
/*  A Bison parser, made from parser.yac with Bison version GNU Bison version 1.21
  */

#define YYBISON 1  /* Identify Bison output.  */

#define	STARFILENAME	258
#define	DATABLOCKNAME	259
#define	GLOBALNAME	260
#define	SAVENAME	261
#define	ITEMNAME	262
#define	LOOPMARK	263
#define	STRING	264
#define	LINESBEGIN	265
#define	LINE	266
#define	LINESEND	267
#define	LOOPITEMNAME	268
#define	INTERNALLOOP	269
#define	LOOPITEMVALUE	270
#define	LOOPEND	271
#define	SAVEEND	272

#line 1 "parser.yac"

// ////////////////////////////////////////////////////////
// Copyright (1994) Columbia University
// Department of Biochemistry and Molecular Biophysics
//
// Author: Weider Chang, Ph.D
// ///////////////////////////////////////////////////////

#include <stdio.h>
#include "linebuff.h"
#include "starasso.h"
#include "datablk.h"
#include "llistobj.h"
#include "listofiv.h"
#include "stack.h"
#include "starpasr.h"

extern id starParser;
static id currentGlobalBlock;


#line 23 "parser.yac"
typedef union {
  id object_ptr;
  char * char_ptr;
} YYSTYPE;

#ifndef YYLTYPE
typedef
  struct yyltype
    {
      int timestamp;
      int first_line;
      int first_column;
      int last_line;
      int last_column;
      char *text;
   }
  yyltype;

#define YYLTYPE yyltype
#endif

#include <stdio.h>

#ifndef __cplusplus
#ifndef __STDC__
#define const
#endif
#endif



#define	YYFINAL		36
#define	YYFLAG		-32768
#define	YYNTBASE	18

#define YYTRANSLATE(x) ((unsigned)(x) <= 272 ? yytranslate[x] : 26)

static const char yytranslate[] = {     0,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     2,     2,     2,     2,     2,
     2,     2,     2,     2,     2,     1,     2,     3,     4,     5,
     6,     7,     8,     9,    10,    11,    12,    13,    14,    15,
    16,    17
};

#if YYDEBUG != 0
static const short yyprhs[] = {     0,
     0,     2,     4,     6,     9,    12,    14,    17,    19,    21,
    24,    27,    31,    34,    37,    40,    43,    45,    48,    50,
    53,    56,    60,    63,    66,    69,    71
};

static const short yyrhs[] = {     3,
     0,    20,     0,    19,     0,    18,    20,     0,    18,    19,
     0,     5,     0,    19,    22,     0,     4,     0,    22,     0,
    20,    22,     0,    20,    21,     0,     6,    22,    17,     0,
     7,    23,     0,     7,    25,     0,     8,    24,     0,    22,
    22,     0,     9,     0,    23,     9,     0,    13,     0,    24,
    13,     0,    14,    13,     0,    24,    14,    13,     0,    24,
    15,     0,    24,    25,     0,    24,    16,     0,    10,     0,
    25,    11,     0
};

#endif

#if YYDEBUG != 0
static const short yyrline[] = { 0,
    58,    67,    74,    84,    96,   111,   119,   125,   134,   139,
   143,   148,   158,   168,   175,   182,   188,   197,   210,   229,
   237,   256,   272,   314,   354,   368,   377
};

static const char * const yytname[] = {   "$","error","$illegal.","STARFILENAME",
"DATABLOCKNAME","GLOBALNAME","SAVENAME","ITEMNAME","LOOPMARK","STRING","LINESBEGIN",
"LINE","LINESEND","LOOPITEMNAME","INTERNALLOOP","LOOPITEMVALUE","LOOPEND","SAVEEND",
"StarFile","GlobalDataBlock","DataBlock","SaveFrame","ItemAssoc","Strings","Loop",
"LineBuffers",""
};
#endif

static const short yyr1[] = {     0,
    18,    18,    18,    18,    18,    19,    19,    20,    20,    20,
    20,    21,    22,    22,    22,    22,    23,    23,    24,    24,
    24,    24,    24,    24,    24,    25,    25
};

static const short yyr2[] = {     0,
     1,     1,     1,     2,     2,     1,     2,     1,     1,     2,
     2,     3,     2,     2,     2,     2,     1,     2,     1,     2,
     2,     3,     2,     2,     2,     1,     2
};

static const short yydefact[] = {     0,
     1,     8,     6,     0,     0,     0,     3,     2,     9,    17,
    26,    13,    14,    19,     0,    15,     5,     4,     7,     0,
    11,    10,    16,    18,    27,    21,    20,     0,    23,    25,
    24,     0,    22,    12,     0,     0
};

static const short yydefgoto[] = {     6,
     7,     8,    21,    23,    12,    16,    13
};

static const short yypact[] = {    23,
-32768,-32768,-32768,    24,   -10,     5,    28,     8,    28,-32768,
-32768,    12,    18,-32768,    19,     9,    28,     8,    28,    28,
-32768,    28,    28,-32768,-32768,-32768,-32768,    25,-32768,-32768,
    18,    -6,-32768,-32768,    37,-32768
};

static const short yypgoto[] = {-32768,
    33,    34,-32768,     0,-32768,-32768,    26
};


#define	YYLAST		42


static const short yytable[] = {     9,
     4,     5,    14,    15,    35,     9,    19,    22,     2,     3,
    34,     4,     5,    20,     4,     5,    19,    22,    11,    32,
    24,    27,    28,    29,    30,     1,     2,     3,    25,     4,
     5,    26,    10,    11,     4,     5,    36,    33,    17,    18,
     0,    31
};

static const short yycheck[] = {     0,
     7,     8,    13,    14,     0,     6,     7,     8,     4,     5,
    17,     7,     8,     6,     7,     8,    17,    18,    10,    20,
     9,    13,    14,    15,    16,     3,     4,     5,    11,     7,
     8,    13,     9,    10,     7,     8,     0,    13,     6,     6,
    -1,    16
};
/* -*-C-*-  Note some compilers choke on comments on `#line' lines.  */
#line 3 "/usr/local/apps/bison/lib/bison.simple"

/* Skeleton output parser for bison,
   Copyright (C) 1984, 1989, 1990 Bob Corbett and Richard Stallman

   This program is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation; either version 1, or (at your option)
   any later version.

   This program is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.

   You should have received a copy of the GNU General Public License
   along with this program; if not, write to the Free Software
   Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.  */


#ifndef alloca
#ifdef __GNUC__
#define alloca __builtin_alloca
#else /* not GNU C.  */
#if (!defined (__STDC__) && defined (sparc)) || defined (__sparc__) || defined (__sparc) || defined (__sgi)
#include <alloca.h>
#else /* not sparc */
#if defined (MSDOS) && !defined (__TURBOC__)
#include <malloc.h>
#else /* not MSDOS, or __TURBOC__ */
#if defined(_AIX)
#include <malloc.h>
 #pragma alloca
#else /* not MSDOS, __TURBOC__, or _AIX */
#ifdef __hpux
#ifdef __cplusplus
extern "C" {
void *alloca (unsigned int);
};
#else /* not __cplusplus */
void *alloca (unsigned int);
#endif /* not __cplusplus */
#endif /* __hpux */
#endif /* not _AIX */
#endif /* not MSDOS, or __TURBOC__ */
#endif /* not sparc.  */
#endif /* not GNU C.  */
#endif /* alloca not defined.  */

/* This is the parser code that is written into each bison parser
  when the %semantic_parser declaration is not specified in the grammar.
  It was written by Richard Stallman by simplifying the hairy parser
  used when %semantic_parser is specified.  */

/* Note: there must be only one dollar sign in this file.
   It is replaced by the list of actions, each action
   as one case of the switch.  */

#define yyerrok		(yyerrstatus = 0)
#define yyclearin	(yychar = YYEMPTY)
#define YYEMPTY		-2
#define YYEOF		0
#define YYACCEPT	return(0)
#define YYABORT 	return(1)
#define YYERROR		goto yyerrlab1
/* Like YYERROR except do call yyerror.
   This remains here temporarily to ease the
   transition to the new meaning of YYERROR, for GCC.
   Once GCC version 2 has supplanted version 1, this can go.  */
#define YYFAIL		goto yyerrlab
#define YYRECOVERING()  (!!yyerrstatus)
#define YYBACKUP(token, value) \
do								\
  if (yychar == YYEMPTY && yylen == 1)				\
    { yychar = (token), yylval = (value);			\
      yychar1 = YYTRANSLATE (yychar);				\
      YYPOPSTACK;						\
      goto yybackup;						\
    }								\
  else								\
    { yyerror ("syntax error: cannot back up"); YYERROR; }	\
while (0)

#define YYTERROR	1
#define YYERRCODE	256

#ifndef YYPURE
#define YYLEX		yylex()
#endif

#ifdef YYPURE
#ifdef YYLSP_NEEDED
#define YYLEX		yylex(&yylval, &yylloc)
#else
#define YYLEX		yylex(&yylval)
#endif
#endif

/* If nonreentrant, generate the variables here */

#ifndef YYPURE

int	yychar;			/*  the lookahead symbol		*/
YYSTYPE	yylval;			/*  the semantic value of the		*/
				/*  lookahead symbol			*/

#ifdef YYLSP_NEEDED
YYLTYPE yylloc;			/*  location data for the lookahead	*/
				/*  symbol				*/
#endif

int yynerrs;			/*  number of parse errors so far       */
#endif  /* not YYPURE */

#if YYDEBUG != 0
int yydebug;			/*  nonzero means print parse trace	*/
/* Since this is uninitialized, it does not stop multiple parsers
   from coexisting.  */
#endif

/*  YYINITDEPTH indicates the initial size of the parser's stacks	*/

#ifndef	YYINITDEPTH
#define YYINITDEPTH 200
#endif

/*  YYMAXDEPTH is the maximum size the stacks can grow to
    (effective only if the built-in stack extension method is used).  */

#if YYMAXDEPTH == 0
#undef YYMAXDEPTH
#endif

#ifndef YYMAXDEPTH
#define YYMAXDEPTH 10000
#endif

/* Prevent warning if -Wstrict-prototypes.  */
#ifdef __GNUC__
int yyparse (void);
#endif

#if __GNUC__ > 1		/* GNU C and GNU C++ define this.  */
#define __yy_bcopy(FROM,TO,COUNT)	__builtin_memcpy(TO,FROM,COUNT)
#else				/* not GNU C or C++ */
#ifndef __cplusplus

/* This is the most reliable way to avoid incompatibilities
   in available built-in functions on various systems.  */
static void
__yy_bcopy (from, to, count)
     char *from;
     char *to;
     int count;
{
  register char *f = from;
  register char *t = to;
  register int i = count;

  while (i-- > 0)
    *t++ = *f++;
}

#else /* __cplusplus */

/* This is the most reliable way to avoid incompatibilities
   in available built-in functions on various systems.  */
static void
__yy_bcopy (char *from, char *to, int count)
{
  register char *f = from;
  register char *t = to;
  register int i = count;

  while (i-- > 0)
    *t++ = *f++;
}

#endif
#endif

#line 184 "/usr/local/apps/bison/lib/bison.simple"
int
yyparse()
{
  register int yystate;
  register int yyn;
  register short *yyssp;
  register YYSTYPE *yyvsp;
  int yyerrstatus;	/*  number of tokens to shift before error messages enabled */
  int yychar1;		/*  lookahead token as an internal (translated) token number */

  short	yyssa[YYINITDEPTH];	/*  the state stack			*/
  YYSTYPE yyvsa[YYINITDEPTH];	/*  the semantic value stack		*/

  short *yyss = yyssa;		/*  refer to the stacks thru separate pointers */
  YYSTYPE *yyvs = yyvsa;	/*  to allow yyoverflow to reallocate them elsewhere */

#ifdef YYLSP_NEEDED
  YYLTYPE yylsa[YYINITDEPTH];	/*  the location stack			*/
  YYLTYPE *yyls = yylsa;
  YYLTYPE *yylsp;

#define YYPOPSTACK   (yyvsp--, yyssp--, yylsp--)
#else
#define YYPOPSTACK   (yyvsp--, yyssp--)
#endif

  int yystacksize = YYINITDEPTH;

#ifdef YYPURE
  int yychar;
  YYSTYPE yylval;
  int yynerrs;
#ifdef YYLSP_NEEDED
  YYLTYPE yylloc;
#endif
#endif

  YYSTYPE yyval;		/*  the variable used to return		*/
				/*  semantic values from the action	*/
				/*  routines				*/

  int yylen;

#if YYDEBUG != 0
  if (yydebug)
    fprintf(stderr, "Starting parse\n");
#endif

  yystate = 0;
  yyerrstatus = 0;
  yynerrs = 0;
  yychar = YYEMPTY;		/* Cause a token to be read.  */

  /* Initialize stack pointers.
     Waste one element of value and location stack
     so that they stay on the same level as the state stack.
     The wasted elements are never initialized.  */

  yyssp = yyss - 1;
  yyvsp = yyvs;
#ifdef YYLSP_NEEDED
  yylsp = yyls;
#endif

/* Push a new state, which is found in  yystate  .  */
/* In all cases, when you get here, the value and location stacks
   have just been pushed. so pushing a state here evens the stacks.  */
yynewstate:

  *++yyssp = yystate;

  if (yyssp >= yyss + yystacksize - 1)
    {
      /* Give user a chance to reallocate the stack */
      /* Use copies of these so that the &'s don't force the real ones into memory. */
      YYSTYPE *yyvs1 = yyvs;
      short *yyss1 = yyss;
#ifdef YYLSP_NEEDED
      YYLTYPE *yyls1 = yyls;
#endif

      /* Get the current used size of the three stacks, in elements.  */
      int size = yyssp - yyss + 1;

#ifdef yyoverflow
      /* Each stack pointer address is followed by the size of
	 the data in use in that stack, in bytes.  */
      yyoverflow("parser stack overflow",
		 &yyss1, size * sizeof (*yyssp),
		 &yyvs1, size * sizeof (*yyvsp),
#ifdef YYLSP_NEEDED
		 &yyls1, size * sizeof (*yylsp),
#endif
		 &yystacksize);

      yyss = yyss1; yyvs = yyvs1;
#ifdef YYLSP_NEEDED
      yyls = yyls1;
#endif
#else /* no yyoverflow */
      /* Extend the stack our own way.  */
      if (yystacksize >= YYMAXDEPTH)
	{
	  yyerror("parser stack overflow");
	  return 2;
	}
      yystacksize *= 2;
      if (yystacksize > YYMAXDEPTH)
	yystacksize = YYMAXDEPTH;
      yyss = (short *) alloca (yystacksize * sizeof (*yyssp));
      __yy_bcopy ((char *)yyss1, (char *)yyss, size * sizeof (*yyssp));
      yyvs = (YYSTYPE *) alloca (yystacksize * sizeof (*yyvsp));
      __yy_bcopy ((char *)yyvs1, (char *)yyvs, size * sizeof (*yyvsp));
#ifdef YYLSP_NEEDED
      yyls = (YYLTYPE *) alloca (yystacksize * sizeof (*yylsp));
      __yy_bcopy ((char *)yyls1, (char *)yyls, size * sizeof (*yylsp));
#endif
#endif /* no yyoverflow */

      yyssp = yyss + size - 1;
      yyvsp = yyvs + size - 1;
#ifdef YYLSP_NEEDED
      yylsp = yyls + size - 1;
#endif

#if YYDEBUG != 0
      if (yydebug)
	fprintf(stderr, "Stack size increased to %d\n", yystacksize);
#endif

      if (yyssp >= yyss + yystacksize - 1)
	YYABORT;
    }

#if YYDEBUG != 0
  if (yydebug)
    fprintf(stderr, "Entering state %d\n", yystate);
#endif

  goto yybackup;
 yybackup:

/* Do appropriate processing given the current state.  */
/* Read a lookahead token if we need one and don't already have one.  */
/* yyresume: */

  /* First try to decide what to do without reference to lookahead token.  */

  yyn = yypact[yystate];
  if (yyn == YYFLAG)
    goto yydefault;

  /* Not known => get a lookahead token if don't already have one.  */

  /* yychar is either YYEMPTY or YYEOF
     or a valid token in external form.  */

  if (yychar == YYEMPTY)
    {
#if YYDEBUG != 0
      if (yydebug)
	fprintf(stderr, "Reading a token: ");
#endif
      yychar = YYLEX;
    }

  /* Convert token to internal form (in yychar1) for indexing tables with */

  if (yychar <= 0)		/* This means end of input. */
    {
      yychar1 = 0;
      yychar = YYEOF;		/* Don't call YYLEX any more */

#if YYDEBUG != 0
      if (yydebug)
	fprintf(stderr, "Now at end of input.\n");
#endif
    }
  else
    {
      yychar1 = YYTRANSLATE(yychar);

#if YYDEBUG != 0
      if (yydebug)
	{
	  fprintf (stderr, "Next token is %d (%s", yychar, yytname[yychar1]);
	  /* Give the individual parser a way to print the precise meaning
	     of a token, for further debugging info.  */
#ifdef YYPRINT
	  YYPRINT (stderr, yychar, yylval);
#endif
	  fprintf (stderr, ")\n");
	}
#endif
    }

  yyn += yychar1;
  if (yyn < 0 || yyn > YYLAST || yycheck[yyn] != yychar1)
    goto yydefault;

  yyn = yytable[yyn];

  /* yyn is what to do for this token type in this state.
     Negative => reduce, -yyn is rule number.
     Positive => shift, yyn is new state.
       New state is final state => don't bother to shift,
       just return success.
     0, or most negative number => error.  */

  if (yyn < 0)
    {
      if (yyn == YYFLAG)
	goto yyerrlab;
      yyn = -yyn;
      goto yyreduce;
    }
  else if (yyn == 0)
    goto yyerrlab;

  if (yyn == YYFINAL)
    YYACCEPT;

  /* Shift the lookahead token.  */

#if YYDEBUG != 0
  if (yydebug)
    fprintf(stderr, "Shifting token %d (%s), ", yychar, yytname[yychar1]);
#endif

  /* Discard the token being shifted unless it is eof.  */
  if (yychar != YYEOF)
    yychar = YYEMPTY;

  *++yyvsp = yylval;
#ifdef YYLSP_NEEDED
  *++yylsp = yylloc;
#endif

  /* count tokens shifted since error; after three, turn off error status.  */
  if (yyerrstatus) yyerrstatus--;

  yystate = yyn;
  goto yynewstate;

/* Do the default action for the current state.  */
yydefault:

  yyn = yydefact[yystate];
  if (yyn == 0)
    goto yyerrlab;

/* Do a reduction.  yyn is the number of a rule to reduce with.  */
yyreduce:
  yylen = yyr2[yyn];
  yyval = yyvsp[1-yylen]; /* implement default value of the action */

#if YYDEBUG != 0
  if (yydebug)
    {
      int i;

      fprintf (stderr, "Reducing via rule %d (line %d), ",
	       yyn, yyrline[yyn]);

      /* Print the symbols being reduced, and their result.  */
      for (i = yyprhs[yyn]; yyrhs[i] > 0; i++)
	fprintf (stderr, "%s ", yytname[yyrhs[i]]);
      fprintf (stderr, " -> %s\n", yytname[yyr1[yyn]]);
    }
#endif


  switch (yyn) {

case 1:
#line 59 "parser.yac"
{
  /* 
     This should be of type Dictionary rather than StarFile.
     If so, the second part of this rule should be changed.
     */
  [starParser addParsingFile:
   [starParser newBlocksWithName: yyvsp[0].char_ptr value: 0]];
;
    break;}
case 2:
#line 68 "parser.yac"
{
  [starParser addParsingFile:
   [[starParser newBlocksWithName: 
     [starParser getCurrentFileName] value: yyvsp[0].object_ptr]
    setGlobalBlock:currentGlobalBlock]];
;
    break;}
case 3:
#line 75 "parser.yac"
{
  currentGlobalBlock=[starParser newDataBlockWithName:
		      [starParser getCurrentFileName] value: yyvsp[0].object_ptr];
  [starParser addGlobalBlock:currentGlobalBlock];
  [starParser addParsingFile: 
   [[starParser newBlocksWithName: 
     [starParser getCurrentFileName] value: 0]
    setGlobalBlock:currentGlobalBlock]];
;
    break;}
case 4:
#line 85 "parser.yac"
{
  if (!(yyval.object_ptr=[starParser getCurrentParsingFile]))
    {
      yyval.object_ptr=[[starParser newBlocksWithName: 
	   [starParser getCurrentFileName] value: yyvsp[0].object_ptr]
	  setGlobalBlock : currentGlobalBlock];
      [starParser addParsingFile: yyval.object_ptr];
    }
  else
    [yyval.object_ptr addDataItem: yyvsp[0].object_ptr];
;
    break;}
case 5:
#line 97 "parser.yac"
{
  if (!(yyval.object_ptr=[starParser getCurrentParsingGlobalBlock]))
    {
      yyval.object_ptr=
	currentGlobalBlock=
	  [starParser 
	   newDataBlockWithName : [starParser getCurrentFileName]  value: yyvsp[0].object_ptr];
      [starParser addGlobalBlock: yyval.object_ptr];
    }
  else
    [yyval.object_ptr addDataItem: yyvsp[0].object_ptr];
;
    break;}
case 6:
#line 112 "parser.yac"
{
  
  /* 
     Always is of type WDCStarDataBlock. 
     */
  yyval.object_ptr=[starParser newDataBlockWithName: yyvsp[0].char_ptr value: 0];
;
    break;}
case 7:
#line 120 "parser.yac"
{
  yyval.object_ptr=[yyvsp[-1].object_ptr addDataItem: yyvsp[0].object_ptr];
;
    break;}
case 8:
#line 126 "parser.yac"
{
  
  /* 
     Always is of type WDCStarDataBlock. 
     */
  yyval.object_ptr=[[starParser newDataBlockWithName: yyvsp[0].char_ptr value: 0]
      setGlobalBlock : currentGlobalBlock];
;
    break;}
case 9:
#line 135 "parser.yac"
{
  yyval.object_ptr=[[[starParser newDataBlockWithName: "data_1" value: 0]
       setGlobalBlock : currentGlobalBlock] addDataItem: yyvsp[0].object_ptr];
;
    break;}
case 10:
#line 140 "parser.yac"
{
  yyval.object_ptr=[yyvsp[-1].object_ptr addDataItem: yyvsp[0].object_ptr];
;
    break;}
case 11:
#line 144 "parser.yac"
{
  yyval.object_ptr=[yyvsp[-1].object_ptr addDataItem: yyvsp[0].object_ptr];
;
    break;}
case 12:
#line 149 "parser.yac"
{
  /* 
     Always is of type WDCStarDataBlock. Save frame is a local reference
     data block within a data block. Need to determine the stop of a save
     frame.
     */
  yyval.object_ptr=[starParser newDataBlockWithName: yyvsp[-2].char_ptr value: yyvsp[-1].object_ptr];
;
    break;}
case 13:
#line 159 "parser.yac"
{
  /* Action for the following RHS rules are the same. However, Bison
     need to have one action associated with every rule.
     */
  /* 
     Alway is type of WDCStarItemAssocValue.
     */
  yyval.object_ptr=[starParser newStarItemAssocWithName:yyvsp[-1].char_ptr value:yyvsp[0].object_ptr];
;
    break;}
case 14:
#line 169 "parser.yac"
{
  /* 
     Alway is type of WDCStarItemAssocValue.
     */
  yyval.object_ptr=[starParser newStarItemAssocWithName:yyvsp[-1].char_ptr value:yyvsp[0].object_ptr];
;
    break;}
case 15:
#line 176 "parser.yac"
{
  /* 
     Alway is type of WDCStarItemAssocValue.
     */
  yyval.object_ptr=[starParser newStarItemAssocWithName:yyvsp[-1].char_ptr value:yyvsp[0].object_ptr];
;
    break;}
case 16:
#line 183 "parser.yac"
{
  yyval.object_ptr=[yyvsp[-1].object_ptr addStarAssocValue:yyvsp[0].object_ptr];
;
    break;}
case 17:
#line 189 "parser.yac"
{
  
  /* 
     Singal string are of type WDCString.
     */
  
  yyval.object_ptr=[starParser newStringInitFromCString:yyvsp[0].char_ptr];
;
    break;}
case 18:
#line 198 "parser.yac"
{

  /* 
     Strings are of type WDCLListOfObject of WDCString.
     */
  if (![yyvsp[-1].object_ptr isMemberOfClassNamed: "WDCLListOfObject"])
    yyvsp[-1].object_ptr=[starParser newObjectListWithContent: yyvsp[-1].object_ptr];
  yyval.object_ptr=[yyvsp[-1].object_ptr addContent: [starParser newStringInitFromCString:yyvsp[0].char_ptr]];
  
;
    break;}
case 19:
#line 211 "parser.yac"
{
  
  /*
     Looped items are of type WDCStarAssocValue. They can be linked 
     togather by using "addStarAssocValue:" method.
     */
  id temp=[starParser newStarItemAssocWithName:yyvsp[0].char_ptr value:0];
  [starParser initScopeStack];
  yyval.object_ptr=[[WDCLListOfObject alloc] setContent : temp];
  
  /* Push the fist loop name scope level */
  
  [starParser pushScope: temp];
  
  /* Updat the current loop value scope */
  
  [starParser setCurrentScope : temp];
;
    break;}
case 20:
#line 230 "parser.yac"
{
  /* Adding new item. Same loop name scope level */
  
  yyval.object_ptr=yyvsp[-1].object_ptr;
  [[starParser topScopeObject]
   addStarAssocValue : [starParser newStarItemAssocWithName: yyvsp[0].char_ptr value:0]];
;
    break;}
case 21:
#line 238 "parser.yac"
{
  /* Create the data item */
  
 // id currentObject=[starParser newStarItemAssocWithName : $2 value:0];
 // [starParser initScopeStack];
  
  /* Create the Loop_ item and assign the item to value of the Loop_ item */
  
 // $$=[starParser newStarItemAssocWithName : $1 value: currentObject];
  
  /* Push the 1st loop name scope and set the current loop value scope */
  
 // [[starParser pushScope: $$] setCurrentScope : $$];
  
  /* Push (raise to) the 2nd loop name scope level */ 
  
 // [starParser pushObject: currentObject]; 
;
    break;}
case 22:
#line 257 "parser.yac"
{
  /* Create the data item */
  
  id temp=[starParser newStarItemAssocWithName : yyvsp[0].char_ptr value:0];

  yyval.object_ptr=yyvsp[-2].object_ptr;
  
  /* Add the item to whoever is on the top of the nameScopeStack */
  
  [[starParser topScopeObject]
   addStarAssocValue : 
   [[[WDCLoopItemAssocValue alloc] setName:yyvsp[-1].char_ptr] addValue : temp]];
  
  [starParser pushScope : temp];
;
    break;}
case 23:
#line 273 "parser.yac"
{
  id item, scopeStack, temp;
  yyval.object_ptr=yyvsp[-1].object_ptr;
    
  /* Reduce to the current loop value scope */
  scopeStack=[starParser getStack];
  item=[scopeStack popToCurrentValueObjectAndReturnPreviousInputItem];
  
  /* find the current input item */

  item=[scopeStack getNextInputItem: item];

  if (!item) printf("problem here\n");
  if ([item getValue]) 
    {
      item=[item selectedDeepCopy];
      temp=[scopeStack popObject];
      // scopeStack should be empty or has an object of llistofobject
      if ([scopeStack isEmpty])
	{
	  if ([temp isKindOfClassNamed : "WDCLListOfObject"])
	    yyval.object_ptr=temp;
	  else
	    yyval.object_ptr=[[WDCLListOfObject alloc] setContent: temp];
	  [starParser pushScope: yyval.object_ptr];
	}
      if ([[scopeStack topObject] isKindOfClassNamed : "WDCLListOfObject"])
	[[scopeStack topObject] addContent: item];
      else if ([scopeStack isLoopItem: [scopeStack topObject]])
	[[[scopeStack topObject] getValue] addContent: item];
      else
	printf("parser still have problem ....\n");
      [starParser pushScope: item];
      [scopeStack setCurrentValueScope: [scopeStack topObject]];
    }
  
  /* Set the value and push the current item to stack for next itemvalue */
  
  [starParser pushScope : [item addValue : 
			   [starParser newStringInitFromCString : yyvsp[0].char_ptr]]];
;
    break;}
case 24:
#line 315 "parser.yac"
{
  id item, scopeStack, temp;
  yyval.object_ptr=yyvsp[-1].object_ptr;
   
  /* Reduce to the current loop value scope */
  scopeStack=[starParser getStack];
  item=[scopeStack popToCurrentValueObjectAndReturnPreviousInputItem];
  
  /* find the current input item */

  item=[scopeStack getNextInputItem: item];
  
  if (!item) printf("problem in Looped linebuffers\n");
  
  if ([item getValue])
    {
      item=[item selectedDeepCopy];
      temp=[scopeStack popObject];
      if ([scopeStack isEmpty])
	{
	  if ([temp isKindOfClassNamed : "WDCLListOfObject"])
	    yyval.object_ptr=temp;
	  else
	    yyval.object_ptr=[[WDCLListOfObject alloc] setContent: temp];
	  [starParser pushScope: yyval.object_ptr];
	}
      if ([[scopeStack topObject] 
	   isKindOfClassNamed : "WDCLListOfObject"])
	[[scopeStack topObject] addContent: item];
      else if ([scopeStack isLoopItem: [scopeStack topObject]])
	[[[scopeStack topObject] getValue] addContent: item];
      else
	printf("parser still have problem ....\n");
      [starParser pushScope: item];
      [scopeStack setCurrentValueScope: [scopeStack topObject]];
    }
  /* Set the value and push the current item to stack for next itemvalue */
  [starParser pushScope : [item addValue : yyvsp[0].object_ptr]];
;
    break;}
case 25:
#line 355 "parser.yac"
{
  yyval.object_ptr=yyvsp[-1].object_ptr;

  /* if the topObject is a loop_ item just pop one item, since this is a
     stop_ in item name input loop.
     */
  if ([[[starParser getStack] popObject] getValue])  /* not name input loop */
    {
      /* It is a stop_ in value input loop, then. */
      [[starParser getStack] reduceLoopItem];
    }
;
    break;}
case 26:
#line 369 "parser.yac"
{
  
  /* 
     LineBuffers are of type WDCLineBuffer.
     */

  yyval.object_ptr=[starParser newLineBufferInitFromCString:yyvsp[0].char_ptr]; 
;
    break;}
case 27:
#line 378 "parser.yac"
{
  yyval.object_ptr=[yyvsp[-1].object_ptr addCopyOfCString: yyvsp[0].char_ptr];
;
    break;}
}
   /* the action file gets copied in in place of this dollarsign */
#line 457 "/usr/local/apps/bison/lib/bison.simple"

  yyvsp -= yylen;
  yyssp -= yylen;
#ifdef YYLSP_NEEDED
  yylsp -= yylen;
#endif

#if YYDEBUG != 0
  if (yydebug)
    {
      short *ssp1 = yyss - 1;
      fprintf (stderr, "state stack now");
      while (ssp1 != yyssp)
	fprintf (stderr, " %d", *++ssp1);
      fprintf (stderr, "\n");
    }
#endif

  *++yyvsp = yyval;

#ifdef YYLSP_NEEDED
  yylsp++;
  if (yylen == 0)
    {
      yylsp->first_line = yylloc.first_line;
      yylsp->first_column = yylloc.first_column;
      yylsp->last_line = (yylsp-1)->last_line;
      yylsp->last_column = (yylsp-1)->last_column;
      yylsp->text = 0;
    }
  else
    {
      yylsp->last_line = (yylsp+yylen-1)->last_line;
      yylsp->last_column = (yylsp+yylen-1)->last_column;
    }
#endif

  /* Now "shift" the result of the reduction.
     Determine what state that goes to,
     based on the state we popped back to
     and the rule number reduced by.  */

  yyn = yyr1[yyn];

  yystate = yypgoto[yyn - YYNTBASE] + *yyssp;
  if (yystate >= 0 && yystate <= YYLAST && yycheck[yystate] == *yyssp)
    yystate = yytable[yystate];
  else
    yystate = yydefgoto[yyn - YYNTBASE];

  goto yynewstate;

yyerrlab:   /* here on detecting error */

  if (! yyerrstatus)
    /* If not already recovering from an error, report this error.  */
    {
      ++yynerrs;

#ifdef YYERROR_VERBOSE
      yyn = yypact[yystate];

      if (yyn > YYFLAG && yyn < YYLAST)
	{
	  int size = 0;
	  char *msg;
	  int x, count;

	  count = 0;
	  /* Start X at -yyn if nec to avoid negative indexes in yycheck.  */
	  for (x = (yyn < 0 ? -yyn : 0);
	       x < (sizeof(yytname) / sizeof(char *)); x++)
	    if (yycheck[x + yyn] == x)
	      size += strlen(yytname[x]) + 15, count++;
	  msg = (char *) malloc(size + 15);
	  if (msg != 0)
	    {
	      strcpy(msg, "parse error");

	      if (count < 5)
		{
		  count = 0;
		  for (x = (yyn < 0 ? -yyn : 0);
		       x < (sizeof(yytname) / sizeof(char *)); x++)
		    if (yycheck[x + yyn] == x)
		      {
			strcat(msg, count == 0 ? ", expecting `" : " or `");
			strcat(msg, yytname[x]);
			strcat(msg, "'");
			count++;
		      }
		}
	      yyerror(msg);
	      free(msg);
	    }
	  else
	    yyerror ("parse error; also virtual memory exceeded");
	}
      else
#endif /* YYERROR_VERBOSE */
	yyerror("parse error");
    }

  goto yyerrlab1;
yyerrlab1:   /* here on error raised explicitly by an action */

  if (yyerrstatus == 3)
    {
      /* if just tried and failed to reuse lookahead token after an error, discard it.  */

      /* return failure if at end of input */
      if (yychar == YYEOF)
	YYABORT;

#if YYDEBUG != 0
      if (yydebug)
	fprintf(stderr, "Discarding token %d (%s).\n", yychar, yytname[yychar1]);
#endif

      yychar = YYEMPTY;
    }

  /* Else will try to reuse lookahead token
     after shifting the error token.  */

  yyerrstatus = 3;		/* Each real token shifted decrements this */

  goto yyerrhandle;

yyerrdefault:  /* current state does not do anything special for the error token. */

#if 0
  /* This is wrong; only states that explicitly want error tokens
     should shift them.  */
  yyn = yydefact[yystate];  /* If its default is to accept any token, ok.  Otherwise pop it.*/
  if (yyn) goto yydefault;
#endif

yyerrpop:   /* pop the current state because it cannot handle the error token */

  if (yyssp == yyss) YYABORT;
  yyvsp--;
  yystate = *--yyssp;
#ifdef YYLSP_NEEDED
  yylsp--;
#endif

#if YYDEBUG != 0
  if (yydebug)
    {
      short *ssp1 = yyss - 1;
      fprintf (stderr, "Error: state stack now");
      while (ssp1 != yyssp)
	fprintf (stderr, " %d", *++ssp1);
      fprintf (stderr, "\n");
    }
#endif

yyerrhandle:

  yyn = yypact[yystate];
  if (yyn == YYFLAG)
    goto yyerrdefault;

  yyn += YYTERROR;
  if (yyn < 0 || yyn > YYLAST || yycheck[yyn] != YYTERROR)
    goto yyerrdefault;

  yyn = yytable[yyn];
  if (yyn < 0)
    {
      if (yyn == YYFLAG)
	goto yyerrpop;
      yyn = -yyn;
      goto yyreduce;
    }
  else if (yyn == 0)
    goto yyerrpop;

  if (yyn == YYFINAL)
    YYACCEPT;

#if YYDEBUG != 0
  if (yydebug)
    fprintf(stderr, "Shifting error token, ");
#endif

  *++yyvsp = yylval;
#ifdef YYLSP_NEEDED
  *++yylsp = yylloc;
#endif

  yystate = yyn;
  goto yynewstate;
}
#line 384 "parser.yac"


#include <stdio.h>

extern char * yytext;
extern FILE *yyin;
extern char ** fileList;
extern unsigned nFiles;
unsigned currentFile=0;


