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[/] [openrisc/] [tags/] [gnu-src/] [newlib-1.18.0/] [newlib-1.18.0-or32-1.0rc1/] [newlib/] [libc/] [stdio/] [vfscanf.c] - Diff between revs 207 and 345

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/*-
/*-
 * Copyright (c) 1990 The Regents of the University of California.
 * Copyright (c) 1990 The Regents of the University of California.
 * All rights reserved.
 * All rights reserved.
 *
 *
 * Redistribution and use in source and binary forms are permitted
 * Redistribution and use in source and binary forms are permitted
 * provided that the above copyright notice and this paragraph are
 * provided that the above copyright notice and this paragraph are
 * duplicated in all such forms and that any documentation,
 * duplicated in all such forms and that any documentation,
 * advertising materials, and other materials related to such
 * advertising materials, and other materials related to such
 * distribution and use acknowledge that the software was developed
 * distribution and use acknowledge that the software was developed
 * by the University of California, Berkeley.  The name of the
 * by the University of California, Berkeley.  The name of the
 * University may not be used to endorse or promote products derived
 * University may not be used to endorse or promote products derived
 * from this software without specific prior written permission.
 * from this software without specific prior written permission.
 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR
 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR
 * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED
 * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED
 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
 */
 */
 
 
/*
/*
FUNCTION
FUNCTION
<<vfscanf>>, <<vscanf>>, <<vsscanf>>---format argument list
<<vfscanf>>, <<vscanf>>, <<vsscanf>>---format argument list
 
 
INDEX
INDEX
        vfscanf
        vfscanf
INDEX
INDEX
        _vfscanf_r
        _vfscanf_r
INDEX
INDEX
        vscanf
        vscanf
INDEX
INDEX
        _vscanf_r
        _vscanf_r
INDEX
INDEX
        vsscanf
        vsscanf
INDEX
INDEX
        _vsscanf_r
        _vsscanf_r
 
 
ANSI_SYNOPSIS
ANSI_SYNOPSIS
        #include <stdio.h>
        #include <stdio.h>
        #include <stdarg.h>
        #include <stdarg.h>
        int vscanf(const char *<[fmt]>, va_list <[list]>);
        int vscanf(const char *<[fmt]>, va_list <[list]>);
        int vfscanf(FILE *<[fp]>, const char *<[fmt]>, va_list <[list]>);
        int vfscanf(FILE *<[fp]>, const char *<[fmt]>, va_list <[list]>);
        int vsscanf(const char *<[str]>, const char *<[fmt]>, va_list <[list]>);
        int vsscanf(const char *<[str]>, const char *<[fmt]>, va_list <[list]>);
 
 
        int _vscanf_r(struct _reent *<[reent]>, const char *<[fmt]>,
        int _vscanf_r(struct _reent *<[reent]>, const char *<[fmt]>,
                       va_list <[list]>);
                       va_list <[list]>);
        int _vfscanf_r(struct _reent *<[reent]>, FILE *<[fp]>, const char *<[fmt]>,
        int _vfscanf_r(struct _reent *<[reent]>, FILE *<[fp]>, const char *<[fmt]>,
                       va_list <[list]>);
                       va_list <[list]>);
        int _vsscanf_r(struct _reent *<[reent]>, const char *<[str]>,
        int _vsscanf_r(struct _reent *<[reent]>, const char *<[str]>,
                       const char *<[fmt]>, va_list <[list]>);
                       const char *<[fmt]>, va_list <[list]>);
 
 
TRAD_SYNOPSIS
TRAD_SYNOPSIS
        #include <stdio.h>
        #include <stdio.h>
        #include <varargs.h>
        #include <varargs.h>
        int vscanf( <[fmt]>, <[ist]>)
        int vscanf( <[fmt]>, <[ist]>)
        char *<[fmt]>;
        char *<[fmt]>;
        va_list <[list]>;
        va_list <[list]>;
 
 
        int vfscanf( <[fp]>, <[fmt]>, <[list]>)
        int vfscanf( <[fp]>, <[fmt]>, <[list]>)
        FILE *<[fp]>;
        FILE *<[fp]>;
        char *<[fmt]>;
        char *<[fmt]>;
        va_list <[list]>;
        va_list <[list]>;
 
 
        int vsscanf( <[str]>, <[fmt]>, <[list]>)
        int vsscanf( <[str]>, <[fmt]>, <[list]>)
        char *<[str]>;
        char *<[str]>;
        char *<[fmt]>;
        char *<[fmt]>;
        va_list <[list]>;
        va_list <[list]>;
 
 
        int _vscanf_r( <[reent]>, <[fmt]>, <[ist]>)
        int _vscanf_r( <[reent]>, <[fmt]>, <[ist]>)
        struct _reent *<[reent]>;
        struct _reent *<[reent]>;
        char *<[fmt]>;
        char *<[fmt]>;
        va_list <[list]>;
        va_list <[list]>;
 
 
        int _vfscanf_r( <[reent]>, <[fp]>, <[fmt]>, <[list]>)
        int _vfscanf_r( <[reent]>, <[fp]>, <[fmt]>, <[list]>)
        struct _reent *<[reent]>;
        struct _reent *<[reent]>;
        FILE *<[fp]>;
        FILE *<[fp]>;
        char *<[fmt]>;
        char *<[fmt]>;
        va_list <[list]>;
        va_list <[list]>;
 
 
        int _vsscanf_r( <[reent]>, <[str]>, <[fmt]>, <[list]>)
        int _vsscanf_r( <[reent]>, <[str]>, <[fmt]>, <[list]>)
        struct _reent *<[reent]>;
        struct _reent *<[reent]>;
        char *<[str]>;
        char *<[str]>;
        char *<[fmt]>;
        char *<[fmt]>;
        va_list <[list]>;
        va_list <[list]>;
 
 
DESCRIPTION
DESCRIPTION
<<vscanf>>, <<vfscanf>>, and <<vsscanf>> are (respectively) variants
<<vscanf>>, <<vfscanf>>, and <<vsscanf>> are (respectively) variants
of <<scanf>>, <<fscanf>>, and <<sscanf>>.  They differ only in
of <<scanf>>, <<fscanf>>, and <<sscanf>>.  They differ only in
allowing their caller to pass the variable argument list as a
allowing their caller to pass the variable argument list as a
<<va_list>> object (initialized by <<va_start>>) rather than
<<va_list>> object (initialized by <<va_start>>) rather than
directly accepting a variable number of arguments.
directly accepting a variable number of arguments.
 
 
RETURNS
RETURNS
The return values are consistent with the corresponding functions:
The return values are consistent with the corresponding functions:
<<vscanf>> returns the number of input fields successfully scanned,
<<vscanf>> returns the number of input fields successfully scanned,
converted, and stored; the return value does not include scanned
converted, and stored; the return value does not include scanned
fields which were not stored.
fields which were not stored.
 
 
If <<vscanf>> attempts to read at end-of-file, the return value
If <<vscanf>> attempts to read at end-of-file, the return value
is <<EOF>>.
is <<EOF>>.
 
 
If no fields were stored, the return value is <<0>>.
If no fields were stored, the return value is <<0>>.
 
 
The routines <<_vscanf_r>>, <<_vfscanf_f>>, and <<_vsscanf_r>> are
The routines <<_vscanf_r>>, <<_vfscanf_f>>, and <<_vsscanf_r>> are
reentrant versions which take an additional first parameter which points to the
reentrant versions which take an additional first parameter which points to the
reentrancy structure.
reentrancy structure.
 
 
PORTABILITY
PORTABILITY
These are GNU extensions.
These are GNU extensions.
 
 
Supporting OS subroutines required:
Supporting OS subroutines required:
*/
*/
 
 
#include <_ansi.h>
#include <_ansi.h>
#include <reent.h>
#include <reent.h>
#include <newlib.h>
#include <newlib.h>
#include <ctype.h>
#include <ctype.h>
#include <wctype.h>
#include <wctype.h>
#include <stdio.h>
#include <stdio.h>
#include <stdlib.h>
#include <stdlib.h>
#include <stdint.h>
#include <stdint.h>
#include <limits.h>
#include <limits.h>
#include <wchar.h>
#include <wchar.h>
#include <string.h>
#include <string.h>
#include <stdarg.h>
#include <stdarg.h>
#include <errno.h>
#include <errno.h>
#include "local.h"
#include "local.h"
#include "../stdlib/local.h"
#include "../stdlib/local.h"
 
 
#ifdef INTEGER_ONLY
#ifdef INTEGER_ONLY
#define VFSCANF vfiscanf
#define VFSCANF vfiscanf
#define _VFSCANF_R _vfiscanf_r
#define _VFSCANF_R _vfiscanf_r
#define __SVFSCANF __svfiscanf
#define __SVFSCANF __svfiscanf
#ifdef STRING_ONLY
#ifdef STRING_ONLY
#  define __SVFSCANF_R __ssvfiscanf_r
#  define __SVFSCANF_R __ssvfiscanf_r
#else
#else
#  define __SVFSCANF_R __svfiscanf_r
#  define __SVFSCANF_R __svfiscanf_r
#endif
#endif
#else
#else
#define VFSCANF vfscanf
#define VFSCANF vfscanf
#define _VFSCANF_R _vfscanf_r
#define _VFSCANF_R _vfscanf_r
#define __SVFSCANF __svfscanf
#define __SVFSCANF __svfscanf
#ifdef STRING_ONLY
#ifdef STRING_ONLY
#  define __SVFSCANF_R __ssvfscanf_r
#  define __SVFSCANF_R __ssvfscanf_r
#else
#else
#  define __SVFSCANF_R __svfscanf_r
#  define __SVFSCANF_R __svfscanf_r
#endif
#endif
#ifndef NO_FLOATING_POINT
#ifndef NO_FLOATING_POINT
#define FLOATING_POINT
#define FLOATING_POINT
#endif
#endif
#endif
#endif
 
 
#ifdef STRING_ONLY
#ifdef STRING_ONLY
#undef _flockfile
#undef _flockfile
#undef _funlockfile
#undef _funlockfile
#define _flockfile(x) {}
#define _flockfile(x) {}
#define _funlockfile(x) {}
#define _funlockfile(x) {}
#define _ungetc_r _sungetc_r
#define _ungetc_r _sungetc_r
#define __srefill_r __ssrefill_r
#define __srefill_r __ssrefill_r
#define _fread_r _sfread_r
#define _fread_r _sfread_r
#endif
#endif
 
 
#ifdef FLOATING_POINT
#ifdef FLOATING_POINT
#include <math.h>
#include <math.h>
#include <float.h>
#include <float.h>
 
 
/* Currently a test is made to see if long double processing is warranted.
/* Currently a test is made to see if long double processing is warranted.
   This could be changed in the future should the _ldtoa_r code be
   This could be changed in the future should the _ldtoa_r code be
   preferred over _dtoa_r.  */
   preferred over _dtoa_r.  */
#define _NO_LONGDBL
#define _NO_LONGDBL
#if defined _WANT_IO_LONG_DOUBLE && (LDBL_MANT_DIG > DBL_MANT_DIG)
#if defined _WANT_IO_LONG_DOUBLE && (LDBL_MANT_DIG > DBL_MANT_DIG)
#undef _NO_LONGDBL
#undef _NO_LONGDBL
extern _LONG_DOUBLE _strtold _PARAMS((char *s, char **sptr));
extern _LONG_DOUBLE _strtold _PARAMS((char *s, char **sptr));
#endif
#endif
 
 
#include "floatio.h"
#include "floatio.h"
 
 
#if ((MAXEXP+MAXFRACT+3) > MB_LEN_MAX)
#if ((MAXEXP+MAXFRACT+3) > MB_LEN_MAX)
#  define BUF (MAXEXP+MAXFRACT+3)        /* 3 = sign + decimal point + NUL */
#  define BUF (MAXEXP+MAXFRACT+3)        /* 3 = sign + decimal point + NUL */
#else
#else
#  define BUF MB_LEN_MAX
#  define BUF MB_LEN_MAX
#endif
#endif
 
 
/* An upper bound for how long a long prints in decimal.  4 / 13 approximates
/* An upper bound for how long a long prints in decimal.  4 / 13 approximates
   log (2).  Add one char for roundoff compensation and one for the sign.  */
   log (2).  Add one char for roundoff compensation and one for the sign.  */
#define MAX_LONG_LEN ((CHAR_BIT * sizeof (long)  - 1) * 4 / 13 + 2)
#define MAX_LONG_LEN ((CHAR_BIT * sizeof (long)  - 1) * 4 / 13 + 2)
#else
#else
#define BUF     40
#define BUF     40
#endif
#endif
 
 
#define _NO_LONGLONG
#define _NO_LONGLONG
#if defined _WANT_IO_LONG_LONG \
#if defined _WANT_IO_LONG_LONG \
        && (defined __GNUC__ || __STDC_VERSION__ >= 199901L)
        && (defined __GNUC__ || __STDC_VERSION__ >= 199901L)
# undef _NO_LONGLONG
# undef _NO_LONGLONG
#endif
#endif
 
 
#define _NO_POS_ARGS
#define _NO_POS_ARGS
#ifdef _WANT_IO_POS_ARGS
#ifdef _WANT_IO_POS_ARGS
# undef _NO_POS_ARGS
# undef _NO_POS_ARGS
# ifdef NL_ARGMAX
# ifdef NL_ARGMAX
#  define MAX_POS_ARGS NL_ARGMAX
#  define MAX_POS_ARGS NL_ARGMAX
# else
# else
#  define MAX_POS_ARGS 32
#  define MAX_POS_ARGS 32
# endif
# endif
 
 
static void * get_arg (int, va_list *, int *, void **);
static void * get_arg (int, va_list *, int *, void **);
#endif /* _WANT_IO_POS_ARGS */
#endif /* _WANT_IO_POS_ARGS */
 
 
/*
/*
 * Flags used during conversion.
 * Flags used during conversion.
 */
 */
 
 
#define LONG            0x01    /* l: long or double */
#define LONG            0x01    /* l: long or double */
#define LONGDBL         0x02    /* L/ll: long double or long long */
#define LONGDBL         0x02    /* L/ll: long double or long long */
#define SHORT           0x04    /* h: short */
#define SHORT           0x04    /* h: short */
#define CHAR            0x08    /* hh: 8 bit integer */
#define CHAR            0x08    /* hh: 8 bit integer */
#define SUPPRESS        0x10    /* suppress assignment */
#define SUPPRESS        0x10    /* suppress assignment */
#define POINTER         0x20    /* weird %p pointer (`fake hex') */
#define POINTER         0x20    /* weird %p pointer (`fake hex') */
#define NOSKIP          0x40    /* do not skip blanks */
#define NOSKIP          0x40    /* do not skip blanks */
 
 
/*
/*
 * The following are used in numeric conversions only:
 * The following are used in numeric conversions only:
 * SIGNOK, NDIGITS, DPTOK, and EXPOK are for floating point;
 * SIGNOK, NDIGITS, DPTOK, and EXPOK are for floating point;
 * SIGNOK, NDIGITS, PFXOK, and NZDIGITS are for integral.
 * SIGNOK, NDIGITS, PFXOK, and NZDIGITS are for integral.
 */
 */
 
 
#define SIGNOK          0x80    /* +/- is (still) legal */
#define SIGNOK          0x80    /* +/- is (still) legal */
#define NDIGITS         0x100   /* no digits detected */
#define NDIGITS         0x100   /* no digits detected */
 
 
#define DPTOK           0x200   /* (float) decimal point is still legal */
#define DPTOK           0x200   /* (float) decimal point is still legal */
#define EXPOK           0x400   /* (float) exponent (e+3, etc) still legal */
#define EXPOK           0x400   /* (float) exponent (e+3, etc) still legal */
 
 
#define PFXOK           0x200   /* 0x prefix is (still) legal */
#define PFXOK           0x200   /* 0x prefix is (still) legal */
#define NZDIGITS        0x400   /* no zero digits detected */
#define NZDIGITS        0x400   /* no zero digits detected */
#define NNZDIGITS       0x800   /* no non-zero digits detected */
#define NNZDIGITS       0x800   /* no non-zero digits detected */
 
 
/*
/*
 * Conversion types.
 * Conversion types.
 */
 */
 
 
#define CT_CHAR         0        /* %c conversion */
#define CT_CHAR         0        /* %c conversion */
#define CT_CCL          1       /* %[...] conversion */
#define CT_CCL          1       /* %[...] conversion */
#define CT_STRING       2       /* %s conversion */
#define CT_STRING       2       /* %s conversion */
#define CT_INT          3       /* integer, i.e., strtol or strtoul */
#define CT_INT          3       /* integer, i.e., strtol or strtoul */
#define CT_FLOAT        4       /* floating, i.e., strtod */
#define CT_FLOAT        4       /* floating, i.e., strtod */
 
 
#if 0
#if 0
#define u_char unsigned char
#define u_char unsigned char
#endif
#endif
#define u_char char
#define u_char char
#define u_long unsigned long
#define u_long unsigned long
 
 
#ifndef _NO_LONGLONG
#ifndef _NO_LONGLONG
typedef unsigned long long u_long_long;
typedef unsigned long long u_long_long;
#endif
#endif
 
 
/*
/*
 * vfscanf
 * vfscanf
 */
 */
 
 
#define BufferEmpty (fp->_r <= 0 && __srefill_r(rptr, fp))
#define BufferEmpty (fp->_r <= 0 && __srefill_r(rptr, fp))
 
 
#ifndef STRING_ONLY
#ifndef STRING_ONLY
 
 
#ifndef _REENT_ONLY
#ifndef _REENT_ONLY
 
 
int
int
_DEFUN(VFSCANF, (fp, fmt, ap),
_DEFUN(VFSCANF, (fp, fmt, ap),
       register FILE *fp _AND
       register FILE *fp _AND
       _CONST char *fmt _AND
       _CONST char *fmt _AND
       va_list ap)
       va_list ap)
{
{
  CHECK_INIT(_REENT, fp);
  CHECK_INIT(_REENT, fp);
  return __SVFSCANF_R (_REENT, fp, fmt, ap);
  return __SVFSCANF_R (_REENT, fp, fmt, ap);
}
}
 
 
int
int
_DEFUN(__SVFSCANF, (fp, fmt0, ap),
_DEFUN(__SVFSCANF, (fp, fmt0, ap),
       register FILE *fp _AND
       register FILE *fp _AND
       char _CONST *fmt0 _AND
       char _CONST *fmt0 _AND
       va_list ap)
       va_list ap)
{
{
  return __SVFSCANF_R (_REENT, fp, fmt0, ap);
  return __SVFSCANF_R (_REENT, fp, fmt0, ap);
}
}
 
 
#endif /* !_REENT_ONLY */
#endif /* !_REENT_ONLY */
 
 
int
int
_DEFUN(_VFSCANF_R, (data, fp, fmt, ap),
_DEFUN(_VFSCANF_R, (data, fp, fmt, ap),
       struct _reent *data _AND
       struct _reent *data _AND
       register FILE *fp   _AND
       register FILE *fp   _AND
       _CONST char *fmt    _AND
       _CONST char *fmt    _AND
       va_list ap)
       va_list ap)
{
{
  CHECK_INIT(data, fp);
  CHECK_INIT(data, fp);
  return __SVFSCANF_R (data, fp, fmt, ap);
  return __SVFSCANF_R (data, fp, fmt, ap);
}
}
#endif /* !STRING_ONLY */
#endif /* !STRING_ONLY */
 
 
#if defined (STRING_ONLY) && defined (INTEGER_ONLY)
#if defined (STRING_ONLY) && defined (INTEGER_ONLY)
/* When dealing with the sscanf family, we don't want to use the
/* When dealing with the sscanf family, we don't want to use the
 * regular ungetc which will drag in file I/O items we don't need.
 * regular ungetc which will drag in file I/O items we don't need.
 * So, we create our own trimmed-down version.  */
 * So, we create our own trimmed-down version.  */
int
int
_DEFUN(_sungetc_r, (data, fp, ch),
_DEFUN(_sungetc_r, (data, fp, ch),
        struct _reent *data _AND
        struct _reent *data _AND
        int c               _AND
        int c               _AND
        register FILE *fp)
        register FILE *fp)
{
{
  if (c == EOF)
  if (c == EOF)
    return (EOF);
    return (EOF);
 
 
  /* After ungetc, we won't be at eof anymore */
  /* After ungetc, we won't be at eof anymore */
  fp->_flags &= ~__SEOF;
  fp->_flags &= ~__SEOF;
  c = (unsigned char) c;
  c = (unsigned char) c;
 
 
  /*
  /*
   * If we are in the middle of ungetc'ing, just continue.
   * If we are in the middle of ungetc'ing, just continue.
   * This may require expanding the current ungetc buffer.
   * This may require expanding the current ungetc buffer.
   */
   */
 
 
  if (HASUB (fp))
  if (HASUB (fp))
    {
    {
      if (fp->_r >= fp->_ub._size && __submore (data, fp))
      if (fp->_r >= fp->_ub._size && __submore (data, fp))
        {
        {
          return EOF;
          return EOF;
        }
        }
      *--fp->_p = c;
      *--fp->_p = c;
      fp->_r++;
      fp->_r++;
      return c;
      return c;
    }
    }
 
 
  /*
  /*
   * If we can handle this by simply backing up, do so,
   * If we can handle this by simply backing up, do so,
   * but never replace the original character.
   * but never replace the original character.
   * (This makes sscanf() work when scanning `const' data.)
   * (This makes sscanf() work when scanning `const' data.)
   */
   */
 
 
  if (fp->_bf._base != NULL && fp->_p > fp->_bf._base && fp->_p[-1] == c)
  if (fp->_bf._base != NULL && fp->_p > fp->_bf._base && fp->_p[-1] == c)
    {
    {
      fp->_p--;
      fp->_p--;
      fp->_r++;
      fp->_r++;
      return c;
      return c;
    }
    }
 
 
  /*
  /*
   * Create an ungetc buffer.
   * Create an ungetc buffer.
   * Initially, we will use the `reserve' buffer.
   * Initially, we will use the `reserve' buffer.
   */
   */
 
 
  fp->_ur = fp->_r;
  fp->_ur = fp->_r;
  fp->_up = fp->_p;
  fp->_up = fp->_p;
  fp->_ub._base = fp->_ubuf;
  fp->_ub._base = fp->_ubuf;
  fp->_ub._size = sizeof (fp->_ubuf);
  fp->_ub._size = sizeof (fp->_ubuf);
  fp->_ubuf[sizeof (fp->_ubuf) - 1] = c;
  fp->_ubuf[sizeof (fp->_ubuf) - 1] = c;
  fp->_p = &fp->_ubuf[sizeof (fp->_ubuf) - 1];
  fp->_p = &fp->_ubuf[sizeof (fp->_ubuf) - 1];
  fp->_r = 1;
  fp->_r = 1;
  return c;
  return c;
}
}
 
 
/* String only version of __srefill_r for sscanf family.  */
/* String only version of __srefill_r for sscanf family.  */
int
int
_DEFUN(__ssrefill_r, (ptr, fp),
_DEFUN(__ssrefill_r, (ptr, fp),
       struct _reent * ptr _AND
       struct _reent * ptr _AND
       register FILE * fp)
       register FILE * fp)
{
{
  /*
  /*
   * Our only hope of further input is the ungetc buffer.
   * Our only hope of further input is the ungetc buffer.
   * If there is anything in that buffer to read, return.
   * If there is anything in that buffer to read, return.
   */
   */
  if (HASUB (fp))
  if (HASUB (fp))
    {
    {
      FREEUB (ptr, fp);
      FREEUB (ptr, fp);
      if ((fp->_r = fp->_ur) != 0)
      if ((fp->_r = fp->_ur) != 0)
        {
        {
          fp->_p = fp->_up;
          fp->_p = fp->_up;
          return 0;
          return 0;
        }
        }
    }
    }
 
 
  /* Otherwise we are out of character input.  */
  /* Otherwise we are out of character input.  */
  fp->_p = fp->_bf._base;
  fp->_p = fp->_bf._base;
  fp->_r = 0;
  fp->_r = 0;
  fp->_flags |= __SEOF;
  fp->_flags |= __SEOF;
  return EOF;
  return EOF;
}
}
 
 
size_t
size_t
_DEFUN(_sfread_r, (ptr, buf, size, count, fp),
_DEFUN(_sfread_r, (ptr, buf, size, count, fp),
       struct _reent * ptr _AND
       struct _reent * ptr _AND
       _PTR buf _AND
       _PTR buf _AND
       size_t size _AND
       size_t size _AND
       size_t count _AND
       size_t count _AND
       FILE * fp)
       FILE * fp)
{
{
  register size_t resid;
  register size_t resid;
  register char *p;
  register char *p;
  register int r;
  register int r;
  size_t total;
  size_t total;
 
 
  if ((resid = count * size) == 0)
  if ((resid = count * size) == 0)
    return 0;
    return 0;
 
 
  total = resid;
  total = resid;
  p = buf;
  p = buf;
 
 
  while (resid > (r = fp->_r))
  while (resid > (r = fp->_r))
    {
    {
      _CAST_VOID memcpy ((_PTR) p, (_PTR) fp->_p, (size_t) r);
      _CAST_VOID memcpy ((_PTR) p, (_PTR) fp->_p, (size_t) r);
      fp->_p += r;
      fp->_p += r;
      fp->_r = 0;
      fp->_r = 0;
      p += r;
      p += r;
      resid -= r;
      resid -= r;
      if (__ssrefill_r (ptr, fp))
      if (__ssrefill_r (ptr, fp))
        {
        {
          /* no more input: return partial result */
          /* no more input: return partial result */
          return (total - resid) / size;
          return (total - resid) / size;
        }
        }
    }
    }
  _CAST_VOID memcpy ((_PTR) p, (_PTR) fp->_p, resid);
  _CAST_VOID memcpy ((_PTR) p, (_PTR) fp->_p, resid);
  fp->_r -= resid;
  fp->_r -= resid;
  fp->_p += resid;
  fp->_p += resid;
  return count;
  return count;
}
}
#else /* !STRING_ONLY || !INTEGER_ONLY */
#else /* !STRING_ONLY || !INTEGER_ONLY */
int _EXFUN (_sungetc_r, (struct _reent *, int, register FILE *));
int _EXFUN (_sungetc_r, (struct _reent *, int, register FILE *));
int _EXFUN (__ssrefill_r, (struct _reent *, register FILE *));
int _EXFUN (__ssrefill_r, (struct _reent *, register FILE *));
size_t _EXFUN (_sfread_r, (struct _reent *, _PTR buf, size_t, size_t, FILE *));
size_t _EXFUN (_sfread_r, (struct _reent *, _PTR buf, size_t, size_t, FILE *));
#endif /* !STRING_ONLY || !INTEGER_ONLY */
#endif /* !STRING_ONLY || !INTEGER_ONLY */
 
 
int
int
_DEFUN(__SVFSCANF_R, (rptr, fp, fmt0, ap),
_DEFUN(__SVFSCANF_R, (rptr, fp, fmt0, ap),
       struct _reent *rptr _AND
       struct _reent *rptr _AND
       register FILE *fp   _AND
       register FILE *fp   _AND
       char _CONST *fmt0   _AND
       char _CONST *fmt0   _AND
       va_list ap)
       va_list ap)
{
{
  register u_char *fmt = (u_char *) fmt0;
  register u_char *fmt = (u_char *) fmt0;
  register int c;               /* character from format, or conversion */
  register int c;               /* character from format, or conversion */
  register size_t width;        /* field width, or 0 */
  register size_t width;        /* field width, or 0 */
  register char *p;             /* points into all kinds of strings */
  register char *p;             /* points into all kinds of strings */
  register int n;               /* handy integer */
  register int n;               /* handy integer */
  register int flags;           /* flags as defined above */
  register int flags;           /* flags as defined above */
  register char *p0;            /* saves original value of p when necessary */
  register char *p0;            /* saves original value of p when necessary */
  int nassigned;                /* number of fields assigned */
  int nassigned;                /* number of fields assigned */
  int nread;                    /* number of characters consumed from fp */
  int nread;                    /* number of characters consumed from fp */
#ifndef _NO_POS_ARGS
#ifndef _NO_POS_ARGS
  int N;                        /* arg number */
  int N;                        /* arg number */
  int arg_index = 0;             /* index into args processed directly */
  int arg_index = 0;             /* index into args processed directly */
  int numargs = 0;               /* number of varargs read */
  int numargs = 0;               /* number of varargs read */
  void *args[MAX_POS_ARGS];     /* positional args read */
  void *args[MAX_POS_ARGS];     /* positional args read */
  int is_pos_arg;               /* is current format positional? */
  int is_pos_arg;               /* is current format positional? */
#endif
#endif
  int base = 0;                  /* base argument to strtol/strtoul */
  int base = 0;                  /* base argument to strtol/strtoul */
  int nbytes = 1;               /* number of bytes read from fmt string */
  int nbytes = 1;               /* number of bytes read from fmt string */
  wchar_t wc;                   /* wchar to use to read format string */
  wchar_t wc;                   /* wchar to use to read format string */
  wchar_t *wcp;                 /* handy wide character pointer */
  wchar_t *wcp;                 /* handy wide character pointer */
  size_t mbslen;                /* length of converted multibyte sequence */
  size_t mbslen;                /* length of converted multibyte sequence */
  mbstate_t state;              /* value to keep track of multibyte state */
  mbstate_t state;              /* value to keep track of multibyte state */
 
 
  #define CCFN_PARAMS   _PARAMS((struct _reent *, const char *, char **, int))
  #define CCFN_PARAMS   _PARAMS((struct _reent *, const char *, char **, int))
  u_long (*ccfn)CCFN_PARAMS=0;   /* conversion function (strtol/strtoul) */
  u_long (*ccfn)CCFN_PARAMS=0;   /* conversion function (strtol/strtoul) */
  char ccltab[256];             /* character class table for %[...] */
  char ccltab[256];             /* character class table for %[...] */
  char buf[BUF];                /* buffer for numeric conversions */
  char buf[BUF];                /* buffer for numeric conversions */
  char *lptr;                   /* literal pointer */
  char *lptr;                   /* literal pointer */
 
 
  char *cp;
  char *cp;
  short *sp;
  short *sp;
  int *ip;
  int *ip;
#ifdef FLOATING_POINT
#ifdef FLOATING_POINT
  float *flp;
  float *flp;
  _LONG_DOUBLE *ldp;
  _LONG_DOUBLE *ldp;
  double *dp;
  double *dp;
#endif
#endif
  long *lp;
  long *lp;
#ifndef _NO_LONGLONG
#ifndef _NO_LONGLONG
  long long *llp;
  long long *llp;
#endif
#endif
 
 
  /* `basefix' is used to avoid `if' tests in the integer scanner */
  /* `basefix' is used to avoid `if' tests in the integer scanner */
  static _CONST short basefix[17] =
  static _CONST short basefix[17] =
    {10, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16};
    {10, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16};
 
 
  /* Macro to support positional arguments */
  /* Macro to support positional arguments */
#ifndef _NO_POS_ARGS
#ifndef _NO_POS_ARGS
# define GET_ARG(n, ap, type)                                   \
# define GET_ARG(n, ap, type)                                   \
  ((type) (is_pos_arg                                           \
  ((type) (is_pos_arg                                           \
           ? (n < numargs                                       \
           ? (n < numargs                                       \
              ? args[n]                                         \
              ? args[n]                                         \
              : get_arg (n, &ap, &numargs, args))               \
              : get_arg (n, &ap, &numargs, args))               \
           : (arg_index++ < numargs                             \
           : (arg_index++ < numargs                             \
              ? args[n]                                         \
              ? args[n]                                         \
              : (numargs < MAX_POS_ARGS                         \
              : (numargs < MAX_POS_ARGS                         \
                 ? args[numargs++] = va_arg (ap, void *)        \
                 ? args[numargs++] = va_arg (ap, void *)        \
                 : va_arg (ap, void *)))))
                 : va_arg (ap, void *)))))
#else
#else
# define GET_ARG(n, ap, type) (va_arg (ap, type))
# define GET_ARG(n, ap, type) (va_arg (ap, type))
#endif
#endif
 
 
  __sfp_lock_acquire ();
  __sfp_lock_acquire ();
  _flockfile (fp);
  _flockfile (fp);
 
 
  ORIENT (fp, -1);
  ORIENT (fp, -1);
 
 
  nassigned = 0;
  nassigned = 0;
  nread = 0;
  nread = 0;
  for (;;)
  for (;;)
    {
    {
#ifndef _MB_CAPABLE
#ifndef _MB_CAPABLE
      wc = *fmt;
      wc = *fmt;
#else
#else
      memset (&state, '\0', sizeof (state));
      memset (&state, '\0', sizeof (state));
      nbytes = __mbtowc (rptr, &wc, fmt, MB_CUR_MAX, __locale_charset (),
      nbytes = __mbtowc (rptr, &wc, fmt, MB_CUR_MAX, __locale_charset (),
                         &state);
                         &state);
#endif
#endif
      fmt += nbytes;
      fmt += nbytes;
      if (wc == 0)
      if (wc == 0)
        goto all_done;
        goto all_done;
      if (nbytes == 1 && isspace (wc))
      if (nbytes == 1 && isspace (wc))
        {
        {
          for (;;)
          for (;;)
            {
            {
              if (BufferEmpty || !isspace (*fp->_p))
              if (BufferEmpty || !isspace (*fp->_p))
                break;
                break;
              nread++, fp->_r--, fp->_p++;
              nread++, fp->_r--, fp->_p++;
            }
            }
          continue;
          continue;
        }
        }
      if (wc != '%')
      if (wc != '%')
        goto literal;
        goto literal;
      width = 0;
      width = 0;
      flags = 0;
      flags = 0;
#ifndef _NO_POS_ARGS
#ifndef _NO_POS_ARGS
      N = arg_index;
      N = arg_index;
      is_pos_arg = 0;
      is_pos_arg = 0;
#endif
#endif
 
 
      /*
      /*
       * switch on the format.  continue if done; break once format
       * switch on the format.  continue if done; break once format
       * type is derived.
       * type is derived.
       */
       */
 
 
    again:
    again:
      c = *fmt++;
      c = *fmt++;
 
 
      switch (c)
      switch (c)
        {
        {
        case '%':
        case '%':
        literal:
        literal:
          lptr = fmt - nbytes;
          lptr = fmt - nbytes;
          for (n = 0; n < nbytes; ++n)
          for (n = 0; n < nbytes; ++n)
            {
            {
              if (BufferEmpty)
              if (BufferEmpty)
                goto input_failure;
                goto input_failure;
              if (*fp->_p != *lptr)
              if (*fp->_p != *lptr)
                goto match_failure;
                goto match_failure;
              fp->_r--, fp->_p++;
              fp->_r--, fp->_p++;
              nread++;
              nread++;
              ++lptr;
              ++lptr;
            }
            }
          continue;
          continue;
 
 
        case '*':
        case '*':
          flags |= SUPPRESS;
          flags |= SUPPRESS;
          goto again;
          goto again;
        case 'l':
        case 'l':
#if defined _WANT_IO_C99_FORMATS || !defined _NO_LONGLONG
#if defined _WANT_IO_C99_FORMATS || !defined _NO_LONGLONG
          if (*fmt == 'l')      /* Check for 'll' = long long (SUSv3) */
          if (*fmt == 'l')      /* Check for 'll' = long long (SUSv3) */
            {
            {
              ++fmt;
              ++fmt;
              flags |= LONGDBL;
              flags |= LONGDBL;
            }
            }
          else
          else
#endif
#endif
            flags |= LONG;
            flags |= LONG;
          goto again;
          goto again;
        case 'L':
        case 'L':
          flags |= LONGDBL;
          flags |= LONGDBL;
          goto again;
          goto again;
        case 'h':
        case 'h':
#ifdef _WANT_IO_C99_FORMATS
#ifdef _WANT_IO_C99_FORMATS
          if (*fmt == 'h')      /* Check for 'hh' = char int (SUSv3) */
          if (*fmt == 'h')      /* Check for 'hh' = char int (SUSv3) */
            {
            {
              ++fmt;
              ++fmt;
              flags |= CHAR;
              flags |= CHAR;
            }
            }
          else
          else
#endif
#endif
            flags |= SHORT;
            flags |= SHORT;
          goto again;
          goto again;
#ifdef _WANT_IO_C99_FORMATS
#ifdef _WANT_IO_C99_FORMATS
        case 'j': /* intmax_t */
        case 'j': /* intmax_t */
          if (sizeof (intmax_t) == sizeof (long))
          if (sizeof (intmax_t) == sizeof (long))
            flags |= LONG;
            flags |= LONG;
          else
          else
            flags |= LONGDBL;
            flags |= LONGDBL;
          goto again;
          goto again;
        case 't': /* ptrdiff_t */
        case 't': /* ptrdiff_t */
          if (sizeof (ptrdiff_t) < sizeof (int))
          if (sizeof (ptrdiff_t) < sizeof (int))
            /* POSIX states ptrdiff_t is 16 or more bits, as
            /* POSIX states ptrdiff_t is 16 or more bits, as
               is short.  */
               is short.  */
            flags |= SHORT;
            flags |= SHORT;
          else if (sizeof (ptrdiff_t) == sizeof (int))
          else if (sizeof (ptrdiff_t) == sizeof (int))
            /* no flag needed */;
            /* no flag needed */;
          else if (sizeof (ptrdiff_t) <= sizeof (long))
          else if (sizeof (ptrdiff_t) <= sizeof (long))
            flags |= LONG;
            flags |= LONG;
          else
          else
            /* POSIX states that at least one programming
            /* POSIX states that at least one programming
               environment must support ptrdiff_t no wider than
               environment must support ptrdiff_t no wider than
               long, but that means other environments can
               long, but that means other environments can
               have ptrdiff_t as wide as long long.  */
               have ptrdiff_t as wide as long long.  */
            flags |= LONGDBL;
            flags |= LONGDBL;
          goto again;
          goto again;
        case 'z': /* size_t */
        case 'z': /* size_t */
          if (sizeof (size_t) < sizeof (int))
          if (sizeof (size_t) < sizeof (int))
            /* POSIX states size_t is 16 or more bits, as is short.  */
            /* POSIX states size_t is 16 or more bits, as is short.  */
            flags |= SHORT;
            flags |= SHORT;
          else if (sizeof (size_t) == sizeof (int))
          else if (sizeof (size_t) == sizeof (int))
            /* no flag needed */;
            /* no flag needed */;
          else if (sizeof (size_t) <= sizeof (long))
          else if (sizeof (size_t) <= sizeof (long))
            flags |= LONG;
            flags |= LONG;
          else
          else
            /* POSIX states that at least one programming
            /* POSIX states that at least one programming
               environment must support size_t no wider than
               environment must support size_t no wider than
               long, but that means other environments can
               long, but that means other environments can
               have size_t as wide as long long.  */
               have size_t as wide as long long.  */
            flags |= LONGDBL;
            flags |= LONGDBL;
          goto again;
          goto again;
#endif /* _WANT_IO_C99_FORMATS */
#endif /* _WANT_IO_C99_FORMATS */
 
 
        case '0':
        case '0':
        case '1':
        case '1':
        case '2':
        case '2':
        case '3':
        case '3':
        case '4':
        case '4':
        case '5':
        case '5':
        case '6':
        case '6':
        case '7':
        case '7':
        case '8':
        case '8':
        case '9':
        case '9':
          width = width * 10 + c - '0';
          width = width * 10 + c - '0';
          goto again;
          goto again;
 
 
#ifndef _NO_POS_ARGS
#ifndef _NO_POS_ARGS
        case '$':
        case '$':
          if (width <= MAX_POS_ARGS)
          if (width <= MAX_POS_ARGS)
            {
            {
              N = width - 1;
              N = width - 1;
              is_pos_arg = 1;
              is_pos_arg = 1;
              width = 0;
              width = 0;
              goto again;
              goto again;
            }
            }
          rptr->_errno = EINVAL;
          rptr->_errno = EINVAL;
          goto input_failure;
          goto input_failure;
#endif /* !_NO_POS_ARGS */
#endif /* !_NO_POS_ARGS */
 
 
          /*
          /*
           * Conversions. Those marked `compat' are for
           * Conversions. Those marked `compat' are for
           * 4.[123]BSD compatibility.
           * 4.[123]BSD compatibility.
           *
           *
           * (According to ANSI, E and X formats are supposed to
           * (According to ANSI, E and X formats are supposed to
           * the same as e and x.  Sorry about that.)
           * the same as e and x.  Sorry about that.)
           */
           */
 
 
        case 'D':               /* compat */
        case 'D':               /* compat */
          flags |= LONG;
          flags |= LONG;
          /* FALLTHROUGH */
          /* FALLTHROUGH */
        case 'd':
        case 'd':
          c = CT_INT;
          c = CT_INT;
          ccfn = (u_long (*)CCFN_PARAMS)_strtol_r;
          ccfn = (u_long (*)CCFN_PARAMS)_strtol_r;
          base = 10;
          base = 10;
          break;
          break;
 
 
        case 'i':
        case 'i':
          c = CT_INT;
          c = CT_INT;
          ccfn = (u_long (*)CCFN_PARAMS)_strtol_r;
          ccfn = (u_long (*)CCFN_PARAMS)_strtol_r;
          base = 0;
          base = 0;
          break;
          break;
 
 
        case 'O':               /* compat */
        case 'O':               /* compat */
          flags |= LONG;
          flags |= LONG;
          /* FALLTHROUGH */
          /* FALLTHROUGH */
        case 'o':
        case 'o':
          c = CT_INT;
          c = CT_INT;
          ccfn = _strtoul_r;
          ccfn = _strtoul_r;
          base = 8;
          base = 8;
          break;
          break;
 
 
        case 'u':
        case 'u':
          c = CT_INT;
          c = CT_INT;
          ccfn = _strtoul_r;
          ccfn = _strtoul_r;
          base = 10;
          base = 10;
          break;
          break;
 
 
        case 'X':
        case 'X':
        case 'x':
        case 'x':
          flags |= PFXOK;       /* enable 0x prefixing */
          flags |= PFXOK;       /* enable 0x prefixing */
          c = CT_INT;
          c = CT_INT;
          ccfn = _strtoul_r;
          ccfn = _strtoul_r;
          base = 16;
          base = 16;
          break;
          break;
 
 
#ifdef FLOATING_POINT
#ifdef FLOATING_POINT
# ifdef _WANT_IO_C99_FORMATS
# ifdef _WANT_IO_C99_FORMATS
        case 'a':
        case 'a':
        case 'A':
        case 'A':
        case 'F':
        case 'F':
# endif
# endif
        case 'E':
        case 'E':
        case 'G':
        case 'G':
        case 'e':
        case 'e':
        case 'f':
        case 'f':
        case 'g':
        case 'g':
          c = CT_FLOAT;
          c = CT_FLOAT;
          break;
          break;
#endif
#endif
 
 
#ifdef _WANT_IO_C99_FORMATS
#ifdef _WANT_IO_C99_FORMATS
        case 'S':
        case 'S':
          flags |= LONG;
          flags |= LONG;
          /* FALLTHROUGH */
          /* FALLTHROUGH */
#endif
#endif
 
 
        case 's':
        case 's':
          c = CT_STRING;
          c = CT_STRING;
          break;
          break;
 
 
        case '[':
        case '[':
          fmt = (u_char *) __sccl (ccltab, (unsigned char *) fmt);
          fmt = (u_char *) __sccl (ccltab, (unsigned char *) fmt);
          flags |= NOSKIP;
          flags |= NOSKIP;
          c = CT_CCL;
          c = CT_CCL;
          break;
          break;
 
 
#ifdef _WANT_IO_C99_FORMATS
#ifdef _WANT_IO_C99_FORMATS
        case 'C':
        case 'C':
          flags |= LONG;
          flags |= LONG;
          /* FALLTHROUGH */
          /* FALLTHROUGH */
#endif
#endif
 
 
        case 'c':
        case 'c':
          flags |= NOSKIP;
          flags |= NOSKIP;
          c = CT_CHAR;
          c = CT_CHAR;
          break;
          break;
 
 
        case 'p':               /* pointer format is like hex */
        case 'p':               /* pointer format is like hex */
          flags |= POINTER | PFXOK;
          flags |= POINTER | PFXOK;
          c = CT_INT;
          c = CT_INT;
          ccfn = _strtoul_r;
          ccfn = _strtoul_r;
          base = 16;
          base = 16;
          break;
          break;
 
 
        case 'n':
        case 'n':
          if (flags & SUPPRESS) /* ??? */
          if (flags & SUPPRESS) /* ??? */
            continue;
            continue;
#ifdef _WANT_IO_C99_FORMATS
#ifdef _WANT_IO_C99_FORMATS
          if (flags & CHAR)
          if (flags & CHAR)
            {
            {
              cp = GET_ARG (N, ap, char *);
              cp = GET_ARG (N, ap, char *);
              *cp = nread;
              *cp = nread;
            }
            }
          else
          else
#endif
#endif
          if (flags & SHORT)
          if (flags & SHORT)
            {
            {
              sp = GET_ARG (N, ap, short *);
              sp = GET_ARG (N, ap, short *);
              *sp = nread;
              *sp = nread;
            }
            }
          else if (flags & LONG)
          else if (flags & LONG)
            {
            {
              lp = GET_ARG (N, ap, long *);
              lp = GET_ARG (N, ap, long *);
              *lp = nread;
              *lp = nread;
            }
            }
#ifndef _NO_LONGLONG
#ifndef _NO_LONGLONG
          else if (flags & LONGDBL)
          else if (flags & LONGDBL)
            {
            {
              llp = GET_ARG (N, ap, long long*);
              llp = GET_ARG (N, ap, long long*);
              *llp = nread;
              *llp = nread;
            }
            }
#endif
#endif
          else
          else
            {
            {
              ip = GET_ARG (N, ap, int *);
              ip = GET_ARG (N, ap, int *);
              *ip = nread;
              *ip = nread;
            }
            }
          continue;
          continue;
 
 
          /*
          /*
           * Disgusting backwards compatibility hacks.  XXX
           * Disgusting backwards compatibility hacks.  XXX
           */
           */
        case '\0':              /* compat */
        case '\0':              /* compat */
          _funlockfile (fp);
          _funlockfile (fp);
          __sfp_lock_release ();
          __sfp_lock_release ();
          return EOF;
          return EOF;
 
 
        default:                /* compat */
        default:                /* compat */
          if (isupper (c))
          if (isupper (c))
            flags |= LONG;
            flags |= LONG;
          c = CT_INT;
          c = CT_INT;
          ccfn = (u_long (*)CCFN_PARAMS)_strtol_r;
          ccfn = (u_long (*)CCFN_PARAMS)_strtol_r;
          base = 10;
          base = 10;
          break;
          break;
        }
        }
 
 
      /*
      /*
       * We have a conversion that requires input.
       * We have a conversion that requires input.
       */
       */
      if (BufferEmpty)
      if (BufferEmpty)
        goto input_failure;
        goto input_failure;
 
 
      /*
      /*
       * Consume leading white space, except for formats that
       * Consume leading white space, except for formats that
       * suppress this.
       * suppress this.
       */
       */
      if ((flags & NOSKIP) == 0)
      if ((flags & NOSKIP) == 0)
        {
        {
          while (isspace (*fp->_p))
          while (isspace (*fp->_p))
            {
            {
              nread++;
              nread++;
              if (--fp->_r > 0)
              if (--fp->_r > 0)
                fp->_p++;
                fp->_p++;
              else
              else
              if (__srefill_r (rptr, fp))
              if (__srefill_r (rptr, fp))
                goto input_failure;
                goto input_failure;
            }
            }
          /*
          /*
           * Note that there is at least one character in the
           * Note that there is at least one character in the
           * buffer, so conversions that do not set NOSKIP ca
           * buffer, so conversions that do not set NOSKIP ca
           * no longer result in an input failure.
           * no longer result in an input failure.
           */
           */
        }
        }
 
 
      /*
      /*
       * Do the conversion.
       * Do the conversion.
       */
       */
      switch (c)
      switch (c)
        {
        {
 
 
        case CT_CHAR:
        case CT_CHAR:
          /* scan arbitrary characters (sets NOSKIP) */
          /* scan arbitrary characters (sets NOSKIP) */
          if (width == 0)
          if (width == 0)
            width = 1;
            width = 1;
#if !defined(_ELIX_LEVEL) || _ELIX_LEVEL >= 2
#if !defined(_ELIX_LEVEL) || _ELIX_LEVEL >= 2
          if (flags & LONG)
          if (flags & LONG)
            {
            {
              if ((flags & SUPPRESS) == 0)
              if ((flags & SUPPRESS) == 0)
                wcp = GET_ARG (N, ap, wchar_t *);
                wcp = GET_ARG (N, ap, wchar_t *);
              else
              else
                wcp = NULL;
                wcp = NULL;
              n = 0;
              n = 0;
              while (width != 0)
              while (width != 0)
                {
                {
                  if (n == MB_CUR_MAX)
                  if (n == MB_CUR_MAX)
                    goto input_failure;
                    goto input_failure;
                  buf[n++] = *fp->_p;
                  buf[n++] = *fp->_p;
                  fp->_r -= 1;
                  fp->_r -= 1;
                  fp->_p += 1;
                  fp->_p += 1;
                  memset ((_PTR)&state, '\0', sizeof (mbstate_t));
                  memset ((_PTR)&state, '\0', sizeof (mbstate_t));
                  if ((mbslen = _mbrtowc_r (rptr, wcp, buf, n, &state))
                  if ((mbslen = _mbrtowc_r (rptr, wcp, buf, n, &state))
                                                         == (size_t)-1)
                                                         == (size_t)-1)
                    goto input_failure; /* Invalid sequence */
                    goto input_failure; /* Invalid sequence */
                  if (mbslen == 0 && !(flags & SUPPRESS))
                  if (mbslen == 0 && !(flags & SUPPRESS))
                    *wcp = L'\0';
                    *wcp = L'\0';
                  if (mbslen != (size_t)-2) /* Incomplete sequence */
                  if (mbslen != (size_t)-2) /* Incomplete sequence */
                    {
                    {
                      nread += n;
                      nread += n;
                      width -= 1;
                      width -= 1;
                      if (!(flags & SUPPRESS))
                      if (!(flags & SUPPRESS))
                        wcp += 1;
                        wcp += 1;
                      n = 0;
                      n = 0;
                    }
                    }
                  if (BufferEmpty)
                  if (BufferEmpty)
                    {
                    {
                      if (n != 0)
                      if (n != 0)
                        goto input_failure;
                        goto input_failure;
                      break;
                      break;
                    }
                    }
                }
                }
              if (!(flags & SUPPRESS))
              if (!(flags & SUPPRESS))
                nassigned++;
                nassigned++;
            }
            }
          else
          else
#endif
#endif
                  if (flags & SUPPRESS)
                  if (flags & SUPPRESS)
            {
            {
              size_t sum = 0;
              size_t sum = 0;
              for (;;)
              for (;;)
                {
                {
                  if ((n = fp->_r) < (int)width)
                  if ((n = fp->_r) < (int)width)
                    {
                    {
                      sum += n;
                      sum += n;
                      width -= n;
                      width -= n;
                      fp->_p += n;
                      fp->_p += n;
                      if (__srefill_r (rptr, fp))
                      if (__srefill_r (rptr, fp))
                        {
                        {
                          if (sum == 0)
                          if (sum == 0)
                            goto input_failure;
                            goto input_failure;
                          break;
                          break;
                        }
                        }
                    }
                    }
                  else
                  else
                    {
                    {
                      sum += width;
                      sum += width;
                      fp->_r -= width;
                      fp->_r -= width;
                      fp->_p += width;
                      fp->_p += width;
                      break;
                      break;
                    }
                    }
                }
                }
              nread += sum;
              nread += sum;
            }
            }
          else
          else
            {
            {
              size_t r = _fread_r (rptr, (_PTR) GET_ARG (N, ap, char *), 1, width, fp);
              size_t r = _fread_r (rptr, (_PTR) GET_ARG (N, ap, char *), 1, width, fp);
 
 
              if (r == 0)
              if (r == 0)
                goto input_failure;
                goto input_failure;
              nread += r;
              nread += r;
              nassigned++;
              nassigned++;
            }
            }
          break;
          break;
 
 
        case CT_CCL:
        case CT_CCL:
          /* scan a (nonempty) character class (sets NOSKIP) */
          /* scan a (nonempty) character class (sets NOSKIP) */
          if (width == 0)
          if (width == 0)
            width = ~0;          /* `infinity' */
            width = ~0;          /* `infinity' */
          /* take only those things in the class */
          /* take only those things in the class */
          if (flags & SUPPRESS)
          if (flags & SUPPRESS)
            {
            {
              n = 0;
              n = 0;
              while (ccltab[*fp->_p])
              while (ccltab[*fp->_p])
                {
                {
                  n++, fp->_r--, fp->_p++;
                  n++, fp->_r--, fp->_p++;
                  if (--width == 0)
                  if (--width == 0)
                    break;
                    break;
                  if (BufferEmpty)
                  if (BufferEmpty)
                    {
                    {
                      if (n == 0)
                      if (n == 0)
                        goto input_failure;
                        goto input_failure;
                      break;
                      break;
                    }
                    }
                }
                }
              if (n == 0)
              if (n == 0)
                goto match_failure;
                goto match_failure;
            }
            }
          else
          else
            {
            {
              p0 = p = GET_ARG (N, ap, char *);
              p0 = p = GET_ARG (N, ap, char *);
              while (ccltab[*fp->_p])
              while (ccltab[*fp->_p])
                {
                {
                  fp->_r--;
                  fp->_r--;
                  *p++ = *fp->_p++;
                  *p++ = *fp->_p++;
                  if (--width == 0)
                  if (--width == 0)
                    break;
                    break;
                  if (BufferEmpty)
                  if (BufferEmpty)
                    {
                    {
                      if (p == p0)
                      if (p == p0)
                        goto input_failure;
                        goto input_failure;
                      break;
                      break;
                    }
                    }
                }
                }
              n = p - p0;
              n = p - p0;
              if (n == 0)
              if (n == 0)
                goto match_failure;
                goto match_failure;
              *p = 0;
              *p = 0;
              nassigned++;
              nassigned++;
            }
            }
          nread += n;
          nread += n;
          break;
          break;
 
 
        case CT_STRING:
        case CT_STRING:
          /* like CCL, but zero-length string OK, & no NOSKIP */
          /* like CCL, but zero-length string OK, & no NOSKIP */
          if (width == 0)
          if (width == 0)
            width = (size_t)~0;
            width = (size_t)~0;
#if !defined(_ELIX_LEVEL) || _ELIX_LEVEL >= 2
#if !defined(_ELIX_LEVEL) || _ELIX_LEVEL >= 2
          if (flags & LONG)
          if (flags & LONG)
            {
            {
              /* Process %S and %ls placeholders */
              /* Process %S and %ls placeholders */
              if ((flags & SUPPRESS) == 0)
              if ((flags & SUPPRESS) == 0)
                wcp = GET_ARG (N, ap, wchar_t *);
                wcp = GET_ARG (N, ap, wchar_t *);
              else
              else
                wcp = &wc;
                wcp = &wc;
              n = 0;
              n = 0;
              while (!isspace (*fp->_p) && width != 0)
              while (!isspace (*fp->_p) && width != 0)
                {
                {
                  if (n == MB_CUR_MAX)
                  if (n == MB_CUR_MAX)
                    goto input_failure;
                    goto input_failure;
                  buf[n++] = *fp->_p;
                  buf[n++] = *fp->_p;
                  fp->_r -= 1;
                  fp->_r -= 1;
                  fp->_p += 1;
                  fp->_p += 1;
                  memset ((_PTR)&state, '\0', sizeof (mbstate_t));
                  memset ((_PTR)&state, '\0', sizeof (mbstate_t));
                  if ((mbslen = _mbrtowc_r (rptr, wcp, buf, n, &state))
                  if ((mbslen = _mbrtowc_r (rptr, wcp, buf, n, &state))
                                                        == (size_t)-1)
                                                        == (size_t)-1)
                    goto input_failure;
                    goto input_failure;
                  if (mbslen == 0)
                  if (mbslen == 0)
                    *wcp = L'\0';
                    *wcp = L'\0';
                  if (mbslen != (size_t)-2) /* Incomplete sequence */
                  if (mbslen != (size_t)-2) /* Incomplete sequence */
                    {
                    {
                      if (iswspace(*wcp))
                      if (iswspace(*wcp))
                        {
                        {
                          while (n != 0)
                          while (n != 0)
                            _ungetc_r (rptr, (unsigned char) buf[--n], fp);
                            _ungetc_r (rptr, (unsigned char) buf[--n], fp);
                          break;
                          break;
                        }
                        }
                      nread += n;
                      nread += n;
                      width -= 1;
                      width -= 1;
                      if ((flags & SUPPRESS) == 0)
                      if ((flags & SUPPRESS) == 0)
                        wcp += 1;
                        wcp += 1;
                      n = 0;
                      n = 0;
                    }
                    }
                  if (BufferEmpty)
                  if (BufferEmpty)
                    {
                    {
                      if (n != 0)
                      if (n != 0)
                        goto input_failure;
                        goto input_failure;
                      break;
                      break;
                    }
                    }
                }
                }
              if (!(flags & SUPPRESS))
              if (!(flags & SUPPRESS))
                {
                {
                  *wcp = L'\0';
                  *wcp = L'\0';
                  nassigned++;
                  nassigned++;
                }
                }
            }
            }
          else
          else
#endif
#endif
                  if (flags & SUPPRESS)
                  if (flags & SUPPRESS)
            {
            {
              n = 0;
              n = 0;
              while (!isspace (*fp->_p))
              while (!isspace (*fp->_p))
                {
                {
                  n++, fp->_r--, fp->_p++;
                  n++, fp->_r--, fp->_p++;
                  if (--width == 0)
                  if (--width == 0)
                    break;
                    break;
                  if (BufferEmpty)
                  if (BufferEmpty)
                    break;
                    break;
                }
                }
              nread += n;
              nread += n;
            }
            }
          else
          else
            {
            {
              p0 = p = GET_ARG (N, ap, char *);
              p0 = p = GET_ARG (N, ap, char *);
              while (!isspace (*fp->_p))
              while (!isspace (*fp->_p))
                {
                {
                  fp->_r--;
                  fp->_r--;
                  *p++ = *fp->_p++;
                  *p++ = *fp->_p++;
                  if (--width == 0)
                  if (--width == 0)
                    break;
                    break;
                  if (BufferEmpty)
                  if (BufferEmpty)
                    break;
                    break;
                }
                }
              *p = 0;
              *p = 0;
              nread += p - p0;
              nread += p - p0;
              nassigned++;
              nassigned++;
            }
            }
          continue;
          continue;
 
 
        case CT_INT:
        case CT_INT:
        {
        {
          /* scan an integer as if by strtol/strtoul */
          /* scan an integer as if by strtol/strtoul */
          unsigned width_left = 0;
          unsigned width_left = 0;
          int skips = 0;
          int skips = 0;
#ifdef hardway
#ifdef hardway
          if (width == 0 || width > sizeof (buf) - 1)
          if (width == 0 || width > sizeof (buf) - 1)
#else
#else
          /* size_t is unsigned, hence this optimisation */
          /* size_t is unsigned, hence this optimisation */
          if (width - 1 > sizeof (buf) - 2)
          if (width - 1 > sizeof (buf) - 2)
#endif
#endif
            {
            {
              width_left = width - (sizeof (buf) - 1);
              width_left = width - (sizeof (buf) - 1);
              width = sizeof (buf) - 1;
              width = sizeof (buf) - 1;
            }
            }
          flags |= SIGNOK | NDIGITS | NZDIGITS | NNZDIGITS;
          flags |= SIGNOK | NDIGITS | NZDIGITS | NNZDIGITS;
          for (p = buf; width; width--)
          for (p = buf; width; width--)
            {
            {
              c = *fp->_p;
              c = *fp->_p;
              /*
              /*
               * Switch on the character; `goto ok' if we
               * Switch on the character; `goto ok' if we
               * accept it as a part of number.
               * accept it as a part of number.
               */
               */
              switch (c)
              switch (c)
                {
                {
                  /*
                  /*
                   * The digit 0 is always legal, but is special.
                   * The digit 0 is always legal, but is special.
                   * For %i conversions, if no digits (zero or nonzero)
                   * For %i conversions, if no digits (zero or nonzero)
                   * have been scanned (only signs), we will have base==0.
                   * have been scanned (only signs), we will have base==0.
                   * In that case, we should set it to 8 and enable 0x
                   * In that case, we should set it to 8 and enable 0x
                   * prefixing. Also, if we have not scanned zero digits
                   * prefixing. Also, if we have not scanned zero digits
                   * before this, do not turn off prefixing (someone else
                   * before this, do not turn off prefixing (someone else
                   * will turn it off if we have scanned any nonzero digits).
                   * will turn it off if we have scanned any nonzero digits).
                   */
                   */
                case '0':
                case '0':
                  if (! (flags & NNZDIGITS))
                  if (! (flags & NNZDIGITS))
                    goto ok;
                    goto ok;
                  if (base == 0)
                  if (base == 0)
                    {
                    {
                      base = 8;
                      base = 8;
                      flags |= PFXOK;
                      flags |= PFXOK;
                    }
                    }
                  if (flags & NZDIGITS)
                  if (flags & NZDIGITS)
                    {
                    {
                      flags &= ~(SIGNOK | NZDIGITS | NDIGITS);
                      flags &= ~(SIGNOK | NZDIGITS | NDIGITS);
                      goto ok;
                      goto ok;
                    }
                    }
                  flags &= ~(SIGNOK | PFXOK | NDIGITS);
                  flags &= ~(SIGNOK | PFXOK | NDIGITS);
                  if (width_left)
                  if (width_left)
                    {
                    {
                      width_left--;
                      width_left--;
                      width++;
                      width++;
                    }
                    }
                  ++skips;
                  ++skips;
                  goto skip;
                  goto skip;
 
 
                  /* 1 through 7 always legal */
                  /* 1 through 7 always legal */
                case '1':
                case '1':
                case '2':
                case '2':
                case '3':
                case '3':
                case '4':
                case '4':
                case '5':
                case '5':
                case '6':
                case '6':
                case '7':
                case '7':
                  base = basefix[base];
                  base = basefix[base];
                  flags &= ~(SIGNOK | PFXOK | NDIGITS | NNZDIGITS);
                  flags &= ~(SIGNOK | PFXOK | NDIGITS | NNZDIGITS);
                  goto ok;
                  goto ok;
 
 
                  /* digits 8 and 9 ok iff decimal or hex */
                  /* digits 8 and 9 ok iff decimal or hex */
                case '8':
                case '8':
                case '9':
                case '9':
                  base = basefix[base];
                  base = basefix[base];
                  if (base <= 8)
                  if (base <= 8)
                    break;      /* not legal here */
                    break;      /* not legal here */
                  flags &= ~(SIGNOK | PFXOK | NDIGITS | NNZDIGITS);
                  flags &= ~(SIGNOK | PFXOK | NDIGITS | NNZDIGITS);
                  goto ok;
                  goto ok;
 
 
                  /* letters ok iff hex */
                  /* letters ok iff hex */
                case 'A':
                case 'A':
                case 'B':
                case 'B':
                case 'C':
                case 'C':
                case 'D':
                case 'D':
                case 'E':
                case 'E':
                case 'F':
                case 'F':
                case 'a':
                case 'a':
                case 'b':
                case 'b':
                case 'c':
                case 'c':
                case 'd':
                case 'd':
                case 'e':
                case 'e':
                case 'f':
                case 'f':
                  /* no need to fix base here */
                  /* no need to fix base here */
                  if (base <= 10)
                  if (base <= 10)
                    break;      /* not legal here */
                    break;      /* not legal here */
                  flags &= ~(SIGNOK | PFXOK | NDIGITS | NNZDIGITS);
                  flags &= ~(SIGNOK | PFXOK | NDIGITS | NNZDIGITS);
                  goto ok;
                  goto ok;
 
 
                  /* sign ok only as first character */
                  /* sign ok only as first character */
                case '+':
                case '+':
                case '-':
                case '-':
                  if (flags & SIGNOK)
                  if (flags & SIGNOK)
                    {
                    {
                      flags &= ~SIGNOK;
                      flags &= ~SIGNOK;
                      goto ok;
                      goto ok;
                    }
                    }
                  break;
                  break;
 
 
                  /* x ok iff flag still set & single 0 seen */
                  /* x ok iff flag still set & single 0 seen */
                case 'x':
                case 'x':
                case 'X':
                case 'X':
                  if ((flags & (PFXOK | NZDIGITS)) == PFXOK)
                  if ((flags & (PFXOK | NZDIGITS)) == PFXOK)
                    {
                    {
                      base = 16;/* if %i */
                      base = 16;/* if %i */
                      flags &= ~PFXOK;
                      flags &= ~PFXOK;
                      /* We must reset the NZDIGITS and NDIGITS
                      /* We must reset the NZDIGITS and NDIGITS
                         flags that would have been unset by seeing
                         flags that would have been unset by seeing
                         the zero that preceded the X or x.  */
                         the zero that preceded the X or x.  */
                      flags |= NZDIGITS | NDIGITS;
                      flags |= NZDIGITS | NDIGITS;
                      goto ok;
                      goto ok;
                    }
                    }
                  break;
                  break;
                }
                }
 
 
              /*
              /*
               * If we got here, c is not a legal character
               * If we got here, c is not a legal character
               * for a number.  Stop accumulating digits.
               * for a number.  Stop accumulating digits.
               */
               */
              break;
              break;
            ok:
            ok:
              /*
              /*
               * c is legal: store it and look at the next.
               * c is legal: store it and look at the next.
               */
               */
              *p++ = c;
              *p++ = c;
            skip:
            skip:
              if (--fp->_r > 0)
              if (--fp->_r > 0)
                fp->_p++;
                fp->_p++;
              else
              else
              if (__srefill_r (rptr, fp))
              if (__srefill_r (rptr, fp))
                break;          /* EOF */
                break;          /* EOF */
            }
            }
          /*
          /*
           * If we had only a sign, it is no good; push back the sign.
           * If we had only a sign, it is no good; push back the sign.
           * If the number ends in `x', it was [sign] '0' 'x', so push back
           * If the number ends in `x', it was [sign] '0' 'x', so push back
           * the x and treat it as [sign] '0'.
           * the x and treat it as [sign] '0'.
           * Use of ungetc here and below assumes ASCII encoding; we are only
           * Use of ungetc here and below assumes ASCII encoding; we are only
           * pushing back 7-bit characters, so casting to unsigned char is
           * pushing back 7-bit characters, so casting to unsigned char is
           * not necessary.
           * not necessary.
           */
           */
          if (flags & NDIGITS)
          if (flags & NDIGITS)
            {
            {
              if (p > buf)
              if (p > buf)
                _ungetc_r (rptr, *--p, fp); /* [-+xX] */
                _ungetc_r (rptr, *--p, fp); /* [-+xX] */
              if (p == buf)
              if (p == buf)
                goto match_failure;
                goto match_failure;
            }
            }
          if ((flags & SUPPRESS) == 0)
          if ((flags & SUPPRESS) == 0)
            {
            {
              u_long res;
              u_long res;
 
 
              *p = 0;
              *p = 0;
              res = (*ccfn) (rptr, buf, (char **) NULL, base);
              res = (*ccfn) (rptr, buf, (char **) NULL, base);
              if (flags & POINTER)
              if (flags & POINTER)
                {
                {
                  void **vp = GET_ARG (N, ap, void **);
                  void **vp = GET_ARG (N, ap, void **);
#ifndef _NO_LONGLONG
#ifndef _NO_LONGLONG
                  if (sizeof (uintptr_t) > sizeof (u_long))
                  if (sizeof (uintptr_t) > sizeof (u_long))
                    {
                    {
                      u_long_long resll;
                      u_long_long resll;
                      resll = _strtoull_r (rptr, buf, (char **) NULL, base);
                      resll = _strtoull_r (rptr, buf, (char **) NULL, base);
                      *vp = (void *) (uintptr_t) resll;
                      *vp = (void *) (uintptr_t) resll;
                    }
                    }
                  else
                  else
#endif /* !_NO_LONGLONG */
#endif /* !_NO_LONGLONG */
                    *vp = (void *) (uintptr_t) res;
                    *vp = (void *) (uintptr_t) res;
                }
                }
#ifdef _WANT_IO_C99_FORMATS
#ifdef _WANT_IO_C99_FORMATS
              else if (flags & CHAR)
              else if (flags & CHAR)
                {
                {
                  cp = GET_ARG (N, ap, char *);
                  cp = GET_ARG (N, ap, char *);
                  *cp = res;
                  *cp = res;
                }
                }
#endif
#endif
              else if (flags & SHORT)
              else if (flags & SHORT)
                {
                {
                  sp = GET_ARG (N, ap, short *);
                  sp = GET_ARG (N, ap, short *);
                  *sp = res;
                  *sp = res;
                }
                }
              else if (flags & LONG)
              else if (flags & LONG)
                {
                {
                  lp = GET_ARG (N, ap, long *);
                  lp = GET_ARG (N, ap, long *);
                  *lp = res;
                  *lp = res;
                }
                }
#ifndef _NO_LONGLONG
#ifndef _NO_LONGLONG
              else if (flags & LONGDBL)
              else if (flags & LONGDBL)
                {
                {
                  u_long_long resll;
                  u_long_long resll;
                  if (ccfn == _strtoul_r)
                  if (ccfn == _strtoul_r)
                    resll = _strtoull_r (rptr, buf, (char **) NULL, base);
                    resll = _strtoull_r (rptr, buf, (char **) NULL, base);
                  else
                  else
                    resll = _strtoll_r (rptr, buf, (char **) NULL, base);
                    resll = _strtoll_r (rptr, buf, (char **) NULL, base);
                  llp = GET_ARG (N, ap, long long*);
                  llp = GET_ARG (N, ap, long long*);
                  *llp = resll;
                  *llp = resll;
                }
                }
#endif
#endif
              else
              else
                {
                {
                  ip = GET_ARG (N, ap, int *);
                  ip = GET_ARG (N, ap, int *);
                  *ip = res;
                  *ip = res;
                }
                }
              nassigned++;
              nassigned++;
            }
            }
          nread += p - buf + skips;
          nread += p - buf + skips;
          break;
          break;
        }
        }
#ifdef FLOATING_POINT
#ifdef FLOATING_POINT
        case CT_FLOAT:
        case CT_FLOAT:
        {
        {
          /* scan a floating point number as if by strtod */
          /* scan a floating point number as if by strtod */
          /* This code used to assume that the number of digits is reasonable.
          /* This code used to assume that the number of digits is reasonable.
             However, ANSI / ISO C makes no such stipulation; we have to get
             However, ANSI / ISO C makes no such stipulation; we have to get
             exact results even when there is an unreasonable amount of
             exact results even when there is an unreasonable amount of
             leading zeroes.  */
             leading zeroes.  */
          long leading_zeroes = 0;
          long leading_zeroes = 0;
          long zeroes, exp_adjust;
          long zeroes, exp_adjust;
          char *exp_start = NULL;
          char *exp_start = NULL;
          unsigned width_left = 0;
          unsigned width_left = 0;
          char nancount = 0;
          char nancount = 0;
          char infcount = 0;
          char infcount = 0;
#ifdef hardway
#ifdef hardway
          if (width == 0 || width > sizeof (buf) - 1)
          if (width == 0 || width > sizeof (buf) - 1)
#else
#else
          /* size_t is unsigned, hence this optimisation */
          /* size_t is unsigned, hence this optimisation */
          if (width - 1 > sizeof (buf) - 2)
          if (width - 1 > sizeof (buf) - 2)
#endif
#endif
            {
            {
              width_left = width - (sizeof (buf) - 1);
              width_left = width - (sizeof (buf) - 1);
              width = sizeof (buf) - 1;
              width = sizeof (buf) - 1;
            }
            }
          flags |= SIGNOK | NDIGITS | DPTOK | EXPOK;
          flags |= SIGNOK | NDIGITS | DPTOK | EXPOK;
          zeroes = 0;
          zeroes = 0;
          exp_adjust = 0;
          exp_adjust = 0;
          for (p = buf; width; )
          for (p = buf; width; )
            {
            {
              c = *fp->_p;
              c = *fp->_p;
              /*
              /*
               * This code mimicks the integer conversion
               * This code mimicks the integer conversion
               * code, but is much simpler.
               * code, but is much simpler.
               */
               */
              switch (c)
              switch (c)
                {
                {
                case '0':
                case '0':
                  if (flags & NDIGITS)
                  if (flags & NDIGITS)
                    {
                    {
                      flags &= ~SIGNOK;
                      flags &= ~SIGNOK;
                      zeroes++;
                      zeroes++;
                      if (width_left)
                      if (width_left)
                        {
                        {
                          width_left--;
                          width_left--;
                          width++;
                          width++;
                        }
                        }
                      goto fskip;
                      goto fskip;
                    }
                    }
                  /* Fall through.  */
                  /* Fall through.  */
                case '1':
                case '1':
                case '2':
                case '2':
                case '3':
                case '3':
                case '4':
                case '4':
                case '5':
                case '5':
                case '6':
                case '6':
                case '7':
                case '7':
                case '8':
                case '8':
                case '9':
                case '9':
                  if (nancount + infcount == 0)
                  if (nancount + infcount == 0)
                    {
                    {
                      flags &= ~(SIGNOK | NDIGITS);
                      flags &= ~(SIGNOK | NDIGITS);
                      goto fok;
                      goto fok;
                    }
                    }
                  break;
                  break;
 
 
                case '+':
                case '+':
                case '-':
                case '-':
                  if (flags & SIGNOK)
                  if (flags & SIGNOK)
                    {
                    {
                      flags &= ~SIGNOK;
                      flags &= ~SIGNOK;
                      goto fok;
                      goto fok;
                    }
                    }
                  break;
                  break;
                case 'n':
                case 'n':
                case 'N':
                case 'N':
                  if (nancount == 0 && zeroes == 0
                  if (nancount == 0 && zeroes == 0
                      && (flags & (NDIGITS | DPTOK | EXPOK)) ==
                      && (flags & (NDIGITS | DPTOK | EXPOK)) ==
                                  (NDIGITS | DPTOK | EXPOK))
                                  (NDIGITS | DPTOK | EXPOK))
                    {
                    {
                      flags &= ~(SIGNOK | DPTOK | EXPOK | NDIGITS);
                      flags &= ~(SIGNOK | DPTOK | EXPOK | NDIGITS);
                      nancount = 1;
                      nancount = 1;
                      goto fok;
                      goto fok;
                    }
                    }
                  if (nancount == 2)
                  if (nancount == 2)
                    {
                    {
                      nancount = 3;
                      nancount = 3;
                      goto fok;
                      goto fok;
                    }
                    }
                  if (infcount == 1 || infcount == 4)
                  if (infcount == 1 || infcount == 4)
                    {
                    {
                      infcount++;
                      infcount++;
                      goto fok;
                      goto fok;
                    }
                    }
                  break;
                  break;
                case 'a':
                case 'a':
                case 'A':
                case 'A':
                  if (nancount == 1)
                  if (nancount == 1)
                    {
                    {
                      nancount = 2;
                      nancount = 2;
                      goto fok;
                      goto fok;
                    }
                    }
                  break;
                  break;
                case 'i':
                case 'i':
                case 'I':
                case 'I':
                  if (infcount == 0 && zeroes == 0
                  if (infcount == 0 && zeroes == 0
                      && (flags & (NDIGITS | DPTOK | EXPOK)) ==
                      && (flags & (NDIGITS | DPTOK | EXPOK)) ==
                                  (NDIGITS | DPTOK | EXPOK))
                                  (NDIGITS | DPTOK | EXPOK))
                    {
                    {
                      flags &= ~(SIGNOK | DPTOK | EXPOK | NDIGITS);
                      flags &= ~(SIGNOK | DPTOK | EXPOK | NDIGITS);
                      infcount = 1;
                      infcount = 1;
                      goto fok;
                      goto fok;
                    }
                    }
                  if (infcount == 3 || infcount == 5)
                  if (infcount == 3 || infcount == 5)
                    {
                    {
                      infcount++;
                      infcount++;
                      goto fok;
                      goto fok;
                    }
                    }
                  break;
                  break;
                case 'f':
                case 'f':
                case 'F':
                case 'F':
                  if (infcount == 2)
                  if (infcount == 2)
                    {
                    {
                      infcount = 3;
                      infcount = 3;
                      goto fok;
                      goto fok;
                    }
                    }
                  break;
                  break;
                case 't':
                case 't':
                case 'T':
                case 'T':
                  if (infcount == 6)
                  if (infcount == 6)
                    {
                    {
                      infcount = 7;
                      infcount = 7;
                      goto fok;
                      goto fok;
                    }
                    }
                  break;
                  break;
                case 'y':
                case 'y':
                case 'Y':
                case 'Y':
                  if (infcount == 7)
                  if (infcount == 7)
                    {
                    {
                      infcount = 8;
                      infcount = 8;
                      goto fok;
                      goto fok;
                    }
                    }
                  break;
                  break;
                case '.':
                case '.':
                  if (flags & DPTOK)
                  if (flags & DPTOK)
                    {
                    {
                      flags &= ~(SIGNOK | DPTOK);
                      flags &= ~(SIGNOK | DPTOK);
                      leading_zeroes = zeroes;
                      leading_zeroes = zeroes;
                      goto fok;
                      goto fok;
                    }
                    }
                  break;
                  break;
                case 'e':
                case 'e':
                case 'E':
                case 'E':
                  /* no exponent without some digits */
                  /* no exponent without some digits */
                  if ((flags & (NDIGITS | EXPOK)) == EXPOK
                  if ((flags & (NDIGITS | EXPOK)) == EXPOK
                      || ((flags & EXPOK) && zeroes))
                      || ((flags & EXPOK) && zeroes))
                    {
                    {
                      if (! (flags & DPTOK))
                      if (! (flags & DPTOK))
                        {
                        {
                          exp_adjust = zeroes - leading_zeroes;
                          exp_adjust = zeroes - leading_zeroes;
                          exp_start = p;
                          exp_start = p;
                        }
                        }
                      flags =
                      flags =
                        (flags & ~(EXPOK | DPTOK)) |
                        (flags & ~(EXPOK | DPTOK)) |
                        SIGNOK | NDIGITS;
                        SIGNOK | NDIGITS;
                      zeroes = 0;
                      zeroes = 0;
                      goto fok;
                      goto fok;
                    }
                    }
                  break;
                  break;
                }
                }
              break;
              break;
            fok:
            fok:
              *p++ = c;
              *p++ = c;
            fskip:
            fskip:
              width--;
              width--;
              ++nread;
              ++nread;
              if (--fp->_r > 0)
              if (--fp->_r > 0)
                fp->_p++;
                fp->_p++;
              else
              else
              if (__srefill_r (rptr, fp))
              if (__srefill_r (rptr, fp))
                break;          /* EOF */
                break;          /* EOF */
            }
            }
          if (zeroes)
          if (zeroes)
            flags &= ~NDIGITS;
            flags &= ~NDIGITS;
          /* We may have a 'N' or possibly even [sign] 'N' 'a' as the
          /* We may have a 'N' or possibly even [sign] 'N' 'a' as the
             start of 'NaN', only to run out of chars before it was
             start of 'NaN', only to run out of chars before it was
             complete (or having encountered a non-matching char).  So
             complete (or having encountered a non-matching char).  So
             check here if we have an outstanding nancount, and if so
             check here if we have an outstanding nancount, and if so
             put back the chars we did swallow and treat as a failed
             put back the chars we did swallow and treat as a failed
             match.
             match.
 
 
             FIXME - we still don't handle NAN([0xdigits]).  */
             FIXME - we still don't handle NAN([0xdigits]).  */
          if (nancount - 1U < 2U) /* nancount && nancount < 3 */
          if (nancount - 1U < 2U) /* nancount && nancount < 3 */
            {
            {
              /* Newlib's ungetc works even if we called __srefill in
              /* Newlib's ungetc works even if we called __srefill in
                 the middle of a partial parse, but POSIX does not
                 the middle of a partial parse, but POSIX does not
                 guarantee that in all implementations of ungetc.  */
                 guarantee that in all implementations of ungetc.  */
              while (p > buf)
              while (p > buf)
                {
                {
                  _ungetc_r (rptr, *--p, fp); /* [-+nNaA] */
                  _ungetc_r (rptr, *--p, fp); /* [-+nNaA] */
                  --nread;
                  --nread;
                }
                }
              goto match_failure;
              goto match_failure;
            }
            }
          /* Likewise for 'inf' and 'infinity'.  But be careful that
          /* Likewise for 'inf' and 'infinity'.  But be careful that
             'infinite' consumes only 3 characters, leaving the stream
             'infinite' consumes only 3 characters, leaving the stream
             at the second 'i'.  */
             at the second 'i'.  */
          if (infcount - 1U < 7U) /* infcount && infcount < 8 */
          if (infcount - 1U < 7U) /* infcount && infcount < 8 */
            {
            {
              if (infcount >= 3) /* valid 'inf', but short of 'infinity' */
              if (infcount >= 3) /* valid 'inf', but short of 'infinity' */
                while (infcount-- > 3)
                while (infcount-- > 3)
                  {
                  {
                    _ungetc_r (rptr, *--p, fp); /* [iInNtT] */
                    _ungetc_r (rptr, *--p, fp); /* [iInNtT] */
                    --nread;
                    --nread;
                  }
                  }
              else
              else
                {
                {
                  while (p > buf)
                  while (p > buf)
                    {
                    {
                      _ungetc_r (rptr, *--p, fp); /* [-+iInN] */
                      _ungetc_r (rptr, *--p, fp); /* [-+iInN] */
                      --nread;
                      --nread;
                    }
                    }
                  goto match_failure;
                  goto match_failure;
                }
                }
            }
            }
          /*
          /*
           * If no digits, might be missing exponent digits
           * If no digits, might be missing exponent digits
           * (just give back the exponent) or might be missing
           * (just give back the exponent) or might be missing
           * regular digits, but had sign and/or decimal point.
           * regular digits, but had sign and/or decimal point.
           */
           */
          if (flags & NDIGITS)
          if (flags & NDIGITS)
            {
            {
              if (flags & EXPOK)
              if (flags & EXPOK)
                {
                {
                  /* no digits at all */
                  /* no digits at all */
                  while (p > buf)
                  while (p > buf)
                    {
                    {
                      _ungetc_r (rptr, *--p, fp); /* [-+.] */
                      _ungetc_r (rptr, *--p, fp); /* [-+.] */
                      --nread;
                      --nread;
                    }
                    }
                  goto match_failure;
                  goto match_failure;
                }
                }
              /* just a bad exponent (e and maybe sign) */
              /* just a bad exponent (e and maybe sign) */
              c = *--p;
              c = *--p;
              --nread;
              --nread;
              if (c != 'e' && c != 'E')
              if (c != 'e' && c != 'E')
                {
                {
                  _ungetc_r (rptr, c, fp); /* [-+] */
                  _ungetc_r (rptr, c, fp); /* [-+] */
                  c = *--p;
                  c = *--p;
                  --nread;
                  --nread;
                }
                }
              _ungetc_r (rptr, c, fp); /* [eE] */
              _ungetc_r (rptr, c, fp); /* [eE] */
            }
            }
          if ((flags & SUPPRESS) == 0)
          if ((flags & SUPPRESS) == 0)
            {
            {
              double res = 0;
              double res = 0;
#ifdef _NO_LONGDBL
#ifdef _NO_LONGDBL
#define QUAD_RES res;
#define QUAD_RES res;
#else  /* !_NO_LONG_DBL */
#else  /* !_NO_LONG_DBL */
              long double qres = 0;
              long double qres = 0;
#define QUAD_RES qres;
#define QUAD_RES qres;
#endif /* !_NO_LONG_DBL */
#endif /* !_NO_LONG_DBL */
              long new_exp = 0;
              long new_exp = 0;
 
 
              *p = 0;
              *p = 0;
              if ((flags & (DPTOK | EXPOK)) == EXPOK)
              if ((flags & (DPTOK | EXPOK)) == EXPOK)
                {
                {
                  exp_adjust = zeroes - leading_zeroes;
                  exp_adjust = zeroes - leading_zeroes;
                  new_exp = -exp_adjust;
                  new_exp = -exp_adjust;
                  exp_start = p;
                  exp_start = p;
                }
                }
              else if (exp_adjust)
              else if (exp_adjust)
                new_exp = _strtol_r (rptr, (exp_start + 1), NULL, 10) - exp_adjust;
                new_exp = _strtol_r (rptr, (exp_start + 1), NULL, 10) - exp_adjust;
              if (exp_adjust)
              if (exp_adjust)
                {
                {
 
 
                  /* If there might not be enough space for the new exponent,
                  /* If there might not be enough space for the new exponent,
                     truncate some trailing digits to make room.  */
                     truncate some trailing digits to make room.  */
                  if (exp_start >= buf + sizeof (buf) - MAX_LONG_LEN)
                  if (exp_start >= buf + sizeof (buf) - MAX_LONG_LEN)
                    exp_start = buf + sizeof (buf) - MAX_LONG_LEN - 1;
                    exp_start = buf + sizeof (buf) - MAX_LONG_LEN - 1;
                 sprintf (exp_start, "e%ld", new_exp);
                 sprintf (exp_start, "e%ld", new_exp);
                }
                }
 
 
              /* Current _strtold routine is markedly slower than
              /* Current _strtold routine is markedly slower than
                 _strtod_r.  Only use it if we have a long double
                 _strtod_r.  Only use it if we have a long double
                 result.  */
                 result.  */
#ifndef _NO_LONGDBL /* !_NO_LONGDBL */
#ifndef _NO_LONGDBL /* !_NO_LONGDBL */
              if (flags & LONGDBL)
              if (flags & LONGDBL)
                qres = _strtold (buf, NULL);
                qres = _strtold (buf, NULL);
              else
              else
#endif
#endif
                res = _strtod_r (rptr, buf, NULL);
                res = _strtod_r (rptr, buf, NULL);
 
 
              if (flags & LONG)
              if (flags & LONG)
                {
                {
                  dp = GET_ARG (N, ap, double *);
                  dp = GET_ARG (N, ap, double *);
                  *dp = res;
                  *dp = res;
                }
                }
              else if (flags & LONGDBL)
              else if (flags & LONGDBL)
                {
                {
                  ldp = GET_ARG (N, ap, _LONG_DOUBLE *);
                  ldp = GET_ARG (N, ap, _LONG_DOUBLE *);
                  *ldp = QUAD_RES;
                  *ldp = QUAD_RES;
                }
                }
              else
              else
                {
                {
                  flp = GET_ARG (N, ap, float *);
                  flp = GET_ARG (N, ap, float *);
                  if (isnan (res))
                  if (isnan (res))
                    *flp = nanf (NULL);
                    *flp = nanf (NULL);
                  else
                  else
                    *flp = res;
                    *flp = res;
                }
                }
              nassigned++;
              nassigned++;
            }
            }
          break;
          break;
        }
        }
#endif /* FLOATING_POINT */
#endif /* FLOATING_POINT */
        }
        }
    }
    }
input_failure:
input_failure:
  /* On read failure, return EOF failure regardless of matches; errno
  /* On read failure, return EOF failure regardless of matches; errno
     should have been set prior to here.  On EOF failure (including
     should have been set prior to here.  On EOF failure (including
     invalid format string), return EOF if no matches yet, else number
     invalid format string), return EOF if no matches yet, else number
     of matches made prior to failure.  */
     of matches made prior to failure.  */
  _funlockfile (fp);
  _funlockfile (fp);
  __sfp_lock_release ();
  __sfp_lock_release ();
  return nassigned && !(fp->_flags & __SERR) ? nassigned : EOF;
  return nassigned && !(fp->_flags & __SERR) ? nassigned : EOF;
match_failure:
match_failure:
all_done:
all_done:
  /* Return number of matches, which can be 0 on match failure.  */
  /* Return number of matches, which can be 0 on match failure.  */
  _funlockfile (fp);
  _funlockfile (fp);
  __sfp_lock_release ();
  __sfp_lock_release ();
  return nassigned;
  return nassigned;
}
}
 
 
#ifndef _NO_POS_ARGS
#ifndef _NO_POS_ARGS
/* Process all intermediate arguments.  Fortunately, with scanf, all
/* Process all intermediate arguments.  Fortunately, with scanf, all
   intermediate arguments are sizeof(void*), so we don't need to scan
   intermediate arguments are sizeof(void*), so we don't need to scan
   ahead in the format string.  */
   ahead in the format string.  */
static void *
static void *
get_arg (int n, va_list *ap, int *numargs_p, void **args)
get_arg (int n, va_list *ap, int *numargs_p, void **args)
{
{
  int numargs = *numargs_p;
  int numargs = *numargs_p;
  while (n >= numargs)
  while (n >= numargs)
    args[numargs++] = va_arg (*ap, void *);
    args[numargs++] = va_arg (*ap, void *);
  *numargs_p = numargs;
  *numargs_p = numargs;
  return args[n];
  return args[n];
}
}
#endif /* !_NO_POS_ARGS */
#endif /* !_NO_POS_ARGS */
 
 

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