262 lines
6.5 KiB
C
262 lines
6.5 KiB
C
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// Copyright (c) 1999 Microsoft Corporation. All rights reserved.
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//
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// Declaration of a script's control structures.
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//
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#pragma once
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#include "englookup.h"
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#include "englex.h"
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//////////////////////////////////////////////////////////////////////
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// Statement structures
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// forward decls and collections
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class Routine;
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typedef Slots<Routine> Routines;
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class Variable;
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typedef Slots<Variable> Variables;
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class ReferenceName;
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typedef Slots<ReferenceName> ReferenceNames;
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class VariableReference;
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typedef Slots<VariableReference> VariableReferences;
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class Statement;
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typedef Slots<Statement> Statements;
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class Value;
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typedef Slots<Value> Values;
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class Call;
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typedef Slots<Call> Calls;
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class ExprBlock;
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typedef Slots<ExprBlock> ExprBlocks;
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class IfBlock;
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typedef Slots<IfBlock> IfBlocks;
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class Assignment;
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typedef Slots<Assignment> Assignments;
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class Variable
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{
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public:
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Variable(Strings::index _istrIdentifier, DISPID _dispid = DISPID_UNKNOWN) : istrIdentifier(_istrIdentifier), dispid(_dispid) {}
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Strings::index istrIdentifier;
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DISPID dispid; // this is set to a value other than DISPID_UNKNOWN if the variable is a member of the global dispatch instead of an item in the script itself
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private:
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friend class SmartRef::Vector<Variable>;
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Variable() {}
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};
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// Names used in a sequence for dereferencing attributes or function calls.
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// For example, a and b in "a.b" or x and y in "x.y(3)".
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class ReferenceName
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{
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public:
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ReferenceName(Strings::index _istrIdentifier) : istrIdentifier(_istrIdentifier) {}
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Strings::index istrIdentifier; // -1 is used to end a sequence of names
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private:
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friend class SmartRef::Vector<ReferenceName>;
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ReferenceName() {}
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};
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class VariableReference
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{
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public:
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enum kind { _global, _local };
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VariableReference(kind _k, ReferenceNames::index _irname, Variables::index _ivar)
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: k(_k), irname(_irname), ivar(_ivar) {}
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kind k;
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ReferenceNames::index irname;
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Variables::index ivar; // slot of the first name within (global/local/temporary) variables
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private:
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friend class SmartRef::Vector<VariableReference>;
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VariableReference() {}
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};
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class Value
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{
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public:
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// dummy types to differentiate constructors
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enum cons_numvalue {};
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enum cons_strvalue {};
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enum cons_varref {};
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enum kind { _numvalue, _strvalue, _varref };
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Value(cons_numvalue e, int iVal) : k(_numvalue) { inumvalue = iVal; }
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Value(cons_strvalue e, Strings::index iStr) : k(_strvalue) { istrvalue = iStr; }
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Value(cons_varref e, VariableReferences::index _ivarref) : k(_varref) { ivarref = _ivarref; }
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kind k;
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union
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{
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int inumvalue;
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Strings::index istrvalue;
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VariableReferences::index ivarref;
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};
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private:
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friend class SmartRef::Vector<Value>;
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Value() {}
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};
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class Call
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{
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public:
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// dummy types to differentiate constructors
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enum cons_global {};
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enum cons_dereferenced {};
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enum kind { _global, _dereferenced };
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Call() {} // all fields are set after creation
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kind k;
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union
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{
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Strings::index istrname; // _global
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VariableReferences::index ivarref; // _dereferenced
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};
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ExprBlocks::index iexprParams; // doubly-terminated list of lists. each parameter is terminated with an _end block and the final parameter is also terminated with a second _end block.
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};
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class ExprBlock
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{
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public:
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// dummy types to differentiate constructors
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enum cons_end {};
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enum cons_op {};
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enum cons_val {};
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enum cons_call {};
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enum cons_omitted {}; // used only in a routine call, stands for an omitted parameter
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enum kind { _end = 0, _op, _val, _call, _omitted };
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// Note: For unary - (negation), TOKEN_sub is used instead of TOKEN_op_minus.
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ExprBlock(cons_end e) : k(_end) {}
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ExprBlock(cons_op e, Token __op) : k(_op) { op = __op; assert(CheckOperatorType(op, true, true, true, false) || op == TOKEN_sub); }
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ExprBlock(cons_val e, Values::index _ival) : k(_val) { ival = _ival; }
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ExprBlock(cons_call e, Calls::index _icall) : k(_call) { icall = _icall; }
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ExprBlock(cons_omitted e) : k(_omitted) {}
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operator bool() { return k != _end; }
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kind k;
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union
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{
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Token op;
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Values::index ival;
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Calls::index icall;
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};
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private:
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friend class SmartRef::Vector<ExprBlock>;
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friend class SmartRef::Stack<ExprBlock>;
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ExprBlock() {}
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};
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class Assignment
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{
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public:
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Assignment(bool _fSet, VariableReferences::index _ivarrefLHS, ExprBlocks::index _iexprRHS) : fSet(_fSet), ivarrefLHS(_ivarrefLHS), iexprRHS(_iexprRHS) {}
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bool fSet;
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VariableReferences::index ivarrefLHS;
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ExprBlocks::index iexprRHS;
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private:
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friend class SmartRef::Vector<Assignment>;
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Assignment() {}
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};
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class IfBlock
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{
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public:
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// _end: end of blocks without an 'else'
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// _else: end of blocks with an 'else'
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// _cond: a conditional block, from 'if' (first one) or 'elseif' (later ones)
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enum kind { _end = 0, _else, _cond };
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IfBlock() : k(_end) {}
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IfBlock(Statements::index _istmtBlock) : k(_else), istmtBlock(_istmtBlock) {}
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IfBlock(ExprBlocks::index _iexprCondition, Statements::index _istmtBlock) : k(_cond), iexprCondition(_iexprCondition), istmtBlock(_istmtBlock) {}
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kind k;
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ExprBlocks::index iexprCondition; // only used by cond kind
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Statements::index istmtBlock; // not used by end kind
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};
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class Statement
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{
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public:
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typedef int index;
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// dummy types to differentiate constructors
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enum cons_end {};
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enum cons_asgn {};
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enum cons_if {};
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enum cons_call {};
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enum kind { _end = 0, _if, _asgn, _call }; // _end is used as a terminator for a block of statements
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Statement(cons_end e, int _iLine) : k(_end), iLine(_iLine) {}
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Statement(cons_asgn e, Assignments::index _iasgn, int _iLine) : k(_asgn), iLine(_iLine) { iasgn = _iasgn; }
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Statement(cons_if e, int _iLine) : k(_if), iLine(_iLine) { iif = 0; istmtIfTail = 0; }
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Statement(cons_call e, Calls::index _icall, int _iLine) : k(_call), iLine(_iLine) { icall = _icall; }
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operator bool() { return k != _end; }
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kind k;
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int iLine;
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union
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{
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Assignments::index iasgn;
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struct
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{
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IfBlocks::index iif;
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Statements::index istmtIfTail;
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};
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Calls::index icall;
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};
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private:
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friend class SmartRef::Vector<Statement>;
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Statement() {}
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};
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class Routine
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{
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public:
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Routine(Strings::index _istrIdentifier) : istrIdentifier(_istrIdentifier), istmtBody(0), ivarNextLocal(0) {}
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Strings::index istrIdentifier;
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Statements::index istmtBody;
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Variables::index ivarNextLocal; // while parsing, this is the next local slot to use. by runtime, this as the total number of local slots needed by the routine.
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private:
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friend class SmartRef::Vector<Routine>;
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Routine() {}
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};
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class Script
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{
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public:
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Script() {}
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Routines routines;
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Variables globals;
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Strings strings;
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Statements statements;
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ReferenceNames rnames;
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VariableReferences varrefs;
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Values vals;
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Calls calls;
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ExprBlocks exprs;
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IfBlocks ifs;
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Assignments asgns;
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};
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