RTL: Sqrt & Pow
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@@ -41,8 +41,8 @@
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(fn [len]
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(do
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;; Konstanten vorberechnen
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(def half-len (Round (/ len 2)))
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(def sqrt-len (Round (sqrt len)))
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(def half-len (round (/ len 2)))
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(def sqrt-len (round (sqrt len)))
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;; !!! WICHTIG !!!
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;; HMA benötigt eine Glättung der Differenz.
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@@ -123,54 +123,54 @@ type
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// --- Math Functions ---
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[TRtlExport('Abs', Pure)]
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[TRtlExport('abs', Pure)]
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[AstDoc('Returns the absolute value of a number.')]
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[AstSignature('(number) -> number')]
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class function Abs(const Arg: TScalar): TScalar; static;
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[TRtlExport('Round', Pure)]
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[TRtlExport('round', Pure)]
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[AstDoc('Rounds a float to the nearest integer.')]
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[AstSignature('(number) -> number')]
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class function Round(const Arg: TScalar): TScalar; static;
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[TRtlExport('Trunc', Pure)]
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[TRtlExport('trunc', Pure)]
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[AstDoc('Returns the integer part of a float.')]
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[AstSignature('(number) -> number')]
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class function Trunc(const Arg: TScalar): TScalar; static;
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[TRtlExport('Ceil', Pure)]
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[TRtlExport('ceil', Pure)]
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[AstDoc('Returns the smallest integer >= the argument.')]
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[AstSignature('(number) -> number')]
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class function Ceil(const Arg: TScalar): TScalar; static;
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[TRtlExport('Floor', Pure)]
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[TRtlExport('floor', Pure)]
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[AstDoc('Returns the largest integer <= the argument.')]
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[AstSignature('(number) -> number')]
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class function Floor(const Arg: TScalar): TScalar; static;
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[TRtlExport('Sign', Pure)]
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[TRtlExport('sign', Pure)]
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[AstDoc('Returns -1 for negative, 1 for positive, 0 for zero.')]
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[AstSignature('(number) -> number')]
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class function Sign(const Arg: TScalar): TScalar; static;
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[TRtlExport('Sqrt', Pure)]
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[TRtlExport('sqrt', Pure)]
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[AstDoc('Returns the square root of a number.')]
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[AstSignature('(number) -> number')]
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class function Sqrt(const Arg: TScalar): TScalar; static;
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[TRtlExport('Pow', Pure)]
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[TRtlExport('pow', Pure)]
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[AstDoc('Returns Base raised to the power of Exponent.')]
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[AstSignature('(number, number) -> number')]
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class function Pow(const Args: TArray<TDataValue>): TDataValue; static;
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// --- DateTime ---
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[TRtlExport('Now', Impure)]
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[TRtlExport('now', Impure)]
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[AstDoc('Returns the current system timestamp.')]
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[AstSignature('() -> datetime')]
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class function Now(const Args: TArray<TDataValue>): TDataValue; static;
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[TRtlExport('Date', Impure)]
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[TRtlExport('date', Impure)]
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[AstDoc('Returns the current date or constructs a date from Y, M, D.')]
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[AstSignature('() -> datetime')]
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[AstSignature('(number, number, number) -> datetime')]
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@@ -178,27 +178,27 @@ type
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// --- Functional / Series ---
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[TRtlExport('Memoize', Pure)]
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[TRtlExport('memoize', Pure)]
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[AstDoc('Creates a memoized version of a function for performance.')]
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[AstSignature('((any) -> any) -> ((any) -> any)')]
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class function Memoize(const Args: TArray<TDataValue>): TDataValue; static;
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[TRtlExport('Map', Pure)]
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[TRtlExport('map', Pure)]
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[AstDoc('Applies a function to every element of a series.')]
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[AstSignature('(series, (any) -> any) -> series')]
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class function Map(const Args: TArray<TDataValue>): TDataValue; static;
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[TRtlExport('Reduce', Pure)]
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[TRtlExport('reduce', Pure)]
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[AstDoc('Collapses a series into a single value using a reducer function.')]
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[AstSignature('(series, any, (any, any) -> any) -> any')]
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class function Reduce(const Args: TArray<TDataValue>): TDataValue; static;
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[TRtlExport('Where', Pure)]
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[TRtlExport('where', Pure)]
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[AstDoc('Filters a series based on a predicate function.')]
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[AstSignature('(series, (any) -> boolean) -> series')]
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class function Where(const Args: TArray<TDataValue>): TDataValue; static;
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[TRtlExport('Any', Pure)]
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[TRtlExport('any', Pure)]
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[AstDoc('Returns true if at least one element satisfies the predicate.')]
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[AstSignature('(series, (any) -> boolean) -> boolean')]
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class function Any(const Args: TArray<TDataValue>): TDataValue; static;
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@@ -324,31 +324,31 @@ type
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[TRtlExport('not', Pure)]
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class function Not_Ordinal_Ordinal(A: Int64): Int64; static;
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[TRtlExport('Abs', Pure)]
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[TRtlExport('abs', Pure)]
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class function Abs_Ordinal_Ordinal(A: Int64): Int64; static;
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[TRtlExport('Abs', Pure)]
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[TRtlExport('abs', Pure)]
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class function Abs_Float_Float(A: Double): Double; static;
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[TRtlExport('Round', Pure)]
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[TRtlExport('round', Pure)]
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class function Round_Ordinal_Ordinal(A: Int64): Int64; static;
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[TRtlExport('Round', Pure)]
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[TRtlExport('round', Pure)]
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class function Round_Float_Ordinal(A: Double): Int64; static;
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[TRtlExport('Trunc', Pure)]
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[TRtlExport('trunc', Pure)]
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class function Trunc_Ordinal_Ordinal(A: Int64): Int64; static;
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[TRtlExport('Trunc', Pure)]
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[TRtlExport('trunc', Pure)]
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class function Trunc_Float_Ordinal(A: Double): Int64; static;
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[TRtlExport('Sqrt', Pure)]
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[TRtlExport('sqrt', Pure)]
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class function Sqrt_Ordinal_Float(A: Int64): Double; static;
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[TRtlExport('Sqrt', Pure)]
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[TRtlExport('sqrt', Pure)]
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class function Sqrt_Float_Float(A: Double): Double; static;
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[TRtlExport('Pow', Pure)]
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[TRtlExport('pow', Pure)]
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class function Pow_Ordinal_Ordinal_Float(A, B: Int64): Double; static;
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[TRtlExport('Pow', Pure)]
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[TRtlExport('pow', Pure)]
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class function Pow_Float_Float_Float(A, B: Double): Double; static;
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[TRtlExport('Pow', Pure)]
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[TRtlExport('pow', Pure)]
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class function Pow_Ordinal_Float_Float(A: Int64; B: Double): Double; static;
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[TRtlExport('Pow', Pure)]
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[TRtlExport('pow', Pure)]
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class function Pow_Float_Ordinal_Float(A: Double; B: Int64): Double; static;
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end;
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@@ -65,7 +65,7 @@ var
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Expected: TDateTime;
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begin
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// Act
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Res := FEnv.Run(TAstScript.Parse('(Date 2025 11 24)'));
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Res := FEnv.Run(TAstScript.Parse('(date 2025 11 24)'));
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// Assert
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Assert.AreEqual(TDataValueKind.vkScalar, Res.Kind, 'Result should be scalar');
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@@ -85,7 +85,7 @@ begin
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Sleep(1);
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// Act
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Res := FEnv.Run(TAstScript.Parse('(Now)'));
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Res := FEnv.Run(TAstScript.Parse('(now)'));
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After := System.SysUtils.Now;
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@@ -103,7 +103,7 @@ var
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Res: TDataValue;
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begin
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// (> (Date y1 m1 d1) (Date y2 m2 d2))
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Script := Format('(> (Date %d %d %d) (Date %d %d %d))', [Y1, M1, D1, Y2, M2, D2]);
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Script := Format('(> (date %d %d %d) (date %d %d %d))', [Y1, M1, D1, Y2, M2, D2]);
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Res := FEnv.Run(TAstScript.Parse(Script));
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@@ -120,7 +120,7 @@ var
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Res: TDataValue;
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begin
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// (= (Date 2023 10 10) (Date 2023 10 10))
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Res := FEnv.Run(TAstScript.Parse('(= (Date 2023 10 10) (Date 2023 10 10))'));
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Res := FEnv.Run(TAstScript.Parse('(= (date 2023 10 10) (date 2023 10 10))'));
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Assert.AreEqual(TScalar.TKind.Boolean, Res.AsScalar.Kind);
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Assert.AreEqual(Int64(1), Res.AsScalar.Value.AsInt64);
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@@ -132,7 +132,7 @@ var
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begin
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// (if (Date 2023 1 1) "yes" "no")
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// Checks if IsTruthy correctly handles TKind.DateTime
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Res := FEnv.Run(TAstScript.Parse('(if (Date 2023 1 1) "yes" "no")'));
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Res := FEnv.Run(TAstScript.Parse('(if (date 2023 1 1) "yes" "no")'));
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Assert.AreEqual(TDataValueKind.vkText, Res.Kind);
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Assert.AreEqual('yes', Res.AsText);
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@@ -151,7 +151,7 @@ begin
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InputDate := EncodeDate(2023, 11, 24);
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Expected := System.Round(InputDate);
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Res := FEnv.Run(TAstScript.Parse('(Round (Date 2023 11 24))'));
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Res := FEnv.Run(TAstScript.Parse('(round (date 2023 11 24))'));
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Assert.AreEqual(TScalar.TKind.Ordinal, Res.AsScalar.Kind);
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Assert.AreEqual(Expected, Res.AsScalar.Value.AsInt64);
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@@ -128,8 +128,8 @@ procedure TTestMycAstRTL.RTL_Registration_SymbolsArePresent;
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begin
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Assert.AreNotEqual(TAddressKind.akUnresolved, FScope.Resolve('div').Kind);
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Assert.AreNotEqual(TAddressKind.akUnresolved, FScope.Resolve('mod').Kind);
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Assert.AreNotEqual(TAddressKind.akUnresolved, FScope.Resolve('Date').Kind);
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Assert.AreNotEqual(TAddressKind.akUnresolved, FScope.Resolve('Round').Kind);
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Assert.AreNotEqual(TAddressKind.akUnresolved, FScope.Resolve('date').Kind);
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Assert.AreNotEqual(TAddressKind.akUnresolved, FScope.Resolve('round').Kind);
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end;
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procedure TTestMycAstRTL.RTL_Math_Float(const Op: string; A, B, Expected: Double);
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@@ -164,7 +164,7 @@ procedure TTestMycAstRTL.RTL_Round_Works(A: Double; Expected: Int64);
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var
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res: TDataValue;
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begin
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res := Call('Round', [ValF(A)]);
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res := Call('round', [ValF(A)]);
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Assert.AreEqual(TScalar.TKind.Ordinal, res.AsScalar.Kind);
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Assert.AreEqual(Expected, res.AsScalar.Value.AsInt64);
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end;
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@@ -192,7 +192,7 @@ var
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begin
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// 1. Test Date(Y, M, D)
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expectedDate := EncodeDate(2023, 10, 5);
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d := Call('Date', [ValI(2023), ValI(10), ValI(5)]);
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d := Call('date', [ValI(2023), ValI(10), ValI(5)]);
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Assert.AreEqual(TScalar.TKind.DateTime, d.AsScalar.Kind);
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Assert.AreEqual(expectedDate, d.AsScalar.Value.AsDouble, 0.001);
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