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https://github.com/ZDoom/gzdoom.git
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43abfba723
re2c instead of "Linking X". - Updated lemon and re2c to the latest versions and ported dehsupp to use them for code generation. (Xlatcc is next.) - Added function level linking for Makefile.mingw. SVN r144 (trunk)
393 lines
5.3 KiB
C++
393 lines
5.3 KiB
C++
#include <stdlib.h>
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#include <ctype.h>
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#include <string.h>
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#include "globals.h"
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#include "substr.h"
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#include "dfa.h"
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namespace re2c
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{
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void prtChOrHex(std::ostream& o, uint c, bool useTalx)
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{
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int oc = (int)(re2c::wFlag || !useTalx ? c : re2c::talx[c]);
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if ((oc < 256) && isprint(oc))
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{
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o << '\'';
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prtCh(o, oc);
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o << '\'';
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}
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else
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{
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prtHex(o, c);
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}
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}
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void prtHex(std::ostream& o, uint c, bool useTalx)
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{
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int oc = (int)(re2c::wFlag || !useTalx ? c : re2c::talx[c]);
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if (re2c::wFlag)
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{
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o << "0x"
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<< hexCh(oc >> 12)
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<< hexCh(oc >> 8)
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<< hexCh(oc >> 4)
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<< hexCh(oc);
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}
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else
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{
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o << "0x"
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<< hexCh(oc >> 4)
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<< hexCh(oc);
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}
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}
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void prtCh(std::ostream& o, uint c, bool useTalx)
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{
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int oc = (int)(re2c::wFlag || !useTalx ? c : re2c::talx[c]);
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switch (oc)
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{
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case '\'':
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o << "\\'";
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break;
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case '\n':
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o << "\\n";
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break;
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case '\t':
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o << "\\t";
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break;
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case '\v':
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o << "\\v";
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break;
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case '\b':
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o << "\\b";
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break;
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case '\r':
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o << "\\r";
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break;
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case '\f':
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o << "\\f";
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break;
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case '\a':
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o << "\\a";
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break;
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case '\\':
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o << "\\\\";
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break;
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default:
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if ((oc < 256) && isprint(oc))
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{
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o << (char) oc;
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}
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else if (re2c::wFlag)
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{
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o << "0x"
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<< hexCh(oc >> 12)
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<< hexCh(oc >> 8)
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<< hexCh(oc >> 4)
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<< hexCh(oc);
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}
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else
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{
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o << '\\' << octCh(oc / 64) << octCh(oc / 8) << octCh(oc);
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}
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}
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}
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void printSpan(std::ostream& o, uint lb, uint ub)
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{
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if (lb > ub)
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{
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o << "*";
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}
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o << "[";
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if ((ub - lb) == 1)
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{
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prtCh(o, lb);
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}
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else
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{
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prtCh(o, lb);
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o << "-";
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prtCh(o, ub - 1);
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}
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o << "]";
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}
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uint Span::show(std::ostream &o, uint lb) const
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{
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if (to)
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{
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printSpan(o, lb, ub);
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o << " " << to->label << "; ";
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}
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return ub;
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}
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std::ostream& operator<<(std::ostream &o, const State &s)
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{
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o << "state " << s.label;
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if (s.rule)
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{
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o << " accepts " << s.rule->accept;
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}
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o << "\n";
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uint lb = 0;
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for (uint i = 0; i < s.go.nSpans; ++i)
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{
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lb = s.go.span[i].show(o, lb);
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}
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return o;
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}
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std::ostream& operator<<(std::ostream &o, const DFA &dfa)
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{
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for (State *s = dfa.head; s; s = s->next)
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{
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o << s << "\n\n";
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}
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return o;
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}
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State::State()
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: label(0)
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, rule(NULL)
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, next(0)
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, link(NULL)
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, depth(0)
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, kCount(0)
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, kernel(NULL)
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, isPreCtxt(false)
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, isBase(false)
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, go()
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, action(NULL)
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{
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}
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State::~State()
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{
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delete [] kernel;
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delete [] go.span;
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}
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static Ins **closure(Ins **cP, Ins *i)
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{
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while (!isMarked(i))
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{
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mark(i);
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*(cP++) = i;
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if (i->i.tag == FORK)
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{
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cP = closure(cP, i + 1);
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i = (Ins*) i->i.link;
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}
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else if (i->i.tag == GOTO || i->i.tag == CTXT)
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{
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i = (Ins*) i->i.link;
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}
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else
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break;
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}
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return cP;
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}
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struct GoTo
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{
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Char ch;
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void *to;
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};
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DFA::DFA(Ins *ins, uint ni, uint lb, uint ub, Char *rep)
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: lbChar(lb)
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, ubChar(ub)
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, nStates(0)
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, head(NULL)
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, tail(&head)
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, toDo(NULL)
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{
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Ins **work = new Ins * [ni + 1];
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uint nc = ub - lb;
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GoTo *goTo = new GoTo[nc];
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Span *span = new Span[nc];
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memset((char*) goTo, 0, nc*sizeof(GoTo));
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findState(work, closure(work, &ins[0]) - work);
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while (toDo)
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{
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State *s = toDo;
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toDo = s->link;
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Ins **cP, **iP, *i;
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uint nGoTos = 0;
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uint j;
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s->rule = NULL;
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for (iP = s->kernel; (i = *iP); ++iP)
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{
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if (i->i.tag == CHAR)
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{
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for (Ins *j = i + 1; j < (Ins*) i->i.link; ++j)
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{
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if (!(j->c.link = goTo[j->c.value - lb].to))
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goTo[nGoTos++].ch = j->c.value;
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goTo[j->c.value - lb].to = j;
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}
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}
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else if (i->i.tag == TERM)
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{
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if (!s->rule || ((RuleOp*) i->i.link)->accept < s->rule->accept)
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s->rule = (RuleOp*) i->i.link;
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}
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else if (i->i.tag == CTXT)
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{
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s->isPreCtxt = true;
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}
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}
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for (j = 0; j < nGoTos; ++j)
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{
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GoTo *go = &goTo[goTo[j].ch - lb];
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i = (Ins*) go->to;
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for (cP = work; i; i = (Ins*) i->c.link)
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cP = closure(cP, i + i->c.bump);
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go->to = findState(work, cP - work);
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}
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s->go.nSpans = 0;
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for (j = 0; j < nc;)
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{
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State *to = (State*) goTo[rep[j]].to;
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while (++j < nc && goTo[rep[j]].to == to) ;
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span[s->go.nSpans].ub = lb + j;
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span[s->go.nSpans].to = to;
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s->go.nSpans++;
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}
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for (j = nGoTos; j-- > 0;)
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goTo[goTo[j].ch - lb].to = NULL;
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s->go.span = new Span[s->go.nSpans];
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memcpy((char*) s->go.span, (char*) span, s->go.nSpans*sizeof(Span));
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(void) new Match(s);
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}
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delete [] work;
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delete [] goTo;
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delete [] span;
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}
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DFA::~DFA()
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{
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State *s;
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while ((s = head))
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{
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head = s->next;
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delete s;
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}
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}
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void DFA::addState(State **a, State *s)
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{
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s->label = nStates++;
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s->next = *a;
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*a = s;
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if (a == tail)
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tail = &s->next;
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}
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State *DFA::findState(Ins **kernel, uint kCount)
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{
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Ins **cP, **iP, *i;
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State *s;
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kernel[kCount] = NULL;
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cP = kernel;
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for (iP = kernel; (i = *iP); ++iP)
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{
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if (i->i.tag == CHAR || i->i.tag == TERM || i->i.tag == CTXT)
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{
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*cP++ = i;
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}
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else
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{
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unmark(i);
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}
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}
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kCount = cP - kernel;
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kernel[kCount] = NULL;
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for (s = head; s; s = s->next)
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{
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if (s->kCount == kCount)
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{
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for (iP = s->kernel; (i = *iP); ++iP)
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if (!isMarked(i))
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goto nextState;
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goto unmarkAll;
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}
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nextState:
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;
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}
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s = new State;
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addState(tail, s);
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s->kCount = kCount;
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s->kernel = new Ins * [kCount + 1];
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memcpy(s->kernel, kernel, (kCount + 1)*sizeof(Ins*));
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s->link = toDo;
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toDo = s;
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unmarkAll:
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for (iP = kernel; (i = *iP); ++iP)
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unmark(i);
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return s;
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}
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} // end namespace re2c
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