Files
MycLib/ASTPlayground/MainForm.pas
T
2025-09-22 19:56:51 +02:00

1019 lines
36 KiB
ObjectPascal

unit MainForm;
interface
uses
System.SysUtils,
System.Types,
System.TypInfo,
System.UITypes,
System.Classes,
System.Variants,
System.Generics.Collections,
System.Math,
FMX.Types,
FMX.Controls,
FMX.Forms,
FMX.Graphics,
FMX.Dialogs,
FMX.Memo.Types,
FMX.StdCtrls,
FMX.ScrollBox,
FMX.Memo,
FMX.Controls.Presentation,
Myc.Data.Scalar,
Myc.Data.Value,
Myc.Ast.Nodes,
Myc.Ast,
Myc.Ast.Evaluator,
Myc.Ast.Dumper,
Myc.Data.Decimal,
Myc.Ast.Binding,
Myc.Ast.RTL,
Myc.Ast.Script,
FMX.Layouts,
FMX.Objects,
Myc.Ast.Debugger,
Myc.Fmx.AstEditor,
Myc.Fmx.AstEditor.Node,
Myc.Fmx.AstEditor.Workspace;
type
// A test record
TOHLCV = record
Timestamp: TDateTime;
Open: Double;
High: Double;
Low: Double;
Close: Double;
Volume: Int64;
end;
TForm1 = class(TForm)
Panel1: TPanel;
Memo1: TMemo;
Test1Button: TButton;
Test2Button: TButton;
PrettyPrintButton: TButton;
RecursionButton: TButton;
ShowScopeBox: TCheckBox;
FibonacciButton: TButton;
CrerateTriggerExampleButton: TButton;
DoTriggerButton: TButton;
DoTrigger2Button: TButton;
Panel2: TPanel;
ClearButton: TButton;
FlowOnlyBox: TCheckBox;
SeriesTestButton: TButton;
OHLCButton: TButton;
DebugBox: TCheckBox;
FromJSONButton: TButton;
ToJSONButton: TButton;
ExternalFuncButton: TButton;
InnerLambdaButton: TButton;
DumpButton: TButton;
FailingUpvalueButton: TButton;
TailCallButten: TButton;
Splitter1: TSplitter;
Splitter2: TSplitter;
ScriptMemo: TMemo;
procedure InnerLambdaButtonClick(Sender: TObject);
procedure ClearButtonClick(Sender: TObject);
procedure FormCreate(Sender: TObject);
procedure CreateTriggerExampleButtonClick(Sender: TObject);
procedure DoTrigger2ButtonClick(Sender: TObject);
procedure DoTriggerButtonClick(Sender: TObject);
procedure DumpButtonClick(Sender: TObject);
procedure ExternalFuncButtonClick(Sender: TObject);
procedure FailingUpvalueButtonClick(Sender: TObject);
procedure FibonacciButtonClick(Sender: TObject);
procedure FlowOnlyBoxChange(Sender: TObject);
procedure OHLCButtonClick(Sender: TObject);
procedure PrettyPrintButtonClick(Sender: TObject);
procedure RecursionButtonClick(Sender: TObject);
procedure SeriesTestButtonClick(Sender: TObject);
procedure Test1ButtonClick(Sender: TObject);
procedure Test2ButtonClick(Sender: TObject);
procedure FromJSONButtonClick(Sender: TObject);
procedure ScriptMemoChange(Sender: TObject);
procedure TailCallButtenClick(Sender: TObject);
procedure ToJSONButtonClick(Sender: TObject);
private
FCurrAst: IAstNode;
FCurrDesc: IScopeDescriptor;
FGScope: IExecutionScope;
FWorkspace: TAuraWorkspace;
FTriggerScope: IExecutionScope;
FScriptUpdate: Boolean;
procedure WorkspaceMouseDown(Sender: TObject; Button: TMouseButton; Shift: TShiftState; X, Y: Single);
function CreateEvaluator(Scope: IExecutionScope): IEvaluatorVisitor;
// Helper function to encapsulate the Bind -> Evaluate pattern
function ExecuteAst(const ANode: IAstNode; const AParentScope: IExecutionScope): TDataValue;
procedure UpdateScript;
procedure ShowVizualization(X, Y: Single);
procedure PrintScript(const Node: IAstNode);
public
{ Public declarations }
end;
var
Form1: TForm1;
implementation
uses
Myc.Data.Scalar.JSON,
System.Diagnostics, // For TStopwatch
Myc.Ast.Json; // For TAstJson serialization
{$R *.fmx}
procedure TForm1.InnerLambdaButtonClick(Sender: TObject);
var
mainBlock: IAstNode;
resultValue: TDataValue;
begin
mainBlock :=
TAst.Block(
[
TAst.VarDecl(
TAst.Identifier('outer'),
TAst.LambdaExpr(
[],
TAst.Block(
[
TAst.VarDecl(TAst.Identifier('x'), TAst.Constant(10)),
TAst.VarDecl(
TAst.Identifier('inner'),
TAst.LambdaExpr(
[],
TAst.Block(
[
TAst.VarDecl(
TAst.Identifier('innermost'),
TAst.LambdaExpr(
[],
TAst.Assign(
TAst.Identifier('x'),
TAst.BinaryExpr(TAst.Identifier('x'), TScalar.TBinaryOp.Add, TAst.Constant(5))
)
)
),
TAst.FunctionCall(TAst.Identifier('innermost'), [])
]
)
)
),
TAst.FunctionCall(TAst.Identifier('inner'), []),
TAst.Identifier('x')
]
)
)
),
TAst.VarDecl(TAst.Identifier('finalResult'), TAst.FunctionCall(TAst.Identifier('outer'), []))
]
);
resultValue := ExecuteAst(mainBlock, FGScope);
Assert(TScalar.FromInt64(15) = resultValue.AsScalar, 'The final result should be 15, but is ' + resultValue.AsScalar.ToString);
UpdateScript;
end;
procedure TForm1.ClearButtonClick(Sender: TObject);
begin
FWorkspace.DeleteChildren;
FWorkspace.Repaint;
FGScope := TAst.CreateScope(nil);
RegisterNativeFunctions(FGScope);
end;
function TForm1.ExecuteAst(const ANode: IAstNode; const AParentScope: IExecutionScope): TDataValue;
var
binder: IAstBinder;
scriptScope: IExecutionScope;
visitor: IEvaluatorVisitor;
begin
binder := TAstBinder.Create(AParentScope);
FCurrAst := binder.Execute(ANode, FCurrDesc);
scriptScope := FCurrDesc.CreateScope(AParentScope);
visitor := CreateEvaluator(scriptScope);
Result := visitor.Execute(FCurrAst);
end;
procedure TForm1.FormCreate(Sender: TObject);
begin
FWorkspace := TAuraWorkspace.Create(Panel2);
FWorkspace.Parent := Panel2;
FWorkspace.Align := TAlignLayout.Client;
FWorkspace.ClipChildren := true;
FWorkspace.OnMouseDown := WorkspaceMouseDown;
Tast.RegisterLibrary(
procedure(const Scope: IExecutionScope)
var
smaAst, boundSmaAst: IAstNode;
binder: IAstBinder;
smaDescriptor: IScopeDescriptor;
smaScope: IExecutionScope;
smaVisitor: IEvaluatorVisitor;
begin
smaAst :=
TAst.LambdaExpr(
[TAst.Identifier('len')],
TAst.Block(
[
TAst.VarDecl(TAst.Identifier('sum'), TAst.Constant(0.0)),
TAst.VarDecl(TAst.Identifier('count'), TAst.Constant(0)),
TAst.LambdaExpr(
[TAst.Identifier('series'), TAst.Identifier('val')],
TAst.Block(
[
TAst.Assign(
TAst.Identifier('sum'),
TAst.BinaryExpr(TAst.Identifier('sum'), TScalar.TBinaryOp.Add, TAst.Identifier('val'))
),
TAst.Assign(
TAst.Identifier('count'),
TAst.BinaryExpr(TAst.Identifier('count'), TScalar.TBinaryOp.Add, TAst.Constant(1))
),
TAst.Assign(
TAst.Identifier('sum'),
TAst.TernaryExpr(
TAst.BinaryExpr(
TAst.Identifier('count'),
TScalar.TBinaryOp.Greater,
TAst.Identifier('len')
),
TAst.BinaryExpr(
TAst.Identifier('sum'),
TScalar.TBinaryOp.Subtract,
TAst.Indexer(TAst.Identifier('series'), TAst.Identifier('len'))
),
TAst.Identifier('sum')
)
),
TAst.BinaryExpr(
TAst.Identifier('sum'),
TScalar.TBinaryOp.Divide,
TAst.TernaryExpr(
TAst.BinaryExpr(TAst.Identifier('count'), TScalar.TBinaryOp.Less, TAst.Identifier('len')),
TAst.Identifier('count'),
TAst.Identifier('len')
)
)
]
)
)
]
)
);
binder := TAstBinder.Create(FGScope);
boundSmaAst := binder.Execute(smaAst, smaDescriptor);
smaScope := smaDescriptor.CreateScope(FGScope);
smaVisitor := CreateEvaluator(smaScope);
Scope.Define('CreateSMA', smaVisitor.Execute(boundSmaAst));
end
);
ClearButtonClick(Self);
end;
procedure TForm1.FibonacciButtonClick(Sender: TObject);
var
root, fibAst, boundFibAst: IAstNode;
result: TDataValue;
sw: TStopwatch;
fibScope: IExecutionScope;
visitor: IEvaluatorVisitor;
binder: IAstBinder;
begin
fibAst :=
TAst.Block(
[
TAst.VarDecl(TAst.Identifier('fib')),
TAst.Assign(
TAst.Identifier('fib'),
TAst.LambdaExpr(
[TAst.Identifier('n')],
TAst.TernaryExpr(
TAst.BinaryExpr(TAst.Identifier('n'), TScalar.TBinaryOp.Less, TAst.Constant(2)),
TAst.Identifier('n'),
TAst.BinaryExpr(
TAst.FunctionCall(
TAst.Identifier('fib'),
[TAst.BinaryExpr(TAst.Identifier('n'), TScalar.TBinaryOp.Subtract, TAst.Constant(1))]
),
TScalar.TBinaryOp.Add,
TAst.FunctionCall(
TAst.Identifier('fib'),
[TAst.BinaryExpr(TAst.Identifier('n'), TScalar.TBinaryOp.Subtract, TAst.Constant(2))]
)
)
)
)
)
]
);
binder := TAstBinder.Create(FGScope);
var desc: IScopeDescriptor;
boundFibAst := binder.Execute(fibAst, desc);
fibScope := desc.CreateScope(FGScope);
visitor := CreateEvaluator(fibScope);
visitor.Execute(boundFibAst);
Memo1.Lines.Clear;
Memo1.Lines.Add('--- Naive recursive fib with AST---');
sw := TStopwatch.StartNew;
root := TAst.FunctionCall(TAst.Identifier('fib'), [TAst.Constant(25)]);
result := ExecuteAst(root, fibScope);
sw.Stop;
Memo1.Lines.Add(Format('Result: fib(25) %s (calculated in %d ms)', [result.ToString, sw.ElapsedMilliseconds]));
Memo1.Lines.Add('');
Memo1.Lines.Add('--- Memoized naive fib with AST (using global fib)---');
sw := TStopwatch.StartNew;
root :=
TAst.Block(
[
TAst.Assign(TAst.Identifier('fib'), TAst.FunctionCall(TAst.Identifier('Memoize'), [TAst.Identifier('fib')])),
TAst.FunctionCall(TAst.Identifier('fib'), [TAst.Constant(25)])
]
);
result := ExecuteAst(root, fibScope);
sw.Stop;
Memo1.Lines.Add(Format('Result: fib(25) %s (calculated in %d ms)', [result.ToString, sw.ElapsedMilliseconds]));
UpdateScript;
end;
procedure TForm1.PrettyPrintButtonClick(Sender: TObject);
begin
Memo1.Lines.Clear;
Memo1.Lines.Add('--- AST Pretty Print ---');
if not Assigned(FCurrAst) then
begin
Memo1.Lines.Add('No AST has been generated yet.');
exit;
end;
Memo1.Lines.Add(TAstScript.Print(FCurrAst));
end;
procedure TForm1.RecursionButtonClick(Sender: TObject);
var
root: IAstNode;
result: TDataValue;
sw: TStopwatch;
begin
Memo1.Lines.Clear;
Memo1.Lines.Add('--- Tail-Recursive factorial(20) ---');
sw := TStopwatch.StartNew;
// Rewritten to be tail-recursive to use 'recur'
root :=
TAst.Block(
[
// Define the tail-recursive helper function
TAst.VarDecl(
TAst.Identifier('fact_iter'),
TAst.LambdaExpr(
[TAst.Identifier('n'), TAst.Identifier('acc')],
TAst.TernaryExpr(
TAst.BinaryExpr(TAst.Identifier('n'), TScalar.TBinaryOp.LessOrEqual, TAst.Constant(1)),
TAst.Identifier('acc'), // Base case: return the accumulator
TAst.Recur( // Tail-recursive step
[
TAst.BinaryExpr(TAst.Identifier('n'), TScalar.TBinaryOp.Subtract, TAst.Constant(1)),
TAst.BinaryExpr(TAst.Identifier('acc'), TScalar.TBinaryOp.Multiply, TAst.Identifier('n'))
]
)
)
)
),
// Define the public-facing factorial function
TAst.VarDecl(
TAst.Identifier('factorial'),
TAst.LambdaExpr(
[TAst.Identifier('n')],
TAst.FunctionCall(TAst.Identifier('fact_iter'), [TAst.Identifier('n'), TAst.Constant(1)])
)
),
// Call the main function
TAst.FunctionCall(TAst.Identifier('factorial'), [TAst.Constant(20)])
]
);
// Execute with FGScope as parent.
result := ExecuteAst(root, FGScope);
sw.Stop;
Memo1.Lines.Add(Format('Result: %s (calculated in %d ms)', [result.ToString, sw.ElapsedMilliseconds]));
UpdateScript;
end;
procedure TForm1.SeriesTestButtonClick(Sender: TObject);
var
ast, callAst: IAstNode;
resultValue: TDataValue;
series: TScalarRecordSeries;
recordDef: TScalarRecordDefinition;
i: Integer;
scope: IExecutionScope;
values: TArray<TScalar.TValue>;
begin
Memo1.Lines.Clear;
Memo1.Lines.Add('--- Series Test ---');
scope := TAst.CreateScope(FGScope);
recordDef := TRttiAstHelper.JsonToRecordDefinition(TRttiAstHelper.RecordDefinitionToJson<TOHLCV>);
series := TScalarRecordSeries.Create(recordDef);
SetLength(values, 6);
for i := 0 to 4 do
begin
values[0].AsInt64 := Round((Now + i) * 24 * 60 * 60 * 1000);
values[1].AsDouble := 100.0 + i;
values[2].AsDouble := 105.0 + i;
values[3].AsDouble := 98.0 + i;
values[4].AsDouble := 102.0 + i;
values[5].AsInt64 := 10000 * (i + 1);
series.Add(TScalarRecord.Create(recordDef, values));
end;
scope.Define('ohlcvSeries', TDataValue.FromRecordSeries(series));
ast :=
TAst.LambdaExpr(
[],
TAst.Block(
[
TAst.VarDecl(
TAst.Identifier('closeColumn'),
TAst.MemberAccess(TAst.Identifier('ohlcvSeries'), TAst.Identifier('Close'))
),
TAst.Indexer(TAst.Identifier('closeColumn'), TAst.Constant(1))
]
)
);
callAst := TAst.FunctionCall(ast, []);
resultValue := ExecuteAst(callAst, scope);
Memo1.Lines.Add(Format('Result of script: %s', [resultValue.ToString]));
UpdateScript;
end;
procedure TForm1.Test1ButtonClick(Sender: TObject);
var
main, callAst: IAstNode;
result: TDataValue;
sw: TStopwatch;
begin
Memo1.Lines.Clear;
Memo1.Lines.Add('--- Simple AST Execution ---');
sw := TStopwatch.StartNew;
main :=
TAst.LambdaExpr(
[],
TAst.Block(
[
TAst.VarDecl(TAst.Identifier('a'), TAst.Constant(10)),
TAst.VarDecl(TAst.Identifier('b'), TAst.BinaryExpr(TAst.Identifier('a'), TScalar.TBinaryOp.Multiply, TAst.Constant(2))),
TAst.BinaryExpr(TAst.Identifier('a'), TScalar.TBinaryOp.Add, TAst.Identifier('b'))
]
)
);
callAst := TAst.FunctionCall(main, []);
result := ExecuteAst(callAst, FGScope);
sw.Stop;
Memo1.Lines.Add(Format('Result: %s (calculated in %d ms)', [result.ToString, sw.ElapsedMilliseconds]));
UpdateScript;
end;
procedure TForm1.Test2ButtonClick(Sender: TObject);
var
root: IAstNode;
result: TDataValue;
sw: TStopwatch;
begin
Memo1.Lines.Clear;
Memo1.Lines.Add('--- Factory Pattern Demo ---');
sw := TStopwatch.StartNew;
root :=
TAst.Block(
[
TAst.VarDecl(
TAst.Identifier('createStrategyInstance'),
TAst.LambdaExpr(
[TAst.Identifier('offset')],
TAst.Block(
[
TAst.VarDecl(TAst.Identifier('baseValue'), TAst.Constant(100)),
TAst.BinaryExpr(TAst.Identifier('baseValue'), TScalar.TBinaryOp.Add, TAst.Identifier('offset'))
]
)
)
),
TAst.FunctionCall(TAst.Identifier('createStrategyInstance'), [TAst.Constant(20)]),
TAst.FunctionCall(TAst.Identifier('createStrategyInstance'), [TAst.Constant(55)])
]
);
result := ExecuteAst(root, FGScope);
sw.Stop;
Memo1.Lines.Add(Format('Result of the final expression: %s (calculated in %d ms)', [result.ToString, sw.ElapsedMilliseconds]));
UpdateScript;
end;
procedure TForm1.WorkspaceMouseDown(Sender: TObject; Button: TMouseButton; Shift: TShiftState; X, Y: Single);
begin
if Button <> TMouseButton.mbMiddle then
exit;
ShowVizualization(X, Y);
end;
procedure TForm1.OHLCButtonClick(Sender: TObject);
const
numRecs = 1000;
lookback = 50;
smaSlowLength = 20;
smaFastLength = 10;
var
scope: IExecutionScope;
values: TArray<TScalar.TValue>;
recordValue: TScalarRecord;
binder: IAstBinder;
setupAst, boundSetupAst, callAst, boundCallAst: IAstNode;
setupDescriptor, callDescriptor: IScopeDescriptor;
seriesAddress: TResolvedAddress;
begin
Memo1.Lines.Clear;
Memo1.Lines.Add(Format('--- Simulating O(1) SMA Crossover Strategy for %d ticks ---', [numRecs]));
var sw := TStopwatch.StartNew;
setupAst :=
TAst.Block(
[
TAst.VarDecl(TAst.Identifier('smaFast'), TAst.FunctionCall(TAst.Identifier('CreateSMA'), [TAst.Constant(smaFastLength)])),
TAst.VarDecl(TAst.Identifier('smaSlow'), TAst.FunctionCall(TAst.Identifier('CreateSMA'), [TAst.Constant(smaSlowLength)])),
TAst.VarDecl(
TAst.Identifier('maCrossStrategy'),
TAst.LambdaExpr(
[TAst.Identifier('ohlcv')],
TAst.Block(
[
TAst.VarDecl(
TAst.Identifier('closeSeries'),
TAst.MemberAccess(TAst.Identifier('ohlcv'), TAst.Identifier('Close'))
),
TAst.VarDecl(
TAst.Identifier('currentClose'),
TAst.Indexer(TAst.Identifier('closeSeries'), TAst.Constant(0))
),
TAst.VarDecl(
TAst.Identifier('valSmaFast'),
TAst.FunctionCall(
TAst.Identifier('smaFast'),
[TAst.Identifier('closeSeries'), TAst.Identifier('currentClose')]
)
),
TAst.VarDecl(
TAst.Identifier('valSmaSlow'),
TAst.FunctionCall(
TAst.Identifier('smaSlow'),
[TAst.Identifier('closeSeries'), TAst.Identifier('currentClose')]
)
),
TAst.TernaryExpr(
TAst.BinaryExpr(
TAst.Identifier('valSmaFast'),
TScalar.TBinaryOp.Greater,
TAst.Identifier('valSmaSlow')
),
TAst.Constant(1),
TAst.Constant(-1)
)
]
)
)
)
]
);
// 1. Bind and execute the setup script.
binder := TAstBinder.Create(FGScope);
boundSetupAst := binder.Execute(setupAst, setupDescriptor);
scope := setupDescriptor.CreateScope(FGScope);
var setupVisitor := CreateEvaluator(scope);
setupVisitor.Execute(boundSetupAst);
// 2. Prepare for the simulation loop
scope.Define('current_series', TDataValue.Void);
var currentSeriesIdent := TAst.Identifier('current_series');
callAst := TAst.FunctionCall(TAst.Identifier('maCrossStrategy'), [currentSeriesIdent]);
// 3. Re-bind the call AST within the now-populated scope to resolve the new variable.
binder := TAstBinder.Create(scope);
boundCallAst := binder.Execute(callAst, callDescriptor);
// 4. Get the address of 'current_series' from the new descriptor.
var depth, index: Integer;
if not callDescriptor.FindSymbol('current_series', depth, index) then
raise Exception.Create('Could not resolve current_series address.');
seriesAddress := TResolvedAddress.Create(akLocalOrParent, depth, index);
// 5. Create the final scope and visitor for the simulation loop.
var loopScope := callDescriptor.CreateScope(scope);
var visitor := CreateEvaluator(loopScope);
// 6. Simulation Loop
Memo1.Lines.Add('Starting simulation...');
Application.ProcessMessages;
var lastClose := 1000.0;
Randomize;
var recDef := TRttiAstHelper.JsonToRecordDefinition(TRttiAstHelper.RecordDefinitionToJson<TOHLCV>);
var series := TDataValue.FromRecordSeries(TScalarRecordSeries.Create(recDef));
var nw := Now;
var ohlcvRec: TOHLCV;
for var i := 1 to numRecs do
begin
ohlcvRec.Timestamp := nw + (i / (24 * 60));
ohlcvRec.Open := lastClose + (Random * 0.05);
ohlcvRec.Close := lastClose + (Random - 0.49) * 2;
ohlcvRec.High := Max(ohlcvRec.Open, ohlcvRec.Close) + Random;
ohlcvRec.Low := Min(ohlcvRec.Open, ohlcvRec.Close) - Random;
ohlcvRec.Volume := RandomRange(1000, 50000);
lastClose := ohlcvRec.Close;
SetLength(values, 6);
values[0].AsDouble := ohlcvRec.Timestamp;
values[1].AsDouble := ohlcvRec.Open;
values[2].AsDouble := ohlcvRec.High;
values[3].AsDouble := ohlcvRec.Low;
values[4].AsDouble := ohlcvRec.Close;
values[5].AsInt64 := ohlcvRec.Volume;
recordValue := TScalarRecord.Create(recDef, values);
series.AsRecordSeries.Add(recordValue, lookback);
if series.AsRecordSeries.TotalCount >= smaSlowLength then
begin
loopScope[seriesAddress] := series;
var resultValue := visitor.Execute(boundCallAst);
if i mod 50 = 0 then
begin
Memo1.Lines.Add(Format('Tick %d/%d: Close = %.2f, Signal = %s', [i, numRecs, ohlcvRec.Close, resultValue.ToString]));
Application.ProcessMessages;
end;
end;
end;
sw.Stop;
Memo1.Lines.Add('--- Simulation Finished ---');
Memo1.Lines.Add(Format('Total time: %d ms', [sw.ElapsedMilliseconds]));
UpdateScript;
end;
procedure TForm1.TailCallButtenClick(Sender: TObject);
const
RecursionDepth = 1000000;
var
root: IAstNode;
result: TDataValue;
sw: TStopwatch;
begin
Memo1.Lines.Clear;
Memo1.Lines.Add(Format('--- Testing TCO with recursion depth of %d ---', [RecursionDepth]));
Application.ProcessMessages;
sw := TStopwatch.StartNew;
root :=
TAst.Block(
[
TAst.VarDecl(
TAst.Identifier('countDown'),
TAst.LambdaExpr(
[TAst.Identifier('n')],
TAst.IfExpr(
TAst.BinaryExpr(TAst.Identifier('n'), TScalar.TBinaryOp.Greater, TAst.Constant(0)),
TAst.Recur([TAst.BinaryExpr(TAst.Identifier('n'), TScalar.TBinaryOp.Subtract, TAst.Constant(1))]),
TAst.Constant(0)
)
)
),
TAst.FunctionCall(TAst.Identifier('countDown'), [TAst.Constant(RecursionDepth)])
]
);
result := ExecuteAst(root, FGScope);
sw.Stop;
Memo1.Lines.Add(Format('Result: %s', [result.ToString]));
Memo1.Lines.Add(Format('Execution finished in %d ms without stack overflow.', [sw.ElapsedMilliseconds]));
UpdateScript;
end;
procedure TForm1.CreateTriggerExampleButtonClick(Sender: TObject);
var
blk: IAstNode;
binder: IAstBinder;
visitor: IEvaluatorVisitor;
begin
Memo1.Lines.Clear;
Memo1.Lines.Add('--- Creating Trigger Blueprint ---');
blk :=
TAst.Block(
[
TAst.VarDecl(TAst.Identifier('X'), TAst.Constant(0)),
TAst.VarDecl(
TAst.Identifier('tickHandler'),
TAst.LambdaExpr(
[TAst.Identifier('summand')],
TAst.Assign(
TAst.Identifier('X'),
TAst.BinaryExpr(TAst.Identifier('X'), TScalar.TBinaryOp.Add, TAst.Identifier('summand'))
)
)
)
]
);
binder := TAstBinder.Create(FGScope);
FCurrAst := binder.Execute(blk, FCurrDesc);
FTriggerScope := FCurrDesc.CreateScope(FGScope);
visitor := CreateEvaluator(FTriggerScope);
visitor.Execute(FCurrAst);
Memo1.Lines.Add('Variable "X" and function "tickHandler" defined in persistent scope.');
Memo1.Lines.Add('Click "Do Trigger" to execute.');
UpdateScript;
end;
function TForm1.CreateEvaluator(Scope: IExecutionScope): IEvaluatorVisitor;
begin
if DebugBox.IsChecked then
Result := TDebugEvaluatorVisitor.Create(Scope, Memo1.Lines, ShowScopeBox.IsChecked)
else
Result := TEvaluatorVisitor.Create(Scope);
end;
procedure TForm1.DoTriggerButtonClick(Sender: TObject);
var
callAst: IFunctionCallNode;
begin
callAst := TAst.FunctionCall(TAst.Identifier('tickHandler'), [TAst.Constant(1)]);
var X := ExecuteAst(callAst, FTriggerScope);
Memo1.Lines.Add(Format('Tick(1)! New value of X: %s', [X.ToString]));
UpdateScript;
end;
procedure TForm1.DoTrigger2ButtonClick(Sender: TObject);
var
callAst: IFunctionCallNode;
begin
callAst := TAst.FunctionCall(TAst.Identifier('tickHandler'), [TAst.Constant(2)]);
var X := ExecuteAst(callAst, FTriggerScope);
Memo1.Lines.Add(Format('Tick(2)! New value of X: %s', [X.ToString]));
UpdateScript;
end;
procedure TForm1.DumpButtonClick(Sender: TObject);
var
binder: IAstBinder;
boundNode: IAstNode;
begin
Memo1.Lines.Clear;
Memo1.Lines.Add('--- AST Dump ---');
if not Assigned(FCurrAst) then
begin
Memo1.Lines.Add('No AST has been generated yet. Click a test button first.');
exit;
end;
boundNode := binder.Execute(FCurrAst, FCurrDesc);
TAstDumper.Dump(boundNode, Memo1.Lines);
end;
procedure TForm1.ExternalFuncButtonClick(Sender: TObject);
var
scope: IExecutionScope;
callAst: IAstNode;
resultValue: TDataValue;
begin
Memo1.Lines.Clear;
Memo1.Lines.Add('--- Calling external Delphi function from AST ---');
scope := TAst.CreateScope(FGScope);
scope.Define(
'delphiAdd',
function(const ArgNodes: TArray<TDataValue>): TDataValue
var
val1, val2: Int64;
begin
if Length(ArgNodes) <> 2 then
raise Exception.Create('delphiAdd requires exactly 2 arguments.');
val1 := ArgNodes[0].AsScalar.Value.AsInt64;
val2 := ArgNodes[1].AsScalar.Value.AsInt64;
Result := TScalar.FromInt64(val1 + val2);
end
);
callAst := TAst.FunctionCall(TAst.Identifier('delphiAdd'), [TAst.Constant(100), TAst.Constant(123)]);
resultValue := ExecuteAst(callAst, scope);
Memo1.Lines.Add(Format('Result from delphiAdd(100, 123): %s', [resultValue.ToString]));
UpdateScript;
end;
procedure TForm1.FailingUpvalueButtonClick(Sender: TObject);
var
mainBlock: IAstNode;
resultValue: TDataValue;
begin
mainBlock :=
TAst.Block(
[
TAst.VarDecl(TAst.Identifier('a'), TAst.Constant(10)),
TAst.VarDecl(
TAst.Identifier('modifier'),
TAst.LambdaExpr(
[], // Outer modifier shell
TAst.LambdaExpr(
[], // Inner closure that is returned
TAst.Assign(
TAst.Identifier('a'),
TAst.BinaryExpr(TAst.Identifier('a'), TScalar.TBinaryOp.Add, TAst.Constant(5))
)
)
)
),
TAst.VarDecl(TAst.Identifier('reader'), TAst.LambdaExpr([], TAst.Identifier('a'))),
TAst.VarDecl(TAst.Identifier('innermost_closure'), TAst.FunctionCall(TAst.Identifier('modifier'), [])),
TAst.FunctionCall(TAst.Identifier('innermost_closure'), []),
TAst.FunctionCall(TAst.Identifier('reader'), [])
]
);
Memo1.Lines.Clear;
Memo1.Lines.Add('--- Executing Corrected Upvalue Test ---');
resultValue := ExecuteAst(mainBlock, FGScope);
var res := resultValue.AsScalar.Value.AsInt64;
if res = 15 then
Memo1.Lines.Add('SUCCESS: The result is 15.')
else
Memo1.Lines.Add(Format('FAILURE: Expected 15, but got %s.', [resultValue.ToString]));
Assert(TScalar.FromInt64(15) = resultValue.AsScalar, 'The final result should be 15.');
Memo1.Lines.Add('Please check the new dump.');
UpdateScript;
end;
procedure TForm1.FlowOnlyBoxChange(Sender: TObject);
begin
UpdateScript;
end;
procedure TForm1.FromJSONButtonClick(Sender: TObject);
var
jsonString: string;
begin
Memo1.Lines.BeginUpdate;
try
jsonString := Memo1.Lines.Text;
Memo1.Lines.Clear;
if jsonString.IsEmpty then
begin
Memo1.Lines.Add('Memo is empty. Please paste an AST JSON string.');
exit;
end;
try
var binder := TAstBinder.Create(FGScope);
FCurrAst := binder.Execute(TAstJson.Deserialize(jsonString), FCurrDesc);
Memo1.Lines.Add('AST deserialized successfully from JSON.');
Memo1.Lines.Add('You can now visualize it (Middle Mouse Click) or pretty-print it.');
except
on E: Exception do
begin
FCurrAst := nil;
FCurrDesc := nil;
Memo1.Lines.Add('Error deserializing AST from JSON:');
Memo1.Lines.Add(E.Message);
Memo1.Lines.Add('--- Original JSON ---');
Memo1.Lines.Text := Memo1.Lines.Text + sLineBreak + jsonString;
end;
end;
finally
Memo1.Lines.EndUpdate;
end;
UpdateScript;
end;
procedure TForm1.PrintScript(const Node: IAstNode);
begin
try
FScriptUpdate := true;
try
if Assigned(Node) then
ScriptMemo.Lines.Text := TAstScript.Print(Node)
else
ScriptMemo.Lines.Clear;
finally
FScriptUpdate := false;
end;
except
on E: Exception do
ScriptMemo.Lines.Add(E.Message);
end;
end;
procedure TForm1.ScriptMemoChange(Sender: TObject);
begin
if FScriptUpdate then
exit;
Memo1.Lines.Clear;
try
var binder := TAstBinder.Create(FGScope);
FCurrAst := binder.Execute(TAstScript.Parse(ScriptMemo.Lines.Text), FCurrDesc);
FWorkspace.DeleteChildren;
ShowVizualization(14, 14);
except
on E: Exception do
Memo1.Lines.Add(E.Message);
end;
end;
procedure TForm1.ToJSONButtonClick(Sender: TObject);
var
jsonString: string;
begin
Memo1.Lines.Clear;
if not Assigned(FCurrAst) then
begin
Memo1.Lines.Add('No AST available to serialize. Please generate one first.');
exit;
end;
try
jsonString := TAstJson.Serialize(FCurrAst);
Memo1.Lines.Text := jsonString;
except
on E: Exception do
begin
Memo1.Lines.Add('Error serializing AST to JSON:');
Memo1.Lines.Add(E.Message);
end;
end;
end;
procedure TForm1.UpdateScript;
begin
PrintScript(FCurrAst);
FWorkspace.DeleteChildren;
ShowVizualization(14, 14);
end;
procedure TForm1.ShowVizualization(X, Y: Single);
begin
if FCurrAst <> nil then
begin
var visu := TVisualizationMode.vmDetailed;
if FlowOnlyBox.IsChecked then
visu := TVisualizationMode.vmControlFlow;
FWorkspace.BuildTree(FCurrAst, FCurrDesc, TPointF.Create(X, Y), visu);
end;
end;
end.