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In several converters, a __GCONV_ILLEGAL_INPUT result gets overwritten with __GCONV_FULL_OUTPUT. As a result, iconv (the function) returns E2BIG instead of EILSEQ. The iconv program does not see the original EILSEQ failure, does not recognize the invalid input, and may incorrectly exit successfully. To address this, a new __flags bit is used to indicate a sticky input error state. All __GCONV_ILLEGAL_INPUT results are replaced with a function call that sets this new __GCONV_ENCOUNTERED_ILLEGAL_INPUT and returns __GCONV_ILLEGAL_INPUT. The iconv program checks for __GCONV_ENCOUNTERED_ILLEGAL_INPUT and overrides the exit status. The converter changes introducing __gconv_mark_illegal_input are mostly mechanical, except for the res variable initialization in iconvdata/iso-2022-jp.c: this error gets overwritten with __GCONV_OK and other results in the following code. If res == __GCONV_ILLEGAL_INPUT afterwards, STANDARD_TO_LOOP_ERR_HANDLER below will handle it. The __gconv_mark_illegal_input changes do not alter the errno value set by the iconv function. This is simpler to implement than reviewing each __GCONV_FULL_OUTPUT result and adjust it not to override a previous __GCONV_ILLEGAL_INPUT result. Doing it that way would also change some E2BIG errors in to EILSEQ errors, so it had to be done conditionally (under a flag set by the iconv program only), to avoid confusing buffer management in other applications. Reviewed-by: DJ Delorie <dj@redhat.com>
238 lines
7.0 KiB
C
238 lines
7.0 KiB
C
/* Transliteration using the locale's data.
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Copyright (C) 2000-2024 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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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 Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 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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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with the GNU C Library; if not, see
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<https://www.gnu.org/licenses/>. */
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#include <assert.h>
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#include <dlfcn.h>
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#include <search.h>
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#include <stdint.h>
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#include <string.h>
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#include <stdlib.h>
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#include <libc-lock.h>
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#include "gconv_int.h"
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#include "../locale/localeinfo.h"
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#include <pointer_guard.h>
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int
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__gconv_transliterate (struct __gconv_step *step,
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struct __gconv_step_data *step_data,
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const unsigned char *inbufstart,
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const unsigned char **inbufp,
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const unsigned char *inbufend,
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unsigned char **outbufstart, size_t *irreversible)
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{
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/* Find out about the locale's transliteration. */
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uint32_t size;
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const uint32_t *from_idx;
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const uint32_t *from_tbl;
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const uint32_t *to_idx;
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const uint32_t *to_tbl;
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const uint32_t *winbuf;
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const uint32_t *winbufend;
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uint32_t low;
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uint32_t high;
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/* The input buffer. There are actually 4-byte values. */
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winbuf = (const uint32_t *) *inbufp;
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winbufend = (const uint32_t *) inbufend;
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__gconv_fct fct = step->__fct;
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if (step->__shlib_handle != NULL)
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PTR_DEMANGLE (fct);
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/* If there is no transliteration information in the locale don't do
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anything and return the error. */
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size = _NL_CURRENT_WORD (LC_CTYPE, _NL_CTYPE_TRANSLIT_TAB_SIZE);
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if (size == 0)
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goto no_rules;
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/* Get the rest of the values. */
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from_idx =
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(const uint32_t *) _NL_CURRENT (LC_CTYPE, _NL_CTYPE_TRANSLIT_FROM_IDX);
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from_tbl =
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(const uint32_t *) _NL_CURRENT (LC_CTYPE, _NL_CTYPE_TRANSLIT_FROM_TBL);
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to_idx =
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(const uint32_t *) _NL_CURRENT (LC_CTYPE, _NL_CTYPE_TRANSLIT_TO_IDX);
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to_tbl =
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(const uint32_t *) _NL_CURRENT (LC_CTYPE, _NL_CTYPE_TRANSLIT_TO_TBL);
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/* Test whether there is enough input. */
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if (winbuf + 1 > winbufend)
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return (winbuf == winbufend
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? __GCONV_EMPTY_INPUT : __GCONV_INCOMPLETE_INPUT);
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/* The array starting at FROM_IDX contains indices to the string table
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in FROM_TBL. The indices are sorted wrt to the strings. I.e., we
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are doing binary search. */
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low = 0;
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high = size;
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while (low < high)
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{
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uint32_t med = (low + high) / 2;
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uint32_t idx;
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int cnt;
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/* Compare the string at this index with the string at the current
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position in the input buffer. */
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idx = from_idx[med];
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cnt = 0;
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do
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{
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if (from_tbl[idx + cnt] != winbuf[cnt])
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/* Does not match. */
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break;
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++cnt;
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}
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while (from_tbl[idx + cnt] != L'\0' && winbuf + cnt < winbufend);
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if (cnt > 0 && from_tbl[idx + cnt] == L'\0')
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{
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/* Found a matching input sequence. Now try to convert the
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possible replacements. */
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uint32_t idx2 = to_idx[med];
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do
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{
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/* Determine length of replacement. */
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unsigned int len = 0;
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int res;
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const unsigned char *toinptr;
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unsigned char *outptr;
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while (to_tbl[idx2 + len] != L'\0')
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++len;
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/* Try this input text. */
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toinptr = (const unsigned char *) &to_tbl[idx2];
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outptr = *outbufstart;
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res = DL_CALL_FCT (fct,
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(step, step_data, &toinptr,
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(const unsigned char *) &to_tbl[idx2 + len],
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&outptr, NULL, 0, 0));
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if (res != __GCONV_ILLEGAL_INPUT)
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{
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/* If the conversion succeeds we have to increment the
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input buffer. */
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if (res == __GCONV_EMPTY_INPUT)
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{
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*inbufp += cnt * sizeof (uint32_t);
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++*irreversible;
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res = __GCONV_OK;
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}
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/* Do not increment the output pointer if we could not
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store the entire output. */
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if (res != __GCONV_FULL_OUTPUT)
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*outbufstart = outptr;
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return res;
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}
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/* Next replacement. */
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idx2 += len + 1;
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}
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while (to_tbl[idx2] != L'\0');
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/* Nothing found, continue searching. */
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}
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else if (cnt > 0 && winbuf + cnt == winbufend)
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/* This means that the input buffer contents matches a prefix of
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an entry. Since we cannot match it unless we get more input,
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we will tell the caller about it. */
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return __GCONV_INCOMPLETE_INPUT;
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if (winbuf + cnt >= winbufend || from_tbl[idx + cnt] < winbuf[cnt])
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low = med + 1;
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else
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high = med;
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}
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no_rules:
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/* Maybe the character is supposed to be ignored. */
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if (_NL_CURRENT_WORD (LC_CTYPE, _NL_CTYPE_TRANSLIT_IGNORE_LEN) != 0)
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{
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int n = _NL_CURRENT_WORD (LC_CTYPE, _NL_CTYPE_TRANSLIT_IGNORE_LEN);
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const uint32_t *ranges =
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(const uint32_t *) _NL_CURRENT (LC_CTYPE, _NL_CTYPE_TRANSLIT_IGNORE);
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const uint32_t wc = *(const uint32_t *) (*inbufp);
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int i;
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/* Test whether there is enough input. */
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if (winbuf + 1 > winbufend)
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return (winbuf == winbufend
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? __GCONV_EMPTY_INPUT : __GCONV_INCOMPLETE_INPUT);
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for (i = 0; i < n; ranges += 3, ++i)
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if (ranges[0] <= wc && wc <= ranges[1]
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&& (wc - ranges[0]) % ranges[2] == 0)
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{
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/* Matches the range. Ignore it. */
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*inbufp += 4;
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++*irreversible;
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return __GCONV_OK;
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}
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else if (wc < ranges[0])
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/* There cannot be any other matching range since they are
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sorted. */
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break;
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}
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/* One last chance: use the default replacement. */
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if (_NL_CURRENT_WORD (LC_CTYPE, _NL_CTYPE_TRANSLIT_DEFAULT_MISSING_LEN) != 0)
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{
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const uint32_t *default_missing = (const uint32_t *)
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_NL_CURRENT (LC_CTYPE, _NL_CTYPE_TRANSLIT_DEFAULT_MISSING);
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const unsigned char *toinptr = (const unsigned char *) default_missing;
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uint32_t len = _NL_CURRENT_WORD (LC_CTYPE,
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_NL_CTYPE_TRANSLIT_DEFAULT_MISSING_LEN);
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unsigned char *outptr;
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int res;
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/* Test whether there is enough input. */
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if (winbuf + 1 > winbufend)
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return (winbuf == winbufend
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? __GCONV_EMPTY_INPUT : __GCONV_INCOMPLETE_INPUT);
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outptr = *outbufstart;
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res = DL_CALL_FCT (fct,
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(step, step_data, &toinptr,
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(const unsigned char *) (default_missing + len),
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&outptr, NULL, 0, 0));
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if (res != __GCONV_ILLEGAL_INPUT)
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{
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/* If the conversion succeeds we have to increment the
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input buffer. */
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if (res == __GCONV_EMPTY_INPUT)
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{
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/* This worked but is not reversible. */
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++*irreversible;
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*inbufp += 4;
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res = __GCONV_OK;
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}
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*outbufstart = outptr;
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return res;
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}
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}
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/* Haven't found a match. */
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return __gconv_mark_illegal_input (step_data);
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}
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libc_hidden_def (__gconv_transliterate)
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