Blame lib/regex_internal.c

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/* Extended regular expression matching and search library.
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   Copyright (C) 2002-2017 Free Software Foundation, Inc.
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   This file is part of the GNU C Library.
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   Contributed by Isamu Hasegawa <isamu@yamato.ibm.com>.
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   The GNU C Library is free software; you can redistribute it and/or
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   modify it under the terms of the GNU General Public
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   License as published by the Free Software Foundation; either
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   version 3 of the License, or (at your option) any later version.
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   The GNU C Library is distributed in the hope that it will be useful,
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   but WITHOUT ANY WARRANTY; without even the implied warranty of
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   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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   General Public License for more details.
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   You should have received a copy of the GNU General Public
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   License along with the GNU C Library; if not, see
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   <http://www.gnu.org/licenses/>.  */
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static void re_string_construct_common (const char *str, Idx len,
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					re_string_t *pstr,
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					RE_TRANSLATE_TYPE trans, bool icase,
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					const re_dfa_t *dfa) internal_function;
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static re_dfastate_t *create_ci_newstate (const re_dfa_t *dfa,
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					  const re_node_set *nodes,
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					  re_hashval_t hash) internal_function;
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static re_dfastate_t *create_cd_newstate (const re_dfa_t *dfa,
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					  const re_node_set *nodes,
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					  unsigned int context,
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					  re_hashval_t hash) internal_function;
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/* Functions for string operation.  */
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/* This function allocate the buffers.  It is necessary to call
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   re_string_reconstruct before using the object.  */
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static reg_errcode_t
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internal_function __attribute_warn_unused_result__
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re_string_allocate (re_string_t *pstr, const char *str, Idx len, Idx init_len,
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		    RE_TRANSLATE_TYPE trans, bool icase, const re_dfa_t *dfa)
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{
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  reg_errcode_t ret;
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  Idx init_buf_len;
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  /* Ensure at least one character fits into the buffers.  */
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  if (init_len < dfa->mb_cur_max)
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    init_len = dfa->mb_cur_max;
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  init_buf_len = (len + 1 < init_len) ? len + 1: init_len;
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  re_string_construct_common (str, len, pstr, trans, icase, dfa);
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  ret = re_string_realloc_buffers (pstr, init_buf_len);
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  if (BE (ret != REG_NOERROR, 0))
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    return ret;
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  pstr->word_char = dfa->word_char;
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  pstr->word_ops_used = dfa->word_ops_used;
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  pstr->mbs = pstr->mbs_allocated ? pstr->mbs : (unsigned char *) str;
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  pstr->valid_len = (pstr->mbs_allocated || dfa->mb_cur_max > 1) ? 0 : len;
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  pstr->valid_raw_len = pstr->valid_len;
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  return REG_NOERROR;
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}
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/* This function allocate the buffers, and initialize them.  */
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static reg_errcode_t
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internal_function __attribute_warn_unused_result__
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re_string_construct (re_string_t *pstr, const char *str, Idx len,
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		     RE_TRANSLATE_TYPE trans, bool icase, const re_dfa_t *dfa)
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{
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  reg_errcode_t ret;
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  memset (pstr, '\0', sizeof (re_string_t));
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  re_string_construct_common (str, len, pstr, trans, icase, dfa);
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  if (len > 0)
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    {
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      ret = re_string_realloc_buffers (pstr, len + 1);
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      if (BE (ret != REG_NOERROR, 0))
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	return ret;
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    }
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  pstr->mbs = pstr->mbs_allocated ? pstr->mbs : (unsigned char *) str;
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  if (icase)
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    {
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#ifdef RE_ENABLE_I18N
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      if (dfa->mb_cur_max > 1)
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	{
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	  while (1)
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	    {
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	      ret = build_wcs_upper_buffer (pstr);
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	      if (BE (ret != REG_NOERROR, 0))
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		return ret;
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	      if (pstr->valid_raw_len >= len)
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		break;
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	      if (pstr->bufs_len > pstr->valid_len + dfa->mb_cur_max)
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		break;
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	      ret = re_string_realloc_buffers (pstr, pstr->bufs_len * 2);
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	      if (BE (ret != REG_NOERROR, 0))
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		return ret;
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	    }
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	}
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      else
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#endif /* RE_ENABLE_I18N  */
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	build_upper_buffer (pstr);
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    }
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  else
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    {
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#ifdef RE_ENABLE_I18N
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      if (dfa->mb_cur_max > 1)
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	build_wcs_buffer (pstr);
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      else
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#endif /* RE_ENABLE_I18N  */
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	{
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	  if (trans != NULL)
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	    re_string_translate_buffer (pstr);
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	  else
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	    {
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	      pstr->valid_len = pstr->bufs_len;
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	      pstr->valid_raw_len = pstr->bufs_len;
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	    }
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	}
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    }
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  return REG_NOERROR;
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}
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/* Helper functions for re_string_allocate, and re_string_construct.  */
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static reg_errcode_t
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internal_function __attribute_warn_unused_result__
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re_string_realloc_buffers (re_string_t *pstr, Idx new_buf_len)
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{
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#ifdef RE_ENABLE_I18N
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  if (pstr->mb_cur_max > 1)
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    {
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      wint_t *new_wcs;
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      /* Avoid overflow in realloc.  */
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      const size_t max_object_size = MAX (sizeof (wint_t), sizeof (Idx));
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      if (BE (MIN (IDX_MAX, SIZE_MAX / max_object_size) < new_buf_len, 0))
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	return REG_ESPACE;
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      new_wcs = re_realloc (pstr->wcs, wint_t, new_buf_len);
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      if (BE (new_wcs == NULL, 0))
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	return REG_ESPACE;
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      pstr->wcs = new_wcs;
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      if (pstr->offsets != NULL)
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	{
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	  Idx *new_offsets = re_realloc (pstr->offsets, Idx, new_buf_len);
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	  if (BE (new_offsets == NULL, 0))
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	    return REG_ESPACE;
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	  pstr->offsets = new_offsets;
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	}
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    }
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#endif /* RE_ENABLE_I18N  */
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  if (pstr->mbs_allocated)
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    {
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      unsigned char *new_mbs = re_realloc (pstr->mbs, unsigned char,
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					   new_buf_len);
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      if (BE (new_mbs == NULL, 0))
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	return REG_ESPACE;
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      pstr->mbs = new_mbs;
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    }
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  pstr->bufs_len = new_buf_len;
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  return REG_NOERROR;
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}
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static void
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internal_function
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re_string_construct_common (const char *str, Idx len, re_string_t *pstr,
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			    RE_TRANSLATE_TYPE trans, bool icase,
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			    const re_dfa_t *dfa)
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{
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  pstr->raw_mbs = (const unsigned char *) str;
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  pstr->len = len;
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  pstr->raw_len = len;
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  pstr->trans = trans;
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  pstr->icase = icase;
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  pstr->mbs_allocated = (trans != NULL || icase);
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  pstr->mb_cur_max = dfa->mb_cur_max;
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  pstr->is_utf8 = dfa->is_utf8;
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  pstr->map_notascii = dfa->map_notascii;
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  pstr->stop = pstr->len;
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  pstr->raw_stop = pstr->stop;
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}
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#ifdef RE_ENABLE_I18N
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/* Build wide character buffer PSTR->WCS.
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   If the byte sequence of the string are:
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     <mb1>(0), <mb1>(1), <mb2>(0), <mb2>(1), <sb3>
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   Then wide character buffer will be:
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     <wc1>   , WEOF    , <wc2>   , WEOF    , <wc3>
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   We use WEOF for padding, they indicate that the position isn't
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   a first byte of a multibyte character.
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   Note that this function assumes PSTR->VALID_LEN elements are already
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   built and starts from PSTR->VALID_LEN.  */
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static void
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internal_function
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build_wcs_buffer (re_string_t *pstr)
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{
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#ifdef _LIBC
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  unsigned char buf[MB_LEN_MAX];
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  assert (MB_LEN_MAX >= pstr->mb_cur_max);
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#else
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  unsigned char buf[64];
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#endif
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  mbstate_t prev_st;
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  Idx byte_idx, end_idx, remain_len;
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  size_t mbclen;
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  /* Build the buffers from pstr->valid_len to either pstr->len or
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     pstr->bufs_len.  */
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  end_idx = (pstr->bufs_len > pstr->len) ? pstr->len : pstr->bufs_len;
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  for (byte_idx = pstr->valid_len; byte_idx < end_idx;)
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    {
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      wchar_t wc;
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      const char *p;
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      remain_len = end_idx - byte_idx;
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      prev_st = pstr->cur_state;
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      /* Apply the translation if we need.  */
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      if (BE (pstr->trans != NULL, 0))
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	{
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	  int i, ch;
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	  for (i = 0; i < pstr->mb_cur_max && i < remain_len; ++i)
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	    {
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	      ch = pstr->raw_mbs [pstr->raw_mbs_idx + byte_idx + i];
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	      buf[i] = pstr->mbs[byte_idx + i] = pstr->trans[ch];
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	    }
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	  p = (const char *) buf;
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	}
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      else
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	p = (const char *) pstr->raw_mbs + pstr->raw_mbs_idx + byte_idx;
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      mbclen = __mbrtowc (&wc, p, remain_len, &pstr->cur_state);
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      if (BE (mbclen == (size_t) -1 || mbclen == 0
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	      || (mbclen == (size_t) -2 && pstr->bufs_len >= pstr->len), 0))
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	{
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	  /* We treat these cases as a singlebyte character.  */
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	  mbclen = 1;
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	  wc = (wchar_t) pstr->raw_mbs[pstr->raw_mbs_idx + byte_idx];
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	  if (BE (pstr->trans != NULL, 0))
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	    wc = pstr->trans[wc];
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	  pstr->cur_state = prev_st;
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	}
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      else if (BE (mbclen == (size_t) -2, 0))
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	{
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	  /* The buffer doesn't have enough space, finish to build.  */
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	  pstr->cur_state = prev_st;
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	  break;
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	}
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      /* Write wide character and padding.  */
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      pstr->wcs[byte_idx++] = wc;
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      /* Write paddings.  */
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      for (remain_len = byte_idx + mbclen - 1; byte_idx < remain_len ;)
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	pstr->wcs[byte_idx++] = WEOF;
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    }
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  pstr->valid_len = byte_idx;
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  pstr->valid_raw_len = byte_idx;
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}
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/* Build wide character buffer PSTR->WCS like build_wcs_buffer,
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   but for REG_ICASE.  */
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static reg_errcode_t
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internal_function __attribute_warn_unused_result__
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build_wcs_upper_buffer (re_string_t *pstr)
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{
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  mbstate_t prev_st;
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  Idx src_idx, byte_idx, end_idx, remain_len;
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  size_t mbclen;
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#ifdef _LIBC
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  char buf[MB_LEN_MAX];
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  assert (MB_LEN_MAX >= pstr->mb_cur_max);
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#else
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  char buf[64];
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#endif
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  byte_idx = pstr->valid_len;
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  end_idx = (pstr->bufs_len > pstr->len) ? pstr->len : pstr->bufs_len;
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  /* The following optimization assumes that ASCII characters can be
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     mapped to wide characters with a simple cast.  */
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  if (! pstr->map_notascii && pstr->trans == NULL && !pstr->offsets_needed)
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    {
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      while (byte_idx < end_idx)
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	{
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	  wchar_t wc;
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	  if (isascii (pstr->raw_mbs[pstr->raw_mbs_idx + byte_idx])
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	      && mbsinit (&pstr->cur_state))
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	    {
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	      /* In case of a singlebyte character.  */
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	      pstr->mbs[byte_idx]
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		= toupper (pstr->raw_mbs[pstr->raw_mbs_idx + byte_idx]);
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	      /* The next step uses the assumption that wchar_t is encoded
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		 ASCII-safe: all ASCII values can be converted like this.  */
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	      pstr->wcs[byte_idx] = (wchar_t) pstr->mbs[byte_idx];
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	      ++byte_idx;
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	      continue;
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	    }
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	  remain_len = end_idx - byte_idx;
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	  prev_st = pstr->cur_state;
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	  mbclen = __mbrtowc (&wc,
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			      ((const char *) pstr->raw_mbs + pstr->raw_mbs_idx
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			       + byte_idx), remain_len, &pstr->cur_state);
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	  if (BE (mbclen < (size_t) -2, 1))
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	    {
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	      wchar_t wcu = __towupper (wc);
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	      if (wcu != wc)
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		{
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		  size_t mbcdlen;
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		  mbcdlen = __wcrtomb (buf, wcu, &prev_st);
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		  if (BE (mbclen == mbcdlen, 1))
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		    memcpy (pstr->mbs + byte_idx, buf, mbclen);
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		  else
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		    {
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		      src_idx = byte_idx;
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		      goto offsets_needed;
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		    }
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		}
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	      else
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		memcpy (pstr->mbs + byte_idx,
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			pstr->raw_mbs + pstr->raw_mbs_idx + byte_idx, mbclen);
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	      pstr->wcs[byte_idx++] = wcu;
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	      /* Write paddings.  */
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	      for (remain_len = byte_idx + mbclen - 1; byte_idx < remain_len ;)
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		pstr->wcs[byte_idx++] = WEOF;
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	    }
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	  else if (mbclen == (size_t) -1 || mbclen == 0
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		   || (mbclen == (size_t) -2 && pstr->bufs_len >= pstr->len))
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	    {
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	      /* It is an invalid character, an incomplete character
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		 at the end of the string, or '\0'.  Just use the byte.  */
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	      int ch = pstr->raw_mbs[pstr->raw_mbs_idx + byte_idx];
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	      pstr->mbs[byte_idx] = ch;
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	      /* And also cast it to wide char.  */
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	      pstr->wcs[byte_idx++] = (wchar_t) ch;
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	      if (BE (mbclen == (size_t) -1, 0))
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		pstr->cur_state = prev_st;
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	    }
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	  else
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	    {
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	      /* The buffer doesn't have enough space, finish to build.  */
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	      pstr->cur_state = prev_st;
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	      break;
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	    }
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	}
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      pstr->valid_len = byte_idx;
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      pstr->valid_raw_len = byte_idx;
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      return REG_NOERROR;
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    }
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  else
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    for (src_idx = pstr->valid_raw_len; byte_idx < end_idx;)
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      {
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	wchar_t wc;
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	const char *p;
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      offsets_needed:
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	remain_len = end_idx - byte_idx;
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	prev_st = pstr->cur_state;
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	if (BE (pstr->trans != NULL, 0))
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	  {
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	    int i, ch;
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	    for (i = 0; i < pstr->mb_cur_max && i < remain_len; ++i)
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	      {
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		ch = pstr->raw_mbs [pstr->raw_mbs_idx + src_idx + i];
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		buf[i] = pstr->trans[ch];
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	      }
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	    p = (const char *) buf;
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	  }
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	else
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	  p = (const char *) pstr->raw_mbs + pstr->raw_mbs_idx + src_idx;
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	mbclen = __mbrtowc (&wc, p, remain_len, &pstr->cur_state);
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	if (BE (mbclen < (size_t) -2, 1))
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	  {
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	    wchar_t wcu = __towupper (wc);
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	    if (wcu != wc)
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	      {
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		size_t mbcdlen;
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		mbcdlen = wcrtomb ((char *) buf, wcu, &prev_st);
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		if (BE (mbclen == mbcdlen, 1))
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		  memcpy (pstr->mbs + byte_idx, buf, mbclen);
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		else if (mbcdlen != (size_t) -1)
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		  {
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		    size_t i;
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		    if (byte_idx + mbcdlen > pstr->bufs_len)
Packit Service fdd496
		      {
Packit Service fdd496
			pstr->cur_state = prev_st;
Packit Service fdd496
			break;
Packit Service fdd496
		      }
Packit Service fdd496
Packit Service fdd496
		    if (pstr->offsets == NULL)
Packit Service fdd496
		      {
Packit Service fdd496
			pstr->offsets = re_malloc (Idx, pstr->bufs_len);
Packit Service fdd496
Packit Service fdd496
			if (pstr->offsets == NULL)
Packit Service fdd496
			  return REG_ESPACE;
Packit Service fdd496
		      }
Packit Service fdd496
		    if (!pstr->offsets_needed)
Packit Service fdd496
		      {
Packit Service fdd496
			for (i = 0; i < (size_t) byte_idx; ++i)
Packit Service fdd496
			  pstr->offsets[i] = i;
Packit Service fdd496
			pstr->offsets_needed = 1;
Packit Service fdd496
		      }
Packit Service fdd496
Packit Service fdd496
		    memcpy (pstr->mbs + byte_idx, buf, mbcdlen);
Packit Service fdd496
		    pstr->wcs[byte_idx] = wcu;
Packit Service fdd496
		    pstr->offsets[byte_idx] = src_idx;
Packit Service fdd496
		    for (i = 1; i < mbcdlen; ++i)
Packit Service fdd496
		      {
Packit Service fdd496
			pstr->offsets[byte_idx + i]
Packit Service fdd496
			  = src_idx + (i < mbclen ? i : mbclen - 1);
Packit Service fdd496
			pstr->wcs[byte_idx + i] = WEOF;
Packit Service fdd496
		      }
Packit Service fdd496
		    pstr->len += mbcdlen - mbclen;
Packit Service fdd496
		    if (pstr->raw_stop > src_idx)
Packit Service fdd496
		      pstr->stop += mbcdlen - mbclen;
Packit Service fdd496
		    end_idx = (pstr->bufs_len > pstr->len)
Packit Service fdd496
			      ? pstr->len : pstr->bufs_len;
Packit Service fdd496
		    byte_idx += mbcdlen;
Packit Service fdd496
		    src_idx += mbclen;
Packit Service fdd496
		    continue;
Packit Service fdd496
		  }
Packit Service fdd496
		else
Packit Service fdd496
		  memcpy (pstr->mbs + byte_idx, p, mbclen);
Packit Service fdd496
	      }
Packit Service fdd496
	    else
Packit Service fdd496
	      memcpy (pstr->mbs + byte_idx, p, mbclen);
Packit Service fdd496
Packit Service fdd496
	    if (BE (pstr->offsets_needed != 0, 0))
Packit Service fdd496
	      {
Packit Service fdd496
		size_t i;
Packit Service fdd496
		for (i = 0; i < mbclen; ++i)
Packit Service fdd496
		  pstr->offsets[byte_idx + i] = src_idx + i;
Packit Service fdd496
	      }
Packit Service fdd496
	    src_idx += mbclen;
Packit Service fdd496
Packit Service fdd496
	    pstr->wcs[byte_idx++] = wcu;
Packit Service fdd496
	    /* Write paddings.  */
Packit Service fdd496
	    for (remain_len = byte_idx + mbclen - 1; byte_idx < remain_len ;)
Packit Service fdd496
	      pstr->wcs[byte_idx++] = WEOF;
Packit Service fdd496
	  }
Packit Service fdd496
	else if (mbclen == (size_t) -1 || mbclen == 0
Packit Service fdd496
		 || (mbclen == (size_t) -2 && pstr->bufs_len >= pstr->len))
Packit Service fdd496
	  {
Packit Service fdd496
	    /* It is an invalid character or '\0'.  Just use the byte.  */
Packit Service fdd496
	    int ch = pstr->raw_mbs[pstr->raw_mbs_idx + src_idx];
Packit Service fdd496
Packit Service fdd496
	    if (BE (pstr->trans != NULL, 0))
Packit Service fdd496
	      ch = pstr->trans [ch];
Packit Service fdd496
	    pstr->mbs[byte_idx] = ch;
Packit Service fdd496
Packit Service fdd496
	    if (BE (pstr->offsets_needed != 0, 0))
Packit Service fdd496
	      pstr->offsets[byte_idx] = src_idx;
Packit Service fdd496
	    ++src_idx;
Packit Service fdd496
Packit Service fdd496
	    /* And also cast it to wide char.  */
Packit Service fdd496
	    pstr->wcs[byte_idx++] = (wchar_t) ch;
Packit Service fdd496
	    if (BE (mbclen == (size_t) -1, 0))
Packit Service fdd496
	      pstr->cur_state = prev_st;
Packit Service fdd496
	  }
Packit Service fdd496
	else
Packit Service fdd496
	  {
Packit Service fdd496
	    /* The buffer doesn't have enough space, finish to build.  */
Packit Service fdd496
	    pstr->cur_state = prev_st;
Packit Service fdd496
	    break;
Packit Service fdd496
	  }
Packit Service fdd496
      }
Packit Service fdd496
  pstr->valid_len = byte_idx;
Packit Service fdd496
  pstr->valid_raw_len = src_idx;
Packit Service fdd496
  return REG_NOERROR;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Skip characters until the index becomes greater than NEW_RAW_IDX.
Packit Service fdd496
   Return the index.  */
Packit Service fdd496
Packit Service fdd496
static Idx
Packit Service fdd496
internal_function
Packit Service fdd496
re_string_skip_chars (re_string_t *pstr, Idx new_raw_idx, wint_t *last_wc)
Packit Service fdd496
{
Packit Service fdd496
  mbstate_t prev_st;
Packit Service fdd496
  Idx rawbuf_idx;
Packit Service fdd496
  size_t mbclen;
Packit Service fdd496
  wint_t wc = WEOF;
Packit Service fdd496
Packit Service fdd496
  /* Skip the characters which are not necessary to check.  */
Packit Service fdd496
  for (rawbuf_idx = pstr->raw_mbs_idx + pstr->valid_raw_len;
Packit Service fdd496
       rawbuf_idx < new_raw_idx;)
Packit Service fdd496
    {
Packit Service fdd496
      wchar_t wc2;
Packit Service fdd496
      Idx remain_len = pstr->raw_len - rawbuf_idx;
Packit Service fdd496
      prev_st = pstr->cur_state;
Packit Service fdd496
      mbclen = __mbrtowc (&wc2, (const char *) pstr->raw_mbs + rawbuf_idx,
Packit Service fdd496
			  remain_len, &pstr->cur_state);
Packit Service fdd496
      if (BE (mbclen == (size_t) -2 || mbclen == (size_t) -1 || mbclen == 0, 0))
Packit Service fdd496
	{
Packit Service fdd496
	  /* We treat these cases as a single byte character.  */
Packit Service fdd496
	  if (mbclen == 0 || remain_len == 0)
Packit Service fdd496
	    wc = L'\0';
Packit Service fdd496
	  else
Packit Service fdd496
	    wc = *(unsigned char *) (pstr->raw_mbs + rawbuf_idx);
Packit Service fdd496
	  mbclen = 1;
Packit Service fdd496
	  pstr->cur_state = prev_st;
Packit Service fdd496
	}
Packit Service fdd496
      else
Packit Service fdd496
	wc = wc2;
Packit Service fdd496
      /* Then proceed the next character.  */
Packit Service fdd496
      rawbuf_idx += mbclen;
Packit Service fdd496
    }
Packit Service fdd496
  *last_wc = wc;
Packit Service fdd496
  return rawbuf_idx;
Packit Service fdd496
}
Packit Service fdd496
#endif /* RE_ENABLE_I18N  */
Packit Service fdd496
Packit Service fdd496
/* Build the buffer PSTR->MBS, and apply the translation if we need.
Packit Service fdd496
   This function is used in case of REG_ICASE.  */
Packit Service fdd496
Packit Service fdd496
static void
Packit Service fdd496
internal_function
Packit Service fdd496
build_upper_buffer (re_string_t *pstr)
Packit Service fdd496
{
Packit Service fdd496
  Idx char_idx, end_idx;
Packit Service fdd496
  end_idx = (pstr->bufs_len > pstr->len) ? pstr->len : pstr->bufs_len;
Packit Service fdd496
Packit Service fdd496
  for (char_idx = pstr->valid_len; char_idx < end_idx; ++char_idx)
Packit Service fdd496
    {
Packit Service fdd496
      int ch = pstr->raw_mbs[pstr->raw_mbs_idx + char_idx];
Packit Service fdd496
      if (BE (pstr->trans != NULL, 0))
Packit Service fdd496
	ch = pstr->trans[ch];
Packit Service fdd496
      pstr->mbs[char_idx] = toupper (ch);
Packit Service fdd496
    }
Packit Service fdd496
  pstr->valid_len = char_idx;
Packit Service fdd496
  pstr->valid_raw_len = char_idx;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Apply TRANS to the buffer in PSTR.  */
Packit Service fdd496
Packit Service fdd496
static void
Packit Service fdd496
internal_function
Packit Service fdd496
re_string_translate_buffer (re_string_t *pstr)
Packit Service fdd496
{
Packit Service fdd496
  Idx buf_idx, end_idx;
Packit Service fdd496
  end_idx = (pstr->bufs_len > pstr->len) ? pstr->len : pstr->bufs_len;
Packit Service fdd496
Packit Service fdd496
  for (buf_idx = pstr->valid_len; buf_idx < end_idx; ++buf_idx)
Packit Service fdd496
    {
Packit Service fdd496
      int ch = pstr->raw_mbs[pstr->raw_mbs_idx + buf_idx];
Packit Service fdd496
      pstr->mbs[buf_idx] = pstr->trans[ch];
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  pstr->valid_len = buf_idx;
Packit Service fdd496
  pstr->valid_raw_len = buf_idx;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* This function re-construct the buffers.
Packit Service fdd496
   Concretely, convert to wide character in case of pstr->mb_cur_max > 1,
Packit Service fdd496
   convert to upper case in case of REG_ICASE, apply translation.  */
Packit Service fdd496
Packit Service fdd496
static reg_errcode_t
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_string_reconstruct (re_string_t *pstr, Idx idx, int eflags)
Packit Service fdd496
{
Packit Service fdd496
  Idx offset;
Packit Service fdd496
Packit Service fdd496
  if (BE (pstr->raw_mbs_idx <= idx, 0))
Packit Service fdd496
    offset = idx - pstr->raw_mbs_idx;
Packit Service fdd496
  else
Packit Service fdd496
    {
Packit Service fdd496
      /* Reset buffer.  */
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
      if (pstr->mb_cur_max > 1)
Packit Service fdd496
	memset (&pstr->cur_state, '\0', sizeof (mbstate_t));
Packit Service fdd496
#endif /* RE_ENABLE_I18N */
Packit Service fdd496
      pstr->len = pstr->raw_len;
Packit Service fdd496
      pstr->stop = pstr->raw_stop;
Packit Service fdd496
      pstr->valid_len = 0;
Packit Service fdd496
      pstr->raw_mbs_idx = 0;
Packit Service fdd496
      pstr->valid_raw_len = 0;
Packit Service fdd496
      pstr->offsets_needed = 0;
Packit Service fdd496
      pstr->tip_context = ((eflags & REG_NOTBOL) ? CONTEXT_BEGBUF
Packit Service fdd496
			   : CONTEXT_NEWLINE | CONTEXT_BEGBUF);
Packit Service fdd496
      if (!pstr->mbs_allocated)
Packit Service fdd496
	pstr->mbs = (unsigned char *) pstr->raw_mbs;
Packit Service fdd496
      offset = idx;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  if (BE (offset != 0, 1))
Packit Service fdd496
    {
Packit Service fdd496
      /* Should the already checked characters be kept?  */
Packit Service fdd496
      if (BE (offset < pstr->valid_raw_len, 1))
Packit Service fdd496
	{
Packit Service fdd496
	  /* Yes, move them to the front of the buffer.  */
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
	  if (BE (pstr->offsets_needed, 0))
Packit Service fdd496
	    {
Packit Service fdd496
	      Idx low = 0, high = pstr->valid_len, mid;
Packit Service fdd496
	      do
Packit Service fdd496
		{
Packit Service fdd496
		  mid = (high + low) / 2;
Packit Service fdd496
		  if (pstr->offsets[mid] > offset)
Packit Service fdd496
		    high = mid;
Packit Service fdd496
		  else if (pstr->offsets[mid] < offset)
Packit Service fdd496
		    low = mid + 1;
Packit Service fdd496
		  else
Packit Service fdd496
		    break;
Packit Service fdd496
		}
Packit Service fdd496
	      while (low < high);
Packit Service fdd496
	      if (pstr->offsets[mid] < offset)
Packit Service fdd496
		++mid;
Packit Service fdd496
	      pstr->tip_context = re_string_context_at (pstr, mid - 1,
Packit Service fdd496
							eflags);
Packit Service fdd496
	      /* This can be quite complicated, so handle specially
Packit Service fdd496
		 only the common and easy case where the character with
Packit Service fdd496
		 different length representation of lower and upper
Packit Service fdd496
		 case is present at or after offset.  */
Packit Service fdd496
	      if (pstr->valid_len > offset
Packit Service fdd496
		  && mid == offset && pstr->offsets[mid] == offset)
Packit Service fdd496
		{
Packit Service fdd496
		  memmove (pstr->wcs, pstr->wcs + offset,
Packit Service fdd496
			   (pstr->valid_len - offset) * sizeof (wint_t));
Packit Service fdd496
		  memmove (pstr->mbs, pstr->mbs + offset, pstr->valid_len - offset);
Packit Service fdd496
		  pstr->valid_len -= offset;
Packit Service fdd496
		  pstr->valid_raw_len -= offset;
Packit Service fdd496
		  for (low = 0; low < pstr->valid_len; low++)
Packit Service fdd496
		    pstr->offsets[low] = pstr->offsets[low + offset] - offset;
Packit Service fdd496
		}
Packit Service fdd496
	      else
Packit Service fdd496
		{
Packit Service fdd496
		  /* Otherwise, just find out how long the partial multibyte
Packit Service fdd496
		     character at offset is and fill it with WEOF/255.  */
Packit Service fdd496
		  pstr->len = pstr->raw_len - idx + offset;
Packit Service fdd496
		  pstr->stop = pstr->raw_stop - idx + offset;
Packit Service fdd496
		  pstr->offsets_needed = 0;
Packit Service fdd496
		  while (mid > 0 && pstr->offsets[mid - 1] == offset)
Packit Service fdd496
		    --mid;
Packit Service fdd496
		  while (mid < pstr->valid_len)
Packit Service fdd496
		    if (pstr->wcs[mid] != WEOF)
Packit Service fdd496
		      break;
Packit Service fdd496
		    else
Packit Service fdd496
		      ++mid;
Packit Service fdd496
		  if (mid == pstr->valid_len)
Packit Service fdd496
		    pstr->valid_len = 0;
Packit Service fdd496
		  else
Packit Service fdd496
		    {
Packit Service fdd496
		      pstr->valid_len = pstr->offsets[mid] - offset;
Packit Service fdd496
		      if (pstr->valid_len)
Packit Service fdd496
			{
Packit Service fdd496
			  for (low = 0; low < pstr->valid_len; ++low)
Packit Service fdd496
			    pstr->wcs[low] = WEOF;
Packit Service fdd496
			  memset (pstr->mbs, 255, pstr->valid_len);
Packit Service fdd496
			}
Packit Service fdd496
		    }
Packit Service fdd496
		  pstr->valid_raw_len = pstr->valid_len;
Packit Service fdd496
		}
Packit Service fdd496
	    }
Packit Service fdd496
	  else
Packit Service fdd496
#endif
Packit Service fdd496
	    {
Packit Service fdd496
	      pstr->tip_context = re_string_context_at (pstr, offset - 1,
Packit Service fdd496
							eflags);
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
	      if (pstr->mb_cur_max > 1)
Packit Service fdd496
		memmove (pstr->wcs, pstr->wcs + offset,
Packit Service fdd496
			 (pstr->valid_len - offset) * sizeof (wint_t));
Packit Service fdd496
#endif /* RE_ENABLE_I18N */
Packit Service fdd496
	      if (BE (pstr->mbs_allocated, 0))
Packit Service fdd496
		memmove (pstr->mbs, pstr->mbs + offset,
Packit Service fdd496
			 pstr->valid_len - offset);
Packit Service fdd496
	      pstr->valid_len -= offset;
Packit Service fdd496
	      pstr->valid_raw_len -= offset;
Packit Service fdd496
#if defined DEBUG && DEBUG
Packit Service fdd496
	      assert (pstr->valid_len > 0);
Packit Service fdd496
#endif
Packit Service fdd496
	    }
Packit Service fdd496
	}
Packit Service fdd496
      else
Packit Service fdd496
	{
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
	  /* No, skip all characters until IDX.  */
Packit Service fdd496
	  Idx prev_valid_len = pstr->valid_len;
Packit Service fdd496
Packit Service fdd496
	  if (BE (pstr->offsets_needed, 0))
Packit Service fdd496
	    {
Packit Service fdd496
	      pstr->len = pstr->raw_len - idx + offset;
Packit Service fdd496
	      pstr->stop = pstr->raw_stop - idx + offset;
Packit Service fdd496
	      pstr->offsets_needed = 0;
Packit Service fdd496
	    }
Packit Service fdd496
#endif
Packit Service fdd496
	  pstr->valid_len = 0;
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
	  if (pstr->mb_cur_max > 1)
Packit Service fdd496
	    {
Packit Service fdd496
	      Idx wcs_idx;
Packit Service fdd496
	      wint_t wc = WEOF;
Packit Service fdd496
Packit Service fdd496
	      if (pstr->is_utf8)
Packit Service fdd496
		{
Packit Service fdd496
		  const unsigned char *raw, *p, *end;
Packit Service fdd496
Packit Service fdd496
		  /* Special case UTF-8.  Multi-byte chars start with any
Packit Service fdd496
		     byte other than 0x80 - 0xbf.  */
Packit Service fdd496
		  raw = pstr->raw_mbs + pstr->raw_mbs_idx;
Packit Service fdd496
		  end = raw + (offset - pstr->mb_cur_max);
Packit Service fdd496
		  if (end < pstr->raw_mbs)
Packit Service fdd496
		    end = pstr->raw_mbs;
Packit Service fdd496
		  p = raw + offset - 1;
Packit Service fdd496
#ifdef _LIBC
Packit Service fdd496
		  /* We know the wchar_t encoding is UCS4, so for the simple
Packit Service fdd496
		     case, ASCII characters, skip the conversion step.  */
Packit Service fdd496
		  if (isascii (*p) && BE (pstr->trans == NULL, 1))
Packit Service fdd496
		    {
Packit Service fdd496
		      memset (&pstr->cur_state, '\0', sizeof (mbstate_t));
Packit Service fdd496
		      /* pstr->valid_len = 0; */
Packit Service fdd496
		      wc = (wchar_t) *p;
Packit Service fdd496
		    }
Packit Service fdd496
		  else
Packit Service fdd496
#endif
Packit Service fdd496
		    for (; p >= end; --p)
Packit Service fdd496
		      if ((*p & 0xc0) != 0x80)
Packit Service fdd496
			{
Packit Service fdd496
			  mbstate_t cur_state;
Packit Service fdd496
			  wchar_t wc2;
Packit Service fdd496
			  Idx mlen = raw + pstr->len - p;
Packit Service fdd496
			  unsigned char buf[6];
Packit Service fdd496
			  size_t mbclen;
Packit Service fdd496
Packit Service fdd496
			  const unsigned char *pp = p;
Packit Service fdd496
			  if (BE (pstr->trans != NULL, 0))
Packit Service fdd496
			    {
Packit Service fdd496
			      int i = mlen < 6 ? mlen : 6;
Packit Service fdd496
			      while (--i >= 0)
Packit Service fdd496
				buf[i] = pstr->trans[p[i]];
Packit Service fdd496
			      pp = buf;
Packit Service fdd496
			    }
Packit Service fdd496
			  /* XXX Don't use mbrtowc, we know which conversion
Packit Service fdd496
			     to use (UTF-8 -> UCS4).  */
Packit Service fdd496
			  memset (&cur_state, 0, sizeof (cur_state));
Packit Service fdd496
			  mbclen = __mbrtowc (&wc2, (const char *) pp, mlen,
Packit Service fdd496
					      &cur_state);
Packit Service fdd496
			  if (raw + offset - p <= mbclen
Packit Service fdd496
			      && mbclen < (size_t) -2)
Packit Service fdd496
			    {
Packit Service fdd496
			      memset (&pstr->cur_state, '\0',
Packit Service fdd496
				      sizeof (mbstate_t));
Packit Service fdd496
			      pstr->valid_len = mbclen - (raw + offset - p);
Packit Service fdd496
			      wc = wc2;
Packit Service fdd496
			    }
Packit Service fdd496
			  break;
Packit Service fdd496
			}
Packit Service fdd496
		}
Packit Service fdd496
Packit Service fdd496
	      if (wc == WEOF)
Packit Service fdd496
		pstr->valid_len = re_string_skip_chars (pstr, idx, &wc) - idx;
Packit Service fdd496
	      if (wc == WEOF)
Packit Service fdd496
		pstr->tip_context
Packit Service fdd496
		  = re_string_context_at (pstr, prev_valid_len - 1, eflags);
Packit Service fdd496
	      else
Packit Service fdd496
		pstr->tip_context = ((BE (pstr->word_ops_used != 0, 0)
Packit Service fdd496
				      && IS_WIDE_WORD_CHAR (wc))
Packit Service fdd496
				     ? CONTEXT_WORD
Packit Service fdd496
				     : ((IS_WIDE_NEWLINE (wc)
Packit Service fdd496
					 && pstr->newline_anchor)
Packit Service fdd496
					? CONTEXT_NEWLINE : 0));
Packit Service fdd496
	      if (BE (pstr->valid_len, 0))
Packit Service fdd496
		{
Packit Service fdd496
		  for (wcs_idx = 0; wcs_idx < pstr->valid_len; ++wcs_idx)
Packit Service fdd496
		    pstr->wcs[wcs_idx] = WEOF;
Packit Service fdd496
		  if (pstr->mbs_allocated)
Packit Service fdd496
		    memset (pstr->mbs, 255, pstr->valid_len);
Packit Service fdd496
		}
Packit Service fdd496
	      pstr->valid_raw_len = pstr->valid_len;
Packit Service fdd496
	    }
Packit Service fdd496
	  else
Packit Service fdd496
#endif /* RE_ENABLE_I18N */
Packit Service fdd496
	    {
Packit Service fdd496
	      int c = pstr->raw_mbs[pstr->raw_mbs_idx + offset - 1];
Packit Service fdd496
	      pstr->valid_raw_len = 0;
Packit Service fdd496
	      if (pstr->trans)
Packit Service fdd496
		c = pstr->trans[c];
Packit Service fdd496
	      pstr->tip_context = (bitset_contain (pstr->word_char, c)
Packit Service fdd496
				   ? CONTEXT_WORD
Packit Service fdd496
				   : ((IS_NEWLINE (c) && pstr->newline_anchor)
Packit Service fdd496
				      ? CONTEXT_NEWLINE : 0));
Packit Service fdd496
	    }
Packit Service fdd496
	}
Packit Service fdd496
      if (!BE (pstr->mbs_allocated, 0))
Packit Service fdd496
	pstr->mbs += offset;
Packit Service fdd496
    }
Packit Service fdd496
  pstr->raw_mbs_idx = idx;
Packit Service fdd496
  pstr->len -= offset;
Packit Service fdd496
  pstr->stop -= offset;
Packit Service fdd496
Packit Service fdd496
  /* Then build the buffers.  */
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
  if (pstr->mb_cur_max > 1)
Packit Service fdd496
    {
Packit Service fdd496
      if (pstr->icase)
Packit Service fdd496
	{
Packit Service fdd496
	  reg_errcode_t ret = build_wcs_upper_buffer (pstr);
Packit Service fdd496
	  if (BE (ret != REG_NOERROR, 0))
Packit Service fdd496
	    return ret;
Packit Service fdd496
	}
Packit Service fdd496
      else
Packit Service fdd496
	build_wcs_buffer (pstr);
Packit Service fdd496
    }
Packit Service fdd496
  else
Packit Service fdd496
#endif /* RE_ENABLE_I18N */
Packit Service fdd496
    if (BE (pstr->mbs_allocated, 0))
Packit Service fdd496
      {
Packit Service fdd496
	if (pstr->icase)
Packit Service fdd496
	  build_upper_buffer (pstr);
Packit Service fdd496
	else if (pstr->trans != NULL)
Packit Service fdd496
	  re_string_translate_buffer (pstr);
Packit Service fdd496
      }
Packit Service fdd496
    else
Packit Service fdd496
      pstr->valid_len = pstr->len;
Packit Service fdd496
Packit Service fdd496
  pstr->cur_idx = 0;
Packit Service fdd496
  return REG_NOERROR;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
static unsigned char
Packit Service fdd496
internal_function __attribute__ ((pure))
Packit Service fdd496
re_string_peek_byte_case (const re_string_t *pstr, Idx idx)
Packit Service fdd496
{
Packit Service fdd496
  int ch;
Packit Service fdd496
  Idx off;
Packit Service fdd496
Packit Service fdd496
  /* Handle the common (easiest) cases first.  */
Packit Service fdd496
  if (BE (!pstr->mbs_allocated, 1))
Packit Service fdd496
    return re_string_peek_byte (pstr, idx);
Packit Service fdd496
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
  if (pstr->mb_cur_max > 1
Packit Service fdd496
      && ! re_string_is_single_byte_char (pstr, pstr->cur_idx + idx))
Packit Service fdd496
    return re_string_peek_byte (pstr, idx);
Packit Service fdd496
#endif
Packit Service fdd496
Packit Service fdd496
  off = pstr->cur_idx + idx;
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
  if (pstr->offsets_needed)
Packit Service fdd496
    off = pstr->offsets[off];
Packit Service fdd496
#endif
Packit Service fdd496
Packit Service fdd496
  ch = pstr->raw_mbs[pstr->raw_mbs_idx + off];
Packit Service fdd496
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
  /* Ensure that e.g. for tr_TR.UTF-8 BACKSLASH DOTLESS SMALL LETTER I
Packit Service fdd496
     this function returns CAPITAL LETTER I instead of first byte of
Packit Service fdd496
     DOTLESS SMALL LETTER I.  The latter would confuse the parser,
Packit Service fdd496
     since peek_byte_case doesn't advance cur_idx in any way.  */
Packit Service fdd496
  if (pstr->offsets_needed && !isascii (ch))
Packit Service fdd496
    return re_string_peek_byte (pstr, idx);
Packit Service fdd496
#endif
Packit Service fdd496
Packit Service fdd496
  return ch;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
static unsigned char
Packit Service fdd496
internal_function
Packit Service fdd496
re_string_fetch_byte_case (re_string_t *pstr)
Packit Service fdd496
{
Packit Service fdd496
  if (BE (!pstr->mbs_allocated, 1))
Packit Service fdd496
    return re_string_fetch_byte (pstr);
Packit Service fdd496
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
  if (pstr->offsets_needed)
Packit Service fdd496
    {
Packit Service fdd496
      Idx off;
Packit Service fdd496
      int ch;
Packit Service fdd496
Packit Service fdd496
      /* For tr_TR.UTF-8 [[:islower:]] there is
Packit Service fdd496
	 [[: CAPITAL LETTER I WITH DOT lower:]] in mbs.  Skip
Packit Service fdd496
	 in that case the whole multi-byte character and return
Packit Service fdd496
	 the original letter.  On the other side, with
Packit Service fdd496
	 [[: DOTLESS SMALL LETTER I return [[:I, as doing
Packit Service fdd496
	 anything else would complicate things too much.  */
Packit Service fdd496
Packit Service fdd496
      if (!re_string_first_byte (pstr, pstr->cur_idx))
Packit Service fdd496
	return re_string_fetch_byte (pstr);
Packit Service fdd496
Packit Service fdd496
      off = pstr->offsets[pstr->cur_idx];
Packit Service fdd496
      ch = pstr->raw_mbs[pstr->raw_mbs_idx + off];
Packit Service fdd496
Packit Service fdd496
      if (! isascii (ch))
Packit Service fdd496
	return re_string_fetch_byte (pstr);
Packit Service fdd496
Packit Service fdd496
      re_string_skip_bytes (pstr,
Packit Service fdd496
			    re_string_char_size_at (pstr, pstr->cur_idx));
Packit Service fdd496
      return ch;
Packit Service fdd496
    }
Packit Service fdd496
#endif
Packit Service fdd496
Packit Service fdd496
  return pstr->raw_mbs[pstr->raw_mbs_idx + pstr->cur_idx++];
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
static void
Packit Service fdd496
internal_function
Packit Service fdd496
re_string_destruct (re_string_t *pstr)
Packit Service fdd496
{
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
  re_free (pstr->wcs);
Packit Service fdd496
  re_free (pstr->offsets);
Packit Service fdd496
#endif /* RE_ENABLE_I18N  */
Packit Service fdd496
  if (pstr->mbs_allocated)
Packit Service fdd496
    re_free (pstr->mbs);
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Return the context at IDX in INPUT.  */
Packit Service fdd496
Packit Service fdd496
static unsigned int
Packit Service fdd496
internal_function
Packit Service fdd496
re_string_context_at (const re_string_t *input, Idx idx, int eflags)
Packit Service fdd496
{
Packit Service fdd496
  int c;
Packit Service fdd496
  if (BE (idx < 0, 0))
Packit Service fdd496
    /* In this case, we use the value stored in input->tip_context,
Packit Service fdd496
       since we can't know the character in input->mbs[-1] here.  */
Packit Service fdd496
    return input->tip_context;
Packit Service fdd496
  if (BE (idx == input->len, 0))
Packit Service fdd496
    return ((eflags & REG_NOTEOL) ? CONTEXT_ENDBUF
Packit Service fdd496
	    : CONTEXT_NEWLINE | CONTEXT_ENDBUF);
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
  if (input->mb_cur_max > 1)
Packit Service fdd496
    {
Packit Service fdd496
      wint_t wc;
Packit Service fdd496
      Idx wc_idx = idx;
Packit Service fdd496
      while(input->wcs[wc_idx] == WEOF)
Packit Service fdd496
	{
Packit Service fdd496
#if defined DEBUG && DEBUG
Packit Service fdd496
	  /* It must not happen.  */
Packit Service fdd496
	  assert (wc_idx >= 0);
Packit Service fdd496
#endif
Packit Service fdd496
	  --wc_idx;
Packit Service fdd496
	  if (wc_idx < 0)
Packit Service fdd496
	    return input->tip_context;
Packit Service fdd496
	}
Packit Service fdd496
      wc = input->wcs[wc_idx];
Packit Service fdd496
      if (BE (input->word_ops_used != 0, 0) && IS_WIDE_WORD_CHAR (wc))
Packit Service fdd496
	return CONTEXT_WORD;
Packit Service fdd496
      return (IS_WIDE_NEWLINE (wc) && input->newline_anchor
Packit Service fdd496
	      ? CONTEXT_NEWLINE : 0);
Packit Service fdd496
    }
Packit Service fdd496
  else
Packit Service fdd496
#endif
Packit Service fdd496
    {
Packit Service fdd496
      c = re_string_byte_at (input, idx);
Packit Service fdd496
      if (bitset_contain (input->word_char, c))
Packit Service fdd496
	return CONTEXT_WORD;
Packit Service fdd496
      return IS_NEWLINE (c) && input->newline_anchor ? CONTEXT_NEWLINE : 0;
Packit Service fdd496
    }
Packit Service fdd496
}
Packit Service fdd496

Packit Service fdd496
/* Functions for set operation.  */
Packit Service fdd496
Packit Service fdd496
static reg_errcode_t
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_node_set_alloc (re_node_set *set, Idx size)
Packit Service fdd496
{
Packit Service fdd496
  set->alloc = size;
Packit Service fdd496
  set->nelem = 0;
Packit Service fdd496
  set->elems = re_malloc (Idx, size);
Packit Service fdd496
  if (BE (set->elems == NULL, 0) && (MALLOC_0_IS_NONNULL || size != 0))
Packit Service fdd496
    return REG_ESPACE;
Packit Service fdd496
  return REG_NOERROR;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
static reg_errcode_t
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_node_set_init_1 (re_node_set *set, Idx elem)
Packit Service fdd496
{
Packit Service fdd496
  set->alloc = 1;
Packit Service fdd496
  set->nelem = 1;
Packit Service fdd496
  set->elems = re_malloc (Idx, 1);
Packit Service fdd496
  if (BE (set->elems == NULL, 0))
Packit Service fdd496
    {
Packit Service fdd496
      set->alloc = set->nelem = 0;
Packit Service fdd496
      return REG_ESPACE;
Packit Service fdd496
    }
Packit Service fdd496
  set->elems[0] = elem;
Packit Service fdd496
  return REG_NOERROR;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
static reg_errcode_t
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_node_set_init_2 (re_node_set *set, Idx elem1, Idx elem2)
Packit Service fdd496
{
Packit Service fdd496
  set->alloc = 2;
Packit Service fdd496
  set->elems = re_malloc (Idx, 2);
Packit Service fdd496
  if (BE (set->elems == NULL, 0))
Packit Service fdd496
    return REG_ESPACE;
Packit Service fdd496
  if (elem1 == elem2)
Packit Service fdd496
    {
Packit Service fdd496
      set->nelem = 1;
Packit Service fdd496
      set->elems[0] = elem1;
Packit Service fdd496
    }
Packit Service fdd496
  else
Packit Service fdd496
    {
Packit Service fdd496
      set->nelem = 2;
Packit Service fdd496
      if (elem1 < elem2)
Packit Service fdd496
	{
Packit Service fdd496
	  set->elems[0] = elem1;
Packit Service fdd496
	  set->elems[1] = elem2;
Packit Service fdd496
	}
Packit Service fdd496
      else
Packit Service fdd496
	{
Packit Service fdd496
	  set->elems[0] = elem2;
Packit Service fdd496
	  set->elems[1] = elem1;
Packit Service fdd496
	}
Packit Service fdd496
    }
Packit Service fdd496
  return REG_NOERROR;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
static reg_errcode_t
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_node_set_init_copy (re_node_set *dest, const re_node_set *src)
Packit Service fdd496
{
Packit Service fdd496
  dest->nelem = src->nelem;
Packit Service fdd496
  if (src->nelem > 0)
Packit Service fdd496
    {
Packit Service fdd496
      dest->alloc = dest->nelem;
Packit Service fdd496
      dest->elems = re_malloc (Idx, dest->alloc);
Packit Service fdd496
      if (BE (dest->elems == NULL, 0))
Packit Service fdd496
	{
Packit Service fdd496
	  dest->alloc = dest->nelem = 0;
Packit Service fdd496
	  return REG_ESPACE;
Packit Service fdd496
	}
Packit Service fdd496
      memcpy (dest->elems, src->elems, src->nelem * sizeof (Idx));
Packit Service fdd496
    }
Packit Service fdd496
  else
Packit Service fdd496
    re_node_set_init_empty (dest);
Packit Service fdd496
  return REG_NOERROR;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Calculate the intersection of the sets SRC1 and SRC2. And merge it to
Packit Service fdd496
   DEST. Return value indicate the error code or REG_NOERROR if succeeded.
Packit Service fdd496
   Note: We assume dest->elems is NULL, when dest->alloc is 0.  */
Packit Service fdd496
Packit Service fdd496
static reg_errcode_t
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_node_set_add_intersect (re_node_set *dest, const re_node_set *src1,
Packit Service fdd496
			   const re_node_set *src2)
Packit Service fdd496
{
Packit Service fdd496
  Idx i1, i2, is, id, delta, sbase;
Packit Service fdd496
  if (src1->nelem == 0 || src2->nelem == 0)
Packit Service fdd496
    return REG_NOERROR;
Packit Service fdd496
Packit Service fdd496
  /* We need dest->nelem + 2 * elems_in_intersection; this is a
Packit Service fdd496
     conservative estimate.  */
Packit Service fdd496
  if (src1->nelem + src2->nelem + dest->nelem > dest->alloc)
Packit Service fdd496
    {
Packit Service fdd496
      Idx new_alloc = src1->nelem + src2->nelem + dest->alloc;
Packit Service fdd496
      Idx *new_elems = re_realloc (dest->elems, Idx, new_alloc);
Packit Service fdd496
      if (BE (new_elems == NULL, 0))
Packit Service fdd496
	return REG_ESPACE;
Packit Service fdd496
      dest->elems = new_elems;
Packit Service fdd496
      dest->alloc = new_alloc;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  /* Find the items in the intersection of SRC1 and SRC2, and copy
Packit Service fdd496
     into the top of DEST those that are not already in DEST itself.  */
Packit Service fdd496
  sbase = dest->nelem + src1->nelem + src2->nelem;
Packit Service fdd496
  i1 = src1->nelem - 1;
Packit Service fdd496
  i2 = src2->nelem - 1;
Packit Service fdd496
  id = dest->nelem - 1;
Packit Service fdd496
  for (;;)
Packit Service fdd496
    {
Packit Service fdd496
      if (src1->elems[i1] == src2->elems[i2])
Packit Service fdd496
	{
Packit Service fdd496
	  /* Try to find the item in DEST.  Maybe we could binary search?  */
Packit Service fdd496
	  while (id >= 0 && dest->elems[id] > src1->elems[i1])
Packit Service fdd496
	    --id;
Packit Service fdd496
Packit Service fdd496
	  if (id < 0 || dest->elems[id] != src1->elems[i1])
Packit Service fdd496
            dest->elems[--sbase] = src1->elems[i1];
Packit Service fdd496
Packit Service fdd496
	  if (--i1 < 0 || --i2 < 0)
Packit Service fdd496
	    break;
Packit Service fdd496
	}
Packit Service fdd496
Packit Service fdd496
      /* Lower the highest of the two items.  */
Packit Service fdd496
      else if (src1->elems[i1] < src2->elems[i2])
Packit Service fdd496
	{
Packit Service fdd496
	  if (--i2 < 0)
Packit Service fdd496
	    break;
Packit Service fdd496
	}
Packit Service fdd496
      else
Packit Service fdd496
	{
Packit Service fdd496
	  if (--i1 < 0)
Packit Service fdd496
	    break;
Packit Service fdd496
	}
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  id = dest->nelem - 1;
Packit Service fdd496
  is = dest->nelem + src1->nelem + src2->nelem - 1;
Packit Service fdd496
  delta = is - sbase + 1;
Packit Service fdd496
Packit Service fdd496
  /* Now copy.  When DELTA becomes zero, the remaining
Packit Service fdd496
     DEST elements are already in place; this is more or
Packit Service fdd496
     less the same loop that is in re_node_set_merge.  */
Packit Service fdd496
  dest->nelem += delta;
Packit Service fdd496
  if (delta > 0 && id >= 0)
Packit Service fdd496
    for (;;)
Packit Service fdd496
      {
Packit Service fdd496
	if (dest->elems[is] > dest->elems[id])
Packit Service fdd496
	  {
Packit Service fdd496
	    /* Copy from the top.  */
Packit Service fdd496
	    dest->elems[id + delta--] = dest->elems[is--];
Packit Service fdd496
	    if (delta == 0)
Packit Service fdd496
	      break;
Packit Service fdd496
	  }
Packit Service fdd496
	else
Packit Service fdd496
	  {
Packit Service fdd496
	    /* Slide from the bottom.  */
Packit Service fdd496
	    dest->elems[id + delta] = dest->elems[id];
Packit Service fdd496
	    if (--id < 0)
Packit Service fdd496
	      break;
Packit Service fdd496
	  }
Packit Service fdd496
      }
Packit Service fdd496
Packit Service fdd496
  /* Copy remaining SRC elements.  */
Packit Service fdd496
  memcpy (dest->elems, dest->elems + sbase, delta * sizeof (Idx));
Packit Service fdd496
Packit Service fdd496
  return REG_NOERROR;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Calculate the union set of the sets SRC1 and SRC2. And store it to
Packit Service fdd496
   DEST. Return value indicate the error code or REG_NOERROR if succeeded.  */
Packit Service fdd496
Packit Service fdd496
static reg_errcode_t
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_node_set_init_union (re_node_set *dest, const re_node_set *src1,
Packit Service fdd496
			const re_node_set *src2)
Packit Service fdd496
{
Packit Service fdd496
  Idx i1, i2, id;
Packit Service fdd496
  if (src1 != NULL && src1->nelem > 0 && src2 != NULL && src2->nelem > 0)
Packit Service fdd496
    {
Packit Service fdd496
      dest->alloc = src1->nelem + src2->nelem;
Packit Service fdd496
      dest->elems = re_malloc (Idx, dest->alloc);
Packit Service fdd496
      if (BE (dest->elems == NULL, 0))
Packit Service fdd496
	return REG_ESPACE;
Packit Service fdd496
    }
Packit Service fdd496
  else
Packit Service fdd496
    {
Packit Service fdd496
      if (src1 != NULL && src1->nelem > 0)
Packit Service fdd496
	return re_node_set_init_copy (dest, src1);
Packit Service fdd496
      else if (src2 != NULL && src2->nelem > 0)
Packit Service fdd496
	return re_node_set_init_copy (dest, src2);
Packit Service fdd496
      else
Packit Service fdd496
	re_node_set_init_empty (dest);
Packit Service fdd496
      return REG_NOERROR;
Packit Service fdd496
    }
Packit Service fdd496
  for (i1 = i2 = id = 0 ; i1 < src1->nelem && i2 < src2->nelem ;)
Packit Service fdd496
    {
Packit Service fdd496
      if (src1->elems[i1] > src2->elems[i2])
Packit Service fdd496
	{
Packit Service fdd496
	  dest->elems[id++] = src2->elems[i2++];
Packit Service fdd496
	  continue;
Packit Service fdd496
	}
Packit Service fdd496
      if (src1->elems[i1] == src2->elems[i2])
Packit Service fdd496
	++i2;
Packit Service fdd496
      dest->elems[id++] = src1->elems[i1++];
Packit Service fdd496
    }
Packit Service fdd496
  if (i1 < src1->nelem)
Packit Service fdd496
    {
Packit Service fdd496
      memcpy (dest->elems + id, src1->elems + i1,
Packit Service fdd496
	     (src1->nelem - i1) * sizeof (Idx));
Packit Service fdd496
      id += src1->nelem - i1;
Packit Service fdd496
    }
Packit Service fdd496
  else if (i2 < src2->nelem)
Packit Service fdd496
    {
Packit Service fdd496
      memcpy (dest->elems + id, src2->elems + i2,
Packit Service fdd496
	     (src2->nelem - i2) * sizeof (Idx));
Packit Service fdd496
      id += src2->nelem - i2;
Packit Service fdd496
    }
Packit Service fdd496
  dest->nelem = id;
Packit Service fdd496
  return REG_NOERROR;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Calculate the union set of the sets DEST and SRC. And store it to
Packit Service fdd496
   DEST. Return value indicate the error code or REG_NOERROR if succeeded.  */
Packit Service fdd496
Packit Service fdd496
static reg_errcode_t
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_node_set_merge (re_node_set *dest, const re_node_set *src)
Packit Service fdd496
{
Packit Service fdd496
  Idx is, id, sbase, delta;
Packit Service fdd496
  if (src == NULL || src->nelem == 0)
Packit Service fdd496
    return REG_NOERROR;
Packit Service fdd496
  if (dest->alloc < 2 * src->nelem + dest->nelem)
Packit Service fdd496
    {
Packit Service fdd496
      Idx new_alloc = 2 * (src->nelem + dest->alloc);
Packit Service fdd496
      Idx *new_buffer = re_realloc (dest->elems, Idx, new_alloc);
Packit Service fdd496
      if (BE (new_buffer == NULL, 0))
Packit Service fdd496
	return REG_ESPACE;
Packit Service fdd496
      dest->elems = new_buffer;
Packit Service fdd496
      dest->alloc = new_alloc;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  if (BE (dest->nelem == 0, 0))
Packit Service fdd496
    {
Packit Service fdd496
      dest->nelem = src->nelem;
Packit Service fdd496
      memcpy (dest->elems, src->elems, src->nelem * sizeof (Idx));
Packit Service fdd496
      return REG_NOERROR;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  /* Copy into the top of DEST the items of SRC that are not
Packit Service fdd496
     found in DEST.  Maybe we could binary search in DEST?  */
Packit Service fdd496
  for (sbase = dest->nelem + 2 * src->nelem,
Packit Service fdd496
       is = src->nelem - 1, id = dest->nelem - 1; is >= 0 && id >= 0; )
Packit Service fdd496
    {
Packit Service fdd496
      if (dest->elems[id] == src->elems[is])
Packit Service fdd496
	is--, id--;
Packit Service fdd496
      else if (dest->elems[id] < src->elems[is])
Packit Service fdd496
	dest->elems[--sbase] = src->elems[is--];
Packit Service fdd496
      else /* if (dest->elems[id] > src->elems[is]) */
Packit Service fdd496
	--id;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  if (is >= 0)
Packit Service fdd496
    {
Packit Service fdd496
      /* If DEST is exhausted, the remaining items of SRC must be unique.  */
Packit Service fdd496
      sbase -= is + 1;
Packit Service fdd496
      memcpy (dest->elems + sbase, src->elems, (is + 1) * sizeof (Idx));
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  id = dest->nelem - 1;
Packit Service fdd496
  is = dest->nelem + 2 * src->nelem - 1;
Packit Service fdd496
  delta = is - sbase + 1;
Packit Service fdd496
  if (delta == 0)
Packit Service fdd496
    return REG_NOERROR;
Packit Service fdd496
Packit Service fdd496
  /* Now copy.  When DELTA becomes zero, the remaining
Packit Service fdd496
     DEST elements are already in place.  */
Packit Service fdd496
  dest->nelem += delta;
Packit Service fdd496
  for (;;)
Packit Service fdd496
    {
Packit Service fdd496
      if (dest->elems[is] > dest->elems[id])
Packit Service fdd496
	{
Packit Service fdd496
	  /* Copy from the top.  */
Packit Service fdd496
	  dest->elems[id + delta--] = dest->elems[is--];
Packit Service fdd496
	  if (delta == 0)
Packit Service fdd496
	    break;
Packit Service fdd496
	}
Packit Service fdd496
      else
Packit Service fdd496
	{
Packit Service fdd496
	  /* Slide from the bottom.  */
Packit Service fdd496
	  dest->elems[id + delta] = dest->elems[id];
Packit Service fdd496
	  if (--id < 0)
Packit Service fdd496
	    {
Packit Service fdd496
	      /* Copy remaining SRC elements.  */
Packit Service fdd496
	      memcpy (dest->elems, dest->elems + sbase,
Packit Service fdd496
		      delta * sizeof (Idx));
Packit Service fdd496
	      break;
Packit Service fdd496
	    }
Packit Service fdd496
	}
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  return REG_NOERROR;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Insert the new element ELEM to the re_node_set* SET.
Packit Service fdd496
   SET should not already have ELEM.
Packit Service fdd496
   Return true if successful.  */
Packit Service fdd496
Packit Service fdd496
static bool
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_node_set_insert (re_node_set *set, Idx elem)
Packit Service fdd496
{
Packit Service fdd496
  Idx idx;
Packit Service fdd496
  /* In case the set is empty.  */
Packit Service fdd496
  if (set->alloc == 0)
Packit Service fdd496
    return BE (re_node_set_init_1 (set, elem) == REG_NOERROR, 1);
Packit Service fdd496
Packit Service fdd496
  if (BE (set->nelem, 0) == 0)
Packit Service fdd496
    {
Packit Service fdd496
      /* We already guaranteed above that set->alloc != 0.  */
Packit Service fdd496
      set->elems[0] = elem;
Packit Service fdd496
      ++set->nelem;
Packit Service fdd496
      return true;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  /* Realloc if we need.  */
Packit Service fdd496
  if (set->alloc == set->nelem)
Packit Service fdd496
    {
Packit Service fdd496
      Idx *new_elems;
Packit Service fdd496
      set->alloc = set->alloc * 2;
Packit Service fdd496
      new_elems = re_realloc (set->elems, Idx, set->alloc);
Packit Service fdd496
      if (BE (new_elems == NULL, 0))
Packit Service fdd496
	return false;
Packit Service fdd496
      set->elems = new_elems;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  /* Move the elements which follows the new element.  Test the
Packit Service fdd496
     first element separately to skip a check in the inner loop.  */
Packit Service fdd496
  if (elem < set->elems[0])
Packit Service fdd496
    {
Packit Service fdd496
      idx = 0;
Packit Service fdd496
      for (idx = set->nelem; idx > 0; idx--)
Packit Service fdd496
	set->elems[idx] = set->elems[idx - 1];
Packit Service fdd496
    }
Packit Service fdd496
  else
Packit Service fdd496
    {
Packit Service fdd496
      for (idx = set->nelem; set->elems[idx - 1] > elem; idx--)
Packit Service fdd496
	set->elems[idx] = set->elems[idx - 1];
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  /* Insert the new element.  */
Packit Service fdd496
  set->elems[idx] = elem;
Packit Service fdd496
  ++set->nelem;
Packit Service fdd496
  return true;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Insert the new element ELEM to the re_node_set* SET.
Packit Service fdd496
   SET should not already have any element greater than or equal to ELEM.
Packit Service fdd496
   Return true if successful.  */
Packit Service fdd496
Packit Service fdd496
static bool
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_node_set_insert_last (re_node_set *set, Idx elem)
Packit Service fdd496
{
Packit Service fdd496
  /* Realloc if we need.  */
Packit Service fdd496
  if (set->alloc == set->nelem)
Packit Service fdd496
    {
Packit Service fdd496
      Idx *new_elems;
Packit Service fdd496
      set->alloc = (set->alloc + 1) * 2;
Packit Service fdd496
      new_elems = re_realloc (set->elems, Idx, set->alloc);
Packit Service fdd496
      if (BE (new_elems == NULL, 0))
Packit Service fdd496
	return false;
Packit Service fdd496
      set->elems = new_elems;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  /* Insert the new element.  */
Packit Service fdd496
  set->elems[set->nelem++] = elem;
Packit Service fdd496
  return true;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Compare two node sets SET1 and SET2.
Packit Service fdd496
   Return true if SET1 and SET2 are equivalent.  */
Packit Service fdd496
Packit Service fdd496
static bool
Packit Service fdd496
internal_function __attribute__ ((pure))
Packit Service fdd496
re_node_set_compare (const re_node_set *set1, const re_node_set *set2)
Packit Service fdd496
{
Packit Service fdd496
  Idx i;
Packit Service fdd496
  if (set1 == NULL || set2 == NULL || set1->nelem != set2->nelem)
Packit Service fdd496
    return false;
Packit Service fdd496
  for (i = set1->nelem ; --i >= 0 ; )
Packit Service fdd496
    if (set1->elems[i] != set2->elems[i])
Packit Service fdd496
      return false;
Packit Service fdd496
  return true;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Return (idx + 1) if SET contains the element ELEM, return 0 otherwise.  */
Packit Service fdd496
Packit Service fdd496
static Idx
Packit Service fdd496
internal_function __attribute__ ((pure))
Packit Service fdd496
re_node_set_contains (const re_node_set *set, Idx elem)
Packit Service fdd496
{
Packit Service fdd496
  __re_size_t idx, right, mid;
Packit Service fdd496
  if (set->nelem <= 0)
Packit Service fdd496
    return 0;
Packit Service fdd496
Packit Service fdd496
  /* Binary search the element.  */
Packit Service fdd496
  idx = 0;
Packit Service fdd496
  right = set->nelem - 1;
Packit Service fdd496
  while (idx < right)
Packit Service fdd496
    {
Packit Service fdd496
      mid = (idx + right) / 2;
Packit Service fdd496
      if (set->elems[mid] < elem)
Packit Service fdd496
	idx = mid + 1;
Packit Service fdd496
      else
Packit Service fdd496
	right = mid;
Packit Service fdd496
    }
Packit Service fdd496
  return set->elems[idx] == elem ? idx + 1 : 0;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
static void
Packit Service fdd496
internal_function
Packit Service fdd496
re_node_set_remove_at (re_node_set *set, Idx idx)
Packit Service fdd496
{
Packit Service fdd496
  if (idx < 0 || idx >= set->nelem)
Packit Service fdd496
    return;
Packit Service fdd496
  --set->nelem;
Packit Service fdd496
  for (; idx < set->nelem; idx++)
Packit Service fdd496
    set->elems[idx] = set->elems[idx + 1];
Packit Service fdd496
}
Packit Service fdd496

Packit Service fdd496
Packit Service fdd496
/* Add the token TOKEN to dfa->nodes, and return the index of the token.
Packit Service fdd496
   Or return -1 if an error occurred.  */
Packit Service fdd496
Packit Service fdd496
static Idx
Packit Service fdd496
internal_function
Packit Service fdd496
re_dfa_add_node (re_dfa_t *dfa, re_token_t token)
Packit Service fdd496
{
Packit Service fdd496
  if (BE (dfa->nodes_len >= dfa->nodes_alloc, 0))
Packit Service fdd496
    {
Packit Service fdd496
      size_t new_nodes_alloc = dfa->nodes_alloc * 2;
Packit Service fdd496
      Idx *new_nexts, *new_indices;
Packit Service fdd496
      re_node_set *new_edests, *new_eclosures;
Packit Service fdd496
      re_token_t *new_nodes;
Packit Service fdd496
Packit Service fdd496
      /* Avoid overflows in realloc.  */
Packit Service fdd496
      const size_t max_object_size = MAX (sizeof (re_token_t),
Packit Service fdd496
					  MAX (sizeof (re_node_set),
Packit Service fdd496
					       sizeof (Idx)));
Packit Service fdd496
      if (BE (MIN (IDX_MAX, SIZE_MAX / max_object_size) < new_nodes_alloc, 0))
Packit Service fdd496
	return -1;
Packit Service fdd496
Packit Service fdd496
      new_nodes = re_realloc (dfa->nodes, re_token_t, new_nodes_alloc);
Packit Service fdd496
      if (BE (new_nodes == NULL, 0))
Packit Service fdd496
	return -1;
Packit Service fdd496
      dfa->nodes = new_nodes;
Packit Service fdd496
      new_nexts = re_realloc (dfa->nexts, Idx, new_nodes_alloc);
Packit Service fdd496
      new_indices = re_realloc (dfa->org_indices, Idx, new_nodes_alloc);
Packit Service fdd496
      new_edests = re_realloc (dfa->edests, re_node_set, new_nodes_alloc);
Packit Service fdd496
      new_eclosures = re_realloc (dfa->eclosures, re_node_set, new_nodes_alloc);
Packit Service fdd496
      if (BE (new_nexts == NULL || new_indices == NULL
Packit Service fdd496
	      || new_edests == NULL || new_eclosures == NULL, 0))
Packit Service fdd496
	{
Packit Service fdd496
	   re_free (new_nexts);
Packit Service fdd496
	   re_free (new_indices);
Packit Service fdd496
	   re_free (new_edests);
Packit Service fdd496
	   re_free (new_eclosures);
Packit Service fdd496
	   return -1;
Packit Service fdd496
	}
Packit Service fdd496
      dfa->nexts = new_nexts;
Packit Service fdd496
      dfa->org_indices = new_indices;
Packit Service fdd496
      dfa->edests = new_edests;
Packit Service fdd496
      dfa->eclosures = new_eclosures;
Packit Service fdd496
      dfa->nodes_alloc = new_nodes_alloc;
Packit Service fdd496
    }
Packit Service fdd496
  dfa->nodes[dfa->nodes_len] = token;
Packit Service fdd496
  dfa->nodes[dfa->nodes_len].constraint = 0;
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
  dfa->nodes[dfa->nodes_len].accept_mb =
Packit Service fdd496
    ((token.type == OP_PERIOD && dfa->mb_cur_max > 1)
Packit Service fdd496
     || token.type == COMPLEX_BRACKET);
Packit Service fdd496
#endif
Packit Service fdd496
  dfa->nexts[dfa->nodes_len] = -1;
Packit Service fdd496
  re_node_set_init_empty (dfa->edests + dfa->nodes_len);
Packit Service fdd496
  re_node_set_init_empty (dfa->eclosures + dfa->nodes_len);
Packit Service fdd496
  return dfa->nodes_len++;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
static re_hashval_t
Packit Service fdd496
internal_function
Packit Service fdd496
calc_state_hash (const re_node_set *nodes, unsigned int context)
Packit Service fdd496
{
Packit Service fdd496
  re_hashval_t hash = nodes->nelem + context;
Packit Service fdd496
  Idx i;
Packit Service fdd496
  for (i = 0 ; i < nodes->nelem ; i++)
Packit Service fdd496
    hash += nodes->elems[i];
Packit Service fdd496
  return hash;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Search for the state whose node_set is equivalent to NODES.
Packit Service fdd496
   Return the pointer to the state, if we found it in the DFA.
Packit Service fdd496
   Otherwise create the new one and return it.  In case of an error
Packit Service fdd496
   return NULL and set the error code in ERR.
Packit Service fdd496
   Note: - We assume NULL as the invalid state, then it is possible that
Packit Service fdd496
	   return value is NULL and ERR is REG_NOERROR.
Packit Service fdd496
	 - We never return non-NULL value in case of any errors, it is for
Packit Service fdd496
	   optimization.  */
Packit Service fdd496
Packit Service fdd496
static re_dfastate_t *
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_acquire_state (reg_errcode_t *err, const re_dfa_t *dfa,
Packit Service fdd496
		  const re_node_set *nodes)
Packit Service fdd496
{
Packit Service fdd496
  re_hashval_t hash;
Packit Service fdd496
  re_dfastate_t *new_state;
Packit Service fdd496
  struct re_state_table_entry *spot;
Packit Service fdd496
  Idx i;
Packit Service fdd496
#if defined GCC_LINT || defined lint
Packit Service fdd496
  /* Suppress bogus uninitialized-variable warnings.  */
Packit Service fdd496
  *err = REG_NOERROR;
Packit Service fdd496
#endif
Packit Service fdd496
  if (BE (nodes->nelem == 0, 0))
Packit Service fdd496
    {
Packit Service fdd496
      *err = REG_NOERROR;
Packit Service fdd496
      return NULL;
Packit Service fdd496
    }
Packit Service fdd496
  hash = calc_state_hash (nodes, 0);
Packit Service fdd496
  spot = dfa->state_table + (hash & dfa->state_hash_mask);
Packit Service fdd496
Packit Service fdd496
  for (i = 0 ; i < spot->num ; i++)
Packit Service fdd496
    {
Packit Service fdd496
      re_dfastate_t *state = spot->array[i];
Packit Service fdd496
      if (hash != state->hash)
Packit Service fdd496
	continue;
Packit Service fdd496
      if (re_node_set_compare (&state->nodes, nodes))
Packit Service fdd496
	return state;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  /* There are no appropriate state in the dfa, create the new one.  */
Packit Service fdd496
  new_state = create_ci_newstate (dfa, nodes, hash);
Packit Service fdd496
  if (BE (new_state == NULL, 0))
Packit Service fdd496
    *err = REG_ESPACE;
Packit Service fdd496
Packit Service fdd496
  return new_state;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Search for the state whose node_set is equivalent to NODES and
Packit Service fdd496
   whose context is equivalent to CONTEXT.
Packit Service fdd496
   Return the pointer to the state, if we found it in the DFA.
Packit Service fdd496
   Otherwise create the new one and return it.  In case of an error
Packit Service fdd496
   return NULL and set the error code in ERR.
Packit Service fdd496
   Note: - We assume NULL as the invalid state, then it is possible that
Packit Service fdd496
	   return value is NULL and ERR is REG_NOERROR.
Packit Service fdd496
	 - We never return non-NULL value in case of any errors, it is for
Packit Service fdd496
	   optimization.  */
Packit Service fdd496
Packit Service fdd496
static re_dfastate_t *
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
re_acquire_state_context (reg_errcode_t *err, const re_dfa_t *dfa,
Packit Service fdd496
			  const re_node_set *nodes, unsigned int context)
Packit Service fdd496
{
Packit Service fdd496
  re_hashval_t hash;
Packit Service fdd496
  re_dfastate_t *new_state;
Packit Service fdd496
  struct re_state_table_entry *spot;
Packit Service fdd496
  Idx i;
Packit Service fdd496
#if defined GCC_LINT || defined lint
Packit Service fdd496
  /* Suppress bogus uninitialized-variable warnings.  */
Packit Service fdd496
  *err = REG_NOERROR;
Packit Service fdd496
#endif
Packit Service fdd496
  if (nodes->nelem == 0)
Packit Service fdd496
    {
Packit Service fdd496
      *err = REG_NOERROR;
Packit Service fdd496
      return NULL;
Packit Service fdd496
    }
Packit Service fdd496
  hash = calc_state_hash (nodes, context);
Packit Service fdd496
  spot = dfa->state_table + (hash & dfa->state_hash_mask);
Packit Service fdd496
Packit Service fdd496
  for (i = 0 ; i < spot->num ; i++)
Packit Service fdd496
    {
Packit Service fdd496
      re_dfastate_t *state = spot->array[i];
Packit Service fdd496
      if (state->hash == hash
Packit Service fdd496
	  && state->context == context
Packit Service fdd496
	  && re_node_set_compare (state->entrance_nodes, nodes))
Packit Service fdd496
	return state;
Packit Service fdd496
    }
Packit Service fdd496
  /* There are no appropriate state in 'dfa', create the new one.  */
Packit Service fdd496
  new_state = create_cd_newstate (dfa, nodes, context, hash);
Packit Service fdd496
  if (BE (new_state == NULL, 0))
Packit Service fdd496
    *err = REG_ESPACE;
Packit Service fdd496
Packit Service fdd496
  return new_state;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Finish initialization of the new state NEWSTATE, and using its hash value
Packit Service fdd496
   HASH put in the appropriate bucket of DFA's state table.  Return value
Packit Service fdd496
   indicates the error code if failed.  */
Packit Service fdd496
Packit Service fdd496
static reg_errcode_t
Packit Service fdd496
__attribute_warn_unused_result__
Packit Service fdd496
register_state (const re_dfa_t *dfa, re_dfastate_t *newstate,
Packit Service fdd496
		re_hashval_t hash)
Packit Service fdd496
{
Packit Service fdd496
  struct re_state_table_entry *spot;
Packit Service fdd496
  reg_errcode_t err;
Packit Service fdd496
  Idx i;
Packit Service fdd496
Packit Service fdd496
  newstate->hash = hash;
Packit Service fdd496
  err = re_node_set_alloc (&newstate->non_eps_nodes, newstate->nodes.nelem);
Packit Service fdd496
  if (BE (err != REG_NOERROR, 0))
Packit Service fdd496
    return REG_ESPACE;
Packit Service fdd496
  for (i = 0; i < newstate->nodes.nelem; i++)
Packit Service fdd496
    {
Packit Service fdd496
      Idx elem = newstate->nodes.elems[i];
Packit Service fdd496
      if (!IS_EPSILON_NODE (dfa->nodes[elem].type))
Packit Service fdd496
	if (! re_node_set_insert_last (&newstate->non_eps_nodes, elem))
Packit Service fdd496
	  return REG_ESPACE;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  spot = dfa->state_table + (hash & dfa->state_hash_mask);
Packit Service fdd496
  if (BE (spot->alloc <= spot->num, 0))
Packit Service fdd496
    {
Packit Service fdd496
      Idx new_alloc = 2 * spot->num + 2;
Packit Service fdd496
      re_dfastate_t **new_array = re_realloc (spot->array, re_dfastate_t *,
Packit Service fdd496
					      new_alloc);
Packit Service fdd496
      if (BE (new_array == NULL, 0))
Packit Service fdd496
	return REG_ESPACE;
Packit Service fdd496
      spot->array = new_array;
Packit Service fdd496
      spot->alloc = new_alloc;
Packit Service fdd496
    }
Packit Service fdd496
  spot->array[spot->num++] = newstate;
Packit Service fdd496
  return REG_NOERROR;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
static void
Packit Service fdd496
free_state (re_dfastate_t *state)
Packit Service fdd496
{
Packit Service fdd496
  re_node_set_free (&state->non_eps_nodes);
Packit Service fdd496
  re_node_set_free (&state->inveclosure);
Packit Service fdd496
  if (state->entrance_nodes != &state->nodes)
Packit Service fdd496
    {
Packit Service fdd496
      re_node_set_free (state->entrance_nodes);
Packit Service fdd496
      re_free (state->entrance_nodes);
Packit Service fdd496
    }
Packit Service fdd496
  re_node_set_free (&state->nodes);
Packit Service fdd496
  re_free (state->word_trtable);
Packit Service fdd496
  re_free (state->trtable);
Packit Service fdd496
  re_free (state);
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Create the new state which is independent of contexts.
Packit Service fdd496
   Return the new state if succeeded, otherwise return NULL.  */
Packit Service fdd496
Packit Service fdd496
static re_dfastate_t *
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
create_ci_newstate (const re_dfa_t *dfa, const re_node_set *nodes,
Packit Service fdd496
		    re_hashval_t hash)
Packit Service fdd496
{
Packit Service fdd496
  Idx i;
Packit Service fdd496
  reg_errcode_t err;
Packit Service fdd496
  re_dfastate_t *newstate;
Packit Service fdd496
Packit Service fdd496
  newstate = (re_dfastate_t *) calloc (sizeof (re_dfastate_t), 1);
Packit Service fdd496
  if (BE (newstate == NULL, 0))
Packit Service fdd496
    return NULL;
Packit Service fdd496
  err = re_node_set_init_copy (&newstate->nodes, nodes);
Packit Service fdd496
  if (BE (err != REG_NOERROR, 0))
Packit Service fdd496
    {
Packit Service fdd496
      re_free (newstate);
Packit Service fdd496
      return NULL;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  newstate->entrance_nodes = &newstate->nodes;
Packit Service fdd496
  for (i = 0 ; i < nodes->nelem ; i++)
Packit Service fdd496
    {
Packit Service fdd496
      re_token_t *node = dfa->nodes + nodes->elems[i];
Packit Service fdd496
      re_token_type_t type = node->type;
Packit Service fdd496
      if (type == CHARACTER && !node->constraint)
Packit Service fdd496
	continue;
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
      newstate->accept_mb |= node->accept_mb;
Packit Service fdd496
#endif /* RE_ENABLE_I18N */
Packit Service fdd496
Packit Service fdd496
      /* If the state has the halt node, the state is a halt state.  */
Packit Service fdd496
      if (type == END_OF_RE)
Packit Service fdd496
	newstate->halt = 1;
Packit Service fdd496
      else if (type == OP_BACK_REF)
Packit Service fdd496
	newstate->has_backref = 1;
Packit Service fdd496
      else if (type == ANCHOR || node->constraint)
Packit Service fdd496
	newstate->has_constraint = 1;
Packit Service fdd496
    }
Packit Service fdd496
  err = register_state (dfa, newstate, hash);
Packit Service fdd496
  if (BE (err != REG_NOERROR, 0))
Packit Service fdd496
    {
Packit Service fdd496
      free_state (newstate);
Packit Service fdd496
      newstate = NULL;
Packit Service fdd496
    }
Packit Service fdd496
  return newstate;
Packit Service fdd496
}
Packit Service fdd496
Packit Service fdd496
/* Create the new state which is depend on the context CONTEXT.
Packit Service fdd496
   Return the new state if succeeded, otherwise return NULL.  */
Packit Service fdd496
Packit Service fdd496
static re_dfastate_t *
Packit Service fdd496
internal_function __attribute_warn_unused_result__
Packit Service fdd496
create_cd_newstate (const re_dfa_t *dfa, const re_node_set *nodes,
Packit Service fdd496
		    unsigned int context, re_hashval_t hash)
Packit Service fdd496
{
Packit Service fdd496
  Idx i, nctx_nodes = 0;
Packit Service fdd496
  reg_errcode_t err;
Packit Service fdd496
  re_dfastate_t *newstate;
Packit Service fdd496
Packit Service fdd496
  newstate = (re_dfastate_t *) calloc (sizeof (re_dfastate_t), 1);
Packit Service fdd496
  if (BE (newstate == NULL, 0))
Packit Service fdd496
    return NULL;
Packit Service fdd496
  err = re_node_set_init_copy (&newstate->nodes, nodes);
Packit Service fdd496
  if (BE (err != REG_NOERROR, 0))
Packit Service fdd496
    {
Packit Service fdd496
      re_free (newstate);
Packit Service fdd496
      return NULL;
Packit Service fdd496
    }
Packit Service fdd496
Packit Service fdd496
  newstate->context = context;
Packit Service fdd496
  newstate->entrance_nodes = &newstate->nodes;
Packit Service fdd496
Packit Service fdd496
  for (i = 0 ; i < nodes->nelem ; i++)
Packit Service fdd496
    {
Packit Service fdd496
      re_token_t *node = dfa->nodes + nodes->elems[i];
Packit Service fdd496
      re_token_type_t type = node->type;
Packit Service fdd496
      unsigned int constraint = node->constraint;
Packit Service fdd496
Packit Service fdd496
      if (type == CHARACTER && !constraint)
Packit Service fdd496
	continue;
Packit Service fdd496
#ifdef RE_ENABLE_I18N
Packit Service fdd496
      newstate->accept_mb |= node->accept_mb;
Packit Service fdd496
#endif /* RE_ENABLE_I18N */
Packit Service fdd496
Packit Service fdd496
      /* If the state has the halt node, the state is a halt state.  */
Packit Service fdd496
      if (type == END_OF_RE)
Packit Service fdd496
	newstate->halt = 1;
Packit Service fdd496
      else if (type == OP_BACK_REF)
Packit Service fdd496
	newstate->has_backref = 1;
Packit Service fdd496
Packit Service fdd496
      if (constraint)
Packit Service fdd496
	{
Packit Service fdd496
	  if (newstate->entrance_nodes == &newstate->nodes)
Packit Service fdd496
	    {
Packit Service fdd496
	      newstate->entrance_nodes = re_malloc (re_node_set, 1);
Packit Service fdd496
	      if (BE (newstate->entrance_nodes == NULL, 0))
Packit Service fdd496
		{
Packit Service fdd496
		  free_state (newstate);
Packit Service fdd496
		  return NULL;
Packit Service fdd496
		}
Packit Service fdd496
	      if (re_node_set_init_copy (newstate->entrance_nodes, nodes)
Packit Service fdd496
		  != REG_NOERROR)
Packit Service fdd496
		return NULL;
Packit Service fdd496
	      nctx_nodes = 0;
Packit Service fdd496
	      newstate->has_constraint = 1;
Packit Service fdd496
	    }
Packit Service fdd496
Packit Service fdd496
	  if (NOT_SATISFY_PREV_CONSTRAINT (constraint,context))
Packit Service fdd496
	    {
Packit Service fdd496
	      re_node_set_remove_at (&newstate->nodes, i - nctx_nodes);
Packit Service fdd496
	      ++nctx_nodes;
Packit Service fdd496
	    }
Packit Service fdd496
	}
Packit Service fdd496
    }
Packit Service fdd496
  err = register_state (dfa, newstate, hash);
Packit Service fdd496
  if (BE (err != REG_NOERROR, 0))
Packit Service fdd496
    {
Packit Service fdd496
      free_state (newstate);
Packit Service fdd496
      newstate = NULL;
Packit Service fdd496
    }
Packit Service fdd496
  return  newstate;
Packit Service fdd496
}