Shorten the array syntax
This commit is contained in:
@ -13,17 +13,17 @@ type
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end;
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(* Calls lexer_lex() but skips the comments. *)
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proc transpiler_lex(ALexer: PLexer): LexerToken;
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proc transpiler_lex(lexer: PLexer): LexerToken;
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var
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Result: LexerToken;
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result: LexerToken;
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begin
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Result := lexer_lex(ALexer);
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result := lexer_lex(lexer);
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while Result.Kind = lexerKindComment do
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Result := lexer_lex(ALexer)
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while result.Kind = lexerKindComment do
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result := lexer_lex(lexer)
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end;
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return Result
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return result
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end;
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(* Write a semicolon followed by a newline. *)
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@ -33,552 +33,569 @@ begin
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WriteLn()
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end;
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proc transpile_import(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_import(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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WrittenBytes: CARDINAL;
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token: LexerToken;
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written_bytes: CARDINAL;
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begin
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WriteString('FROM ');
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Token := transpiler_lex(ALexer);
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token := transpiler_lex(lexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(ALexer);
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token := transpiler_lex(lexer);
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WriteString(' IMPORT ');
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Token := transpiler_lex(ALexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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token := transpiler_lex(lexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(ALexer);
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while Token.Kind <> lexerKindSemicolon do
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token := transpiler_lex(lexer);
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while token.Kind <> lexerKindSemicolon do
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WriteString(', ');
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Token := transpiler_lex(ALexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := transpiler_lex(ALexer)
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token := transpiler_lex(lexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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token := transpiler_lex(lexer)
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end;
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write_semicolon();
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Token := transpiler_lex(ALexer)
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token := transpiler_lex(lexer)
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end;
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proc transpile_import_part(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_import_part(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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token: LexerToken;
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begin
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Token := lexer_current(ALexer);
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token := lexer_current(lexer);
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while Token.Kind = lexerKindFrom do
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transpile_import(AContext, ALexer);
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Token := lexer_current(ALexer)
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while token.Kind = lexerKindFrom do
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transpile_import(context, lexer);
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token := lexer_current(lexer)
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end;
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WriteLn()
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end;
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proc transpile_constant(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_constant(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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WrittenBytes: CARDINAL;
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written_bytes: CARDINAL;
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begin
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WriteString(' ');
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Token := lexer_current(ALexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := lexer_current(lexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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WriteString(' = ');
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Token := transpiler_lex(ALexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := transpiler_lex(lexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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write_semicolon()
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end;
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proc transpile_constant_part(AContext: PTranspilerContext; ALexer: PLexer): BOOLEAN;
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proc transpile_constant_part(context: PTranspilerContext, lexer: PLexer): BOOLEAN;
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var
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Token: LexerToken;
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Result: BOOLEAN;
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result: BOOLEAN;
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begin
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Token := lexer_current(ALexer);
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Result := Token.Kind = lexerKindConst;
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Token := lexer_current(lexer);
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result := Token.Kind = lexerKindConst;
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if Result then
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if result then
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WriteString('CONST');
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WriteLn();
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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while Token.Kind = lexerKindIdentifier do
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transpile_constant(AContext, ALexer);
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Token := transpiler_lex(ALexer)
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transpile_constant(context, lexer);
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Token := transpiler_lex(lexer)
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end
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end;
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return Result
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return result
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end;
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proc transpile_module(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_module(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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WrittenBytes: CARDINAL;
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written_bytes: CARDINAL;
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begin
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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if Token.Kind = lexerKindDefinition then
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WriteString('DEFINITION ');
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Token := transpiler_lex(ALexer)
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Token := transpiler_lex(lexer)
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end;
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if Token.Kind = lexerKindImplementation then
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WriteString('IMPLEMENTATION ');
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Token := transpiler_lex(ALexer)
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Token := transpiler_lex(lexer)
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end;
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WriteString('MODULE ');
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(* Write the module name and end the line with a semicolon and newline. *)
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Token := transpiler_lex(ALexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := transpiler_lex(lexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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write_semicolon();
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WriteLn();
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(* Write the module body. *)
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Token := transpiler_lex(ALexer);
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transpile_import_part(AContext, ALexer);
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if transpile_constant_part(AContext, ALexer) then
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Token := transpiler_lex(lexer);
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transpile_import_part(context, lexer);
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if transpile_constant_part(context, lexer) then
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WriteLn()
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end;
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transpile_type_part(AContext, ALexer);
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if transpile_variable_part(AContext, ALexer) then
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transpile_type_part(context, lexer);
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if transpile_variable_part(context, lexer) then
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WriteLn()
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end;
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transpile_procedure_part(AContext, ALexer);
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transpile_statement_part(AContext, ALexer);
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transpile_procedure_part(context, lexer);
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transpile_statement_part(context, lexer);
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WriteString('END ');
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Token := transpiler_lex(ALexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := transpiler_lex(lexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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Write('.');
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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WriteLn()
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end;
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proc transpile_type_fields(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_type_fields(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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WrittenBytes: CARDINAL;
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written_bytes: CARDINAL;
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begin
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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while Token.Kind <> lexerKindEnd do
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WriteString(' ');
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := transpiler_lex(ALexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(lexer);
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WriteString(': ');
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transpile_type_expression(AContext, ALexer);
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Token := transpiler_lex(ALexer);
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transpile_type_expression(context, lexer);
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Token := transpiler_lex(lexer);
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if Token.Kind = lexerKindSemicolon then
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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Write(';')
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end;
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WriteLn()
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end
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end;
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proc transpile_record_type(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_record_type(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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begin
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WriteString('RECORD');
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WriteLn();
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transpile_type_fields(AContext, ALexer);
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transpile_type_fields(context, lexer);
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WriteString(' END')
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end;
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proc transpile_pointer_type(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_pointer_type(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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WrittenBytes: CARDINAL;
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written_bytes: CARDINAL;
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begin
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Token := lexer_current(ALexer);
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Token := lexer_current(lexer);
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WriteString('POINTER TO ');
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if Token.Kind = lexerKindPointer then
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Token := transpiler_lex(ALexer)
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Token := transpiler_lex(lexer)
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end;
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transpile_type_expression(AContext, ALexer)
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transpile_type_expression(context, lexer)
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end;
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proc transpile_array_type(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_array_type(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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WrittenBytes: CARDINAL;
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written_bytes: CARDINAL;
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begin
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WriteString('ARRAY');
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Token := transpiler_lex(ALexer);
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Token := lexer_current(lexer);
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if Token.Kind = lexerKindArray then
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Token := transpiler_lex(lexer)
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end;
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if Token.Kind <> lexerKindOf then
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Write('[');
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Token := transpiler_lex(ALexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := transpiler_lex(ALexer);
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WriteString('..');
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Token := transpiler_lex(ALexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := transpiler_lex(ALexer);
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Write(']');
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Token := transpiler_lex(ALexer)
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WriteString('[1..');
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Token := transpiler_lex(lexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(lexer);
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Write(']')
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end;
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WriteString(' OF ');
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transpile_type_expression(AContext, ALexer)
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transpile_type_expression(context, lexer)
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end;
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proc transpile_enumeration_type(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_enumeration_type(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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WrittenBytes: CARDINAL;
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written_bytes: CARDINAL;
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begin
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WriteString('(');
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WriteLn();
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WriteString(' ');
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Token := transpiler_lex(ALexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := transpiler_lex(lexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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while Token.Kind = lexerKindComma do
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Write(',');
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WriteLn();
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WriteString(' ');
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Token := transpiler_lex(ALexer);
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := transpiler_lex(lexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(ALexer)
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Token := transpiler_lex(lexer)
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end;
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WriteLn();
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WriteString(' )')
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end;
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proc transpile_union_type(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_union_type(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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end;
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proc transpile_procedure_type(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_procedure_type(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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WrittenBytes: CARDINAL;
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written_bytes: CARDINAL;
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begin
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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WriteString('PROCEDURE(');
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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while Token.Kind <> lexerKindRightParen do
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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if Token.Kind = lexerKindComma then
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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WriteString(', ')
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end
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end;
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Write(')')
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end;
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proc transpile_type_expression(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_type_expression(context: PTranspilerContext, lexer: PLexer);
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var
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Token: LexerToken;
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WrittenBytes: CARDINAL;
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written_bytes: CARDINAL;
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begin
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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if Token.Kind = lexerKindRecord then
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transpile_record_type(AContext, ALexer)
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transpile_record_type(context, lexer)
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end;
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if Token.Kind = lexerKindLeftParen then
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transpile_enumeration_type(AContext, ALexer)
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transpile_enumeration_type(context, lexer)
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end;
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if Token.Kind = lexerKindArray then
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transpile_array_type(AContext, ALexer)
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if (Token.Kind = lexerKindArray) or (Token.Kind = lexerKindLeftSquare) then
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transpile_array_type(context, lexer)
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end;
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if (Token.Kind = lexerKindPointer) OR (Token.Kind = lexerKindHat) then
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transpile_pointer_type(AContext, ALexer)
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if Token.Kind = lexerKindHat then
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transpile_pointer_type(context, lexer)
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end;
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if Token.Kind = lexerKindProc then
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transpile_procedure_type(AContext, ALexer)
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transpile_procedure_type(context, lexer)
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end;
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if Token.Kind = lexerKindIdentifier then
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WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start)
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start)
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end
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end;
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proc transpile_type_declaration(AContext: PTranspilerContext; ALexer: PLexer);
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proc transpile_type_declaration(context: PTranspilerContext, lexer: PLexer);
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var
|
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Token: LexerToken;
|
||||
WrittenBytes: CARDINAL;
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written_bytes: CARDINAL;
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begin
|
||||
WriteString(' ');
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||||
Token := lexer_current(ALexer);
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||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
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Token := lexer_current(lexer);
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written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
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||||
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Token := transpiler_lex(ALexer);
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Token := transpiler_lex(lexer);
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||||
WriteString(' = ');
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transpile_type_expression(AContext, ALexer);
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Token := transpiler_lex(ALexer);
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transpile_type_expression(context, lexer);
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Token := transpiler_lex(lexer);
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||||
write_semicolon();
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||||
end;
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||||
|
||||
proc transpile_type_part(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_type_part(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
token: LexerToken;
|
||||
begin
|
||||
Token := lexer_current(ALexer);
|
||||
token := lexer_current(lexer);
|
||||
|
||||
if Token.Kind = lexerKindType then
|
||||
if token.Kind = lexerKindType then
|
||||
WriteString('TYPE');
|
||||
WriteLn();
|
||||
Token := transpiler_lex(ALexer);
|
||||
token := transpiler_lex(lexer);
|
||||
|
||||
while Token.Kind = lexerKindIdentifier do
|
||||
transpile_type_declaration(AContext, ALexer);
|
||||
Token := transpiler_lex(ALexer)
|
||||
while token.Kind = lexerKindIdentifier do
|
||||
transpile_type_declaration(context, lexer);
|
||||
token := transpiler_lex(lexer)
|
||||
end;
|
||||
WriteLn()
|
||||
end
|
||||
end;
|
||||
|
||||
proc transpile_variable_declaration(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_variable_declaration(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
WrittenBytes: CARDINAL;
|
||||
written_bytes: CARDINAL;
|
||||
begin
|
||||
WriteString(' ');
|
||||
Token := lexer_current(ALexer);
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
Token := lexer_current(lexer);
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
|
||||
Token := transpiler_lex(ALexer);
|
||||
Token := transpiler_lex(lexer);
|
||||
WriteString(': ');
|
||||
transpile_type_expression(AContext, ALexer);
|
||||
Token := transpiler_lex(ALexer);
|
||||
transpile_type_expression(context, lexer);
|
||||
Token := transpiler_lex(lexer);
|
||||
write_semicolon()
|
||||
end;
|
||||
|
||||
proc transpile_variable_part(AContext: PTranspilerContext; ALexer: PLexer): BOOLEAN;
|
||||
proc transpile_variable_part(context: PTranspilerContext, lexer: PLexer): BOOLEAN;
|
||||
var
|
||||
Token: LexerToken;
|
||||
Result: BOOLEAN;
|
||||
result: BOOLEAN;
|
||||
begin
|
||||
Token := lexer_current(ALexer);
|
||||
Result := Token.Kind = lexerKindVar;
|
||||
Token := lexer_current(lexer);
|
||||
result := Token.Kind = lexerKindVar;
|
||||
|
||||
if Result then
|
||||
if result then
|
||||
WriteString('VAR');
|
||||
WriteLn();
|
||||
Token := transpiler_lex(ALexer);
|
||||
Token := transpiler_lex(lexer);
|
||||
|
||||
while Token.Kind = lexerKindIdentifier do
|
||||
transpile_variable_declaration(AContext, ALexer);
|
||||
Token := transpiler_lex(ALexer)
|
||||
transpile_variable_declaration(context, lexer);
|
||||
Token := transpiler_lex(lexer)
|
||||
end
|
||||
end;
|
||||
return Result
|
||||
return result
|
||||
end;
|
||||
|
||||
proc transpile_procedure_heading(AContext: PTranspilerContext; ALexer: PLexer): LexerToken;
|
||||
proc transpile_procedure_heading(context: PTranspilerContext, lexer: PLexer): LexerToken;
|
||||
var
|
||||
Token: LexerToken;
|
||||
Result: LexerToken;
|
||||
WrittenBytes: CARDINAL;
|
||||
token: LexerToken;
|
||||
result: LexerToken;
|
||||
written_bytes: CARDINAL;
|
||||
begin
|
||||
WriteString('PROCEDURE ');
|
||||
|
||||
Result := transpiler_lex(ALexer);
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
result := transpiler_lex(lexer);
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
|
||||
Token := transpiler_lex(ALexer);
|
||||
token := transpiler_lex(lexer);
|
||||
Write('(');
|
||||
|
||||
Token := transpiler_lex(ALexer);
|
||||
while Token.Kind <> lexerKindRightParen do
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
token := transpiler_lex(lexer);
|
||||
while token.Kind <> lexerKindRightParen do
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
|
||||
Token := transpiler_lex(ALexer);
|
||||
token := transpiler_lex(lexer);
|
||||
WriteString(': ');
|
||||
|
||||
transpile_type_expression(AContext, ALexer);
|
||||
transpile_type_expression(context, lexer);
|
||||
|
||||
Token := transpiler_lex(ALexer);
|
||||
if Token.Kind = lexerKindSemicolon then
|
||||
token := transpiler_lex(lexer);
|
||||
if (token.Kind = lexerKindSemicolon) or (token.Kind = lexerKindComma) then
|
||||
WriteString('; ');
|
||||
Token := transpiler_lex(ALexer)
|
||||
token := transpiler_lex(lexer)
|
||||
end
|
||||
end;
|
||||
WriteString(')');
|
||||
Token := transpiler_lex(ALexer);
|
||||
token := transpiler_lex(lexer);
|
||||
|
||||
(* Check for the return type and write it. *)
|
||||
if Token.Kind = lexerKindColon then
|
||||
if token.Kind = lexerKindColon then
|
||||
WriteString(': ');
|
||||
Token := transpiler_lex(ALexer);
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
Token := transpiler_lex(ALexer)
|
||||
token := transpiler_lex(lexer);
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
token := transpiler_lex(lexer)
|
||||
end;
|
||||
Token := transpiler_lex(ALexer);
|
||||
token := transpiler_lex(lexer);
|
||||
write_semicolon();
|
||||
|
||||
return Result
|
||||
return result
|
||||
end;
|
||||
|
||||
proc transpile_expression(AContext: PTranspilerContext; ALexer: PLexer; TrailingToken: LexerKind);
|
||||
proc transpile_expression(context: PTranspilerContext, lexer: PLexer, TrailingToken: LexerKind);
|
||||
var
|
||||
Token: LexerToken;
|
||||
WrittenBytes: CARDINAL;
|
||||
token: LexerToken;
|
||||
written_bytes: CARDINAL;
|
||||
begin
|
||||
Token := transpiler_lex(ALexer);
|
||||
token := transpiler_lex(lexer);
|
||||
|
||||
while (Token.Kind <> TrailingToken) AND (Token.Kind <> lexerKindEnd) do
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
Write(' ');
|
||||
Token := transpiler_lex(ALexer)
|
||||
while (token.Kind <> TrailingToken) & (token.Kind <> lexerKindEnd) do
|
||||
written_bytes := 0;
|
||||
if token.Kind = lexerKindNull then
|
||||
WriteString('NIL ');
|
||||
written_bytes := 1
|
||||
end;
|
||||
if token.Kind = lexerKindOr then
|
||||
WriteString('OR ');
|
||||
written_bytes := 1
|
||||
end;
|
||||
if token.Kind = lexerKindAnd then
|
||||
WriteString('AND ');
|
||||
written_bytes := 1
|
||||
end;
|
||||
if token.Kind = lexerKindNot then
|
||||
WriteString('NOT ');
|
||||
written_bytes := 1
|
||||
end;
|
||||
if written_bytes = 0 then
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
Write(' ')
|
||||
end;
|
||||
token := transpiler_lex(lexer)
|
||||
end
|
||||
end;
|
||||
|
||||
proc transpile_if_statement(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_if_statement(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
WrittenBytes: CARDINAL;
|
||||
token: LexerToken;
|
||||
written_bytes: CARDINAL;
|
||||
begin
|
||||
WriteString(' IF ');
|
||||
transpile_expression(AContext, ALexer, lexerKindThen);
|
||||
transpile_expression(context, lexer, lexerKindThen);
|
||||
|
||||
WriteString('THEN');
|
||||
WriteLn();
|
||||
transpile_statements(AContext, ALexer);
|
||||
transpile_statements(context, lexer);
|
||||
WriteString(' END');
|
||||
Token := transpiler_lex(ALexer)
|
||||
token := transpiler_lex(lexer)
|
||||
end;
|
||||
|
||||
proc transpile_while_statement(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_while_statement(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
WrittenBytes: CARDINAL;
|
||||
written_bytes: CARDINAL;
|
||||
begin
|
||||
WriteString(' WHILE ');
|
||||
transpile_expression(AContext, ALexer, lexerKindDo);
|
||||
transpile_expression(context, lexer, lexerKindDo);
|
||||
|
||||
WriteString('DO');
|
||||
WriteLn();
|
||||
transpile_statements(AContext, ALexer);
|
||||
transpile_statements(context, lexer);
|
||||
WriteString(' END');
|
||||
Token := transpiler_lex(ALexer)
|
||||
Token := transpiler_lex(lexer)
|
||||
end;
|
||||
|
||||
proc transpile_assignment_statement(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_assignment_statement(context: PTranspilerContext, lexer: PLexer);
|
||||
begin
|
||||
WriteString(' := ');
|
||||
transpile_expression(AContext, ALexer, lexerKindSemicolon);
|
||||
transpile_expression(context, lexer, lexerKindSemicolon);
|
||||
end;
|
||||
|
||||
proc transpile_call_statement(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_call_statement(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
WrittenBytes: CARDINAL;
|
||||
written_bytes: CARDINAL;
|
||||
begin
|
||||
WriteString('(');
|
||||
Token := transpiler_lex(ALexer);
|
||||
Token := transpiler_lex(lexer);
|
||||
|
||||
while (Token.Kind <> lexerKindSemicolon) AND (Token.Kind <> lexerKindEnd) do
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
Token := transpiler_lex(ALexer)
|
||||
while (Token.Kind <> lexerKindSemicolon) & (Token.Kind <> lexerKindEnd) do
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
Token := transpiler_lex(lexer)
|
||||
end
|
||||
end;
|
||||
|
||||
proc transpile_return_statement(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_return_statement(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
WrittenBytes: CARDINAL;
|
||||
written_bytes: CARDINAL;
|
||||
begin
|
||||
WriteString(' RETURN ');
|
||||
Token := transpiler_lex(ALexer);
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
Token := transpiler_lex(ALexer)
|
||||
Token := transpiler_lex(lexer);
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
Token := transpiler_lex(lexer)
|
||||
end;
|
||||
|
||||
proc transpile_statement(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_statement(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
WrittenBytes: CARDINAL;
|
||||
token: LexerToken;
|
||||
written_bytes: CARDINAL;
|
||||
begin
|
||||
Token := transpiler_lex(ALexer);
|
||||
token := transpiler_lex(lexer);
|
||||
|
||||
if Token.Kind = lexerKindIf then
|
||||
transpile_if_statement(AContext, ALexer)
|
||||
if token.Kind = lexerKindIf then
|
||||
transpile_if_statement(context, lexer)
|
||||
end;
|
||||
if Token.Kind = lexerKindWhile then
|
||||
transpile_while_statement(AContext, ALexer)
|
||||
if token.Kind = lexerKindWhile then
|
||||
transpile_while_statement(context, lexer)
|
||||
end;
|
||||
if Token.Kind = lexerKindReturn then
|
||||
transpile_return_statement(AContext, ALexer)
|
||||
if token.Kind = lexerKindReturn then
|
||||
transpile_return_statement(context, lexer)
|
||||
end;
|
||||
if Token.Kind = lexerKindIdentifier then
|
||||
if token.Kind = lexerKindIdentifier then
|
||||
WriteString(' ');
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
Token := transpiler_lex(ALexer);
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
token := transpiler_lex(lexer);
|
||||
|
||||
while Token.Kind = lexerKindLeftSquare do
|
||||
while token.Kind = lexerKindLeftSquare do
|
||||
Write('[');
|
||||
Token := transpiler_lex(ALexer);
|
||||
while Token.Kind <> lexerKindRightSquare do
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
Token := transpiler_lex(ALexer)
|
||||
token := transpiler_lex(lexer);
|
||||
while token.Kind <> lexerKindRightSquare do
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
token := transpiler_lex(lexer)
|
||||
end;
|
||||
Write(']');
|
||||
Token := transpiler_lex(ALexer);
|
||||
token := transpiler_lex(lexer);
|
||||
end;
|
||||
if Token.Kind = lexerKindHat then
|
||||
if token.Kind = lexerKindHat then
|
||||
Write('^');
|
||||
Token := transpiler_lex(ALexer)
|
||||
token := transpiler_lex(lexer)
|
||||
end;
|
||||
if Token.Kind = lexerKindDot then
|
||||
if token.Kind = lexerKindDot then
|
||||
Write('.');
|
||||
Token := transpiler_lex(ALexer);
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
Token := transpiler_lex(ALexer);
|
||||
token := transpiler_lex(lexer);
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
token := transpiler_lex(lexer);
|
||||
end;
|
||||
if Token.Kind = lexerKindHat then
|
||||
if token.Kind = lexerKindHat then
|
||||
Write('^');
|
||||
Token := transpiler_lex(ALexer)
|
||||
token := transpiler_lex(lexer)
|
||||
end;
|
||||
while Token.Kind = lexerKindLeftSquare do
|
||||
while token.Kind = lexerKindLeftSquare do
|
||||
Write('[');
|
||||
Token := transpiler_lex(ALexer);
|
||||
while Token.Kind <> lexerKindRightSquare do
|
||||
WrittenBytes := WriteNBytes(StdOut, ADDRESS(ALexer^.Current - ALexer^.Start), ALexer^.Start);
|
||||
Token := transpiler_lex(ALexer)
|
||||
token := transpiler_lex(lexer);
|
||||
while token.Kind <> lexerKindRightSquare do
|
||||
written_bytes := WriteNBytes(StdOut, ADDRESS(lexer^.Current - lexer^.Start), lexer^.Start);
|
||||
token := transpiler_lex(lexer)
|
||||
end;
|
||||
Write(']');
|
||||
Token := transpiler_lex(ALexer);
|
||||
token := transpiler_lex(lexer);
|
||||
end;
|
||||
|
||||
if Token.Kind = lexerKindAssignment then
|
||||
transpile_assignment_statement(AContext, ALexer)
|
||||
if token.Kind = lexerKindAssignment then
|
||||
transpile_assignment_statement(context, lexer)
|
||||
end;
|
||||
if Token.Kind = lexerKindLeftParen then
|
||||
transpile_call_statement(AContext, ALexer)
|
||||
if token.Kind = lexerKindLeftParen then
|
||||
transpile_call_statement(context, lexer)
|
||||
end
|
||||
end
|
||||
end;
|
||||
|
||||
proc transpile_statements(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_statements(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
begin
|
||||
Token := lexer_current(ALexer);
|
||||
Token := lexer_current(lexer);
|
||||
|
||||
while Token.Kind <> lexerKindEnd do
|
||||
transpile_statement(AContext, ALexer);
|
||||
Token := lexer_current(ALexer);
|
||||
transpile_statement(context, lexer);
|
||||
Token := lexer_current(lexer);
|
||||
|
||||
if Token.Kind = lexerKindSemicolon then
|
||||
Write(';')
|
||||
@ -587,57 +604,57 @@ begin
|
||||
end
|
||||
end;
|
||||
|
||||
proc transpile_statement_part(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_statement_part(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
begin
|
||||
Token := lexer_current(ALexer);
|
||||
Token := lexer_current(lexer);
|
||||
if Token.Kind = lexerKindBegin then
|
||||
WriteString('BEGIN');
|
||||
WriteLn();
|
||||
transpile_statements(AContext, ALexer)
|
||||
transpile_statements(context, lexer)
|
||||
end
|
||||
end;
|
||||
|
||||
proc transpile_procedure_declaration(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_procedure_declaration(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
SeenPart: BOOLEAN;
|
||||
WrittenBytes: CARDINAL;
|
||||
seen_part: BOOLEAN;
|
||||
written_bytes: CARDINAL;
|
||||
begin
|
||||
Token := transpile_procedure_heading(AContext, ALexer);
|
||||
SeenPart := transpile_constant_part(AContext, ALexer);
|
||||
SeenPart := transpile_variable_part(AContext, ALexer);
|
||||
transpile_statement_part(AContext, ALexer);
|
||||
Token := transpile_procedure_heading(context, lexer);
|
||||
seen_part := transpile_constant_part(context, lexer);
|
||||
seen_part := transpile_variable_part(context, lexer);
|
||||
transpile_statement_part(context, lexer);
|
||||
|
||||
WriteString('END ');
|
||||
WrittenBytes := WriteNBytes(StdOut, ORD(Token.identifierKind[1]), ADR(Token.identifierKind[2]));
|
||||
written_bytes := WriteNBytes(StdOut, ORD(Token.identifierKind[1]), ADR(Token.identifierKind[2]));
|
||||
|
||||
Token := transpiler_lex(ALexer);
|
||||
Token := transpiler_lex(lexer);
|
||||
write_semicolon();
|
||||
Token := transpiler_lex(ALexer)
|
||||
Token := transpiler_lex(lexer)
|
||||
end;
|
||||
|
||||
proc transpile_procedure_part(AContext: PTranspilerContext; ALexer: PLexer);
|
||||
proc transpile_procedure_part(context: PTranspilerContext, lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
begin
|
||||
Token := lexer_current(ALexer);
|
||||
Token := lexer_current(lexer);
|
||||
|
||||
while Token.Kind = lexerKindProc do
|
||||
transpile_procedure_declaration(AContext, ALexer);
|
||||
Token := lexer_current(ALexer);
|
||||
transpile_procedure_declaration(context, lexer);
|
||||
Token := lexer_current(lexer);
|
||||
WriteLn()
|
||||
end
|
||||
end;
|
||||
|
||||
proc transpile(ALexer: PLexer);
|
||||
proc transpile(lexer: PLexer);
|
||||
var
|
||||
Token: LexerToken;
|
||||
WrittenBytes: CARDINAL;
|
||||
written_bytes: CARDINAL;
|
||||
Context: TranspilerContext;
|
||||
begin
|
||||
transpile_module(ADR(Context), ALexer)
|
||||
transpile_module(ADR(Context), lexer)
|
||||
end;
|
||||
|
||||
end Transpiler.
|
||||
|
Reference in New Issue
Block a user