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ec17f5a5b9
error handling. - Fixed: dehsupp/scanner.re defined "}" as the token RPAREN. dehsupp/parse.y also defined action_list_def as needing a RBARCE. I'm surprised it worked at all before. I guess Lemon really was too accepting. - Changed the way that xlatcc handles include statements so that I don't need to modify the logic of lempar.c. I also discovered that the grammar was improperly defined and only accepted the first statement. It worked before because Lemon used to accept multiple times before reaching the EOF token. I have also verified that it is still generating the proper lumps. - Removed some unused wadsrc files from the repository. - Fixed my re2c upgrade. - Updated lemon.c to v1.53. SVN r711 (trunk)
496 lines
7.1 KiB
C++
496 lines
7.1 KiB
C++
/* $Id: re.h 775 2007-07-10 19:33:17Z helly $ */
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#ifndef _re_h
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#define _re_h
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#include <iostream>
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#include <set>
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#include "token.h"
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#include "ins.h"
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#include "globals.h"
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namespace re2c
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{
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template<class _Ty>
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class free_list: protected std::set<_Ty>
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{
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public:
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typedef typename std::set<_Ty>::iterator iterator;
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typedef typename std::set<_Ty>::size_type size_type;
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typedef typename std::set<_Ty>::key_type key_type;
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free_list(): in_clear(false)
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{
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}
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using std::set<_Ty>::insert;
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size_type erase(const key_type& key)
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{
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if (!in_clear)
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{
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return std::set<_Ty>::erase(key);
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}
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return 0;
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}
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void clear()
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{
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in_clear = true;
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for(iterator it = this->begin(); it != this->end(); ++it)
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{
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delete *it;
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}
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std::set<_Ty>::clear();
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in_clear = false;
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}
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~free_list()
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{
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clear();
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}
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protected:
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bool in_clear;
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};
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typedef struct extop
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{
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char op;
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int minsize;
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int maxsize;
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}
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ExtOp;
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struct CharPtn
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{
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uint card;
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CharPtn *fix;
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CharPtn *nxt;
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};
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typedef CharPtn *CharPtr;
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struct CharSet
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{
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CharSet();
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~CharSet();
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CharPtn *fix;
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CharPtn *freeHead, **freeTail;
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CharPtr *rep;
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CharPtn *ptn;
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};
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class Range
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{
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public:
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Range *next;
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uint lb, ub; // [lb,ub)
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static free_list<Range*> vFreeList;
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public:
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Range(uint l, uint u) : next(NULL), lb(l), ub(u)
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{
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vFreeList.insert(this);
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}
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Range(Range &r) : next(NULL), lb(r.lb), ub(r.ub)
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{
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vFreeList.insert(this);
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}
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~Range()
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{
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vFreeList.erase(this);
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}
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friend std::ostream& operator<<(std::ostream&, const Range&);
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friend std::ostream& operator<<(std::ostream&, const Range*);
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};
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inline std::ostream& operator<<(std::ostream &o, const Range *r)
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{
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return r ? o << *r : o;
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}
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class RegExp
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{
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public:
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uint size;
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static free_list<RegExp*> vFreeList;
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public:
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RegExp() : size(0)
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{
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vFreeList.insert(this);
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}
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virtual ~RegExp()
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{
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vFreeList.erase(this);
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}
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virtual const char *typeOf() = 0;
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RegExp *isA(const char *t)
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{
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return typeOf() == t ? this : NULL;
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}
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virtual void split(CharSet&) = 0;
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virtual void calcSize(Char*) = 0;
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virtual uint fixedLength();
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virtual void compile(Char*, Ins*) = 0;
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virtual void display(std::ostream&) const = 0;
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friend std::ostream& operator<<(std::ostream&, const RegExp&);
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friend std::ostream& operator<<(std::ostream&, const RegExp*);
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};
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inline std::ostream& operator<<(std::ostream &o, const RegExp &re)
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{
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re.display(o);
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return o;
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}
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inline std::ostream& operator<<(std::ostream &o, const RegExp *re)
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{
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return o << *re;
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}
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class NullOp: public RegExp
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{
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public:
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static const char *type;
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public:
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const char *typeOf()
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{
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return type;
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}
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void split(CharSet&);
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void calcSize(Char*);
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uint fixedLength();
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void compile(Char*, Ins*);
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void display(std::ostream &o) const
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{
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o << "_";
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}
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};
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class MatchOp: public RegExp
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{
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public:
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static const char *type;
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Range *match;
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public:
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MatchOp(Range *m) : match(m)
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{
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}
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const char *typeOf()
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{
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return type;
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}
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void split(CharSet&);
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void calcSize(Char*);
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uint fixedLength();
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void compile(Char*, Ins*);
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void display(std::ostream&) const;
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#ifdef PEDANTIC
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private:
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MatchOp(const MatchOp& oth)
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: RegExp(oth)
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, match(oth.match)
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{
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}
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MatchOp& operator = (const MatchOp& oth)
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{
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new(this) MatchOp(oth);
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return *this;
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}
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#endif
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};
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class RuleOp: public RegExp
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{
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public:
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static const char *type;
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private:
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RegExp *exp;
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public:
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RegExp *ctx;
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Ins *ins;
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uint accept;
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Token *code;
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uint line;
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public:
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RuleOp(RegExp*, RegExp*, Token*, uint);
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~RuleOp()
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{
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delete code;
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}
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const char *typeOf()
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{
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return type;
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}
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void split(CharSet&);
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void calcSize(Char*);
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void compile(Char*, Ins*);
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void display(std::ostream &o) const
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{
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o << exp << "/" << ctx << ";";
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}
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#ifdef PEDANTIC
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private:
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RuleOp(const RuleOp& oth)
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: RegExp(oth)
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, exp(oth.exp)
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, ctx(oth.ctx)
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, ins(oth.ins)
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, accept(oth.accept)
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, code(oth.code)
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, line(oth.line)
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{
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}
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RuleOp& operator = (const RuleOp& oth)
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{
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new(this) RuleOp(oth);
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return *this;
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}
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#endif
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};
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class RuleLine: public line_number
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{
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public:
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RuleLine(const RuleOp& _op)
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: op(_op)
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{
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}
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uint get_line() const
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{
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return op.code->line;
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}
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const RuleOp& op;
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};
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RegExp *mkAlt(RegExp*, RegExp*);
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class AltOp: public RegExp
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{
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private:
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RegExp *exp1, *exp2;
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public:
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static const char *type;
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public:
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AltOp(RegExp *e1, RegExp *e2)
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: exp1(e1)
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, exp2(e2)
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{
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}
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const char *typeOf()
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{
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return type;
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}
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void split(CharSet&);
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void calcSize(Char*);
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uint fixedLength();
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void compile(Char*, Ins*);
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void display(std::ostream &o) const
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{
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o << exp1 << "|" << exp2;
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}
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friend RegExp *mkAlt(RegExp*, RegExp*);
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#ifdef PEDANTIC
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private:
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AltOp(const AltOp& oth)
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: RegExp(oth)
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, exp1(oth.exp1)
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, exp2(oth.exp2)
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{
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}
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AltOp& operator = (const AltOp& oth)
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{
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new(this) AltOp(oth);
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return *this;
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}
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#endif
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};
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class CatOp: public RegExp
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{
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private:
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RegExp *exp1, *exp2;
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public:
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static const char *type;
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public:
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CatOp(RegExp *e1, RegExp *e2)
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: exp1(e1)
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, exp2(e2)
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{
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}
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const char *typeOf()
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{
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return type;
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}
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void split(CharSet&);
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void calcSize(Char*);
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uint fixedLength();
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void compile(Char*, Ins*);
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void display(std::ostream &o) const
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{
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o << exp1 << exp2;
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}
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#ifdef PEDANTIC
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private:
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CatOp(const CatOp& oth)
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: RegExp(oth)
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, exp1(oth.exp1)
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, exp2(oth.exp2)
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{
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}
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CatOp& operator = (const CatOp& oth)
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{
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new(this) CatOp(oth);
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return *this;
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}
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#endif
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};
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class CloseOp: public RegExp
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{
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private:
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RegExp *exp;
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public:
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static const char *type;
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public:
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CloseOp(RegExp *e)
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: exp(e)
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{
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}
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const char *typeOf()
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{
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return type;
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}
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void split(CharSet&);
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void calcSize(Char*);
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void compile(Char*, Ins*);
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void display(std::ostream &o) const
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{
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o << exp << "+";
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}
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#ifdef PEDANTIC
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private:
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CloseOp(const CloseOp& oth)
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: RegExp(oth)
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, exp(oth.exp)
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{
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}
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CloseOp& operator = (const CloseOp& oth)
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{
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new(this) CloseOp(oth);
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return *this;
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}
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#endif
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};
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class CloseVOp: public RegExp
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{
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private:
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RegExp *exp;
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int min;
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int max;
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public:
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static const char *type;
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public:
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CloseVOp(RegExp *e, int lb, int ub)
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: exp(e)
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, min(lb)
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, max(ub)
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{
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}
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const char *typeOf()
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{
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return type;
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}
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void split(CharSet&);
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void calcSize(Char*);
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void compile(Char*, Ins*);
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void display(std::ostream &o) const
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{
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o << exp << "+";
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}
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#ifdef PEDANTIC
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private:
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CloseVOp(const CloseVOp& oth)
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: RegExp(oth)
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, exp(oth.exp)
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, min(oth.min)
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, max(oth.max)
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{
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}
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CloseVOp& operator = (const CloseVOp& oth)
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{
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new(this) CloseVOp(oth);
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return *this;
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}
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#endif
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};
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extern void genCode(std::ostream&, RegExp*);
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extern void genCode(std::ostream&, uint, RegExp*);
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extern void genGetState(std::ostream&, uint&, uint);
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extern RegExp *mkDiff(RegExp*, RegExp*);
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extern RegExp *mkAlt(RegExp*, RegExp*);
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} // end namespace re2c
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#endif
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