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816e6eb5a7
1998-10-19 13:24 Ulrich Drepper <drepper@cygnus.com> * locale/programs/ld-collate.c (collate_startup): Clear bit for this category in copy_posix. (collate_finish): Don't warn about UNDEFINED not being defined. * locale/programs/ld-ctype.c (ctype_startup): Clear bit for this category in copy_posix. * locale/programs/ld-messages.c (messages_startup): Likewise. * locale/programs/ld-monetary.c (monetary_startup): Likewise. * locale/programs/ld-numeric.c (numeric_startup): Likewise. * locale/programs/ld-time.c (time_startup): Likewise. * locale/programs/localedef.c: Move copy_def_list_t definition into locales.h. Define copy_posix variable. (main): Before processing copy list add ©_posix to copy_list. * locale/programs/locales.h: Add definition of copy_def_list_t. * locale/programs/locfile.c: Clear bit for appropriate category in case of an copy instruction.
403 lines
12 KiB
C
403 lines
12 KiB
C
/* Copyright (C) 1995, 1996, 1997, 1998 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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Contributed by Ulrich Drepper <drepper@gnu.ai.mit.edu>, 1995.
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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 Library General Public License as
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published by the Free Software Foundation; either version 2 of the
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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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Library General Public License for more details.
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You should have received a copy of the GNU Library General Public
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License along with the GNU C Library; see the file COPYING.LIB. If not,
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write to the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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Boston, MA 02111-1307, USA. */
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#ifdef HAVE_CONFIG_H
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# include <config.h>
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#endif
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#include <langinfo.h>
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#include <limits.h>
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#include <stdlib.h>
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#include <string.h>
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/* Undefine following line in production version. */
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/* #define NDEBUG 1 */
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#include <assert.h>
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#include "locales.h"
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#include "localeinfo.h"
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#include "stringtrans.h"
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extern void *xmalloc (size_t __n);
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extern void *xrealloc (void *__ptr, size_t __n);
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/* The real definition of the struct for the LC_NUMERIC locale. */
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struct locale_monetary_t
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{
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const char *int_curr_symbol;
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const char *currency_symbol;
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const char *mon_decimal_point;
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const char *mon_thousands_sep;
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char *mon_grouping;
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size_t mon_grouping_max;
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size_t mon_grouping_act;
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const char *positive_sign;
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const char *negative_sign;
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signed char int_frac_digits;
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signed char frac_digits;
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signed char p_cs_precedes;
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signed char p_sep_by_space;
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signed char n_cs_precedes;
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signed char n_sep_by_space;
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signed char p_sign_posn;
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signed char n_sign_posn;
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};
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/* The content iof the field int_curr_symbol has to be taken from
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ISO-4217. We test for correct values. */
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#define DEFINE_INT_CURR(str) str,
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static const char *const valid_int_curr[] =
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{
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# include "../iso-4217.def"
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};
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#define NR_VALID_INT_CURR ((sizeof (valid_int_curr) \
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/ sizeof (valid_int_curr[0])))
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#undef DEFINE_INT_CURR
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/* Prototypes for local functions. */
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static int curr_strcmp(const char *s1, const char **s2);
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void
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monetary_startup (struct linereader *lr, struct localedef_t *locale,
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struct charset_t *charset)
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{
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struct locale_monetary_t *monetary;
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/* We have a definition for LC_MONETARY. */
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copy_posix.mask &= ~(1 << LC_MONETARY);
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/* It is important that we always use UCS1 encoding for strings now. */
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encoding_method = ENC_UCS1;
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locale->categories[LC_MONETARY].monetary = monetary =
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(struct locale_monetary_t *) xmalloc (sizeof (struct locale_monetary_t));
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memset (monetary, '\0', sizeof (struct locale_monetary_t));
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monetary->mon_grouping_max = 80;
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monetary->mon_grouping =
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(char *) xmalloc (monetary->mon_grouping_max);
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monetary->mon_grouping_act = 0;
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monetary->int_frac_digits = -2;
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monetary->frac_digits = -2;
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monetary->p_cs_precedes = -2;
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monetary->p_sep_by_space = -2;
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monetary->n_cs_precedes = -2;
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monetary->n_sep_by_space = -2;
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monetary->p_sign_posn = -2;
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monetary->n_sign_posn = -2;
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}
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void
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monetary_finish (struct localedef_t *locale)
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{
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struct locale_monetary_t *monetary
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= locale->categories[LC_MONETARY].monetary;
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#define TEST_ELEM(cat) \
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if (monetary->cat == NULL && !be_quiet) \
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error (0, 0, _("field `%s' in category `%s' not defined"), \
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#cat, "LC_MONETARY")
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TEST_ELEM (int_curr_symbol);
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TEST_ELEM (currency_symbol);
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TEST_ELEM (mon_decimal_point);
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TEST_ELEM (mon_thousands_sep);
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TEST_ELEM (positive_sign);
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TEST_ELEM (negative_sign);
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/* The international currency symbol must come from ISO 4217. */
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if (monetary->int_curr_symbol != NULL)
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{
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if (strlen (monetary->int_curr_symbol) != 4
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&& monetary->int_curr_symbol[0] != '\0')
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{
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if (!be_quiet)
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error (0, 0, _("\
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value of field `int_curr_symbol' in category `LC_MONETARY' has wrong length"));
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}
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else if (monetary->int_curr_symbol[0] != '\0'
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&& bsearch (monetary->int_curr_symbol, valid_int_curr,
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NR_VALID_INT_CURR, sizeof (const char *),
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(comparison_fn_t) curr_strcmp) == NULL
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&& !be_quiet)
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error (0, 0, _("\
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value of field `int_curr_symbol' in category `LC_MONETARY' does \
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not correspond to a valid name in ISO 4217"));
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}
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/* The decimal point must not be empty. This is not said explicitly
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in POSIX but ANSI C (ISO/IEC 9899) says in 4.4.2.1 it has to be
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!= "". */
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if (monetary->mon_decimal_point[0] == '\0' && !be_quiet)
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{
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error (0, 0, _("\
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value for field `%s' in category `%s' must not be the empty string"),
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"mon_decimal_point", "LC_MONETARY");
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}
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if (monetary->mon_grouping_act == 0 && !be_quiet)
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error (0, 0, _("field `%s' in category `%s' not defined"),
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"mon_grouping", "LC_MONETARY");
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#undef TEST_ELEM
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#define TEST_ELEM(cat, min, max) \
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if (monetary->cat == -2 && !be_quiet) \
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error (0, 0, _("field `%s' in category `%s' not defined"), \
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#cat, "LC_MONETARY"); \
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else if ((monetary->cat < min || monetary->cat > max) && !be_quiet) \
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error (0, 0, _("\
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value for field `%s' in category `%s' must be in range %d...%d"), \
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#cat, "LC_MONETARY", min, max)
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#if 0
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/* The following two test are not really necessary because all values
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the variable could have are valid. */
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TEST_ELEM (int_frac_digits, -128, 127); /* No range check. */
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TEST_ELEM (frac_digits, -128, 127); /* No range check. */
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#endif
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TEST_ELEM (p_cs_precedes, -1, 1);
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TEST_ELEM (p_sep_by_space, -1, 2);
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TEST_ELEM (n_cs_precedes, -1, 1);
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TEST_ELEM (n_sep_by_space, -1, 2);
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TEST_ELEM (p_sign_posn, -1, 4);
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TEST_ELEM (n_sign_posn, -1, 4);
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}
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void
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monetary_output (struct localedef_t *locale, const char *output_path)
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{
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struct locale_monetary_t *monetary
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= locale->categories[LC_MONETARY].monetary;
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struct iovec iov[2 + _NL_ITEM_INDEX (_NL_NUM_LC_MONETARY)];
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struct locale_file data;
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u_int32_t idx[_NL_ITEM_INDEX (_NL_NUM_LC_MONETARY)];
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size_t cnt = 0;
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if ((locale->binary & (1 << LC_MONETARY)) != 0)
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{
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iov[0].iov_base = monetary;
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iov[0].iov_len = locale->len[LC_MONETARY];
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write_locale_data (output_path, "LC_MONETARY", 1, iov);
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return;
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}
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data.magic = LIMAGIC (LC_MONETARY);
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data.n = _NL_ITEM_INDEX (_NL_NUM_LC_MONETARY);
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iov[cnt].iov_base = (void *) &data;
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iov[cnt].iov_len = sizeof (data);
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++cnt;
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iov[cnt].iov_base = (void *) idx;
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iov[cnt].iov_len = sizeof (idx);
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++cnt;
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idx[cnt - 2] = iov[0].iov_len + iov[1].iov_len;
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iov[cnt].iov_base = (void *) (monetary->int_curr_symbol ?: "");
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iov[cnt].iov_len = strlen (iov[cnt].iov_base) + 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) (monetary->currency_symbol ?: "");
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iov[cnt].iov_len = strlen (iov[cnt].iov_base) + 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) (monetary->mon_decimal_point ?: "");
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iov[cnt].iov_len = strlen (iov[cnt].iov_base) + 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) (monetary->mon_thousands_sep ?: "");
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iov[cnt].iov_len = strlen (iov[cnt].iov_base) + 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = alloca (monetary->mon_grouping_act + 1);
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iov[cnt].iov_len = monetary->mon_grouping_act + 1;
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memcpy (iov[cnt].iov_base, monetary->mon_grouping,
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monetary->mon_grouping_act);
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((char *) iov[cnt].iov_base)[monetary->mon_grouping_act] = '\0';
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) (monetary->positive_sign ?: "");
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iov[cnt].iov_len = strlen (iov[cnt].iov_base) + 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) (monetary->negative_sign ?: "");
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iov[cnt].iov_len = strlen (iov[cnt].iov_base) + 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) &monetary->int_frac_digits;
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iov[cnt].iov_len = 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) &monetary->frac_digits;
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iov[cnt].iov_len = 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) &monetary->p_cs_precedes;
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iov[cnt].iov_len = 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) &monetary->p_sep_by_space;
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iov[cnt].iov_len = 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) &monetary->n_cs_precedes;
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iov[cnt].iov_len = 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) &monetary->n_sep_by_space;
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iov[cnt].iov_len = 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) &monetary->p_sign_posn;
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iov[cnt].iov_len = 1;
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++cnt;
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idx[cnt - 2] = idx[cnt - 3] + iov[cnt - 1].iov_len;
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iov[cnt].iov_base = (void *) &monetary->n_sign_posn;
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iov[cnt].iov_len = 1;
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assert (cnt + 1 == 2 + _NL_ITEM_INDEX (_NL_NUM_LC_MONETARY));
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write_locale_data (output_path, "LC_MONETARY",
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2 + _NL_ITEM_INDEX (_NL_NUM_LC_MONETARY), iov);
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}
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void
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monetary_add (struct linereader *lr, struct localedef_t *locale,
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enum token_t tok, struct token *code,
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struct charset_t *charset)
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{
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struct locale_monetary_t *monetary
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= locale->categories[LC_MONETARY].monetary;
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switch (tok)
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{
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#define STR_ELEM(cat) \
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case tok_##cat: \
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if (monetary->cat != NULL) \
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lr_error (lr, _("\
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field `%s' in category `%s' declared more than once"), \
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#cat, "LC_MONETARY"); \
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else if (code->val.str.start == NULL) \
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{ \
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lr_error (lr, _("unknown character in field `%s' of category `%s'"),\
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#cat, "LC_MONETARY"); \
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monetary->cat = ""; \
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} \
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else \
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monetary->cat = code->val.str.start; \
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break
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STR_ELEM (int_curr_symbol);
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STR_ELEM (currency_symbol);
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STR_ELEM (mon_decimal_point);
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STR_ELEM (mon_thousands_sep);
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STR_ELEM (positive_sign);
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STR_ELEM (negative_sign);
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#define INT_ELEM(cat) \
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case tok_##cat: \
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if (monetary->cat != -2) \
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lr_error (lr, _("\
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field `%s' in category `%s' declared more than once"), \
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#cat, "LC_MONETARY"); \
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else if (code->tok == tok_minus1) \
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monetary->cat = -1; \
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else \
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monetary->cat = code->val.num; \
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break
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INT_ELEM (int_frac_digits);
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INT_ELEM (frac_digits);
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INT_ELEM (p_cs_precedes);
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INT_ELEM (p_sep_by_space);
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INT_ELEM (n_cs_precedes);
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INT_ELEM (n_sep_by_space);
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INT_ELEM (p_sign_posn);
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INT_ELEM (n_sign_posn);
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case tok_mon_grouping:
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if (monetary->mon_grouping_act == monetary->mon_grouping_max)
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{
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monetary->mon_grouping_max *= 2;
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monetary->mon_grouping =
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(char *) xrealloc (monetary->mon_grouping,
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monetary->mon_grouping_max);
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}
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if (monetary->mon_grouping[monetary->mon_grouping_act - 1]
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== '\177')
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lr_error (lr, _("\
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`-1' must be last entry in `%s' field in `%s' category"),
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"mon_grouping", "LC_MONETARY");
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else
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{
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if (code->tok == tok_minus1)
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monetary->mon_grouping[monetary->mon_grouping_act++] = '\177';
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else if (code->val.num == 0)
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/* A value of 0 disables grouping from here on but we must
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not store a NUL character since this terminates the
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string. Use something different which must not be used
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otherwise. */
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monetary->mon_grouping[monetary->mon_grouping_act++] = '\377';
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else if (code->val.num > 126)
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lr_error (lr, _("\
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values for field `%s' in category `%s' must be smaller than 127"),
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"mon_grouping", "LC_MONETARY");
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else
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monetary->mon_grouping[monetary->mon_grouping_act++]
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= code->val.num;
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}
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break;
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default:
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assert (! "unknown token in category `LC_MONETARY': should not happen");
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}
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}
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static int
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curr_strcmp(const char *s1, const char **s2)
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{
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return strcmp (s1, *s2);
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}
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