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[/] [openrisc/] [trunk/] [gnu-src/] [gcc-4.2.2/] [gcc/] [opts-common.c] - Blame information for rev 199

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1 38 julius
/* Command line option handling.
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   Copyright (C) 2006, 2007 Free Software Foundation, Inc.
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This file is part of GCC.
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GCC is free software; you can redistribute it and/or modify it under
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the terms of the GNU General Public License as published by the Free
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Software Foundation; either version 3, or (at your option) any later
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version.
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GCC is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with GCC; see the file COPYING3.  If not see
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<http://www.gnu.org/licenses/>.  */
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#include "config.h"
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#include "system.h"
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#include "intl.h"
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#include "coretypes.h"
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#include "opts.h"
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/* Perform a binary search to find which option the command-line INPUT
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   matches.  Returns its index in the option array, and N_OPTS
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   (cl_options_count) on failure.
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   This routine is quite subtle.  A normal binary search is not good
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   enough because some options can be suffixed with an argument, and
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   multiple sub-matches can occur, e.g. input of "-pedantic" matching
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   the initial substring of "-pedantic-errors".
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   A more complicated example is -gstabs.  It should match "-g" with
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   an argument of "stabs".  Suppose, however, that the number and list
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   of switches are such that the binary search tests "-gen-decls"
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   before having tested "-g".  This doesn't match, and as "-gen-decls"
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   is less than "-gstabs", it will become the lower bound of the
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   binary search range, and "-g" will never be seen.  To resolve this
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   issue, opts.sh makes "-gen-decls" point, via the back_chain member,
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   to "-g" so that failed searches that end between "-gen-decls" and
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   the lexicographically subsequent switch know to go back and see if
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   "-g" causes a match (which it does in this example).
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   This search is done in such a way that the longest match for the
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   front end in question wins.  If there is no match for the current
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   front end, the longest match for a different front end is returned
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   (or N_OPTS if none) and the caller emits an error message.  */
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size_t
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find_opt (const char *input, int lang_mask)
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{
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  size_t mn, mx, md, opt_len;
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  size_t match_wrong_lang;
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  int comp;
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  mn = 0;
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  mx = cl_options_count;
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  /* Find mn such this lexicographical inequality holds:
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     cl_options[mn] <= input < cl_options[mn + 1].  */
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  while (mx - mn > 1)
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    {
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      md = (mn + mx) / 2;
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      opt_len = cl_options[md].opt_len;
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      comp = strncmp (input, cl_options[md].opt_text + 1, opt_len);
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      if (comp < 0)
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        mx = md;
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      else
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        mn = md;
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    }
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  /* This is the switch that is the best match but for a different
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     front end, or cl_options_count if there is no match at all.  */
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  match_wrong_lang = cl_options_count;
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  /* Backtrace the chain of possible matches, returning the longest
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     one, if any, that fits best.  With current GCC switches, this
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     loop executes at most twice.  */
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  do
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    {
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      const struct cl_option *opt = &cl_options[mn];
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      /* Is the input either an exact match or a prefix that takes a
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         joined argument?  */
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      if (!strncmp (input, opt->opt_text + 1, opt->opt_len)
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          && (input[opt->opt_len] == '\0' || (opt->flags & CL_JOINED)))
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        {
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          /* If language is OK, return it.  */
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          if (opt->flags & lang_mask)
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            return mn;
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          /* If we haven't remembered a prior match, remember this
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             one.  Any prior match is necessarily better.  */
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          if (match_wrong_lang == cl_options_count)
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            match_wrong_lang = mn;
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        }
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      /* Try the next possibility.  This is cl_options_count if there
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         are no more.  */
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      mn = opt->back_chain;
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    }
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  while (mn != cl_options_count);
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  /* Return the best wrong match, or cl_options_count if none.  */
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  return match_wrong_lang;
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}
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/* Return true if NEXT_OPT_IDX cancels OPT_IDX.  Return false if the
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   next one is the same as ORIG_NEXT_OPT_IDX.  */
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static bool
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cancel_option (int opt_idx, int next_opt_idx, int orig_next_opt_idx)
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{
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  /* An option can be canceled by the same option or an option with
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     Negative.  */
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  if (cl_options [next_opt_idx].neg_index == opt_idx)
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    return true;
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  if (cl_options [next_opt_idx].neg_index != orig_next_opt_idx)
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    return cancel_option (opt_idx, cl_options [next_opt_idx].neg_index,
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                          orig_next_opt_idx);
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  return false;
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}
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/* Filter out options canceled by the ones after them.  */
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void
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prune_options (int *argcp, char ***argvp)
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{
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  int argc = *argcp;
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  int *options = xmalloc (argc * sizeof (*options));
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  char **argv = xmalloc (argc * sizeof (char *));
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  int i, arg_count, need_prune = 0;
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  const struct cl_option *option;
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  size_t opt_index;
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  /* Scan all arguments.  */
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  for (i = 1; i < argc; i++)
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    {
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      int value = 1;
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      const char *opt = (*argvp) [i];
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      opt_index = find_opt (opt + 1, -1);
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      if (opt_index == cl_options_count
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          && (opt[1] == 'W' || opt[1] == 'f' || opt[1] == 'm')
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          && opt[2] == 'n' && opt[3] == 'o' && opt[4] == '-')
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        {
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          char *dup;
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          /* Drop the "no-" from negative switches.  */
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          size_t len = strlen (opt) - 3;
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          dup = XNEWVEC (char, len + 1);
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          dup[0] = '-';
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          dup[1] = opt[1];
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          memcpy (dup + 2, opt + 5, len - 2 + 1);
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          opt = dup;
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          value = 0;
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          opt_index = find_opt (opt + 1, -1);
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          free (dup);
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        }
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      if (opt_index == cl_options_count)
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        {
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cont:
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          options [i] = 0;
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          continue;
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        }
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      option = &cl_options[opt_index];
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      if (option->neg_index < 0)
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        goto cont;
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      /* Skip joined switches.  */
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      if ((option->flags & CL_JOINED))
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        goto cont;
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      /* Reject negative form of switches that don't take negatives as
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         unrecognized.  */
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      if (!value && (option->flags & CL_REJECT_NEGATIVE))
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        goto cont;
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      options [i] = (int) opt_index;
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      need_prune |= options [i];
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    }
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190
  if (!need_prune)
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    goto done;
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  /* Remove arguments which are negated by others after them.  */
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  argv [0] = (*argvp) [0];
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  arg_count = 1;
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  for (i = 1; i < argc; i++)
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    {
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      int j, opt_idx;
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200
      opt_idx = options [i];
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      if (opt_idx)
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        {
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          int next_opt_idx;
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          for (j = i + 1; j < argc; j++)
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            {
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              next_opt_idx = options [j];
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              if (next_opt_idx
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                  && cancel_option (opt_idx, next_opt_idx,
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                                    next_opt_idx))
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                break;
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            }
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        }
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      else
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        goto keep;
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216
      if (j == argc)
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        {
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keep:
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          argv [arg_count] = (*argvp) [i];
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          arg_count++;
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        }
222
    }
223
 
224
  if (arg_count != argc)
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    {
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      *argcp = arg_count;
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      *argvp = argv;
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    }
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  else
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    {
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done:
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      free (argv);
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    }
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  free (options);
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}

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