's undefined.
                        generator.Duplicate();
                        EmitHelpers.EmitUndefined(generator);
                        generator.BranchIfNotEqual(storeValue);
                        generator.Pop();

                        // Load the default value.
                        generator.DefineLabelPosition(loadDefaultValue);
                        this.Arguments[i].DefaultValue.GenerateCode(generator, optimizationInfo);
                        EmitConversion.ToAny(generator, this.Arguments[i].DefaultValue.ResultType);
                    }

                    // Store the value in the scope.
                    generator.DefineLabelPosition(storeValue);
                    var argument = new NameExpression(this.InitialScope, this.Arguments[i].Name);
                    argument.GenerateSet(generator, optimizationInfo, PrimitiveType.Any, false);
                }
            }

            // Initialize any declarations.
            this.InitialScope.GenerateDeclarations(generator, optimizationInfo);

            // Generate code for the body of the function.
            this.AbstractSyntaxTree.GenerateCode(generator, optimizationInfo);

            // Define the return target - this is where the return statement jumps to.
            // ReturnTarget can be null if there were no return statements.
            if (optimizationInfo.ReturnTarget != null)
            {
                generator.DefineLabelPosition(optimizationInfo.ReturnTarget);
            }

            // Load the return value.  If the variable is null, there were no return statements.
            if (optimizationInfo.ReturnVariable != null)
            {
                // Return the value stored in the variable.  Will be null if execution hits the end
                // of the function without encountering any return statements.
                generator.LoadVariable(optimizationInfo.ReturnVariable);
            }
            else
            {
                // There were no return statements - return null.
                generator.LoadNull();
            }
        }
예제 #14
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        /// <summary>
        /// Generates CIL for the expression.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // If the class was named, then we need to create a new scope to hold the name.
            if (Name != null)
            {
                Scope.GenerateScopeCreation(generator, optimizationInfo);
            }

            // engine
            EmitHelpers.LoadScriptEngine(generator);

            // name
            generator.LoadStringOrNull(this.Name);

            // extends
            if (Extends == null)
            {
                generator.LoadNull();
            }
            else
            {
                Extends.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, Extends.ResultType);
            }

            // constructor
            if (Constructor == null)
            {
                generator.LoadNull();
            }
            else
            {
                Constructor.GenerateCode(generator, optimizationInfo);
            }

            // ConstructClass(ScriptEngine engine, string name, object extends, FunctionInstance constructor)
            generator.CallStatic(ReflectionHelpers.ReflectionHelpers_ConstructClass);

            // Create a variable to hold the container instance value.
            var containerVariable = generator.CreateTemporaryVariable(typeof(ObjectInstance));

            foreach (var member in this.Members)
            {
                // class.InstancePrototype
                generator.Duplicate();
                if (!member.Name.IsStatic)
                {
                    generator.Call(ReflectionHelpers.FunctionInstance_InstancePrototype);
                }

                // Store this in a variable so that FunctionExpression.GenerateCode can retrieve it.
                generator.Duplicate();
                generator.StoreVariable(containerVariable);

                // The key can be a property name or an expression that evaluates to a name.
                if (member.Name.HasStaticName)
                {
                    generator.LoadString(member.Name.StaticName);
                }
                else
                {
                    member.Name.ComputedName.GenerateCode(generator, optimizationInfo);
                    EmitConversion.ToPropertyKey(generator, member.Name.ComputedName.ResultType);
                }

                // Emit the function value.
                member.ContainerVariable = containerVariable;
                member.GenerateCode(generator, optimizationInfo);
                member.ContainerVariable = null;

                if (member.Name.IsGetter)
                {
                    // Add a getter to the object.
                    generator.Call(ReflectionHelpers.ReflectionHelpers_SetClassGetter);
                }
                else if (member.Name.IsSetter)
                {
                    // Add a setter to the object.
                    generator.Call(ReflectionHelpers.ReflectionHelpers_SetClassSetter);
                }
                else
                {
                    // Add a new property to the object.
                    generator.Call(ReflectionHelpers.ReflectionHelpers_SetClassValue);
                }
            }

            // Release the variable that we created above.
            generator.ReleaseTemporaryVariable(containerVariable);

            // Store the class name in the scope.
            if (Name != null)
            {
                generator.Duplicate();
                new NameExpression(Scope, Name).GenerateSet(generator, optimizationInfo, PrimitiveType.Object);
            }
        }
예제 #15
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        /// <summary>
        /// Generates CIL for the relational operators.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        private void GenerateRelational(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Get the statically-determined types of the left and right operands.
            PrimitiveType leftType  = this.Left.ResultType;
            PrimitiveType rightType = this.Right.ResultType;

            // The relational operators compare strings if both of the operands are strings.
            if (leftType == PrimitiveType.String && rightType == PrimitiveType.String)
            {
                // Both of the operands are strings.

                // Load the left hand side operand onto the stack.
                this.Left.GenerateCode(generator, optimizationInfo);

                // Load the right hand side operand onto the stack.
                this.Right.GenerateCode(generator, optimizationInfo);

                // Compare the two strings.
                generator.Call(ReflectionHelpers.String_CompareOrdinal);
                switch (this.OperatorType)
                {
                case OperatorType.LessThan:
                    generator.LoadInt32(0);
                    generator.CompareLessThan();
                    break;

                case OperatorType.LessThanOrEqual:
                    generator.LoadInt32(1);
                    generator.CompareLessThan();
                    break;

                case OperatorType.GreaterThan:
                    generator.LoadInt32(0);
                    generator.CompareGreaterThan();
                    break;

                case OperatorType.GreaterThanOrEqual:
                    generator.LoadInt32(-1);
                    generator.CompareGreaterThan();
                    break;
                }
            }
            else if (leftType == PrimitiveType.Int32 && rightType == PrimitiveType.Int32)
            {
                // Both of the operands are integers.

                // Load the left hand side operand onto the stack.
                this.Left.GenerateCode(generator, optimizationInfo);

                // Load the right hand side operand onto the stack.
                this.Right.GenerateCode(generator, optimizationInfo);

                // Compare the two numbers.
                switch (this.OperatorType)
                {
                case OperatorType.LessThan:
                    generator.CompareLessThan();
                    break;

                case OperatorType.GreaterThan:
                    generator.CompareGreaterThan();
                    break;

                case OperatorType.LessThanOrEqual:
                    // a <= b   <-->   (a > b) == false
                    generator.CompareGreaterThan();
                    generator.LoadBoolean(false);
                    generator.CompareEqual();
                    break;

                case OperatorType.GreaterThanOrEqual:
                    // a >= b   <-->   (a < b) == false
                    generator.CompareLessThan();
                    generator.LoadBoolean(false);
                    generator.CompareEqual();
                    break;
                }
            }
            else if (PrimitiveTypeUtilities.IsNumeric(leftType) || PrimitiveTypeUtilities.IsNumeric(rightType))
            {
                // At least one of the operands is a number.

                // Load the left hand side operand onto the stack.
                this.Left.GenerateCode(generator, optimizationInfo);

                // Convert the operand to a number.
                EmitConversion.ToNumber(generator, leftType);

                // Load the right hand side operand onto the stack.
                this.Right.GenerateCode(generator, optimizationInfo);

                // Convert the operand to a number.
                EmitConversion.ToNumber(generator, rightType);

                // Compare the two numbers.
                switch (this.OperatorType)
                {
                case OperatorType.LessThan:
                    generator.CompareLessThan();
                    break;

                case OperatorType.GreaterThan:
                    generator.CompareGreaterThan();
                    break;

                case OperatorType.LessThanOrEqual:
                    // a <= b   <-->   (a > b) == false
                    generator.CompareGreaterThanUnsigned();
                    generator.LoadBoolean(false);
                    generator.CompareEqual();
                    break;

                case OperatorType.GreaterThanOrEqual:
                    // a >= b   <-->   (a < b) == false
                    generator.CompareLessThanUnsigned();
                    generator.LoadBoolean(false);
                    generator.CompareEqual();
                    break;
                }
            }
            else
            {
                // It is unknown whether one of the operands is a string.

                // Load the left hand side operand onto the stack.
                this.Left.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, leftType);

                // Load the right hand side operand onto the stack.
                this.Right.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, rightType);

                switch (this.OperatorType)
                {
                case OperatorType.LessThan:
                    generator.Call(ReflectionHelpers.TypeComparer_LessThan);
                    break;

                case OperatorType.LessThanOrEqual:
                    generator.Call(ReflectionHelpers.TypeComparer_LessThanOrEqual);
                    break;

                case OperatorType.GreaterThan:
                    generator.Call(ReflectionHelpers.TypeComparer_GreaterThan);
                    break;

                case OperatorType.GreaterThanOrEqual:
                    generator.Call(ReflectionHelpers.TypeComparer_GreaterThanOrEqual);
                    break;
                }
            }
        }
예제 #16
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        /// <summary>
        /// Generates CIL for the addition operation.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        private void GenerateAdd(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Get the statically-determined types of the left and right operands.
            PrimitiveType leftType  = this.Left.ResultType;
            PrimitiveType rightType = this.Right.ResultType;

            // The add operator adds two strings together if at least one of the operands
            // is a string, otherwise it adds two numbers.
            if (PrimitiveTypeUtilities.IsString(leftType) || PrimitiveTypeUtilities.IsString(rightType))
            {
                // If at least one of the operands is a string, then the add operator concatenates.

                // Load the left-hand side onto the stack.
                this.Left.GenerateCode(generator, optimizationInfo);

                // Convert the operand to a concatenated string.
                EmitConversion.ToPrimitive(generator, leftType, PrimitiveTypeHint.None);
                EmitConversion.ToConcatenatedString(generator, leftType);

                // Load the right-hand side onto the stack.
                this.Right.GenerateCode(generator, optimizationInfo);

                if (rightType == PrimitiveType.String)
                {
                    // Concatenate the two strings.
                    generator.Call(ReflectionHelpers.ConcatenatedString_Concatenate_String);
                }
                else if (rightType == PrimitiveType.ConcatenatedString)
                {
                    // Concatenate the two strings.
                    generator.Call(ReflectionHelpers.ConcatenatedString_Concatenate_ConcatenatedString);
                }
                else
                {
                    // Convert the operand to an object.
                    EmitConversion.ToPrimitive(generator, rightType, PrimitiveTypeHint.None);
                    EmitConversion.ToAny(generator, rightType);

                    // Concatenate the two strings.
                    generator.Call(ReflectionHelpers.ConcatenatedString_Concatenate_Object);
                }
            }
            else if (leftType != PrimitiveType.Any && leftType != PrimitiveType.Object &&
                     rightType != PrimitiveType.Any && rightType != PrimitiveType.Object)
            {
                // Neither of the operands are strings.

                // Load the left hand side onto the stack.
                this.Left.GenerateCode(generator, optimizationInfo);

                // Convert the operand to a number.
                EmitConversion.ToNumber(generator, leftType);

                // Load the right hand side onto the stack.
                this.Right.GenerateCode(generator, optimizationInfo);

                // Convert the operand to a number.
                EmitConversion.ToNumber(generator, rightType);

                // Add the two numbers.
                generator.Add();
            }
            else
            {
                // It is unknown whether the operands are strings.

                // Load the left hand side onto the stack.
                this.Left.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, leftType);

                // Load the right hand side onto the stack.
                this.Right.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, rightType);

                // Add the two objects.
                generator.Call(ReflectionHelpers.TypeUtilities_Add);
            }
        }
예제 #17
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        /// <summary>
        /// Generates CIL for the expression.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Check if this is a direct call to eval().
            if (this.Target is NameExpression && ((NameExpression)this.Target).Name == "eval")
            {
                GenerateEval(generator, optimizationInfo);
                return;
            }

            // Check if this is a super() call.
            if (this.Target is SuperExpression)
            {
                // executionContext.CallSuperClass(arguments)
                EmitHelpers.LoadExecutionContext(generator);
                GenerateArgumentsArray(generator, optimizationInfo);
                generator.Call(ReflectionHelpers.ExecutionContext_CallSuperClass);
                return;
            }

            // Emit the function instance first.
            ILLocalVariable targetBase = null;

            if (this.Target is MemberAccessExpression)
            {
                // The function is a member access expression (e.g. "Math.cos()").

                // Evaluate the left part of the member access expression.
                var baseExpression = ((MemberAccessExpression)this.Target).Base;
                baseExpression.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, baseExpression.ResultType);
                targetBase = generator.CreateTemporaryVariable(typeof(object));
                generator.StoreVariable(targetBase);

                // Evaluate the right part of the member access expression.
                var memberAccessExpression = new MemberAccessExpression(((MemberAccessExpression)this.Target).Operator);
                memberAccessExpression.Push(new TemporaryVariableExpression(targetBase));
                memberAccessExpression.Push(((MemberAccessExpression)this.Target).GetOperand(1));
                memberAccessExpression.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, this.Target.ResultType);
            }
            else
            {
                // Something else (e.g. "my_func()").
                this.Target.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, this.Target.ResultType);
            }

            // Check the object really is a function - if not, throw an exception.
            generator.Duplicate();
            generator.IsInstance(typeof(FunctionInstance));
            var endOfTypeCheck = generator.CreateLabel();

            generator.BranchIfTrue(endOfTypeCheck);

            // Throw an nicely formatted exception.
            generator.Pop();
            EmitHelpers.EmitThrow(generator, ErrorType.TypeError, string.Format("'{0}' is not a function", this.Target.ToString()), optimizationInfo);
            generator.DefineLabelPosition(endOfTypeCheck);

            // Pass in the path, function name and line.
            generator.ReinterpretCast(typeof(FunctionInstance));
            generator.LoadStringOrNull(optimizationInfo.Source.Path);
            generator.LoadStringOrNull(optimizationInfo.FunctionName);
            generator.LoadInt32(optimizationInfo.SourceSpan.StartLine);

            // Generate code to produce the "this" value.  There are three cases.
            if (this.Target is NameExpression)
            {
                // 1. The function is a name expression (e.g. "parseInt()").
                //    If we are inside a with() block, then there is an implicit 'this' value,
                //    otherwise 'this' is undefined.
                Scope.GenerateReference(generator, optimizationInfo);
                generator.Call(ReflectionHelpers.RuntimeScope_ImplicitThis);
            }
            else if (this.Target is MemberAccessExpression targetMemberAccessExpression)
            {
                // 2. The function is a member access expression (e.g. "Math.cos()").
                //    In this case this = Math.
                //    Unless it's a super call like super.blah().
                if (targetMemberAccessExpression.Base is SuperExpression)
                {
                    EmitHelpers.LoadThis(generator);
                }
                else
                {
                    generator.LoadVariable(targetBase);
                }
            }
            else
            {
                // 3. Neither of the above (e.g. "(function() { return 5 })()")
                //    In this case this = undefined.
                EmitHelpers.EmitUndefined(generator);
            }

            // Emit an array containing the function arguments.
            GenerateArgumentsArray(generator, optimizationInfo);

            // Call FunctionInstance.CallLateBound(thisValue, argumentValues)
            generator.Call(ReflectionHelpers.FunctionInstance_CallWithStackTrace);

            // Allow reuse of the temporary variable.
            if (targetBase != null)
            {
                generator.ReleaseTemporaryVariable(targetBase);
            }
        }
        /// <summary>
        /// Generates IL for the script.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        protected override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Method signature: object FunctionDelegate(Compiler.Scope scope, object thisObject, Library.FunctionInstance functionObject, object[] arguments)

            // Initialize the scope (note: the initial scope for a function is always declarative).
            this.BaseScope.GenerateScopeCreation(generator, optimizationInfo);

            // In ES3 the "this" value must be an object.  See 10.4.3 in the spec.
            if (this.StrictMode == false && this.MethodOptimizationHints.HasThis == true)
            {
                // context.ConvertThisToObject();
                EmitHelpers.LoadExecutionContext(generator);
                generator.Call(ReflectionHelpers.ExecutionContext_ConvertThisToObject);
            }

            // Transfer the function name into the scope.
            if (Name.HasStaticName && !Name.IsGetter && !Name.IsSetter &&
                this.Arguments.Any(a => a.Name == Name.StaticName) == false &&
                optimizationInfo.MethodOptimizationHints.HasVariable(Name.StaticName))
            {
                EmitHelpers.LoadFunction(generator);
                var functionName = new NameExpression(this.BaseScope, Name.StaticName);
                functionName.GenerateSet(generator, optimizationInfo, PrimitiveType.Any);
            }

            // Transfer the arguments object into the scope.
            if (this.MethodOptimizationHints.HasArguments == true && this.Arguments.Any(a => a.Name == "arguments") == false)
            {
                // executionContext.CreateArgumentsInstance(object[] arguments)
                EmitHelpers.LoadExecutionContext(generator);
                this.BaseScope.GenerateReference(generator, optimizationInfo);
                EmitHelpers.LoadArgumentsArray(generator);
                generator.Call(ReflectionHelpers.ExecutionContext_CreateArgumentsInstance);
                var arguments = new NameExpression(this.BaseScope, "arguments");
                arguments.GenerateSet(generator, optimizationInfo, PrimitiveType.Any);
            }

            // Transfer the argument values into the scope.
            // Note: the arguments array can be smaller than expected.
            if (this.Arguments.Count > 0)
            {
                for (int i = 0; i < this.Arguments.Count; i++)
                {
                    // Check if a duplicate argument name exists.
                    bool duplicate = false;
                    for (int j = i + 1; j < this.Arguments.Count; j++)
                    {
                        if (this.Arguments[i].Name == this.Arguments[j].Name)
                        {
                            duplicate = true;
                            break;
                        }
                    }
                    if (duplicate == true)
                    {
                        continue;
                    }

                    var loadDefaultValue = generator.CreateLabel();
                    var storeValue       = generator.CreateLabel();

                    // Check if an array element exists.
                    EmitHelpers.LoadArgumentsArray(generator);
                    generator.LoadArrayLength();
                    generator.LoadInt32(i);
                    generator.BranchIfLessThanOrEqual(loadDefaultValue);

                    // Load the parameter value from the parameters array.
                    EmitHelpers.LoadArgumentsArray(generator);
                    generator.LoadInt32(i);
                    generator.LoadArrayElement(typeof(object));

                    if (this.Arguments[i].DefaultValue == null)
                    {
                        // Branch to the part where it stores the value.
                        generator.Branch(storeValue);

                        // Load undefined.
                        generator.DefineLabelPosition(loadDefaultValue);
                        EmitHelpers.EmitUndefined(generator);
                        generator.ReinterpretCast(typeof(object));
                    }
                    else
                    {
                        // Check if it's undefined.
                        generator.Duplicate();
                        EmitHelpers.EmitUndefined(generator);
                        generator.ReinterpretCast(typeof(object));
                        generator.BranchIfNotEqual(storeValue);
                        generator.Pop();

                        // Load the default value.
                        generator.DefineLabelPosition(loadDefaultValue);
                        this.Arguments[i].DefaultValue.GenerateCode(generator, optimizationInfo);
                        EmitConversion.ToAny(generator, this.Arguments[i].DefaultValue.ResultType);
                    }

                    // Store the value in the scope.
                    generator.DefineLabelPosition(storeValue);
                    var argument = new NameExpression(this.BaseScope, this.Arguments[i].Name);
                    argument.GenerateSet(generator, optimizationInfo, PrimitiveType.Any);
                }
            }

            // Initialize any declarations.
            this.BaseScope.GenerateHoistedDeclarations(generator, optimizationInfo);

            // Generate code for the body of the function.
            this.AbstractSyntaxTree.GenerateCode(generator, optimizationInfo);

            // Define the return target - this is where the return statement jumps to.
            // ReturnTarget can be null if there were no return statements.
            if (optimizationInfo.ReturnTarget != null)
            {
                generator.DefineLabelPosition(optimizationInfo.ReturnTarget);
            }

            // Load the return value.  If the variable is null, there were no return statements.
            if (optimizationInfo.ReturnVariable != null)
            {
                // Return the value stored in the variable.  Will be null if execution hits the end
                // of the function without encountering any return statements.
                generator.LoadVariable(optimizationInfo.ReturnVariable);
            }
            else
            {
                // There were no return statements - return null.
                generator.LoadNull();
            }
        }
        /// <summary>
        /// Generates CIL for the expression.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Literals cannot have side-effects so if a return value is not expected then generate
            // nothing.
            //if (optimizationInfo.SuppressReturnValue == true)
            //    return;

            if (this.Value is int)
            {
                generator.LoadInt32((int)this.Value);
            }
            else if (this.Value is double)
            {
                generator.LoadDouble((double)this.Value);
            }
            else if (this.Value is string)
            {
                generator.LoadString((string)this.Value);
            }
            else if (this.Value is bool)
            {
                generator.LoadBoolean((bool)this.Value);
            }
            else if (this.Value is RegularExpressionLiteral)
            {
                // RegExp
                var sharedRegExpVariable = optimizationInfo.GetRegExpVariable(generator, (RegularExpressionLiteral)this.Value);
                var label1 = generator.CreateLabel();
                var label2 = generator.CreateLabel();

                // if (sharedRegExp == null) {
                generator.LoadVariable(sharedRegExpVariable);
                generator.LoadNull();
                generator.BranchIfNotEqual(label1);

                // sharedRegExp = Global.RegExp.Construct(source, flags)
                EmitHelpers.LoadScriptEngine(generator);
                generator.Call(ReflectionHelpers.ScriptEngine_RegExp);
                generator.LoadString(((RegularExpressionLiteral)this.Value).Pattern);
                generator.LoadString(((RegularExpressionLiteral)this.Value).Flags);
                generator.Call(ReflectionHelpers.RegExp_Construct);
                generator.Duplicate();
                generator.StoreVariable(sharedRegExpVariable);

                // } else {
                generator.Branch(label2);
                generator.DefineLabelPosition(label1);

                // Global.RegExp.Construct(sharedRegExp, flags)
                EmitHelpers.LoadScriptEngine(generator);
                generator.Call(ReflectionHelpers.ScriptEngine_RegExp);
                generator.LoadVariable(sharedRegExpVariable);
                generator.LoadNull();
                generator.Call(ReflectionHelpers.RegExp_Construct);

                // }
                generator.DefineLabelPosition(label2);
            }
            else if (this.Value == Null.Value)
            {
                // Null.
                EmitHelpers.EmitNull(generator);
            }
            else if (this.Value == Undefined.Value)
            {
                // Undefined.
                EmitHelpers.EmitUndefined(generator);
            }
            else if (this.Value is List <Expression> )
            {
                // Construct an array literal.
                var arrayLiteral = (List <Expression>) this.Value;

                // Operands for ArrayConstructor.New() are: an ArrayConstructor instance (ArrayConstructor), an array (object[])
                // ArrayConstructor
                EmitHelpers.LoadScriptEngine(generator);
                generator.Call(ReflectionHelpers.ScriptEngine_Array);

                // object[]
                generator.LoadInt32(arrayLiteral.Count);
                generator.NewArray(typeof(object));
                for (int i = 0; i < arrayLiteral.Count; i++)
                {
                    // Operands for StoreArrayElement() are: an array (object[]), index (int), value (object).
                    // Array
                    generator.Duplicate();

                    // Index
                    generator.LoadInt32(i);

                    // Value
                    var elementExpression = arrayLiteral[i];
                    if (elementExpression == null)
                    {
                        generator.LoadNull();
                    }
                    else
                    {
                        elementExpression.GenerateCode(generator, optimizationInfo);
                        EmitConversion.ToAny(generator, elementExpression.ResultType);
                    }

                    // Store the element value.
                    generator.StoreArrayElement(typeof(object));
                }

                // ArrayConstructor.New(object[])
                generator.Call(ReflectionHelpers.Array_New);
            }
            else if (this.Value is Dictionary <string, object> )
            {
                // This is an object literal.
                var properties = (Dictionary <string, object>) this.Value;

                // Create a new object.
                EmitHelpers.LoadScriptEngine(generator);
                generator.Call(ReflectionHelpers.ScriptEngine_Object);
                generator.Call(ReflectionHelpers.Object_Construct);

                foreach (var keyValuePair in properties)
                {
                    string propertyName  = keyValuePair.Key;
                    object propertyValue = keyValuePair.Value;

                    generator.Duplicate();
                    generator.LoadString(propertyName);
                    if (propertyValue is Expression)
                    {
                        // Add a new property to the object.
                        var dataPropertyValue = (Expression)propertyValue;
                        dataPropertyValue.GenerateCode(generator, optimizationInfo);
                        // Support the inferred function displayName property.
                        if (dataPropertyValue is FunctionExpression)
                        {
                            ((FunctionExpression)dataPropertyValue).GenerateDisplayName(generator, optimizationInfo, propertyName, false);
                        }
                        EmitConversion.ToAny(generator, dataPropertyValue.ResultType);
                        generator.LoadBoolean(optimizationInfo.StrictMode);
                        generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_String);
                    }
                    else if (propertyValue is Parser.ObjectLiteralAccessor)
                    {
                        // Add a new getter/setter to the object.
                        var accessorValue = (Parser.ObjectLiteralAccessor)propertyValue;
                        if (accessorValue.Getter != null)
                        {
                            accessorValue.Getter.GenerateCode(generator, optimizationInfo);
                            // Support the inferred function displayName property.
                            accessorValue.Getter.GenerateDisplayName(generator, optimizationInfo, "get " + propertyName, true);
                            EmitConversion.ToAny(generator, accessorValue.Getter.ResultType);
                        }
                        else
                        {
                            generator.LoadNull();
                        }
                        if (accessorValue.Setter != null)
                        {
                            accessorValue.Setter.GenerateCode(generator, optimizationInfo);
                            // Support the inferred function displayName property.
                            accessorValue.Setter.GenerateDisplayName(generator, optimizationInfo, "set " + propertyName, true);
                            EmitConversion.ToAny(generator, accessorValue.Setter.ResultType);
                        }
                        else
                        {
                            generator.LoadNull();
                        }
                        generator.LoadInt32((int)Library.PropertyAttributes.FullAccess);
                        generator.NewObject(ReflectionHelpers.PropertyDescriptor_Constructor3);
                        generator.LoadBoolean(false);
                        generator.Call(ReflectionHelpers.ObjectInstance_DefineProperty);
                        generator.Pop();
                    }
                    else
                    {
                        throw new InvalidOperationException("Invalid property value type in object literal.");
                    }
                }
            }
            else
            {
                throw new NotImplementedException("Unknown literal type.");
            }
        }
예제 #20
0
        /// <summary>
        /// Generates CIL for the statement.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Generate code for the start of the statement.
            var statementLocals = new StatementLocals()
            {
                NonDefaultBreakStatementBehavior = true, NonDefaultSourceSpanBehavior = true
            };

            GenerateStartOfStatement(generator, optimizationInfo, statementLocals);

            // Construct a loop expression.
            // var enumerator = TypeUtilities.EnumeratePropertyNames(rhs).GetEnumerator();
            // while (true) {
            //   continue-target:
            //   if (enumerator.MoveNext() == false)
            //     goto break-target;
            //   lhs = enumerator.Current;
            //
            //   <body statements>
            // }
            // break-target:

            // Call IEnumerable<string> EnumeratePropertyNames(ScriptEngine engine, object obj)
            optimizationInfo.MarkSequencePoint(generator, this.TargetObjectSourceSpan);
            EmitHelpers.LoadScriptEngine(generator);
            this.TargetObject.GenerateCode(generator, optimizationInfo);
            EmitConversion.ToAny(generator, this.TargetObject.ResultType);
            generator.Call(ReflectionHelpers.TypeUtilities_EnumeratePropertyNames);

            // Call IEnumerable<string>.GetEnumerator()
            generator.Call(ReflectionHelpers.IEnumerable_String_GetEnumerator);

            // Store the enumerator in a temporary variable.
            var enumerator = generator.CreateTemporaryVariable(typeof(IEnumerator <string>));

            generator.StoreVariable(enumerator);

            var breakTarget    = generator.CreateLabel();
            var continueTarget = generator.DefineLabelPosition();

            // Generate the scope variable if necessary.
            this.Scope.GenerateScopeCreation(generator, optimizationInfo);

            //   if (enumerator.MoveNext() == false)
            //     goto break-target;
            generator.LoadVariable(enumerator);
            generator.Call(ReflectionHelpers.IEnumerator_MoveNext);
            generator.BranchIfFalse(breakTarget);

            // lhs = enumerator.Current;
            this.Variable.GenerateReference(generator, optimizationInfo);
            generator.LoadVariable(enumerator);
            generator.Call(ReflectionHelpers.IEnumerator_String_Current);
            this.Variable.GenerateSet(generator, optimizationInfo, PrimitiveType.String);

            // Emit the body statement(s).
            optimizationInfo.PushBreakOrContinueInfo(this.Labels, breakTarget, continueTarget, labelledOnly: false);
            this.Body.GenerateCode(generator, optimizationInfo);
            optimizationInfo.PopBreakOrContinueInfo();

            generator.Branch(continueTarget);
            generator.DefineLabelPosition(breakTarget);

            // Generate code for the end of the statement.
            GenerateEndOfStatement(generator, optimizationInfo, statementLocals);
        }
예제 #21
0
        /// <summary>
        /// Generates CIL for the expression.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Check if this is a direct call to eval().
            if (this.Target is NameExpression && ((NameExpression)this.Target).Name == "eval")
            {
                GenerateEval(generator, optimizationInfo);
                return;
            }

            // Emit the function instance first.
            ILLocalVariable targetBase = null;

            if (this.Target is MemberAccessExpression)
            {
                // The function is a member access expression (e.g. "Math.cos()").

                // Evaluate the left part of the member access expression.
                var baseExpression = ((MemberAccessExpression)this.Target).Base;
                baseExpression.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, baseExpression.ResultType);
                targetBase = generator.CreateTemporaryVariable(typeof(object));
                generator.StoreVariable(targetBase);

                // Evaluate the right part of the member access expression.
                var memberAccessExpression = new MemberAccessExpression(((MemberAccessExpression)this.Target).Operator);
                memberAccessExpression.Push(new TemporaryVariableExpression(targetBase));
                memberAccessExpression.Push(((MemberAccessExpression)this.Target).GetOperand(1));
                memberAccessExpression.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, this.Target.ResultType);
            }
            else
            {
                // Something else (e.g. "eval()").
                this.Target.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, this.Target.ResultType);
            }

            // Check the object really is a function - if not, throw an exception.
            generator.IsInstance(typeof(Library.FunctionInstance));
            generator.Duplicate();
            var endOfTypeCheck = generator.CreateLabel();

            generator.BranchIfNotNull(endOfTypeCheck);

            // Throw an nicely formatted exception.
            generator.Pop();
            EmitHelpers.EmitThrow(generator, "TypeError", string.Format("'{0}' is not a function", this.Target.ToString()));
            generator.DefineLabelPosition(endOfTypeCheck);

            // Generate code to produce the "this" value.  There are three cases.
            if (this.Target is NameExpression)
            {
                // 1. The function is a name expression (e.g. "parseInt()").
                //    In this case this = scope.ImplicitThisValue, if there is one, otherwise undefined.
                ((NameExpression)this.Target).GenerateThis(generator);
            }
            else if (this.Target is MemberAccessExpression)
            {
                // 2. The function is a member access expression (e.g. "Math.cos()").
                //    In this case this = Math.
                //var baseExpression = ((MemberAccessExpression)this.Target).Base;
                //baseExpression.GenerateCode(generator, optimizationInfo);
                //EmitConversion.ToAny(generator, baseExpression.ResultType);
                generator.LoadVariable(targetBase);
            }
            else
            {
                // 3. Neither of the above (e.g. "(function() { return 5 })()")
                //    In this case this = undefined.
                EmitHelpers.EmitUndefined(generator);
            }

            // Emit an array containing the function arguments.
            GenerateArgumentsArray(generator, optimizationInfo);

            // Call FunctionInstance.CallLateBound(thisValue, argumentValues)
            generator.Call(ReflectionHelpers.FunctionInstance_CallLateBound);

            // Allow reuse of the temporary variable.
            if (targetBase != null)
            {
                generator.ReleaseTemporaryVariable(targetBase);
            }
        }
예제 #22
0
        /// <summary>
        /// Stores the value on the top of the stack in the reference.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        /// <param name="valueType"> The primitive type of the value that is on the top of the stack. </param>
        public void GenerateSet(ILGenerator generator, OptimizationInfo optimizationInfo, PrimitiveType valueType)
        {
            string             propertyName     = null;
            TypeOfMemberAccess memberAccessType = DetermineTypeOfMemberAccess(optimizationInfo, out propertyName);

            if (memberAccessType == TypeOfMemberAccess.ArrayIndex)
            {
                // Array indexer
                // -------------
                // xxx = object[index]

                // Call the indexer.
                EmitConversion.ToAny(generator, valueType);
                generator.LoadBoolean(optimizationInfo.StrictMode);
                generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_Int);
                generator.Pop();
            }
            else if (memberAccessType == TypeOfMemberAccess.Static)
            {
                // Named property modification (e.g. object.property = value)
                // ----------------------------------------------------------
                // object.SetPropertyValue(property, value, strictMode)

                // Convert the value to an object and store it in a temporary variable.
                var value = generator.CreateTemporaryVariable(typeof(object));
                EmitConversion.ToAny(generator, valueType);
                generator.StoreVariable(value);

                // Use a PropertyReference to speed up access if we are inside a loop.
                if (optimizationInfo.InsideLoop)
                {
                    ILLocalVariable propertyReference = optimizationInfo.GetPropertyReferenceVariable(generator, propertyName);
                    generator.LoadVariable(propertyReference);
                    generator.Duplicate();
                    var afterIf = generator.CreateLabel();
                    generator.BranchIfNotNull(afterIf);
                    generator.Pop();
                    generator.LoadString(propertyName);
                    generator.NewObject(ReflectionHelpers.PropertyName_Constructor);
                    generator.Duplicate();
                    generator.StoreVariable(propertyReference);
                    generator.DefineLabelPosition(afterIf);

                    generator.LoadVariable(value);
                    generator.LoadBoolean(optimizationInfo.StrictMode);
                    generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_PropertyReference);
                    generator.Pop();
                }
                else
                {
                    generator.LoadString(propertyName);
                    generator.LoadVariable(value);
                    generator.LoadBoolean(optimizationInfo.StrictMode);
                    generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_Object);
                    generator.Pop();
                }

                generator.ReleaseTemporaryVariable(value);
            }
            else
            {
                // Dynamic property access
                // -----------------------
                // object.SetPropertyValue(property, value, strictMode)

                EmitConversion.ToAny(generator, valueType);
                generator.LoadBoolean(optimizationInfo.StrictMode);
                generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_Object);
                generator.Pop();
            }
        }
예제 #23
0
        /// <summary>
        /// Generates CIL for the expression.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Note: we use GetRawOperand() so that grouping operators are not ignored.
            var operand = this.GetRawOperand(0);

            // There is only one operand, and it can be either a reference or a function call.
            // We need to split the operand into a function and some arguments.
            // If the operand is a reference, it is equivalent to a function call with no arguments.
            if (operand is FunctionCallExpression)
            {
                // Emit the function instance first.
                var function = ((FunctionCallExpression)operand).Target;
                function.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, function.ResultType);
            }
            else
            {
                // Emit the function instance first.
                operand.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, operand.ResultType);
            }

            // Check the object really is a function - if not, throw an exception.
            generator.IsInstance(typeof(Library.FunctionInstance));
            generator.Duplicate();
            var endOfTypeCheck = generator.CreateLabel();

            generator.BranchIfNotNull(endOfTypeCheck);

            // Throw an nicely formatted exception.
            var targetValue = generator.CreateTemporaryVariable(typeof(object));

            generator.StoreVariable(targetValue);
            EmitHelpers.LoadScriptEngine(generator);
            generator.LoadString("TypeError");
            generator.LoadString("The new operator requires a function, found a '{0}' instead");
            generator.LoadInt32(1);
            generator.NewArray(typeof(object));
            generator.Duplicate();
            generator.LoadInt32(0);
            generator.LoadVariable(targetValue);
            generator.Call(ReflectionHelpers.TypeUtilities_TypeOf);
            generator.StoreArrayElement(typeof(object));
            generator.Call(ReflectionHelpers.String_Format);
            generator.NewObject(ReflectionHelpers.JavaScriptException_Constructor_Error);
            generator.Throw();
            generator.DefineLabelPosition(endOfTypeCheck);
            generator.ReleaseTemporaryVariable(targetValue);

            if (operand is FunctionCallExpression)
            {
                // Emit an array containing the function arguments.
                ((FunctionCallExpression)operand).GenerateArgumentsArray(generator, optimizationInfo);
            }
            else
            {
                // Emit an empty array.
                generator.LoadInt32(0);
                generator.NewArray(typeof(object));
            }

            // Call FunctionInstance.ConstructLateBound(argumentValues)
            generator.Call(ReflectionHelpers.FunctionInstance_ConstructLateBound);
        }
예제 #24
0
        /// <summary>
        /// Generates CIL for the statement.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Generate code for the start of the statement.
            var statementLocals = new StatementLocals()
            {
                NonDefaultBreakStatementBehavior = true, NonDefaultSourceSpanBehavior = true
            };

            GenerateStartOfStatement(generator, optimizationInfo, statementLocals);

            // Construct a loop expression.
            // var iterator = TypeUtilities.GetIterator(obj);
            // while (true) {
            //   continue-target:
            //   if (enumerator.MoveNext() == false)
            //     goto break-target;
            //   lhs = enumerator.Current;
            //
            //   <body statements>
            // }
            // break-target:

            // Call: ObjectInstance GetIterator(ScriptEngine engine, ObjectInstance iterable)
            // Then call: IEnumerable<object> Iterate(ScriptEngine engine, ObjectInstance iterator)
            optimizationInfo.MarkSequencePoint(generator, this.TargetObjectSourceSpan);
            EmitHelpers.LoadScriptEngine(generator);
            this.TargetObject.GenerateCode(generator, optimizationInfo);
            EmitConversion.ToAny(generator, this.TargetObject.ResultType);
            generator.Call(ReflectionHelpers.TypeUtilities_ForOf);

            // Call IEnumerable<object>.GetEnumerator()
            generator.Call(ReflectionHelpers.IEnumerable_Object_GetEnumerator);

            // Store the enumerator in a temporary variable.
            var enumerator = generator.CreateTemporaryVariable(typeof(IEnumerator <object>));

            generator.StoreVariable(enumerator);

            var breakTarget    = generator.CreateLabel();
            var continueTarget = generator.DefineLabelPosition();

            // Emit debugging information.
            if (optimizationInfo.DebugDocument != null)
            {
                generator.MarkSequencePoint(optimizationInfo.DebugDocument, this.VariableSourceSpan);
            }

            //   if (enumerator.MoveNext() == false)
            //     goto break-target;
            generator.LoadVariable(enumerator);
            generator.Call(ReflectionHelpers.IEnumerator_MoveNext);
            generator.BranchIfFalse(breakTarget);

            // lhs = enumerator.Current;
            this.Variable.GenerateReference(generator, optimizationInfo);
            generator.LoadVariable(enumerator);
            generator.Call(ReflectionHelpers.IEnumerator_Object_Current);
            this.Variable.GenerateSet(generator, optimizationInfo, PrimitiveType.Any, false);

            // Emit the body statement(s).
            optimizationInfo.PushBreakOrContinueInfo(this.Labels, breakTarget, continueTarget, labelledOnly: false);
            this.Body.GenerateCode(generator, optimizationInfo);
            optimizationInfo.PopBreakOrContinueInfo();

            generator.Branch(continueTarget);
            generator.DefineLabelPosition(breakTarget);

            // Generate code for the end of the statement.
            GenerateEndOfStatement(generator, optimizationInfo, statementLocals);
        }
예제 #25
0
        /// <summary>
        /// Stores the value on the top of the stack in the reference.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        /// <param name="valueType"> The primitive type of the value that is on the top of the stack. </param>
        /// <param name="throwIfUnresolvable"> <c>true</c> to throw a ReferenceError exception if
        /// the name is unresolvable; <c>false</c> to create a new property instead. </param>
        public void GenerateSet(ILGenerator generator, OptimizationInfo optimizationInfo, PrimitiveType valueType, bool throwIfUnresolvable)
        {
            string             propertyName     = null;
            TypeOfMemberAccess memberAccessType = DetermineTypeOfMemberAccess(optimizationInfo, out propertyName);

            if (memberAccessType == TypeOfMemberAccess.ArrayIndex)
            {
                // Array indexer
                // -------------
                // xxx = object[index]

                // Call the indexer.
                EmitConversion.ToAny(generator, valueType);
                generator.LoadBoolean(optimizationInfo.StrictMode);
                generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_Int);
            }
            else if (memberAccessType == TypeOfMemberAccess.Static)
            {
                // Named property modification (e.g. x.property = y)
                // -------------------------------------------------
                // __object_cacheKey = null;
                // __object_property_cachedIndex = 0;
                // ...
                // if (__object_cacheKey != object.InlineCacheKey)
                //     object.InlineSetPropertyValue("property", value, strictMode, out __object_property_cachedIndex, out __object_cacheKey)
                // else
                //     object.InlinePropertyValues[__object_property_cachedIndex] = value;

                // Convert the value to an object and store it in a temporary variable.
                var value = generator.CreateTemporaryVariable(typeof(object));
                EmitConversion.ToAny(generator, valueType);
                generator.StoreVariable(value);

                // TODO: share these variables somehow.
                var cacheKey    = generator.DeclareVariable(typeof(object));
                var cachedIndex = generator.DeclareVariable(typeof(int));

                // Store the object into a temp variable.
                var objectInstance = generator.DeclareVariable(PrimitiveType.Object);
                generator.StoreVariable(objectInstance);

                // if (__object_cacheKey != object.InlineCacheKey)
                generator.LoadVariable(cacheKey);
                generator.LoadVariable(objectInstance);
                generator.Call(ReflectionHelpers.ObjectInstance_InlineCacheKey);
                var elseClause = generator.CreateLabel();
                generator.BranchIfEqual(elseClause);

                // xxx = object.InlineSetPropertyValue("property", value, strictMode, out __object_property_cachedIndex, out __object_cacheKey)
                generator.LoadVariable(objectInstance);
                generator.LoadString(propertyName);
                generator.LoadVariable(value);
                generator.LoadBoolean(optimizationInfo.StrictMode);
                generator.LoadAddressOfVariable(cachedIndex);
                generator.LoadAddressOfVariable(cacheKey);
                generator.Call(ReflectionHelpers.ObjectInstance_InlineSetPropertyValue);

                var endOfIf = generator.CreateLabel();
                generator.Branch(endOfIf);

                // else
                generator.DefineLabelPosition(elseClause);

                // object.InlinePropertyValues[__object_property_cachedIndex] = value;
                generator.LoadVariable(objectInstance);
                generator.Call(ReflectionHelpers.ObjectInstance_InlinePropertyValues);
                generator.LoadVariable(cachedIndex);
                generator.LoadVariable(value);
                generator.StoreArrayElement(typeof(object));

                // End of the if statement
                generator.DefineLabelPosition(endOfIf);

                // The temporary variable is no longer needed.
                generator.ReleaseTemporaryVariable(value);
            }
            else
            {
                // Dynamic property access
                // -----------------------
                // xxx = object.Get(x)

                // Call the indexer.
                EmitConversion.ToAny(generator, valueType);
                generator.LoadBoolean(optimizationInfo.StrictMode);
                generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_String);
            }
        }
예제 #26
0
        /// <summary>
        /// Generates CIL for the expression.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // If a return value is not expected, generate only the side-effects.

            /*if (optimizationInfo.SuppressReturnValue == true)
             * {
             *  this.GenerateSideEffects(generator, optimizationInfo);
             *  return;
             * }*/

            // Special case the addition operator.
            if (this.OperatorType == OperatorType.Add)
            {
                GenerateAdd(generator, optimizationInfo);
                return;
            }

            // Special case the instanceof operator.
            if (this.OperatorType == OperatorType.InstanceOf)
            {
                GenerateInstanceOf(generator, optimizationInfo);
                return;
            }

            // Special case the in operator.
            if (this.OperatorType == OperatorType.In)
            {
                GenerateIn(generator, optimizationInfo);
                return;
            }

            // Special case the relational operators.
            if (this.OperatorType == OperatorType.LessThan ||
                this.OperatorType == OperatorType.LessThanOrEqual ||
                this.OperatorType == OperatorType.GreaterThan ||
                this.OperatorType == OperatorType.GreaterThanOrEqual)
            {
                GenerateRelational(generator, optimizationInfo);
                return;
            }

            // Special case the logical operators.
            if (this.OperatorType == OperatorType.LogicalAnd ||
                this.OperatorType == OperatorType.LogicalOr)
            {
                GenerateLogical(generator, optimizationInfo);
                return;
            }

            // Load the left hand side onto the stack.
            this.Left.GenerateCode(generator, optimizationInfo);

            // Convert the left argument.
            switch (this.OperatorType)
            {
            // Arithmetic operations.
            case OperatorType.Subtract:
            case OperatorType.Multiply:
            case OperatorType.Divide:
            case OperatorType.Modulo:
            case OperatorType.Exponentiation:
                EmitConversion.ToNumber(generator, this.Left.ResultType);
                break;

            // Bitwise operations.
            case OperatorType.BitwiseAnd:
            case OperatorType.BitwiseOr:
            case OperatorType.BitwiseXor:
            case OperatorType.LeftShift:
            case OperatorType.SignedRightShift:
            case OperatorType.UnsignedRightShift:
                EmitConversion.ToInt32(generator, this.Left.ResultType);
                break;

            // Equality operations.
            case OperatorType.Equal:
            case OperatorType.StrictlyEqual:
            case OperatorType.NotEqual:
            case OperatorType.StrictlyNotEqual:
                EmitConversion.ToAny(generator, this.Left.ResultType);
                break;
            }

            // Load the right hand side onto the stack.
            this.Right.GenerateCode(generator, optimizationInfo);

            // Convert the right argument.
            switch (this.OperatorType)
            {
            // Arithmetic operations.
            case OperatorType.Subtract:
            case OperatorType.Multiply:
            case OperatorType.Divide:
            case OperatorType.Modulo:
            case OperatorType.Exponentiation:
                EmitConversion.ToNumber(generator, this.Right.ResultType);
                break;

            // Bitwise operations.
            case OperatorType.BitwiseAnd:
            case OperatorType.BitwiseOr:
            case OperatorType.BitwiseXor:
                EmitConversion.ToInt32(generator, this.Right.ResultType);
                break;

            case OperatorType.LeftShift:
            case OperatorType.SignedRightShift:
            case OperatorType.UnsignedRightShift:
                EmitConversion.ToUInt32(generator, this.Right.ResultType);
                generator.LoadInt32(0x1F);
                generator.BitwiseAnd();
                break;

            // Equality operations.
            case OperatorType.Equal:
            case OperatorType.StrictlyEqual:
            case OperatorType.NotEqual:
            case OperatorType.StrictlyNotEqual:
                EmitConversion.ToAny(generator, this.Right.ResultType);
                break;
            }

            // Apply the operator.
            switch (this.OperatorType)
            {
            // Arithmetic operations.
            case OperatorType.Subtract:
                generator.Subtract();
                break;

            case OperatorType.Multiply:
                generator.Multiply();
                break;

            case OperatorType.Divide:
                generator.Divide();
                break;

            case OperatorType.Modulo:
                generator.Remainder();
                break;

            case OperatorType.Exponentiation:
                generator.CallStatic(ReflectionHelpers.Math_Pow);
                break;

            // Bitwise operations.
            case OperatorType.BitwiseAnd:
                generator.BitwiseAnd();
                break;

            case OperatorType.BitwiseOr:
                generator.BitwiseOr();
                break;

            case OperatorType.BitwiseXor:
                generator.BitwiseXor();
                break;

            // Shift operations.
            case OperatorType.LeftShift:
                generator.ShiftLeft();
                break;

            case OperatorType.SignedRightShift:
                generator.ShiftRight();
                break;

            case OperatorType.UnsignedRightShift:
                generator.ShiftRightUnsigned();
                EmitConversion.ToNumber(generator, PrimitiveType.UInt32);
                break;

            // Equality operations.
            case OperatorType.Equal:
                generator.Call(ReflectionHelpers.TypeComparer_Equals);
                break;

            case OperatorType.StrictlyEqual:
                generator.Call(ReflectionHelpers.TypeComparer_StrictEquals);
                break;

            case OperatorType.NotEqual:
                generator.Call(ReflectionHelpers.TypeComparer_Equals);
                generator.LoadBoolean(false);
                generator.CompareEqual();
                break;

            case OperatorType.StrictlyNotEqual:
                generator.Call(ReflectionHelpers.TypeComparer_StrictEquals);
                generator.LoadBoolean(false);
                generator.CompareEqual();
                break;

            default:
                throw new NotImplementedException(string.Format("Unsupported operator {0}", this.OperatorType));
            }
        }
예제 #27
0
        /// <summary>
        /// Generates CIL for the expression.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Literals cannot have side-effects so if a return value is not expected then generate
            // nothing.
            //if (optimizationInfo.SuppressReturnValue == true)
            //    return;

            if (this.Value is int)
            {
                generator.LoadInt32((int)this.Value);
            }
            else if (this.Value is double)
            {
                generator.LoadDouble((double)this.Value);
            }
            else if (this.Value is string)
            {
                generator.LoadString((string)this.Value);
            }
            else if (this.Value is bool)
            {
                generator.LoadBoolean((bool)this.Value);
            }
            else if (this.Value is RegularExpressionLiteral)
            {
                // RegExp
                var sharedRegExpVariable = optimizationInfo.GetRegExpVariable(generator, (RegularExpressionLiteral)this.Value);
                var label1 = generator.CreateLabel();
                var label2 = generator.CreateLabel();

                // if (sharedRegExp == null) {
                generator.LoadVariable(sharedRegExpVariable);
                generator.LoadNull();
                generator.BranchIfNotEqual(label1);

                // sharedRegExp = Global.RegExp.Construct(source, flags)
                EmitHelpers.LoadScriptEngine(generator);
                generator.Call(ReflectionHelpers.ScriptEngine_RegExp);
                generator.LoadString(((RegularExpressionLiteral)this.Value).Pattern);
                generator.LoadString(((RegularExpressionLiteral)this.Value).Flags);
                generator.Call(ReflectionHelpers.RegExp_Construct);
                generator.Duplicate();
                generator.StoreVariable(sharedRegExpVariable);

                // } else {
                generator.Branch(label2);
                generator.DefineLabelPosition(label1);

                // Global.RegExp.Construct(sharedRegExp, flags)
                EmitHelpers.LoadScriptEngine(generator);
                generator.Call(ReflectionHelpers.ScriptEngine_RegExp);
                generator.LoadVariable(sharedRegExpVariable);
                generator.LoadNull();
                generator.Call(ReflectionHelpers.RegExp_Construct);

                // }
                generator.DefineLabelPosition(label2);
            }
            else if (this.Value == Null.Value)
            {
                // Null.
                EmitHelpers.EmitNull(generator);
            }
            else if (this.Value == Undefined.Value)
            {
                // Undefined.
                EmitHelpers.EmitUndefined(generator);
            }
            else if (this.Value is List <Expression> )
            {
                // Construct an array literal.
                var arrayLiteral = (List <Expression>) this.Value;

                // Operands for ArrayConstructor.New() are: an ArrayConstructor instance (ArrayConstructor), an array (object[])
                // ArrayConstructor
                EmitHelpers.LoadScriptEngine(generator);
                generator.Call(ReflectionHelpers.ScriptEngine_Array);

                // object[]
                generator.LoadInt32(arrayLiteral.Count);
                generator.NewArray(typeof(object));
                for (int i = 0; i < arrayLiteral.Count; i++)
                {
                    // Operands for StoreArrayElement() are: an array (object[]), index (int), value (object).
                    // Array
                    generator.Duplicate();

                    // Index
                    generator.LoadInt32(i);

                    // Value
                    var elementExpression = arrayLiteral[i];
                    if (elementExpression == null)
                    {
                        generator.LoadNull();
                    }
                    else
                    {
                        elementExpression.GenerateCode(generator, optimizationInfo);
                        EmitConversion.ToAny(generator, elementExpression.ResultType);
                    }

                    // Store the element value.
                    generator.StoreArrayElement(typeof(object));
                }

                // ArrayConstructor.New(object[])
                generator.Call(ReflectionHelpers.Array_New);
            }
            else if (this.Value is List <KeyValuePair <Expression, Expression> > )
            {
                // This is an object literal.
                var properties = (List <KeyValuePair <Expression, Expression> >) this.Value;

                // Create a new object.
                EmitHelpers.LoadScriptEngine(generator);
                generator.Call(ReflectionHelpers.ScriptEngine_Object);
                generator.Call(ReflectionHelpers.Object_Construct);

                foreach (var keyValuePair in properties)
                {
                    Expression propertyName  = keyValuePair.Key;
                    Expression propertyValue = keyValuePair.Value;

                    generator.Duplicate();

                    // The key can be a property name or an expression that evaluates to a name.
                    propertyName.GenerateCode(generator, optimizationInfo);
                    EmitConversion.ToPropertyKey(generator, propertyName.ResultType);

                    var functionValue = propertyValue as FunctionExpression;
                    if (functionValue != null && functionValue.DeclarationType == FunctionDeclarationType.Getter)
                    {
                        // Add a getter to the object.
                        functionValue.GenerateCode(generator, optimizationInfo);
                        // Support the inferred function displayName property.
                        if (propertyName is LiteralExpression && ((LiteralExpression)propertyName).Value is string)
                        {
                            functionValue.GenerateDisplayName(generator, optimizationInfo, "get " + (string)((LiteralExpression)propertyName).Value, true);
                        }
                        generator.Call(ReflectionHelpers.ReflectionHelpers_SetObjectLiteralGetter);
                    }
                    else if (functionValue != null && functionValue.DeclarationType == FunctionDeclarationType.Setter)
                    {
                        // Add a setter to the object.
                        functionValue.GenerateCode(generator, optimizationInfo);
                        // Support the inferred function displayName property.
                        if (propertyName is LiteralExpression && ((LiteralExpression)propertyName).Value is string)
                        {
                            functionValue.GenerateDisplayName(generator, optimizationInfo, "set " + (string)((LiteralExpression)propertyName).Value, true);
                        }
                        generator.Call(ReflectionHelpers.ReflectionHelpers_SetObjectLiteralSetter);
                    }
                    else
                    {
                        // Add a new property to the object.
                        propertyValue.GenerateCode(generator, optimizationInfo);
                        // Support the inferred function displayName property.
                        if (propertyValue is FunctionExpression && propertyName is LiteralExpression && ((LiteralExpression)propertyName).Value is string)
                        {
                            ((FunctionExpression)propertyValue).GenerateDisplayName(generator, optimizationInfo, (string)((LiteralExpression)propertyName).Value, false);
                        }
                        EmitConversion.ToAny(generator, propertyValue.ResultType);
                        generator.Call(ReflectionHelpers.ReflectionHelpers_SetObjectLiteralValue);
                    }
                }
            }
            else
            {
                throw new NotImplementedException("Unknown literal type.");
            }
        }
예제 #28
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        /// <summary>
        /// Generates an array containing the argument values for a tagged template literal.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        /// <param name="templateLiteral"> The template literal expression containing the parameter
        /// values. </param>
        internal void GenerateTemplateArgumentsArray(ILGenerator generator, OptimizationInfo optimizationInfo, TemplateLiteralExpression templateLiteral)
        {
            // Generate an array containing the value of each argument.
            generator.LoadInt32(templateLiteral.Values.Count + 1);
            generator.NewArray(typeof(object));

            // Load the first parameter.
            generator.Duplicate();
            generator.LoadInt32(0);

            // Generate a unique integer that is used as the cache key.
            int callSiteId = System.Threading.Interlocked.Increment(ref templateCallSiteId);

            // Call GetCachedTemplateStringsArray(ScriptEngine engine, int callSiteId)
            EmitHelpers.LoadScriptEngine(generator);
            generator.LoadInt32(callSiteId);
            generator.CallStatic(ReflectionHelpers.ReflectionHelpers_GetCachedTemplateStringsArray);

            // If that's null, do it the long way.
            var afterCreateTemplateStringsArray = generator.CreateLabel();

            generator.Duplicate();
            generator.BranchIfNotNull(afterCreateTemplateStringsArray);
            generator.Pop();

            // Start emitting arguments for CreateTemplateStringsArray.
            EmitHelpers.LoadScriptEngine(generator);

            // int callSiteId
            generator.LoadInt32(callSiteId);

            // string[] strings
            generator.LoadInt32(templateLiteral.Strings.Count);
            generator.NewArray(typeof(string));
            for (int i = 0; i < templateLiteral.Strings.Count; i++)
            {
                // strings[i] = templateLiteral.Strings[i]
                generator.Duplicate();
                generator.LoadInt32(i);
                generator.LoadString(templateLiteral.Strings[i]);
                generator.StoreArrayElement(typeof(string));
            }

            // string[] raw
            generator.LoadInt32(templateLiteral.RawStrings.Count);
            generator.NewArray(typeof(string));
            for (int i = 0; i < templateLiteral.RawStrings.Count; i++)
            {
                // raw[i] = templateLiteral.RawStrings[i]
                generator.Duplicate();
                generator.LoadInt32(i);
                generator.LoadString(templateLiteral.RawStrings[i]);
                generator.StoreArrayElement(typeof(string));
            }

            // CreateTemplateStringsArray(ScriptEngine engine, int callSiteId, object[] strings, object[] rawStrings)
            generator.CallStatic(ReflectionHelpers.ReflectionHelpers_CreateTemplateStringsArray);
            generator.DefineLabelPosition(afterCreateTemplateStringsArray);

            // Store in the array.
            generator.StoreArrayElement(typeof(object));

            // Values are passed as subsequent parameters.
            for (int i = 0; i < templateLiteral.Values.Count; i++)
            {
                generator.Duplicate();
                generator.LoadInt32(i + 1);
                templateLiteral.Values[i].GenerateCode(generator, optimizationInfo);
                EmitConversion.ToAny(generator, templateLiteral.Values[i].ResultType);
                generator.StoreArrayElement(typeof(object));
            }
        }
예제 #29
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        /// <summary>
        /// Stores the value on the top of the stack in the reference.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        /// <param name="valueType"> The primitive type of the value that is on the top of the stack. </param>
        /// <param name="throwIfUnresolvable"> <c>true</c> to throw a ReferenceError exception if
        /// the name is unresolvable; <c>false</c> to create a new property instead. </param>
        public void GenerateSet(ILGenerator generator, OptimizationInfo optimizationInfo, PrimitiveType valueType, bool throwIfUnresolvable)
        {
            string propertyName = null;
            bool   isArrayIndex = false;

            //optimizationInfo = optimizationInfo.RemoveFlags(OptimizationFlags.SuppressReturnValue);

            // Right-hand-side can be a property name (a.b)
            if (this.OperatorType == OperatorType.MemberAccess)
            {
                var rhs = this.GetOperand(1) as NameExpression;
                if (rhs == null)
                {
                    throw new JavaScriptException(optimizationInfo.Engine, "SyntaxError", "Invalid member access", optimizationInfo.SourceSpan.StartLine, optimizationInfo.Source.Path, optimizationInfo.FunctionName);
                }
                propertyName = rhs.Name;
            }

            // Or a constant indexer (a['b'])
            if (this.OperatorType == OperatorType.Index)
            {
                var rhs = this.GetOperand(1) as LiteralExpression;
                if (rhs != null)
                {
                    propertyName = TypeConverter.ToString(rhs.Value);

                    // Or a array index (a[0])
                    if (rhs.ResultType == PrimitiveType.Int32 || (propertyName != null && Library.ArrayInstance.ParseArrayIndex(propertyName) != uint.MaxValue))
                    {
                        isArrayIndex = true;
                    }
                }
            }

            // Convert the value to an object and store it in a temporary variable.
            var value = generator.CreateTemporaryVariable(typeof(object));

            EmitConversion.ToAny(generator, valueType);
            generator.StoreVariable(value);

            if (isArrayIndex == true)
            {
                // Array indexer
                // -------------
                // xxx = object[index]

                // Load the left-hand side and convert to an object instance.
                var lhs = this.GetOperand(0);
                lhs.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToObject(generator, lhs.ResultType, optimizationInfo);

                // Load the right-hand side and convert to a uint32.
                var rhs = this.GetOperand(1);
                rhs.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToUInt32(generator, rhs.ResultType);

                // Call the indexer.
                generator.LoadVariable(value);
                generator.LoadBoolean(optimizationInfo.StrictMode);
                generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_Int);
            }
            else if (propertyName != null)
            {
                //// Load the left-hand side and convert to an object instance.
                //var lhs = this.GetOperand(0);
                //lhs.GenerateCode(generator, optimizationInfo);
                //EmitConversion.ToObject(generator, lhs.ResultType);

                //// Call the indexer.
                //generator.LoadString(propertyName);
                //generator.LoadVariable(value);
                //generator.LoadBoolean(optimizationInfo.StrictMode);
                //generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_String);



                // Named property modification (e.g. x.property = y)
                // -------------------------------------------------
                // __object_cacheKey = null;
                // __object_property_cachedIndex = 0;
                // ...
                // if (__object_cacheKey != object.InlineCacheKey)
                //     object.InlineSetPropertyValue("property", value, strictMode, out __object_property_cachedIndex, out __object_cacheKey)
                // else
                //     object.InlinePropertyValues[__object_property_cachedIndex] = value;

                // Load the left-hand side and convert to an object instance.
                var lhs = this.GetOperand(0);
                lhs.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToObject(generator, lhs.ResultType, optimizationInfo);

                // TODO: share these variables somehow.
                var cacheKey    = generator.DeclareVariable(typeof(object));
                var cachedIndex = generator.DeclareVariable(typeof(int));

                // Store the object into a temp variable.
                var objectInstance = generator.DeclareVariable(PrimitiveType.Object);
                generator.StoreVariable(objectInstance);

                // if (__object_cacheKey != object.InlineCacheKey)
                generator.LoadVariable(cacheKey);
                generator.LoadVariable(objectInstance);
                generator.Call(ReflectionHelpers.ObjectInstance_InlineCacheKey);
                var elseClause = generator.CreateLabel();
                generator.BranchIfEqual(elseClause);

                // xxx = object.InlineSetPropertyValue("property", value, strictMode, out __object_property_cachedIndex, out __object_cacheKey)
                generator.LoadVariable(objectInstance);
                generator.LoadString(propertyName);
                generator.LoadVariable(value);
                generator.LoadBoolean(optimizationInfo.StrictMode);
                generator.LoadAddressOfVariable(cachedIndex);
                generator.LoadAddressOfVariable(cacheKey);
                generator.Call(ReflectionHelpers.ObjectInstance_InlineSetPropertyValue);

                var endOfIf = generator.CreateLabel();
                generator.Branch(endOfIf);

                // else
                generator.DefineLabelPosition(elseClause);

                // object.InlinePropertyValues[__object_property_cachedIndex] = value;
                generator.LoadVariable(objectInstance);
                generator.Call(ReflectionHelpers.ObjectInstance_InlinePropertyValues);
                generator.LoadVariable(cachedIndex);
                generator.LoadVariable(value);
                generator.StoreArrayElement(typeof(object));

                // End of the if statement
                generator.DefineLabelPosition(endOfIf);
            }
            else
            {
                // Dynamic property access
                // -----------------------
                // xxx = object.Get(x)

                // Load the left-hand side and convert to an object instance.
                var lhs = this.GetOperand(0);
                lhs.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToObject(generator, lhs.ResultType, optimizationInfo);

                // Load the property name and convert to a string.
                var rhs = this.GetOperand(1);
                rhs.GenerateCode(generator, optimizationInfo);
                EmitConversion.ToString(generator, rhs.ResultType);

                // Call the indexer.
                generator.LoadVariable(value);
                generator.LoadBoolean(optimizationInfo.StrictMode);
                generator.Call(ReflectionHelpers.ObjectInstance_SetPropertyValue_String);
            }

            // The temporary variable is no longer needed.
            generator.ReleaseTemporaryVariable(value);
        }
예제 #30
0
        /// <summary>
        /// Generates CIL for the expression.
        /// </summary>
        /// <param name="generator"> The generator to output the CIL to. </param>
        /// <param name="optimizationInfo"> Information about any optimizations that should be performed. </param>
        public override void GenerateCode(ILGenerator generator, OptimizationInfo optimizationInfo)
        {
            // Create a new object.
            EmitHelpers.LoadScriptEngine(generator);
            generator.Call(ReflectionHelpers.ScriptEngine_Object);
            generator.Call(ReflectionHelpers.Object_Construct);

            // Create a variable to hold the container instance value.
            var containerVariable = generator.CreateTemporaryVariable(typeof(ObjectInstance));

            generator.Duplicate();
            generator.StoreVariable(containerVariable);

            foreach (var property in this.Properties)
            {
                generator.Duplicate();

                // The key can be a property name or an expression that evaluates to a name.
                if (property.Name.HasStaticName)
                {
                    generator.LoadString(property.Name.StaticName);
                }
                else
                {
                    property.Name.ComputedName.GenerateCode(generator, optimizationInfo);
                    EmitConversion.ToPropertyKey(generator, property.Name.ComputedName.ResultType);
                }

                // Emit the property value.
                if (property.Value is FunctionExpression functionExpression)
                {
                    functionExpression.ContainerVariable = containerVariable;
                    property.Value.GenerateCode(generator, optimizationInfo);
                    generator.ReinterpretCast(typeof(UserDefinedFunction));
                    functionExpression.ContainerVariable = null;
                }
                else
                {
                    property.Value.GenerateCode(generator, optimizationInfo);
                    EmitConversion.ToAny(generator, property.Value.ResultType);
                }

                if (property.Name.IsGetter)
                {
                    // Add a getter to the object.
                    generator.Call(ReflectionHelpers.ReflectionHelpers_SetObjectLiteralGetter);
                }
                else if (property.Name.IsSetter)
                {
                    // Add a setter to the object.
                    generator.Call(ReflectionHelpers.ReflectionHelpers_SetObjectLiteralSetter);
                }
                else
                {
                    // Add a new property to the object.
                    generator.Call(ReflectionHelpers.ReflectionHelpers_SetObjectLiteralValue);
                }
            }

            // Release the variable that we created above.
            generator.ReleaseTemporaryVariable(containerVariable);
        }