Indicator with new types
This commit is contained in:
+89
-14
@@ -8,7 +8,7 @@ uses
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System.RTTI;
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type
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TDataKind = (dkOrdinal, dkFloat, dkText, dkTimestamp, dkRecord, dkTuple, dkArray, dkEnum);
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TDataKind = (dkOrdinal, dkFloat, dkText, dkTimestamp, dkRecord, dkTuple, dkArray, dkEnum, dkMethod);
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IDataType = interface
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function GetName: String;
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@@ -76,6 +76,28 @@ type
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property Identifiers[Idx: Integer]: string read GetIdentifier; default;
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end;
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// A method that transforms one data value into another.
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TMethodProc = reference to function(const AValue: IDataValue): IDataValue;
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// Represents an executable method data value.
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IDataMethodValue = interface(IDataValue)
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{$region 'private'}
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function GetValue: TMethodProc;
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{$endregion}
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property Value: TMethodProc read GetValue;
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end;
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// Represents the type of a method data value, including its signature.
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IDataMethodType = interface(IDataType)
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{$region 'private'}
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function GetArgType: IDataType;
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function GetResultType: IDataType;
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{$endregion}
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property ArgType: IDataType read GetArgType;
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property ResultType: IDataType read GetResultType;
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function CreateValue(const AValue: TMethodProc): IDataMethodValue;
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end;
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IDataRecordValue = interface(IDataValue)
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function GetItem(Idx: Integer): IDataValue;
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property Items[Idx: Integer]: IDataValue read GetItem; default;
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@@ -125,18 +147,15 @@ type
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FDataType: IDataType;
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function GetName: String; inline;
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function GetKind: TDataKind; inline;
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class var
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FArrayTypeRegistry: TDictionary<IDataType, IDataArrayType>;
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class var
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FRecordTypeRegistry: TDictionary<TArray<TRecordField>, IDataRecordType>;
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FMethodTypeRegistry: TDictionary<TPair<IDataType, IDataType>, IDataMethodType>;
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class constructor CreateClass;
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class destructor DestroyClass;
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public
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constructor Create(const ADataType: IDataType);
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class procedure ClearRegistries; static;
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class operator Implicit(const A: IDataType): TDataType; overload;
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class operator Implicit(const A: TDataType): IDataType; overload;
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@@ -146,7 +165,8 @@ type
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class function Text: IDataTextType; static;
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class function Timestamp: IDataTimestampType; static;
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class function Tuple: IDataTupleType; static;
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class function ArrayOfType(const AElementType: IDataType): IDataArrayType; static;
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class function MethodOf(const AArgType, AResultType: IDataType): IDataMethodType; static;
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class function ArrayOf(const AElementType: IDataType): IDataArrayType; static;
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class function RecordOf(const Fields: TArray<TRecordField>): IDataRecordType; overload; static;
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class function RecordOf(const Fields: array of TRecordField): IDataRecordType; overload; static;
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class function EnumOf(const AName: string; const AIdentifiers: array of string): IDataEnumType; static;
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@@ -160,6 +180,7 @@ type
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function AsTuple: IDataTupleType;
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function AsArray: IDataArrayType;
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function AsEnum: IDataEnumType;
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function AsMethod: IDataMethodType;
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property DataType: IDataType read FDataType;
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property Name: String read GetName;
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@@ -182,6 +203,7 @@ type
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function AsTuple: IDataTupleValue;
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function AsArray: IDataArrayValue;
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function AsEnum: IDataEnumValue;
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function AsMethod: IDataMethodValue;
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class operator Implicit(const A: IDataValue): TDataValue; overload;
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class operator Implicit(const A: TDataValue): IDataValue; overload;
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@@ -192,6 +214,7 @@ type
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class function FromText(const AValue: string): IDataTextValue; static;
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class function FromTimestamp(const AValue: TDateTime): IDataTimestampValue; static;
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class function FromTuple(const AItems: array of IDataValue): IDataTupleValue; static;
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class function FromMethod(const AMethodType: IDataMethodType; const AValue: TMethodProc): IDataMethodValue; static;
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property DataValue: IDataValue read FDataValue;
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property DataType: IDataType read GetDataType;
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@@ -209,7 +232,8 @@ uses
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Myc.Data.Types.Arrays,
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Myc.Data.Types.Records,
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Myc.Data.Types.Tuple,
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Myc.Data.Types.Enum;
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Myc.Data.Types.Enum,
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Myc.Data.Types.Method;
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{ TRecordField }
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@@ -230,15 +254,34 @@ class constructor TDataType.CreateClass;
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begin
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FArrayTypeRegistry := TDictionary<IDataType, IDataArrayType>.Create;
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FRecordTypeRegistry := TDictionary<TArray<TRecordField>, IDataRecordType>.Create(TRecordFieldComparer.Create);
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FMethodTypeRegistry :=
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TDictionary<TPair<IDataType, IDataType>, IDataMethodType>.Create(
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TEqualityComparer<TPair<IDataType, IDataType>>.Construct(
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function(const Left, Right: TPair<IDataType, IDataType>): Boolean
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begin
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Result := (Left.Key = Right.Key) and (Left.Value = Right.Value);
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end,
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function(const Value: TPair<IDataType, IDataType>): Integer
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var
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hash1, hash2: NativeInt;
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begin
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hash1 := NativeInt(Value.Key);
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hash2 := NativeInt(Value.Value);
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// Simple XOR combination for pointer hashes
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Result := Integer(hash1 xor hash2);
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end
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)
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);
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end;
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class destructor TDataType.DestroyClass;
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begin
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FArrayTypeRegistry.Free;
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FRecordTypeRegistry.Free;
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FMethodTypeRegistry.Free;
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end;
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class function TDataType.ArrayOfType(const AElementType: IDataType): IDataArrayType;
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class function TDataType.ArrayOf(const AElementType: IDataType): IDataArrayType;
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begin
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if not Assigned(AElementType) then
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raise EArgumentException.Create('Cannot create an array type with a nil element type.');
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@@ -277,6 +320,13 @@ begin
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Result := IDataFloatType(FDataType);
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end;
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function TDataType.AsMethod: IDataMethodType;
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begin
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if (FDataType.Kind <> dkMethod) then
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raise EInvalidCast.Create('Method expected');
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Result := IDataMethodType(FDataType);
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end;
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function TDataType.AsOrdinal: IDataOrdinalType;
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begin
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if (FDataType.Kind <> dkOrdinal) then
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@@ -312,12 +362,6 @@ begin
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Result := IDataTupleType(FDataType);
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end;
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class procedure TDataType.ClearRegistries;
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begin
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FArrayTypeRegistry.Clear;
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FRecordTypeRegistry.Clear;
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end;
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class function TDataType.Float: IDataFloatType;
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begin
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Result := TDataFloatType.Singleton;
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@@ -331,6 +375,23 @@ begin
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Result := '';
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end;
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class function TDataType.MethodOf(const AArgType, AResultType: IDataType): IDataMethodType;
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var
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key: TPair<IDataType, IDataType>;
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begin
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key := TPair<IDataType, IDataType>.Create(AArgType, AResultType);
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TMonitor.Enter(FMethodTypeRegistry);
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try
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if not FMethodTypeRegistry.TryGetValue(key, Result) then
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begin
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Result := TDataMethodType.Create(AArgType, AResultType);
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FMethodTypeRegistry.Add(key, Result);
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end;
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finally
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TMonitor.Exit(FMethodTypeRegistry);
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end;
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end;
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class function TDataType.Ordinal: IDataOrdinalType;
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begin
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Result := TDataOrdinalType.Singleton;
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@@ -417,6 +478,13 @@ begin
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Result := IDataFloatValue(FDataValue);
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end;
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function TDataValue.AsMethod: IDataMethodValue;
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begin
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if FDataValue.DataType.Kind <> dkMethod then
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raise EInvalidCast.Create('Method expected');
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Result := IDataMethodValue(FDataValue);
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end;
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function TDataValue.AsText: IDataTextValue;
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begin
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if FDataValue.DataType.Kind <> dkText then
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@@ -469,6 +537,13 @@ begin
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Result := TDataFloatType.Singleton.CreateValue(AValue);
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end;
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class function TDataValue.FromMethod(const AMethodType: IDataMethodType; const AValue: TMethodProc): IDataMethodValue;
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begin
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if not Assigned(AMethodType) then
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raise EArgumentException.Create('AMethodType');
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Result := AMethodType.CreateValue(AValue);
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end;
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class function TDataValue.FromText(const AValue: string): IDataTextValue;
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begin
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Result := TDataTextType.Singleton.CreateValue(AValue);
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+91
-19
@@ -10,9 +10,6 @@ type
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[IgnoreMemoryLeaks]
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TMyTestObject = class
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public
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[TestFixtureTearDown]
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procedure FixtureTearDown;
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[Test]
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procedure TestRecords;
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[Test]
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@@ -39,6 +36,8 @@ type
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procedure TestAsString;
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[Test]
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procedure TestAsTValue;
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[Test]
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procedure TestMethods;
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end;
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implementation
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@@ -50,15 +49,6 @@ uses
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System.TypInfo,
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Myc.Data.Types;
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{ TMyTestObject }
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procedure TMyTestObject.FixtureTearDown;
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begin
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// Clear global type caches to release any interfaces created during tests.
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// This prevents access violations on shutdown from dangling pointers in the registries.
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TDataType.ClearRegistries;
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end;
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procedure TMyTestObject.TestRecords;
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var
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intType: IDataType;
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@@ -236,18 +226,18 @@ begin
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floatType := TDataType.Float;
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// --- 2. Test Type Creation and Caching ---
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intArrayType1 := TDataType.ArrayOfType(intType);
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intArrayType1 := TDataType.ArrayOf(intType);
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Assert.IsNotNull(intArrayType1, 'ArrayType should be created');
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Assert.AreSame(intType, intArrayType1.ElementType, 'ElementType should be Integer');
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Assert.AreEqual('Array<Integer>', intArrayType1.Name, 'Type name should be Array<Integer>');
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// Test caching
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intArrayType2 := TDataType.ArrayOfType(intType);
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intArrayType2 := TDataType.ArrayOf(intType);
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Assert.AreSame(intArrayType1, intArrayType2, 'Array types should be cached');
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// Test uniqueness
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floatArrayType := TDataType.ArrayOfType(floatType);
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floatArrayType := TDataType.ArrayOf(floatType);
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Assert.AreNotSame(intArrayType1, floatArrayType, 'Different element types should result in different array types');
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Assert.AreEqual('Array<Float>', floatArrayType.Name, 'Type name should be Array<Float>');
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@@ -265,7 +255,7 @@ begin
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// --- 4. Test Validation and Error Handling ---
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// Test creating an array with a nil element type
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Assert.WillRaise(procedure begin TDataType.ArrayOfType(nil); end, EArgumentException, 'Nil element type should raise an exception');
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Assert.WillRaise(procedure begin TDataType.ArrayOf(nil); end, EArgumentException, 'Nil element type should raise an exception');
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// Test creating a value with an incorrect element type (homogeneity check)
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Assert.WillRaise(
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@@ -284,7 +274,7 @@ var
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arrayType: IDataArrayType;
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empty1, empty2, single, generic: IDataArrayValue;
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begin
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arrayType := TDataType.ArrayOfType(TDataType.Ordinal);
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arrayType := TDataType.ArrayOf(TDataType.Ordinal);
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// Test optimized path for 0 elements (cached singleton per type)
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empty1 := arrayType.CreateValue([]);
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@@ -515,7 +505,7 @@ begin
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Assert.AreEqual('Green', enumValue.AsString, 'Enum AsString incorrect');
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// Array
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intArrayType := TDataType.ArrayOfType(TDataType.Ordinal);
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intArrayType := TDataType.ArrayOf(TDataType.Ordinal);
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arrayValue := intArrayType.CreateValue([TDataValue.FromOrdinal(1), TDataValue.FromOrdinal(2)]);
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Assert.AreEqual('[1, 2]', arrayValue.AsString, 'Array AsString incorrect');
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@@ -576,7 +566,7 @@ begin
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Assert.AreEqual(1, tv.AsInteger, 'Enum TValue content is incorrect');
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// --- Array ---
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intArrayType := TDataType.ArrayOfType(TDataType.Ordinal);
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intArrayType := TDataType.ArrayOf(TDataType.Ordinal);
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dataValue := intArrayType.CreateValue([TDataValue.FromOrdinal(10), TDataValue.FromOrdinal(20)]);
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tv := dataValue.AsTValue;
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Assert.IsFalse(tv.IsEmpty, 'Array TValue should not be empty');
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@@ -620,4 +610,86 @@ begin
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Assert.AreEqual('Red', tv.GetArrayElement(1).AsType<TValue>.AsString, 'Tuple TValue element 1 is incorrect');
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end;
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procedure TMyTestObject.TestMethods;
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var
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ordinalType, textType: IDataType;
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methodType1, methodType2, otherMethodType: IDataMethodType;
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myFunc: TMethodProc;
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methodValue: IDataMethodValue;
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inputValue, resultValue: IDataValue;
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tv: TValue;
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begin
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// --- 1. Setup: Define base types ---
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ordinalType := TDataType.Ordinal;
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textType := TDataType.Text;
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// --- 2. Test Type Creation and Caching ---
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methodType1 := TDataType.MethodOf(ordinalType, textType);
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// Assertions for the created type
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Assert.IsNotNull(methodType1, 'MethodType should be created');
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Assert.AreEqual(dkMethod, methodType1.Kind, 'Kind should be dkMethod');
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Assert.AreSame(ordinalType, methodType1.ArgType, 'ArgType should be Ordinal');
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Assert.AreSame(textType, methodType1.ResultType, 'ResultType should be Text');
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Assert.AreEqual('Method<Integer -> Text>', methodType1.Name, 'Type name should match expected format');
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// Test if the same definition returns the same cached instance
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methodType2 := TDataType.MethodOf(ordinalType, textType);
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Assert.AreSame(methodType1, methodType2, 'Method types should be cached and return the same instance');
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// Test if a different definition returns a new instance
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otherMethodType := TDataType.MethodOf(textType, ordinalType);
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Assert.AreNotSame(methodType1, otherMethodType, 'Different signatures should result in different types');
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Assert.AreEqual('Method<Text -> Integer>', otherMethodType.Name, 'Name of other method type is incorrect');
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// --- 3. Test Value Creation ---
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// Define a function that matches the signature Ordinal -> Text
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myFunc :=
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function(const AValue: IDataValue): IDataValue
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var
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ordinalValue: IDataOrdinalValue;
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val: Int64;
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begin
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ordinalValue := TDataValue(AValue).AsOrdinal;
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val := ordinalValue.Value;
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Result := TDataValue.FromText(val.ToString);
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end;
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methodValue := TDataValue.FromMethod(methodType1, myFunc);
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Assert.IsNotNull(methodValue, 'MethodValue should be created');
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Assert.AreSame(methodType1, methodValue.DataType, 'Value should have the correct data type');
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// --- 4. Test Execution (Simulated) ---
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inputValue := TDataValue.FromOrdinal(42);
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// Execute the function retrieved from the value
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resultValue := methodValue.Value(inputValue);
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Assert.IsNotNull(resultValue, 'Execution result should not be nil');
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Assert.AreSame(textType, resultValue.DataType, 'Result value should have Text type');
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Assert.AreEqual('42', TDataValue(resultValue).AsText.Value, 'Result value content is incorrect');
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// --- 5. Test AsString and AsTValue ---
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Assert.AreEqual('<METHOD>', methodValue.AsString, 'Method AsString is incorrect');
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tv := methodValue.AsTValue;
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Assert.IsFalse(tv.IsEmpty, 'Method TValue should not be empty');
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Assert.AreEqual(tkInterface, tv.Kind, 'TValue kind for a TMethodProc should be tkInterface, as it is a reference-to-function');
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Assert.IsTrue(TypeInfo(TMethodProc) = tv.TypeInfo, 'TValue should hold TMethodProc type info');
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// --- 6. Test Validation and Error Handling ---
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// Test creating a value with a nil type
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Assert.WillRaise(
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procedure begin TDataValue.FromMethod(nil, myFunc); end,
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EArgumentException,
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'FromMethod with nil type should raise an exception'
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);
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// Test creating a value with a nil function
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Assert.WillRaise(
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procedure begin TDataValue.FromMethod(methodType1, nil); end,
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EArgumentException,
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'FromMethod with nil function should raise an exception'
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);
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end;
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end.
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+2
-1
@@ -31,7 +31,8 @@ uses
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Myc.Data.Types.Records in 'Myc.Data.Types.Records.pas',
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Myc.Data.Types.Float in 'Myc.Data.Types.Float.pas',
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Myc.Data.Types.Arrays in 'Myc.Data.Types.Arrays.pas',
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TestDataTypes in '..\Src\Data\TestDataTypes.pas';
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TestDataTypes in '..\Src\Data\TestDataTypes.pas',
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Myc.Data.Types.Method in '..\Src\Data\Myc.Data.Types.Method.pas';
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{ keep comment here to protect the following conditional from being removed by the IDE when adding a unit }
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{$IFNDEF TESTINSIGHT}
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@@ -133,6 +133,7 @@ $(PreBuildEvent)]]></PreBuildEvent>
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<DCCReference Include="Myc.Data.Types.Float.pas"/>
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<DCCReference Include="Myc.Data.Types.Arrays.pas"/>
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<DCCReference Include="..\Src\Data\TestDataTypes.pas"/>
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<DCCReference Include="..\Src\Data\Myc.Data.Types.Method.pas"/>
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<BuildConfiguration Include="Base">
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<Key>Base</Key>
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</BuildConfiguration>
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