Coverage Report

Created: 2026-08-14 06:46

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/gnutls/lib/unistring/uninorm/u-normalize-internal.h
Line
Count
Source
1
/* Decomposition and composition of Unicode strings.
2
   Copyright (C) 2009-2026 Free Software Foundation, Inc.
3
   Written by Bruno Haible <bruno@clisp.org>, 2009.
4
5
   This file is free software: you can redistribute it and/or modify
6
   it under the terms of the GNU Lesser General Public License as
7
   published by the Free Software Foundation; either version 2.1 of the
8
   License, or (at your option) any later version.
9
10
   This file is distributed in the hope that it will be useful,
11
   but WITHOUT ANY WARRANTY; without even the implied warranty of
12
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13
   GNU Lesser General Public License for more details.
14
15
   You should have received a copy of the GNU Lesser General Public License
16
   along with this program.  If not, see <https://www.gnu.org/licenses/>.  */
17
18
UNIT *
19
FUNC (uninorm_t nf, const UNIT *s, size_t n,
20
      UNIT *resultbuf, size_t *lengthp)
21
191k
{
22
191k
  int (*decomposer) (ucs4_t uc, ucs4_t *decomposition) = nf->decomposer;
23
191k
  ucs4_t (*composer) (ucs4_t uc1, ucs4_t uc2) = nf->composer;
24
25
  /* The result being accumulated.  */
26
191k
  UNIT *result;
27
191k
  size_t allocated;
28
191k
  if (resultbuf == NULL)
29
191k
    {
30
191k
      result = NULL;
31
191k
      allocated = 0;
32
191k
    }
33
0
  else
34
0
    {
35
0
      result = resultbuf;
36
0
      allocated = *lengthp;
37
0
    }
38
191k
  size_t length = 0;
39
40
  /* The buffer for sorting.  */
41
191k
  #define SORTBUF_PREALLOCATED 64
42
191k
  struct ucs4_with_ccc sortbuf_preallocated[2 * SORTBUF_PREALLOCATED];
43
191k
  struct ucs4_with_ccc *sortbuf = /* array of size 2 * sortbuf_allocated */
44
191k
    sortbuf_preallocated;
45
191k
  size_t sortbuf_allocated = SORTBUF_PREALLOCATED;
46
191k
  size_t sortbuf_count = 0;
47
48
191k
  {
49
191k
    const UNIT *s_end = s + n;
50
51
191k
    for (;;)
52
2.26M
      {
53
2.26M
        int count;
54
2.26M
        ucs4_t decomposed[UC_DECOMPOSITION_MAX_LENGTH];
55
2.26M
        int decomposed_count;
56
57
2.26M
        if (s < s_end)
58
2.07M
          {
59
            /* Fetch the next character.  */
60
2.07M
            count = U_MBTOUC_UNSAFE (&decomposed[0], s, s_end - s);
61
2.07M
            decomposed_count = 1;
62
63
            /* Decompose it, recursively.
64
               It would be possible to precompute the recursive decomposition
65
               and store it in a table.  But this would significantly increase
66
               the size of the decomposition tables, because for example for
67
               U+1FC1 the recursive canonical decomposition and the recursive
68
               compatibility decomposition are different.  */
69
4.44M
            for (int curr = 0; curr < decomposed_count; )
70
2.36M
              {
71
                /* Invariant: decomposed[0..curr-1] is fully decomposed, i.e.
72
                   all elements are atomic.  */
73
2.36M
                ucs4_t curr_decomposed[UC_DECOMPOSITION_MAX_LENGTH];
74
2.36M
                int curr_decomposed_count;
75
76
2.36M
                curr_decomposed_count = decomposer (decomposed[curr], curr_decomposed);
77
2.36M
                if (curr_decomposed_count >= 0)
78
143k
                  {
79
                    /* Move curr_decomposed[0..curr_decomposed_count-1] over
80
                       decomposed[curr], making room.  It's not worth using
81
                       memcpy() here, since the counts are so small.  */
82
143k
                    int shift = curr_decomposed_count - 1;
83
84
143k
                    if (shift < 0)
85
0
                      abort ();
86
143k
                    if (shift > 0)
87
141k
                      {
88
141k
                        decomposed_count += shift;
89
141k
                        if (decomposed_count > UC_DECOMPOSITION_MAX_LENGTH)
90
0
                          abort ();
91
155k
                        for (int j = decomposed_count - 1 - shift; j > curr; j--)
92
13.2k
                          decomposed[j + shift] = decomposed[j];
93
141k
                      }
94
428k
                    for (; shift >= 0; shift--)
95
285k
                      decomposed[curr + shift] = curr_decomposed[shift];
96
143k
                  }
97
2.22M
                else
98
2.22M
                  {
99
                    /* decomposed[curr] is atomic.  */
100
2.22M
                    curr++;
101
2.22M
                  }
102
2.36M
              }
103
2.07M
          }
104
191k
        else
105
191k
          {
106
191k
            count = 0;
107
191k
            decomposed_count = 0;
108
191k
          }
109
110
2.26M
        int i = 0;
111
2.26M
        for (;;)
112
4.48M
          {
113
4.48M
            ucs4_t uc;
114
4.48M
            int ccc;
115
116
4.48M
            if (s < s_end)
117
4.29M
              {
118
                /* Fetch the next character from the decomposition.  */
119
4.29M
                if (i == decomposed_count)
120
2.07M
                  break;
121
2.22M
                uc = decomposed[i];
122
2.22M
                ccc = uc_combining_class (uc);
123
2.22M
              }
124
191k
            else
125
191k
              {
126
                /* End of string reached.  */
127
191k
                uc = 0;
128
191k
                ccc = 0;
129
191k
              }
130
131
2.41M
            if (ccc == 0)
132
2.11M
              {
133
                /* Apply the canonical ordering algorithm to the accumulated
134
                   sequence of characters.  */
135
2.11M
                if (sortbuf_count > 1)
136
122k
                  gl_uninorm_decompose_merge_sort_inplace (sortbuf, sortbuf_count,
137
122k
                                                           sortbuf + sortbuf_count);
138
139
2.11M
                if (composer != NULL)
140
2.11M
                  {
141
                    /* Attempt to combine decomposed characters, as specified
142
                       in the Unicode Standard Annex #15 "Unicode Normalization
143
                       Forms".  We need to check
144
                         1. whether the first accumulated character is a
145
                            "starter" (i.e. has ccc = 0).  This is usually the
146
                            case.  But when the string starts with a
147
                            non-starter, the sortbuf also starts with a
148
                            non-starter.  Btw, this check could also be
149
                            omitted, because the composition table has only
150
                            entries (code1, code2) for which code1 is a
151
                            starter; if the first accumulated character is not
152
                            a starter, no lookup will succeed.
153
                         2. If the sortbuf has more than one character, check
154
                            for each of these characters that are not "blocked"
155
                            from the starter (i.e. have a ccc that is higher
156
                            than the ccc of the previous character) whether it
157
                            can be combined with the first character.
158
                         3. If only one character is left in sortbuf, check
159
                            whether it can be combined with the next character
160
                            (also a starter).  */
161
2.11M
                    if (sortbuf_count > 0 && sortbuf[0].ccc == 0)
162
1.92M
                      {
163
2.16M
                        for (size_t j = 1; j < sortbuf_count; )
164
236k
                          {
165
236k
                            if (sortbuf[j].ccc > sortbuf[j - 1].ccc)
166
139k
                              {
167
139k
                                ucs4_t combined =
168
139k
                                  composer (sortbuf[0].code, sortbuf[j].code);
169
139k
                                if (combined)
170
111k
                                  {
171
111k
                                    sortbuf[0].code = combined;
172
                                    /* sortbuf[0].ccc = 0, still valid.  */
173
199k
                                    for (size_t k = j + 1; k < sortbuf_count; k++)
174
87.8k
                                      sortbuf[k - 1] = sortbuf[k];
175
111k
                                    sortbuf_count--;
176
111k
                                    continue;
177
111k
                                  }
178
139k
                              }
179
125k
                            j++;
180
125k
                          }
181
1.92M
                        if (s < s_end && sortbuf_count == 1)
182
1.72M
                          {
183
1.72M
                            ucs4_t combined =
184
1.72M
                              composer (sortbuf[0].code, uc);
185
1.72M
                            if (combined)
186
8.14k
                              {
187
8.14k
                                uc = combined;
188
8.14k
                                ccc = 0;
189
                                /* uc could be further combined with subsequent
190
                                   characters.  So don't put it into sortbuf[0] in
191
                                   this round, only in the next round.  */
192
8.14k
                                sortbuf_count = 0;
193
8.14k
                              }
194
1.72M
                          }
195
1.92M
                      }
196
2.11M
                  }
197
198
4.21M
                for (size_t j = 0; j < sortbuf_count; j++)
199
2.10M
                  {
200
2.10M
                    ucs4_t muc = sortbuf[j].code;
201
202
                    /* Append muc to the result accumulator.  */
203
2.10M
                    if (length < allocated)
204
1.90M
                      {
205
1.90M
                        int ret =
206
1.90M
                          U_UCTOMB (result + length, muc, allocated - length);
207
1.90M
                        if (ret == -1)
208
0
                          {
209
0
                            errno = EINVAL;
210
0
                            goto fail;
211
0
                          }
212
1.90M
                        if (ret >= 0)
213
1.90M
                          {
214
1.90M
                            length += ret;
215
1.90M
                            goto done_appending;
216
1.90M
                          }
217
1.90M
                      }
218
197k
                    {
219
197k
                      size_t old_allocated = allocated;
220
197k
                      size_t new_allocated = 2 * old_allocated;
221
197k
                      if (new_allocated < 64)
222
189k
                        new_allocated = 64;
223
197k
                      if (new_allocated < old_allocated) /* integer overflow? */
224
0
                        abort ();
225
197k
                      {
226
197k
                        UNIT *larger_result;
227
197k
                        if (result == NULL)
228
189k
                          {
229
189k
                            larger_result =
230
189k
                              (UNIT *) malloc (new_allocated * sizeof (UNIT));
231
189k
                            if (larger_result == NULL)
232
0
                              {
233
0
                                errno = ENOMEM;
234
0
                                goto fail;
235
0
                              }
236
189k
                          }
237
7.78k
                        else if (result == resultbuf)
238
0
                          {
239
0
                            larger_result =
240
0
                              (UNIT *) malloc (new_allocated * sizeof (UNIT));
241
0
                            if (larger_result == NULL)
242
0
                              {
243
0
                                errno = ENOMEM;
244
0
                                goto fail;
245
0
                              }
246
0
                            U_CPY (larger_result, resultbuf, length);
247
0
                          }
248
7.78k
                        else
249
7.78k
                          {
250
7.78k
                            larger_result =
251
7.78k
                              (UNIT *) realloc (result, new_allocated * sizeof (UNIT));
252
7.78k
                            if (larger_result == NULL)
253
0
                              {
254
0
                                errno = ENOMEM;
255
0
                                goto fail;
256
0
                              }
257
7.78k
                          }
258
197k
                        result = larger_result;
259
197k
                        allocated = new_allocated;
260
197k
                        {
261
197k
                          int ret =
262
197k
                            U_UCTOMB (result + length, muc, allocated - length);
263
197k
                          if (ret == -1)
264
0
                            {
265
0
                              errno = EINVAL;
266
0
                              goto fail;
267
0
                            }
268
197k
                          if (ret < 0)
269
0
                            abort ();
270
197k
                          length += ret;
271
197k
                          goto done_appending;
272
197k
                        }
273
197k
                      }
274
197k
                    }
275
2.10M
                   done_appending: ;
276
2.10M
                  }
277
278
                /* sortbuf is now empty.  */
279
2.11M
                sortbuf_count = 0;
280
2.11M
              }
281
282
2.41M
            if (!(s < s_end))
283
              /* End of string reached.  */
284
191k
              break;
285
286
            /* Append (uc, ccc) to sortbuf.  */
287
2.22M
            if (sortbuf_count == sortbuf_allocated)
288
1.30k
              {
289
1.30k
                sortbuf_allocated = 2 * sortbuf_allocated;
290
1.30k
                if (sortbuf_allocated < sortbuf_count) /* integer overflow? */
291
0
                  abort ();
292
1.30k
                struct ucs4_with_ccc *new_sortbuf =
293
1.30k
                  (struct ucs4_with_ccc *) malloc (2 * sortbuf_allocated * sizeof (struct ucs4_with_ccc));
294
1.30k
                if (new_sortbuf == NULL)
295
0
                  {
296
0
                    errno = ENOMEM;
297
0
                    goto fail;
298
0
                  }
299
1.30k
                memcpy (new_sortbuf, sortbuf,
300
1.30k
                        sortbuf_count * sizeof (struct ucs4_with_ccc));
301
1.30k
                if (sortbuf != sortbuf_preallocated)
302
335
                  free (sortbuf);
303
1.30k
                sortbuf = new_sortbuf;
304
1.30k
              }
305
2.22M
            sortbuf[sortbuf_count].code = uc;
306
2.22M
            sortbuf[sortbuf_count].ccc = ccc;
307
2.22M
            sortbuf_count++;
308
309
2.22M
            i++;
310
2.22M
          }
311
312
2.26M
        if (!(s < s_end))
313
          /* End of string reached.  */
314
191k
          break;
315
316
2.07M
        s += count;
317
2.07M
      }
318
191k
  }
319
320
191k
  if (length == 0)
321
2.23k
    {
322
2.23k
      if (result == NULL)
323
2.23k
        {
324
          /* Return a non-NULL value.  NULL means error.  */
325
2.23k
          result = (UNIT *) malloc (1);
326
2.23k
          if (result == NULL)
327
0
            {
328
0
              errno = ENOMEM;
329
0
              goto fail;
330
0
            }
331
2.23k
        }
332
2.23k
    }
333
189k
  else if (result != resultbuf && length < allocated)
334
187k
    {
335
      /* Shrink the allocated memory if possible.  */
336
187k
      UNIT *memory = (UNIT *) realloc (result, length * sizeof (UNIT));
337
187k
      if (memory != NULL)
338
187k
        result = memory;
339
187k
    }
340
341
191k
  if (sortbuf_count > 0)
342
0
    abort ();
343
191k
  if (sortbuf != sortbuf_preallocated)
344
971
    free (sortbuf);
345
346
191k
  *lengthp = length;
347
191k
  return result;
348
349
0
 fail:
350
0
  {
351
0
    int saved_errno = errno;
352
0
    if (sortbuf != sortbuf_preallocated)
353
0
      free (sortbuf);
354
0
    if (result != resultbuf)
355
0
      free (result);
356
0
    errno = saved_errno;
357
0
  }
358
  return NULL;
359
191k
}
Unexecuted instantiation: u16_normalize
u32_normalize
Line
Count
Source
21
191k
{
22
191k
  int (*decomposer) (ucs4_t uc, ucs4_t *decomposition) = nf->decomposer;
23
191k
  ucs4_t (*composer) (ucs4_t uc1, ucs4_t uc2) = nf->composer;
24
25
  /* The result being accumulated.  */
26
191k
  UNIT *result;
27
191k
  size_t allocated;
28
191k
  if (resultbuf == NULL)
29
191k
    {
30
191k
      result = NULL;
31
191k
      allocated = 0;
32
191k
    }
33
0
  else
34
0
    {
35
0
      result = resultbuf;
36
0
      allocated = *lengthp;
37
0
    }
38
191k
  size_t length = 0;
39
40
  /* The buffer for sorting.  */
41
191k
  #define SORTBUF_PREALLOCATED 64
42
191k
  struct ucs4_with_ccc sortbuf_preallocated[2 * SORTBUF_PREALLOCATED];
43
191k
  struct ucs4_with_ccc *sortbuf = /* array of size 2 * sortbuf_allocated */
44
191k
    sortbuf_preallocated;
45
191k
  size_t sortbuf_allocated = SORTBUF_PREALLOCATED;
46
191k
  size_t sortbuf_count = 0;
47
48
191k
  {
49
191k
    const UNIT *s_end = s + n;
50
51
191k
    for (;;)
52
2.26M
      {
53
2.26M
        int count;
54
2.26M
        ucs4_t decomposed[UC_DECOMPOSITION_MAX_LENGTH];
55
2.26M
        int decomposed_count;
56
57
2.26M
        if (s < s_end)
58
2.07M
          {
59
            /* Fetch the next character.  */
60
2.07M
            count = U_MBTOUC_UNSAFE (&decomposed[0], s, s_end - s);
61
2.07M
            decomposed_count = 1;
62
63
            /* Decompose it, recursively.
64
               It would be possible to precompute the recursive decomposition
65
               and store it in a table.  But this would significantly increase
66
               the size of the decomposition tables, because for example for
67
               U+1FC1 the recursive canonical decomposition and the recursive
68
               compatibility decomposition are different.  */
69
4.44M
            for (int curr = 0; curr < decomposed_count; )
70
2.36M
              {
71
                /* Invariant: decomposed[0..curr-1] is fully decomposed, i.e.
72
                   all elements are atomic.  */
73
2.36M
                ucs4_t curr_decomposed[UC_DECOMPOSITION_MAX_LENGTH];
74
2.36M
                int curr_decomposed_count;
75
76
2.36M
                curr_decomposed_count = decomposer (decomposed[curr], curr_decomposed);
77
2.36M
                if (curr_decomposed_count >= 0)
78
143k
                  {
79
                    /* Move curr_decomposed[0..curr_decomposed_count-1] over
80
                       decomposed[curr], making room.  It's not worth using
81
                       memcpy() here, since the counts are so small.  */
82
143k
                    int shift = curr_decomposed_count - 1;
83
84
143k
                    if (shift < 0)
85
0
                      abort ();
86
143k
                    if (shift > 0)
87
141k
                      {
88
141k
                        decomposed_count += shift;
89
141k
                        if (decomposed_count > UC_DECOMPOSITION_MAX_LENGTH)
90
0
                          abort ();
91
155k
                        for (int j = decomposed_count - 1 - shift; j > curr; j--)
92
13.2k
                          decomposed[j + shift] = decomposed[j];
93
141k
                      }
94
428k
                    for (; shift >= 0; shift--)
95
285k
                      decomposed[curr + shift] = curr_decomposed[shift];
96
143k
                  }
97
2.22M
                else
98
2.22M
                  {
99
                    /* decomposed[curr] is atomic.  */
100
2.22M
                    curr++;
101
2.22M
                  }
102
2.36M
              }
103
2.07M
          }
104
191k
        else
105
191k
          {
106
191k
            count = 0;
107
191k
            decomposed_count = 0;
108
191k
          }
109
110
2.26M
        int i = 0;
111
2.26M
        for (;;)
112
4.48M
          {
113
4.48M
            ucs4_t uc;
114
4.48M
            int ccc;
115
116
4.48M
            if (s < s_end)
117
4.29M
              {
118
                /* Fetch the next character from the decomposition.  */
119
4.29M
                if (i == decomposed_count)
120
2.07M
                  break;
121
2.22M
                uc = decomposed[i];
122
2.22M
                ccc = uc_combining_class (uc);
123
2.22M
              }
124
191k
            else
125
191k
              {
126
                /* End of string reached.  */
127
191k
                uc = 0;
128
191k
                ccc = 0;
129
191k
              }
130
131
2.41M
            if (ccc == 0)
132
2.11M
              {
133
                /* Apply the canonical ordering algorithm to the accumulated
134
                   sequence of characters.  */
135
2.11M
                if (sortbuf_count > 1)
136
122k
                  gl_uninorm_decompose_merge_sort_inplace (sortbuf, sortbuf_count,
137
122k
                                                           sortbuf + sortbuf_count);
138
139
2.11M
                if (composer != NULL)
140
2.11M
                  {
141
                    /* Attempt to combine decomposed characters, as specified
142
                       in the Unicode Standard Annex #15 "Unicode Normalization
143
                       Forms".  We need to check
144
                         1. whether the first accumulated character is a
145
                            "starter" (i.e. has ccc = 0).  This is usually the
146
                            case.  But when the string starts with a
147
                            non-starter, the sortbuf also starts with a
148
                            non-starter.  Btw, this check could also be
149
                            omitted, because the composition table has only
150
                            entries (code1, code2) for which code1 is a
151
                            starter; if the first accumulated character is not
152
                            a starter, no lookup will succeed.
153
                         2. If the sortbuf has more than one character, check
154
                            for each of these characters that are not "blocked"
155
                            from the starter (i.e. have a ccc that is higher
156
                            than the ccc of the previous character) whether it
157
                            can be combined with the first character.
158
                         3. If only one character is left in sortbuf, check
159
                            whether it can be combined with the next character
160
                            (also a starter).  */
161
2.11M
                    if (sortbuf_count > 0 && sortbuf[0].ccc == 0)
162
1.92M
                      {
163
2.16M
                        for (size_t j = 1; j < sortbuf_count; )
164
236k
                          {
165
236k
                            if (sortbuf[j].ccc > sortbuf[j - 1].ccc)
166
139k
                              {
167
139k
                                ucs4_t combined =
168
139k
                                  composer (sortbuf[0].code, sortbuf[j].code);
169
139k
                                if (combined)
170
111k
                                  {
171
111k
                                    sortbuf[0].code = combined;
172
                                    /* sortbuf[0].ccc = 0, still valid.  */
173
199k
                                    for (size_t k = j + 1; k < sortbuf_count; k++)
174
87.8k
                                      sortbuf[k - 1] = sortbuf[k];
175
111k
                                    sortbuf_count--;
176
111k
                                    continue;
177
111k
                                  }
178
139k
                              }
179
125k
                            j++;
180
125k
                          }
181
1.92M
                        if (s < s_end && sortbuf_count == 1)
182
1.72M
                          {
183
1.72M
                            ucs4_t combined =
184
1.72M
                              composer (sortbuf[0].code, uc);
185
1.72M
                            if (combined)
186
8.14k
                              {
187
8.14k
                                uc = combined;
188
8.14k
                                ccc = 0;
189
                                /* uc could be further combined with subsequent
190
                                   characters.  So don't put it into sortbuf[0] in
191
                                   this round, only in the next round.  */
192
8.14k
                                sortbuf_count = 0;
193
8.14k
                              }
194
1.72M
                          }
195
1.92M
                      }
196
2.11M
                  }
197
198
4.21M
                for (size_t j = 0; j < sortbuf_count; j++)
199
2.10M
                  {
200
2.10M
                    ucs4_t muc = sortbuf[j].code;
201
202
                    /* Append muc to the result accumulator.  */
203
2.10M
                    if (length < allocated)
204
1.90M
                      {
205
1.90M
                        int ret =
206
1.90M
                          U_UCTOMB (result + length, muc, allocated - length);
207
1.90M
                        if (ret == -1)
208
0
                          {
209
0
                            errno = EINVAL;
210
0
                            goto fail;
211
0
                          }
212
1.90M
                        if (ret >= 0)
213
1.90M
                          {
214
1.90M
                            length += ret;
215
1.90M
                            goto done_appending;
216
1.90M
                          }
217
1.90M
                      }
218
197k
                    {
219
197k
                      size_t old_allocated = allocated;
220
197k
                      size_t new_allocated = 2 * old_allocated;
221
197k
                      if (new_allocated < 64)
222
189k
                        new_allocated = 64;
223
197k
                      if (new_allocated < old_allocated) /* integer overflow? */
224
0
                        abort ();
225
197k
                      {
226
197k
                        UNIT *larger_result;
227
197k
                        if (result == NULL)
228
189k
                          {
229
189k
                            larger_result =
230
189k
                              (UNIT *) malloc (new_allocated * sizeof (UNIT));
231
189k
                            if (larger_result == NULL)
232
0
                              {
233
0
                                errno = ENOMEM;
234
0
                                goto fail;
235
0
                              }
236
189k
                          }
237
7.78k
                        else if (result == resultbuf)
238
0
                          {
239
0
                            larger_result =
240
0
                              (UNIT *) malloc (new_allocated * sizeof (UNIT));
241
0
                            if (larger_result == NULL)
242
0
                              {
243
0
                                errno = ENOMEM;
244
0
                                goto fail;
245
0
                              }
246
0
                            U_CPY (larger_result, resultbuf, length);
247
0
                          }
248
7.78k
                        else
249
7.78k
                          {
250
7.78k
                            larger_result =
251
7.78k
                              (UNIT *) realloc (result, new_allocated * sizeof (UNIT));
252
7.78k
                            if (larger_result == NULL)
253
0
                              {
254
0
                                errno = ENOMEM;
255
0
                                goto fail;
256
0
                              }
257
7.78k
                          }
258
197k
                        result = larger_result;
259
197k
                        allocated = new_allocated;
260
197k
                        {
261
197k
                          int ret =
262
197k
                            U_UCTOMB (result + length, muc, allocated - length);
263
197k
                          if (ret == -1)
264
0
                            {
265
0
                              errno = EINVAL;
266
0
                              goto fail;
267
0
                            }
268
197k
                          if (ret < 0)
269
0
                            abort ();
270
197k
                          length += ret;
271
197k
                          goto done_appending;
272
197k
                        }
273
197k
                      }
274
197k
                    }
275
2.10M
                   done_appending: ;
276
2.10M
                  }
277
278
                /* sortbuf is now empty.  */
279
2.11M
                sortbuf_count = 0;
280
2.11M
              }
281
282
2.41M
            if (!(s < s_end))
283
              /* End of string reached.  */
284
191k
              break;
285
286
            /* Append (uc, ccc) to sortbuf.  */
287
2.22M
            if (sortbuf_count == sortbuf_allocated)
288
1.30k
              {
289
1.30k
                sortbuf_allocated = 2 * sortbuf_allocated;
290
1.30k
                if (sortbuf_allocated < sortbuf_count) /* integer overflow? */
291
0
                  abort ();
292
1.30k
                struct ucs4_with_ccc *new_sortbuf =
293
1.30k
                  (struct ucs4_with_ccc *) malloc (2 * sortbuf_allocated * sizeof (struct ucs4_with_ccc));
294
1.30k
                if (new_sortbuf == NULL)
295
0
                  {
296
0
                    errno = ENOMEM;
297
0
                    goto fail;
298
0
                  }
299
1.30k
                memcpy (new_sortbuf, sortbuf,
300
1.30k
                        sortbuf_count * sizeof (struct ucs4_with_ccc));
301
1.30k
                if (sortbuf != sortbuf_preallocated)
302
335
                  free (sortbuf);
303
1.30k
                sortbuf = new_sortbuf;
304
1.30k
              }
305
2.22M
            sortbuf[sortbuf_count].code = uc;
306
2.22M
            sortbuf[sortbuf_count].ccc = ccc;
307
2.22M
            sortbuf_count++;
308
309
2.22M
            i++;
310
2.22M
          }
311
312
2.26M
        if (!(s < s_end))
313
          /* End of string reached.  */
314
191k
          break;
315
316
2.07M
        s += count;
317
2.07M
      }
318
191k
  }
319
320
191k
  if (length == 0)
321
2.23k
    {
322
2.23k
      if (result == NULL)
323
2.23k
        {
324
          /* Return a non-NULL value.  NULL means error.  */
325
2.23k
          result = (UNIT *) malloc (1);
326
2.23k
          if (result == NULL)
327
0
            {
328
0
              errno = ENOMEM;
329
0
              goto fail;
330
0
            }
331
2.23k
        }
332
2.23k
    }
333
189k
  else if (result != resultbuf && length < allocated)
334
187k
    {
335
      /* Shrink the allocated memory if possible.  */
336
187k
      UNIT *memory = (UNIT *) realloc (result, length * sizeof (UNIT));
337
187k
      if (memory != NULL)
338
187k
        result = memory;
339
187k
    }
340
341
191k
  if (sortbuf_count > 0)
342
0
    abort ();
343
191k
  if (sortbuf != sortbuf_preallocated)
344
971
    free (sortbuf);
345
346
191k
  *lengthp = length;
347
191k
  return result;
348
349
0
 fail:
350
0
  {
351
0
    int saved_errno = errno;
352
0
    if (sortbuf != sortbuf_preallocated)
353
0
      free (sortbuf);
354
0
    if (result != resultbuf)
355
0
      free (result);
356
0
    errno = saved_errno;
357
0
  }
358
  return NULL;
359
191k
}