Coverage Report

Created: 2025-08-24 06:26

/src/harfbuzz/src/hb-ot-cmap-table.hh
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright © 2014  Google, Inc.
3
 *
4
 *  This is part of HarfBuzz, a text shaping library.
5
 *
6
 * Permission is hereby granted, without written agreement and without
7
 * license or royalty fees, to use, copy, modify, and distribute this
8
 * software and its documentation for any purpose, provided that the
9
 * above copyright notice and the following two paragraphs appear in
10
 * all copies of this software.
11
 *
12
 * IN NO EVENT SHALL THE COPYRIGHT HOLDER BE LIABLE TO ANY PARTY FOR
13
 * DIRECT, INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES
14
 * ARISING OUT OF THE USE OF THIS SOFTWARE AND ITS DOCUMENTATION, EVEN
15
 * IF THE COPYRIGHT HOLDER HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH
16
 * DAMAGE.
17
 *
18
 * THE COPYRIGHT HOLDER SPECIFICALLY DISCLAIMS ANY WARRANTIES, INCLUDING,
19
 * BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
20
 * FITNESS FOR A PARTICULAR PURPOSE.  THE SOFTWARE PROVIDED HEREUNDER IS
21
 * ON AN "AS IS" BASIS, AND THE COPYRIGHT HOLDER HAS NO OBLIGATION TO
22
 * PROVIDE MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS, OR MODIFICATIONS.
23
 *
24
 * Google Author(s): Behdad Esfahbod
25
 */
26
27
#ifndef HB_OT_CMAP_TABLE_HH
28
#define HB_OT_CMAP_TABLE_HH
29
30
#include "hb-ot-os2-table.hh"
31
#include "hb-ot-shaper-arabic-pua.hh"
32
#include "hb-open-type.hh"
33
#include "hb-set.hh"
34
#include "hb-cache.hh"
35
36
/*
37
 * cmap -- Character to Glyph Index Mapping
38
 * https://docs.microsoft.com/en-us/typography/opentype/spec/cmap
39
 */
40
#define HB_OT_TAG_cmap HB_TAG('c','m','a','p')
41
42
namespace OT {
43
44
static inline uint8_t unicode_to_macroman (hb_codepoint_t u)
45
0
{
46
0
  static const struct unicode_to_macroman_t
47
0
  {
48
0
    uint16_t unicode;
49
0
    uint8_t macroman;
50
0
  }
51
0
  mapping[] =
52
0
  {
53
0
    { 0x00A0, 0xCA },
54
0
    { 0x00A1, 0xC1 },
55
0
    { 0x00A2, 0xA2 },
56
0
    { 0x00A3, 0xA3 },
57
0
    { 0x00A5, 0xB4 },
58
0
    { 0x00A7, 0xA4 },
59
0
    { 0x00A8, 0xAC },
60
0
    { 0x00A9, 0xA9 },
61
0
    { 0x00AA, 0xBB },
62
0
    { 0x00AB, 0xC7 },
63
0
    { 0x00AC, 0xC2 },
64
0
    { 0x00AE, 0xA8 },
65
0
    { 0x00AF, 0xF8 },
66
0
    { 0x00B0, 0xA1 },
67
0
    { 0x00B1, 0xB1 },
68
0
    { 0x00B4, 0xAB },
69
0
    { 0x00B5, 0xB5 },
70
0
    { 0x00B6, 0xA6 },
71
0
    { 0x00B7, 0xE1 },
72
0
    { 0x00B8, 0xFC },
73
0
    { 0x00BA, 0xBC },
74
0
    { 0x00BB, 0xC8 },
75
0
    { 0x00BF, 0xC0 },
76
0
    { 0x00C0, 0xCB },
77
0
    { 0x00C1, 0xE7 },
78
0
    { 0x00C2, 0xE5 },
79
0
    { 0x00C3, 0xCC },
80
0
    { 0x00C4, 0x80 },
81
0
    { 0x00C5, 0x81 },
82
0
    { 0x00C6, 0xAE },
83
0
    { 0x00C7, 0x82 },
84
0
    { 0x00C8, 0xE9 },
85
0
    { 0x00C9, 0x83 },
86
0
    { 0x00CA, 0xE6 },
87
0
    { 0x00CB, 0xE8 },
88
0
    { 0x00CC, 0xED },
89
0
    { 0x00CD, 0xEA },
90
0
    { 0x00CE, 0xEB },
91
0
    { 0x00CF, 0xEC },
92
0
    { 0x00D1, 0x84 },
93
0
    { 0x00D2, 0xF1 },
94
0
    { 0x00D3, 0xEE },
95
0
    { 0x00D4, 0xEF },
96
0
    { 0x00D5, 0xCD },
97
0
    { 0x00D6, 0x85 },
98
0
    { 0x00D8, 0xAF },
99
0
    { 0x00D9, 0xF4 },
100
0
    { 0x00DA, 0xF2 },
101
0
    { 0x00DB, 0xF3 },
102
0
    { 0x00DC, 0x86 },
103
0
    { 0x00DF, 0xA7 },
104
0
    { 0x00E0, 0x88 },
105
0
    { 0x00E1, 0x87 },
106
0
    { 0x00E2, 0x89 },
107
0
    { 0x00E3, 0x8B },
108
0
    { 0x00E4, 0x8A },
109
0
    { 0x00E5, 0x8C },
110
0
    { 0x00E6, 0xBE },
111
0
    { 0x00E7, 0x8D },
112
0
    { 0x00E8, 0x8F },
113
0
    { 0x00E9, 0x8E },
114
0
    { 0x00EA, 0x90 },
115
0
    { 0x00EB, 0x91 },
116
0
    { 0x00EC, 0x93 },
117
0
    { 0x00ED, 0x92 },
118
0
    { 0x00EE, 0x94 },
119
0
    { 0x00EF, 0x95 },
120
0
    { 0x00F1, 0x96 },
121
0
    { 0x00F2, 0x98 },
122
0
    { 0x00F3, 0x97 },
123
0
    { 0x00F4, 0x99 },
124
0
    { 0x00F5, 0x9B },
125
0
    { 0x00F6, 0x9A },
126
0
    { 0x00F7, 0xD6 },
127
0
    { 0x00F8, 0xBF },
128
0
    { 0x00F9, 0x9D },
129
0
    { 0x00FA, 0x9C },
130
0
    { 0x00FB, 0x9E },
131
0
    { 0x00FC, 0x9F },
132
0
    { 0x00FF, 0xD8 },
133
0
    { 0x0131, 0xF5 },
134
0
    { 0x0152, 0xCE },
135
0
    { 0x0153, 0xCF },
136
0
    { 0x0178, 0xD9 },
137
0
    { 0x0192, 0xC4 },
138
0
    { 0x02C6, 0xF6 },
139
0
    { 0x02C7, 0xFF },
140
0
    { 0x02D8, 0xF9 },
141
0
    { 0x02D9, 0xFA },
142
0
    { 0x02DA, 0xFB },
143
0
    { 0x02DB, 0xFE },
144
0
    { 0x02DC, 0xF7 },
145
0
    { 0x02DD, 0xFD },
146
0
    { 0x03A9, 0xBD },
147
0
    { 0x03C0, 0xB9 },
148
0
    { 0x2013, 0xD0 },
149
0
    { 0x2014, 0xD1 },
150
0
    { 0x2018, 0xD4 },
151
0
    { 0x2019, 0xD5 },
152
0
    { 0x201A, 0xE2 },
153
0
    { 0x201C, 0xD2 },
154
0
    { 0x201D, 0xD3 },
155
0
    { 0x201E, 0xE3 },
156
0
    { 0x2020, 0xA0 },
157
0
    { 0x2021, 0xE0 },
158
0
    { 0x2022, 0xA5 },
159
0
    { 0x2026, 0xC9 },
160
0
    { 0x2030, 0xE4 },
161
0
    { 0x2039, 0xDC },
162
0
    { 0x203A, 0xDD },
163
0
    { 0x2044, 0xDA },
164
0
    { 0x20AC, 0xDB },
165
0
    { 0x2122, 0xAA },
166
0
    { 0x2202, 0xB6 },
167
0
    { 0x2206, 0xC6 },
168
0
    { 0x220F, 0xB8 },
169
0
    { 0x2211, 0xB7 },
170
0
    { 0x221A, 0xC3 },
171
0
    { 0x221E, 0xB0 },
172
0
    { 0x222B, 0xBA },
173
0
    { 0x2248, 0xC5 },
174
0
    { 0x2260, 0xAD },
175
0
    { 0x2264, 0xB2 },
176
0
    { 0x2265, 0xB3 },
177
0
    { 0x25CA, 0xD7 },
178
0
    { 0xF8FF, 0xF0 },
179
0
    { 0xFB01, 0xDE },
180
0
    { 0xFB02, 0xDF },
181
0
  };
182
0
  auto *c = hb_bsearch (u, mapping, ARRAY_LENGTH (mapping), sizeof (mapping[0]),
183
0
      _hb_cmp_operator<uint16_t, uint16_t>);
184
0
  return c ? c->macroman : 0;
185
0
}
Unexecuted instantiation: hb-face.cc:OT::unicode_to_macroman(unsigned int)
Unexecuted instantiation: hb-ot-face.cc:OT::unicode_to_macroman(unsigned int)
Unexecuted instantiation: hb-ot-font.cc:OT::unicode_to_macroman(unsigned int)
Unexecuted instantiation: hb-static.cc:OT::unicode_to_macroman(unsigned int)
186
187
struct CmapSubtableFormat0
188
{
189
  bool get_glyph (hb_codepoint_t codepoint, hb_codepoint_t *glyph) const
190
0
  {
191
0
    hb_codepoint_t gid = codepoint < 256 ? glyphIdArray[codepoint] : 0;
192
0
    if (unlikely (!gid))
193
0
      return false;
194
0
    *glyph = gid;
195
0
    return true;
196
0
  }
197
198
  unsigned get_language () const
199
0
  {
200
0
    return language;
201
0
  }
202
203
  void collect_unicodes (hb_set_t *out) const
204
0
  {
205
0
    for (unsigned int i = 0; i < 256; i++)
206
0
      if (glyphIdArray[i])
207
0
  out->add (i);
208
0
  }
209
210
  void collect_mapping (hb_set_t *unicodes, /* OUT */
211
      hb_map_t *mapping /* OUT */) const
212
0
  {
213
0
    for (unsigned i = 0; i < 256; i++)
214
0
      if (glyphIdArray[i])
215
0
      {
216
0
  hb_codepoint_t glyph = glyphIdArray[i];
217
0
  unicodes->add (i);
218
0
  mapping->set (i, glyph);
219
0
      }
220
0
  }
221
222
  bool sanitize (hb_sanitize_context_t *c) const
223
0
  {
224
0
    TRACE_SANITIZE (this);
225
0
    return_trace (c->check_struct (this));
226
0
  }
227
228
  protected:
229
  HBUINT16  format;   /* Format number is set to 0. */
230
  HBUINT16  length;   /* Byte length of this subtable. */
231
  HBUINT16  language; /* Ignore. */
232
  HBUINT8 glyphIdArray[256];/* An array that maps character
233
         * code to glyph index values. */
234
  public:
235
  DEFINE_SIZE_STATIC (6 + 256);
236
};
237
238
struct CmapSubtableFormat4
239
{
240
241
242
  template<typename Iterator,
243
      typename Writer,
244
     hb_requires (hb_is_iterator (Iterator))>
245
  void to_ranges (Iterator it, Writer& range_writer)
246
0
  {
247
0
    hb_codepoint_t start_cp = 0, prev_run_start_cp = 0, run_start_cp = 0, end_cp = 0, last_gid = 0;
248
0
    int run_length = 0 , delta = 0, prev_delta = 0;
249
0
250
0
    enum {
251
0
      FIRST_SUB_RANGE,
252
0
      FOLLOWING_SUB_RANGE,
253
0
    } mode;
254
0
255
0
    while (it) {
256
0
      // Start a new range
257
0
      {
258
0
        const auto& pair = *it;
259
0
        start_cp = pair.first;
260
0
        prev_run_start_cp = start_cp;
261
0
        run_start_cp = start_cp;
262
0
        end_cp = start_cp;
263
0
        last_gid = pair.second;
264
0
        run_length = 1;
265
0
        prev_delta = 0;
266
0
      }
267
0
268
0
      delta = last_gid - start_cp;
269
0
      mode = FIRST_SUB_RANGE;
270
0
      it++;
271
0
272
0
      while (it) {
273
0
        // Process range
274
0
        const auto& pair = *it;
275
0
        hb_codepoint_t next_cp = pair.first;
276
0
        hb_codepoint_t next_gid = pair.second;
277
0
        if (next_cp != end_cp + 1) {
278
0
          // Current range is over, stop processing.
279
0
          break;
280
0
        }
281
0
282
0
        if (next_gid == last_gid + 1) {
283
0
          // The current run continues.
284
0
          end_cp = next_cp;
285
0
          run_length++;
286
0
          last_gid = next_gid;
287
0
          it++;
288
0
          continue;
289
0
        }
290
0
291
0
        // A new run is starting, decide if we want to commit the current run.
292
0
        int split_cost = (mode == FIRST_SUB_RANGE) ? 8 : 16;
293
0
        int run_cost = run_length * 2;
294
0
        if (run_cost >= split_cost) {
295
0
          commit_current_range(start_cp,
296
0
                               prev_run_start_cp,
297
0
                               run_start_cp,
298
0
                               end_cp,
299
0
                               delta,
300
0
                               prev_delta,
301
0
                               split_cost,
302
0
                               range_writer);
303
0
          start_cp = next_cp;
304
0
        }
305
0
306
0
        // Start the new run
307
0
        mode = FOLLOWING_SUB_RANGE;
308
0
        prev_run_start_cp = run_start_cp;
309
0
        run_start_cp = next_cp;
310
0
        end_cp = next_cp;
311
0
        prev_delta = delta;
312
0
        delta = next_gid - run_start_cp;
313
0
        run_length = 1;
314
0
        last_gid = next_gid;
315
0
        it++;
316
0
      }
317
0
318
0
      // Finalize range
319
0
      commit_current_range (start_cp,
320
0
                            prev_run_start_cp,
321
0
                            run_start_cp,
322
0
                            end_cp,
323
0
                            delta,
324
0
                            prev_delta,
325
0
                            8,
326
0
                            range_writer);
327
0
    }
328
0
329
0
    if (likely (end_cp != 0xFFFF)) {
330
0
      range_writer (0xFFFF, 0xFFFF, 1);
331
0
    }
332
0
  }
Unexecuted instantiation: _ZN2OT19CmapSubtableFormat49to_rangesI10hb_array_tIK9hb_pair_tIjjEEZNS0_23serialize_find_segcountIS6_TnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NS9_6item_tEEE5valueEvE4typeELPv0EEEjS9_E7CounterTnSD_LSE_0EEEvS9_RT0_
Unexecuted instantiation: _ZN2OT19CmapSubtableFormat49to_rangesI10hb_array_tIK9hb_pair_tIjjEEZNS0_32serialize_start_end_delta_arraysIS6_TnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NS9_6item_tEEE5valueEvE4typeELPv0EEEbP22hb_serialize_context_tS9_iE6WriterTnSD_LSE_0EEEvS9_RT0_
333
334
  /*
335
   * Writes the current range as either one or two ranges depending on what is most efficient.
336
   */
337
  template<typename Writer>
338
  void commit_current_range (hb_codepoint_t start,
339
                             hb_codepoint_t prev_run_start,
340
                             hb_codepoint_t run_start,
341
                             hb_codepoint_t end,
342
                             int run_delta,
343
                             int previous_run_delta,
344
                             int split_cost,
345
0
                             Writer& range_writer) {
346
0
    bool should_split = false;
347
0
    if (start < run_start && run_start < end) {
348
0
      int run_cost = (end - run_start + 1) * 2;
349
0
      if (run_cost >= split_cost) {
350
0
        should_split = true;
351
0
      }
352
0
    }
353
0
354
0
    // TODO(grieger): handle case where delta is legitimately 0, mark range offset array instead?
355
0
    if (should_split) {
356
0
      if (start == prev_run_start)
357
0
        range_writer (start, run_start - 1, previous_run_delta);
358
0
      else
359
0
        range_writer (start, run_start - 1, 0);
360
0
      range_writer (run_start, end, run_delta);
361
0
      return;
362
0
    }
363
0
364
0
365
0
    if (start == run_start) {
366
0
      // Range is only a run
367
0
      range_writer (start, end, run_delta);
368
0
      return;
369
0
    }
370
0
371
0
    // Write only a single non-run range.
372
0
    range_writer (start, end, 0);
373
0
  }
Unexecuted instantiation: _ZN2OT19CmapSubtableFormat420commit_current_rangeIZNS0_23serialize_find_segcountI10hb_array_tIK9hb_pair_tIjjEETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NS9_6item_tEEE5valueEvE4typeELPv0EEEjS9_E7CounterEEvjjjjiiiRS9_
Unexecuted instantiation: _ZN2OT19CmapSubtableFormat420commit_current_rangeIZNS0_32serialize_start_end_delta_arraysI10hb_array_tIK9hb_pair_tIjjEETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NS9_6item_tEEE5valueEvE4typeELPv0EEEbP22hb_serialize_context_tS9_iE6WriterEEvjjjjiiiRS9_
374
375
  template<typename Iterator,
376
     hb_requires (hb_is_iterator (Iterator))>
377
0
  unsigned serialize_find_segcount (Iterator it) {
378
0
    struct Counter {
379
0
      unsigned segcount = 0;
380
0
381
0
      void operator() (hb_codepoint_t start,
382
0
                       hb_codepoint_t end,
383
0
                       int delta) {
384
0
        segcount++;
385
0
      }
386
0
    } counter;
387
0
388
0
    to_ranges (+it, counter);
389
0
    return counter.segcount;
390
0
  }
391
392
393
  template<typename Iterator,
394
     hb_requires (hb_is_iterator (Iterator))>
395
  bool serialize_start_end_delta_arrays (hb_serialize_context_t *c,
396
                                         Iterator it,
397
                                         int segcount)
398
0
  {
399
0
    struct Writer {
400
0
      hb_serialize_context_t *serializer_;
401
0
      HBUINT16* end_code_;
402
0
      HBUINT16* start_code_;
403
0
      HBINT16* id_delta_;
404
0
      int index_;
405
0
406
0
      Writer(hb_serialize_context_t *serializer)
407
0
          : serializer_(serializer),
408
0
            end_code_(nullptr),
409
0
            start_code_(nullptr),
410
0
            id_delta_(nullptr),
411
0
            index_ (0) {}
412
0
      void operator() (hb_codepoint_t start,
413
0
                       hb_codepoint_t end,
414
0
                       int delta) {
415
0
        start_code_[index_] = start;
416
0
        end_code_[index_] = end;
417
0
        id_delta_[index_] = delta;
418
0
        index_++;
419
0
      }
420
0
    } writer(c);
421
0
422
0
    writer.end_code_ = c->allocate_size<HBUINT16> (HBUINT16::static_size * segcount, false);
423
0
    (void) c->allocate_size<HBUINT16> (2); // padding
424
0
    writer.start_code_ = c->allocate_size<HBUINT16> (HBUINT16::static_size * segcount, false);
425
0
    writer.id_delta_ = c->allocate_size<HBINT16> (HBINT16::static_size * segcount, false);
426
0
427
0
    if (unlikely (!writer.end_code_ || !writer.start_code_ || !writer.id_delta_)) return false;
428
0
429
0
    to_ranges (+it, writer);
430
0
    return true;
431
0
  }
432
433
  template<typename Iterator,
434
          hb_requires (hb_is_iterator (Iterator))>
435
  HBUINT16* serialize_rangeoffset_glyid (hb_serialize_context_t *c,
436
                                         Iterator it,
437
           HBUINT16 *endCode,
438
           HBUINT16 *startCode,
439
           HBINT16 *idDelta,
440
           unsigned segcount)
441
0
  {
442
0
    hb_map_t cp_to_gid { it };
443
0
444
0
    HBUINT16 *idRangeOffset = c->allocate_size<HBUINT16> (HBUINT16::static_size * segcount);
445
0
    if (unlikely (!c->check_success (idRangeOffset))) return nullptr;
446
0
    if (unlikely ((char *)idRangeOffset - (char *)idDelta != (int) segcount * (int) HBINT16::static_size)) return nullptr;
447
0
448
0
    for (unsigned i : + hb_range (segcount)
449
0
          | hb_filter ([&] (const unsigned _) { return idDelta[_] == 0; }))
450
0
    {
451
0
      idRangeOffset[i] = 2 * (c->start_embed<HBUINT16> () - idRangeOffset - i);
452
0
      for (hb_codepoint_t cp = startCode[i]; cp <= endCode[i]; cp++)
453
0
      {
454
0
        HBUINT16 gid;
455
0
        gid = cp_to_gid[cp];
456
0
        c->copy<HBUINT16> (gid);
457
0
      }
458
0
    }
459
0
460
0
    return idRangeOffset;
461
0
  }
462
463
  template<typename Iterator,
464
     hb_requires (hb_is_iterator (Iterator))>
465
  void serialize (hb_serialize_context_t *c,
466
      Iterator it)
467
0
  {
468
0
    auto format4_iter =
469
0
    + it
470
0
    | hb_filter ([&] (const hb_codepoint_pair_t _)
471
0
     { return _.first <= 0xFFFF; })
472
0
    ;
473
0
474
0
    if (!format4_iter) return;
475
0
476
0
    unsigned table_initpos = c->length ();
477
0
    if (unlikely (!c->extend_min (this))) return;
478
0
    this->format = 4;
479
0
480
0
    hb_vector_t<hb_codepoint_pair_t> cp_to_gid {
481
0
      format4_iter
482
0
    };
483
0
484
0
    //serialize endCode[], startCode[], idDelta[]
485
0
    HBUINT16* endCode = c->start_embed<HBUINT16> ();
486
0
    unsigned segcount = serialize_find_segcount (cp_to_gid.iter());
487
0
    if (unlikely (!serialize_start_end_delta_arrays (c, cp_to_gid.iter(), segcount)))
488
0
      return;
489
0
490
0
    HBUINT16 *startCode = endCode + segcount + 1;
491
0
    HBINT16 *idDelta = ((HBINT16*)startCode) + segcount;
492
0
493
0
    HBUINT16 *idRangeOffset = serialize_rangeoffset_glyid (c,
494
0
                                                           cp_to_gid.iter (),
495
0
                                                           endCode,
496
0
                                                           startCode,
497
0
                                                           idDelta,
498
0
                                                           segcount);
499
0
    if (unlikely (!c->check_success (idRangeOffset))) return;
500
0
501
0
    this->length = c->length () - table_initpos;
502
0
    if ((long long) this->length != (long long) c->length () - table_initpos)
503
0
    {
504
0
      c->err (HB_SERIALIZE_ERROR_INT_OVERFLOW);
505
0
      return;
506
0
    }
507
0
508
0
    this->segCountX2 = segcount * 2;
509
0
    this->entrySelector = hb_max (1u, hb_bit_storage (segcount)) - 1;
510
0
    this->searchRange = 2 * (1u << this->entrySelector);
511
0
    this->rangeShift = segcount * 2 > this->searchRange
512
0
           ? 2 * segcount - this->searchRange
513
0
           : 0;
514
0
  }
Unexecuted instantiation: hb-face.cc:_ZN2OT19CmapSubtableFormat49serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_
Unexecuted instantiation: hb-face.cc:_ZN2OT19CmapSubtableFormat49serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_
Unexecuted instantiation: hb-ot-face.cc:_ZN2OT19CmapSubtableFormat49serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_
Unexecuted instantiation: hb-ot-face.cc:_ZN2OT19CmapSubtableFormat49serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_
Unexecuted instantiation: hb-ot-font.cc:_ZN2OT19CmapSubtableFormat49serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_
Unexecuted instantiation: hb-ot-font.cc:_ZN2OT19CmapSubtableFormat49serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_
Unexecuted instantiation: hb-static.cc:_ZN2OT19CmapSubtableFormat49serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_
Unexecuted instantiation: hb-static.cc:_ZN2OT19CmapSubtableFormat49serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_
515
516
  unsigned get_language () const
517
0
  {
518
0
    return language;
519
0
  }
520
521
  struct accelerator_t
522
  {
523
0
    accelerator_t () {}
524
0
    accelerator_t (const CmapSubtableFormat4 *subtable) { init (subtable); }
525
526
    void init (const CmapSubtableFormat4 *subtable)
527
0
    {
528
0
      segCount = subtable->segCountX2 / 2;
529
0
      endCount = subtable->values.arrayZ;
530
0
      startCount = endCount + segCount + 1;
531
0
      idDelta = startCount + segCount;
532
0
      idRangeOffset = idDelta + segCount;
533
0
      glyphIdArray = idRangeOffset + segCount;
534
0
      glyphIdArrayLength = (subtable->length - 16 - 8 * segCount) / 2;
535
0
    }
536
537
    bool get_glyph (hb_codepoint_t codepoint, hb_codepoint_t *glyph) const
538
0
    {
539
0
      struct CustomRange
540
0
      {
541
0
  int cmp (hb_codepoint_t k,
542
0
     unsigned distance) const
543
0
  {
544
0
    if (k > last) return +1;
545
0
    if (k < (&last)[distance]/*first*/) return -1;
546
0
    return 0;
547
0
  }
548
0
  HBUINT16 last;
549
0
      };
550
551
0
      const HBUINT16 *found = hb_bsearch (codepoint,
552
0
            this->endCount,
553
0
            this->segCount,
554
0
            sizeof (CustomRange),
555
0
            _hb_cmp_method<hb_codepoint_t, CustomRange, unsigned>,
556
0
            this->segCount + 1);
557
0
      if (unlikely (!found))
558
0
  return false;
559
0
      unsigned int i = found - endCount;
560
561
0
      hb_codepoint_t gid;
562
0
      unsigned int rangeOffset = this->idRangeOffset[i];
563
0
      if (rangeOffset == 0)
564
0
  gid = codepoint + this->idDelta[i];
565
0
      else
566
0
      {
567
  /* Somebody has been smoking... */
568
0
  unsigned int index = rangeOffset / 2 + (codepoint - this->startCount[i]) + i - this->segCount;
569
0
  if (unlikely (index >= this->glyphIdArrayLength))
570
0
    return false;
571
0
  gid = this->glyphIdArray[index];
572
0
  if (unlikely (!gid))
573
0
    return false;
574
0
  gid += this->idDelta[i];
575
0
      }
576
0
      gid &= 0xFFFFu;
577
0
      if (unlikely (!gid))
578
0
  return false;
579
0
      *glyph = gid;
580
0
      return true;
581
0
    }
582
583
    HB_INTERNAL static bool get_glyph_func (const void *obj, hb_codepoint_t codepoint, hb_codepoint_t *glyph)
584
0
    { return ((const accelerator_t *) obj)->get_glyph (codepoint, glyph); }
585
586
    void collect_unicodes (hb_set_t *out) const
587
0
    {
588
0
      unsigned int count = this->segCount;
589
0
      if (count && this->startCount[count - 1] == 0xFFFFu)
590
0
  count--; /* Skip sentinel segment. */
591
0
      for (unsigned int i = 0; i < count; i++)
592
0
      {
593
0
  hb_codepoint_t start = this->startCount[i];
594
0
  hb_codepoint_t end = this->endCount[i];
595
0
  unsigned int rangeOffset = this->idRangeOffset[i];
596
0
        out->add_range(start, end);
597
0
  if (rangeOffset == 0)
598
0
  {
599
0
    for (hb_codepoint_t codepoint = start; codepoint <= end; codepoint++)
600
0
    {
601
0
      hb_codepoint_t gid = (codepoint + this->idDelta[i]) & 0xFFFFu;
602
0
      if (unlikely (!gid))
603
0
              out->del(codepoint);
604
0
    }
605
0
  }
606
0
  else
607
0
  {
608
0
    for (hb_codepoint_t codepoint = start; codepoint <= end; codepoint++)
609
0
    {
610
0
      unsigned int index = rangeOffset / 2 + (codepoint - this->startCount[i]) + i - this->segCount;
611
0
      if (unlikely (index >= this->glyphIdArrayLength))
612
0
            {
613
0
              out->del_range (codepoint, end);
614
0
        break;
615
0
            }
616
0
      hb_codepoint_t gid = this->glyphIdArray[index];
617
0
      if (unlikely (!gid))
618
0
              out->del(codepoint);
619
0
    }
620
0
  }
621
0
      }
622
0
    }
623
624
    void collect_mapping (hb_set_t *unicodes, /* OUT */
625
        hb_map_t *mapping /* OUT */) const
626
0
    {
627
      // TODO(grieger): optimize similar to collect_unicodes
628
      // (ie. use add_range())
629
0
      unsigned count = this->segCount;
630
0
      if (count && this->startCount[count - 1] == 0xFFFFu)
631
0
  count--; /* Skip sentinel segment. */
632
0
      for (unsigned i = 0; i < count; i++)
633
0
      {
634
0
  hb_codepoint_t start = this->startCount[i];
635
0
  hb_codepoint_t end = this->endCount[i];
636
0
  unsigned rangeOffset = this->idRangeOffset[i];
637
0
  if (rangeOffset == 0)
638
0
  {
639
0
    for (hb_codepoint_t codepoint = start; codepoint <= end; codepoint++)
640
0
    {
641
0
      hb_codepoint_t gid = (codepoint + this->idDelta[i]) & 0xFFFFu;
642
0
      if (unlikely (!gid))
643
0
        continue;
644
0
      unicodes->add (codepoint);
645
0
      mapping->set (codepoint, gid);
646
0
    }
647
0
  }
648
0
  else
649
0
  {
650
0
    for (hb_codepoint_t codepoint = start; codepoint <= end; codepoint++)
651
0
    {
652
0
      unsigned index = rangeOffset / 2 + (codepoint - this->startCount[i]) + i - this->segCount;
653
0
      if (unlikely (index >= this->glyphIdArrayLength))
654
0
        break;
655
0
      hb_codepoint_t gid = this->glyphIdArray[index];
656
0
      if (unlikely (!gid))
657
0
        continue;
658
0
      unicodes->add (codepoint);
659
0
      mapping->set (codepoint, gid);
660
0
    }
661
0
  }
662
0
      }
663
0
    }
664
665
    const HBUINT16 *endCount;
666
    const HBUINT16 *startCount;
667
    const HBUINT16 *idDelta;
668
    const HBUINT16 *idRangeOffset;
669
    const HBUINT16 *glyphIdArray;
670
    unsigned int segCount;
671
    unsigned int glyphIdArrayLength;
672
  };
673
674
  bool get_glyph (hb_codepoint_t codepoint, hb_codepoint_t *glyph) const
675
0
  {
676
0
    accelerator_t accel (this);
677
0
    return accel.get_glyph_func (&accel, codepoint, glyph);
678
0
  }
679
  void collect_unicodes (hb_set_t *out) const
680
0
  {
681
0
    accelerator_t accel (this);
682
0
    accel.collect_unicodes (out);
683
0
  }
684
685
  void collect_mapping (hb_set_t *unicodes, /* OUT */
686
      hb_map_t *mapping /* OUT */) const
687
0
  {
688
0
    accelerator_t accel (this);
689
0
    accel.collect_mapping (unicodes, mapping);
690
0
  }
691
692
  bool sanitize (hb_sanitize_context_t *c) const
693
0
  {
694
0
    TRACE_SANITIZE (this);
695
0
    if (unlikely (!c->check_struct (this)))
696
0
      return_trace (false);
697
0
    hb_barrier ();
698
699
0
    if (unlikely (!c->check_range (this, length)))
700
0
    {
701
      /* Some broken fonts have too long of a "length" value.
702
       * If that is the case, just change the value to truncate
703
       * the subtable at the end of the blob. */
704
0
      uint16_t new_length = (uint16_t) hb_min ((uintptr_t) 65535,
705
0
                 (uintptr_t) (c->end -
706
0
                  (char *) this));
707
0
      if (!c->try_set (&length, new_length))
708
0
  return_trace (false);
709
0
    }
710
711
0
    return_trace (16 + 4 * (unsigned int) segCountX2 <= length);
712
0
  }
713
714
715
716
  protected:
717
  HBUINT16  format;   /* Format number is set to 4. */
718
  HBUINT16  length;   /* This is the length in bytes of the
719
         * subtable. */
720
  HBUINT16  language; /* Ignore. */
721
  HBUINT16  segCountX2; /* 2 x segCount. */
722
  HBUINT16  searchRange;  /* 2 * (2**floor(log2(segCount))) */
723
  HBUINT16  entrySelector;  /* log2(searchRange/2) */
724
  HBUINT16  rangeShift; /* 2 x segCount - searchRange */
725
726
  UnsizedArrayOf<HBUINT16>
727
    values;
728
#if 0
729
  HBUINT16  endCount[segCount]; /* End characterCode for each segment,
730
           * last=0xFFFFu. */
731
  HBUINT16  reservedPad;    /* Set to 0. */
732
  HBUINT16  startCount[segCount]; /* Start character code for each segment. */
733
  HBINT16   idDelta[segCount];  /* Delta for all character codes in segment. */
734
  HBUINT16  idRangeOffset[segCount];/* Offsets into glyphIdArray or 0 */
735
  UnsizedArrayOf<HBUINT16>
736
    glyphIdArray; /* Glyph index array (arbitrary length) */
737
#endif
738
739
  public:
740
  DEFINE_SIZE_ARRAY (14, values);
741
};
742
743
struct CmapSubtableLongGroup
744
{
745
  friend struct CmapSubtableFormat12;
746
  friend struct CmapSubtableFormat13;
747
  template<typename U>
748
  friend struct CmapSubtableLongSegmented;
749
  friend struct cmap;
750
751
  int cmp (hb_codepoint_t codepoint) const
752
0
  {
753
0
    if (codepoint < startCharCode) return -1;
754
0
    if (codepoint > endCharCode)   return +1;
755
0
    return 0;
756
0
  }
757
758
  bool sanitize (hb_sanitize_context_t *c) const
759
0
  {
760
0
    TRACE_SANITIZE (this);
761
0
    return_trace (c->check_struct (this));
762
0
  }
763
764
  private:
765
  HBUINT32    startCharCode;  /* First character code in this group. */
766
  HBUINT32    endCharCode;  /* Last character code in this group. */
767
  HBUINT32    glyphID;  /* Glyph index; interpretation depends on
768
           * subtable format. */
769
  public:
770
  DEFINE_SIZE_STATIC (12);
771
};
772
DECLARE_NULL_NAMESPACE_BYTES (OT, CmapSubtableLongGroup);
773
774
template <typename UINT>
775
struct CmapSubtableTrimmed
776
{
777
  bool get_glyph (hb_codepoint_t codepoint, hb_codepoint_t *glyph) const
778
0
  {
779
    /* Rely on our implicit array bound-checking. */
780
0
    hb_codepoint_t gid = glyphIdArray[codepoint - startCharCode];
781
0
    if (unlikely (!gid))
782
0
      return false;
783
0
    *glyph = gid;
784
0
    return true;
785
0
  }
Unexecuted instantiation: OT::CmapSubtableTrimmed<OT::NumType<true, unsigned short, 2u> >::get_glyph(unsigned int, unsigned int*) const
Unexecuted instantiation: OT::CmapSubtableTrimmed<OT::NumType<true, unsigned int, 4u> >::get_glyph(unsigned int, unsigned int*) const
786
787
  unsigned get_language () const
788
0
  {
789
0
    return language;
790
0
  }
Unexecuted instantiation: OT::CmapSubtableTrimmed<OT::NumType<true, unsigned short, 2u> >::get_language() const
Unexecuted instantiation: OT::CmapSubtableTrimmed<OT::NumType<true, unsigned int, 4u> >::get_language() const
791
792
  void collect_unicodes (hb_set_t *out) const
793
0
  {
794
0
    hb_codepoint_t start = startCharCode;
795
0
    unsigned int count = glyphIdArray.len;
796
0
    for (unsigned int i = 0; i < count; i++)
797
0
      if (glyphIdArray[i])
798
0
  out->add (start + i);
799
0
  }
Unexecuted instantiation: OT::CmapSubtableTrimmed<OT::NumType<true, unsigned short, 2u> >::collect_unicodes(hb_set_t*) const
Unexecuted instantiation: OT::CmapSubtableTrimmed<OT::NumType<true, unsigned int, 4u> >::collect_unicodes(hb_set_t*) const
800
801
  void collect_mapping (hb_set_t *unicodes, /* OUT */
802
      hb_map_t *mapping /* OUT */) const
803
0
  {
804
0
    hb_codepoint_t start_cp = startCharCode;
805
0
    unsigned count = glyphIdArray.len;
806
0
    for (unsigned i = 0; i < count; i++)
807
0
      if (glyphIdArray[i])
808
0
      {
809
0
  hb_codepoint_t unicode = start_cp + i;
810
0
  hb_codepoint_t glyphid = glyphIdArray[i];
811
0
  unicodes->add (unicode);
812
0
  mapping->set (unicode, glyphid);
813
0
      }
814
0
  }
Unexecuted instantiation: OT::CmapSubtableTrimmed<OT::NumType<true, unsigned short, 2u> >::collect_mapping(hb_set_t*, hb_map_t*) const
Unexecuted instantiation: OT::CmapSubtableTrimmed<OT::NumType<true, unsigned int, 4u> >::collect_mapping(hb_set_t*, hb_map_t*) const
815
816
  bool sanitize (hb_sanitize_context_t *c) const
817
0
  {
818
0
    TRACE_SANITIZE (this);
819
0
    return_trace (c->check_struct (this) && glyphIdArray.sanitize (c));
820
0
  }
Unexecuted instantiation: OT::CmapSubtableTrimmed<OT::NumType<true, unsigned short, 2u> >::sanitize(hb_sanitize_context_t*) const
Unexecuted instantiation: OT::CmapSubtableTrimmed<OT::NumType<true, unsigned int, 4u> >::sanitize(hb_sanitize_context_t*) const
821
822
  protected:
823
  UINT    formatReserved; /* Subtable format and (maybe) padding. */
824
  UINT    length;   /* Byte length of this subtable. */
825
  UINT    language; /* Ignore. */
826
  UINT    startCharCode;  /* First character code covered. */
827
  ArrayOf<HBGlyphID16, UINT>
828
    glyphIdArray; /* Array of glyph index values for character
829
         * codes in the range. */
830
  public:
831
  DEFINE_SIZE_ARRAY (5 * sizeof (UINT), glyphIdArray);
832
};
833
834
struct CmapSubtableFormat6  : CmapSubtableTrimmed<HBUINT16> {};
835
struct CmapSubtableFormat10 : CmapSubtableTrimmed<HBUINT32> {};
836
837
template <typename T>
838
struct CmapSubtableLongSegmented
839
{
840
  friend struct cmap;
841
842
  bool get_glyph (hb_codepoint_t codepoint, hb_codepoint_t *glyph) const
843
0
  {
844
0
    hb_codepoint_t gid = T::group_get_glyph (groups.bsearch (codepoint), codepoint);
845
0
    if (unlikely (!gid))
846
0
      return false;
847
0
    *glyph = gid;
848
0
    return true;
849
0
  }
Unexecuted instantiation: OT::CmapSubtableLongSegmented<OT::CmapSubtableFormat12>::get_glyph(unsigned int, unsigned int*) const
Unexecuted instantiation: OT::CmapSubtableLongSegmented<OT::CmapSubtableFormat13>::get_glyph(unsigned int, unsigned int*) const
850
851
  unsigned get_language () const
852
0
  {
853
0
    return language;
854
0
  }
Unexecuted instantiation: OT::CmapSubtableLongSegmented<OT::CmapSubtableFormat12>::get_language() const
Unexecuted instantiation: OT::CmapSubtableLongSegmented<OT::CmapSubtableFormat13>::get_language() const
855
856
  void collect_unicodes (hb_set_t *out, unsigned int num_glyphs) const
857
0
  {
858
0
    for (unsigned int i = 0; i < this->groups.len; i++)
859
0
    {
860
0
      hb_codepoint_t start = this->groups[i].startCharCode;
861
0
      hb_codepoint_t end = hb_min ((hb_codepoint_t) this->groups[i].endCharCode,
862
0
           (hb_codepoint_t) HB_UNICODE_MAX);
863
0
      hb_codepoint_t gid = this->groups[i].glyphID;
864
0
      if (!gid)
865
0
      {
866
  /* Intention is: if (hb_is_same (T, CmapSubtableFormat13)) continue; */
867
0
  if (! T::group_get_glyph (this->groups[i], end)) continue;
868
0
  start++;
869
0
  gid++;
870
0
      }
871
0
      if (unlikely ((unsigned int) gid >= num_glyphs)) continue;
872
0
      if (unlikely ((unsigned int) (gid + end - start) >= num_glyphs))
873
0
  end = start + (hb_codepoint_t) num_glyphs - gid;
874
875
0
      out->add_range (start, hb_min (end, 0x10FFFFu));
876
0
    }
877
0
  }
Unexecuted instantiation: OT::CmapSubtableLongSegmented<OT::CmapSubtableFormat12>::collect_unicodes(hb_set_t*, unsigned int) const
Unexecuted instantiation: OT::CmapSubtableLongSegmented<OT::CmapSubtableFormat13>::collect_unicodes(hb_set_t*, unsigned int) const
878
879
  void collect_mapping (hb_set_t *unicodes, /* OUT */
880
      hb_map_t *mapping, /* OUT */
881
      unsigned num_glyphs) const
882
0
  {
883
0
    hb_codepoint_t last_end = 0;
884
0
    unsigned count = this->groups.len;
885
0
    for (unsigned i = 0; i < count; i++)
886
0
    {
887
0
      hb_codepoint_t start = this->groups.arrayZ[i].startCharCode;
888
0
      hb_codepoint_t end = hb_min ((hb_codepoint_t) this->groups.arrayZ[i].endCharCode,
889
0
           (hb_codepoint_t) HB_UNICODE_MAX);
890
0
      if (unlikely (start > end || start < last_end)) {
891
        // Range is not in order and is invalid, skip it.
892
0
        continue;
893
0
      }
894
0
      last_end = end;
895
896
897
0
      hb_codepoint_t gid = this->groups.arrayZ[i].glyphID;
898
0
      if (!gid)
899
0
      {
900
0
        if (T::formatNumber == 13) continue;
901
0
  start++;
902
0
  gid++;
903
0
      }
904
0
      if (unlikely ((unsigned int) gid >= num_glyphs)) continue;
905
0
      if (unlikely ((unsigned int) (gid + end - start) >= num_glyphs))
906
0
  end = start + (hb_codepoint_t) num_glyphs - gid;
907
908
0
      mapping->alloc (mapping->get_population () + end - start + 1);
909
910
0
      unicodes->add_range (start, end);
911
0
      for (unsigned cp = start; cp <= end; cp++)
912
0
      {
913
0
  mapping->set (cp, gid);
914
0
        gid += T::increment;
915
0
      }
916
0
    }
917
0
  }
Unexecuted instantiation: OT::CmapSubtableLongSegmented<OT::CmapSubtableFormat12>::collect_mapping(hb_set_t*, hb_map_t*, unsigned int) const
Unexecuted instantiation: OT::CmapSubtableLongSegmented<OT::CmapSubtableFormat13>::collect_mapping(hb_set_t*, hb_map_t*, unsigned int) const
918
919
  bool sanitize (hb_sanitize_context_t *c) const
920
0
  {
921
0
    TRACE_SANITIZE (this);
922
0
    return_trace (c->check_struct (this) && groups.sanitize (c));
923
0
  }
Unexecuted instantiation: OT::CmapSubtableLongSegmented<OT::CmapSubtableFormat12>::sanitize(hb_sanitize_context_t*) const
Unexecuted instantiation: OT::CmapSubtableLongSegmented<OT::CmapSubtableFormat13>::sanitize(hb_sanitize_context_t*) const
924
925
  protected:
926
  HBUINT16  format;   /* Subtable format; set to 12. */
927
  HBUINT16  reserved; /* Reserved; set to 0. */
928
  HBUINT32  length;   /* Byte length of this subtable. */
929
  HBUINT32  language; /* Ignore. */
930
  SortedArray32Of<CmapSubtableLongGroup>
931
    groups;   /* Groupings. */
932
  public:
933
  DEFINE_SIZE_ARRAY (16, groups);
934
};
935
936
struct CmapSubtableFormat12 : CmapSubtableLongSegmented<CmapSubtableFormat12>
937
{
938
  static constexpr int increment = 1;
939
  static constexpr int formatNumber = 12;
940
941
  static hb_codepoint_t group_get_glyph (const CmapSubtableLongGroup &group,
942
           hb_codepoint_t u)
943
0
  { return likely (group.startCharCode <= group.endCharCode) ?
944
0
     group.glyphID + (u - group.startCharCode) : 0; }
945
946
947
  template<typename Iterator,
948
     hb_requires (hb_is_iterator (Iterator))>
949
  void serialize (hb_serialize_context_t *c,
950
      Iterator it)
951
0
  {
952
0
    if (!it) return;
953
0
    unsigned table_initpos = c->length ();
954
0
    if (unlikely (!c->extend_min (this))) return;
955
0
956
0
    hb_codepoint_t startCharCode = (hb_codepoint_t) -1, endCharCode = (hb_codepoint_t) -1;
957
0
    hb_codepoint_t glyphID = 0;
958
0
959
0
    for (const auto& _ : +it)
960
0
    {
961
0
      if (startCharCode == (hb_codepoint_t) -1)
962
0
      {
963
0
  startCharCode = _.first;
964
0
  endCharCode = _.first;
965
0
  glyphID = _.second;
966
0
      }
967
0
      else if (!_is_gid_consecutive (endCharCode, startCharCode, glyphID, _.first, _.second))
968
0
      {
969
0
  CmapSubtableLongGroup  grouprecord;
970
0
  grouprecord.startCharCode = startCharCode;
971
0
  grouprecord.endCharCode = endCharCode;
972
0
  grouprecord.glyphID = glyphID;
973
0
  c->copy<CmapSubtableLongGroup> (grouprecord);
974
0
975
0
  startCharCode = _.first;
976
0
  endCharCode = _.first;
977
0
  glyphID = _.second;
978
0
      }
979
0
      else
980
0
  endCharCode = _.first;
981
0
    }
982
0
983
0
    CmapSubtableLongGroup record;
984
0
    record.startCharCode = startCharCode;
985
0
    record.endCharCode = endCharCode;
986
0
    record.glyphID = glyphID;
987
0
    c->copy<CmapSubtableLongGroup> (record);
988
0
989
0
    this->format = 12;
990
0
    this->reserved = 0;
991
0
    this->length = c->length () - table_initpos;
992
0
    this->groups.len = (this->length - min_size) / CmapSubtableLongGroup::static_size;
993
0
  }
Unexecuted instantiation: hb-face.cc:_ZN2OT20CmapSubtableFormat129serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_
Unexecuted instantiation: hb-face.cc:_ZN2OT20CmapSubtableFormat129serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_
Unexecuted instantiation: hb-ot-face.cc:_ZN2OT20CmapSubtableFormat129serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_
Unexecuted instantiation: hb-ot-face.cc:_ZN2OT20CmapSubtableFormat129serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_
Unexecuted instantiation: hb-ot-font.cc:_ZN2OT20CmapSubtableFormat129serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_
Unexecuted instantiation: hb-ot-font.cc:_ZN2OT20CmapSubtableFormat129serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_
Unexecuted instantiation: hb-static.cc:_ZN2OT20CmapSubtableFormat129serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_
Unexecuted instantiation: hb-static.cc:_ZN2OT20CmapSubtableFormat129serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_
994
995
  static size_t get_sub_table_size (const hb_sorted_vector_t<CmapSubtableLongGroup> &groups_data)
996
0
  { return 16 + 12 * groups_data.length; }
997
998
  private:
999
  static bool _is_gid_consecutive (hb_codepoint_t endCharCode,
1000
           hb_codepoint_t startCharCode,
1001
           hb_codepoint_t glyphID,
1002
           hb_codepoint_t cp,
1003
           hb_codepoint_t new_gid)
1004
0
  {
1005
0
    return (cp - 1 == endCharCode) &&
1006
0
  new_gid == glyphID + (cp - startCharCode);
1007
0
  }
1008
1009
};
1010
1011
struct CmapSubtableFormat13 : CmapSubtableLongSegmented<CmapSubtableFormat13>
1012
{
1013
  static constexpr int increment = 0;
1014
  static constexpr int formatNumber = 13;
1015
1016
  static hb_codepoint_t group_get_glyph (const CmapSubtableLongGroup &group,
1017
           hb_codepoint_t u HB_UNUSED)
1018
0
  { return group.glyphID; }
1019
};
1020
1021
typedef enum
1022
{
1023
  GLYPH_VARIANT_NOT_FOUND = 0,
1024
  GLYPH_VARIANT_FOUND = 1,
1025
  GLYPH_VARIANT_USE_DEFAULT = 2
1026
} glyph_variant_t;
1027
1028
struct UnicodeValueRange
1029
{
1030
  int cmp (const hb_codepoint_t &codepoint) const
1031
0
  {
1032
0
    if (codepoint < startUnicodeValue) return -1;
1033
0
    if (codepoint > startUnicodeValue + additionalCount) return +1;
1034
0
    return 0;
1035
0
  }
1036
1037
  bool sanitize (hb_sanitize_context_t *c) const
1038
0
  {
1039
0
    TRACE_SANITIZE (this);
1040
0
    return_trace (c->check_struct (this));
1041
0
  }
1042
1043
  HBUINT24  startUnicodeValue;  /* First value in this range. */
1044
  HBUINT8 additionalCount;  /* Number of additional values in this
1045
           * range. */
1046
  public:
1047
  DEFINE_SIZE_STATIC (4);
1048
};
1049
1050
struct DefaultUVS : SortedArray32Of<UnicodeValueRange>
1051
{
1052
  void collect_unicodes (hb_set_t *out) const
1053
0
  {
1054
0
    unsigned int count = len;
1055
0
    for (unsigned int i = 0; i < count; i++)
1056
0
    {
1057
0
      hb_codepoint_t first = arrayZ[i].startUnicodeValue;
1058
0
      hb_codepoint_t last = hb_min ((hb_codepoint_t) (first + arrayZ[i].additionalCount),
1059
0
            (hb_codepoint_t) HB_UNICODE_MAX);
1060
0
      out->add_range (first, last);
1061
0
    }
1062
0
  }
1063
1064
  DefaultUVS* copy (hb_serialize_context_t *c,
1065
        const hb_set_t *unicodes) const
1066
0
  {
1067
0
    auto *out = c->start_embed<DefaultUVS> ();
1068
0
    auto snap = c->snapshot ();
1069
0
1070
0
    HBUINT32 len;
1071
0
    len = 0;
1072
0
    if (unlikely (!c->copy<HBUINT32> (len))) return nullptr;
1073
0
    unsigned init_len = c->length ();
1074
0
1075
0
    if (this->len > unicodes->get_population () * hb_bit_storage ((unsigned) this->len))
1076
0
    {
1077
0
      hb_codepoint_t start = HB_SET_VALUE_INVALID;
1078
0
      hb_codepoint_t end = HB_SET_VALUE_INVALID;
1079
0
1080
0
      for (auto u : *unicodes)
1081
0
      {
1082
0
        if (!as_array ().bsearch (u))
1083
0
    continue;
1084
0
  if (start == HB_SET_VALUE_INVALID)
1085
0
  {
1086
0
    start = u;
1087
0
    end = start - 1;
1088
0
  }
1089
0
  if (end + 1 != u || end - start == 255)
1090
0
        {
1091
0
    UnicodeValueRange rec;
1092
0
    rec.startUnicodeValue = start;
1093
0
    rec.additionalCount = end - start;
1094
0
    c->copy<UnicodeValueRange> (rec);
1095
0
    start = u;
1096
0
  }
1097
0
  end = u;
1098
0
      }
1099
0
      if (start != HB_SET_VALUE_INVALID)
1100
0
      {
1101
0
  UnicodeValueRange rec;
1102
0
  rec.startUnicodeValue = start;
1103
0
  rec.additionalCount = end - start;
1104
0
  c->copy<UnicodeValueRange> (rec);
1105
0
      }
1106
0
1107
0
    }
1108
0
    else
1109
0
    {
1110
0
      hb_codepoint_t lastCode = HB_SET_VALUE_INVALID;
1111
0
      int count = -1;
1112
0
1113
0
      for (const UnicodeValueRange& _ : *this)
1114
0
      {
1115
0
  hb_codepoint_t curEntry = (hb_codepoint_t) (_.startUnicodeValue - 1);
1116
0
  hb_codepoint_t end = curEntry + _.additionalCount + 2;
1117
0
1118
0
  for (; unicodes->next (&curEntry) && curEntry < end;)
1119
0
  {
1120
0
    count += 1;
1121
0
    if (lastCode == HB_SET_VALUE_INVALID)
1122
0
      lastCode = curEntry;
1123
0
    else if (lastCode + count != curEntry)
1124
0
    {
1125
0
      UnicodeValueRange rec;
1126
0
      rec.startUnicodeValue = lastCode;
1127
0
      rec.additionalCount = count - 1;
1128
0
      c->copy<UnicodeValueRange> (rec);
1129
0
1130
0
      lastCode = curEntry;
1131
0
      count = 0;
1132
0
    }
1133
0
  }
1134
0
      }
1135
0
1136
0
      if (lastCode != HB_MAP_VALUE_INVALID)
1137
0
      {
1138
0
  UnicodeValueRange rec;
1139
0
  rec.startUnicodeValue = lastCode;
1140
0
  rec.additionalCount = count;
1141
0
  c->copy<UnicodeValueRange> (rec);
1142
0
      }
1143
0
    }
1144
0
1145
0
    if (c->length () - init_len == 0)
1146
0
    {
1147
0
      c->revert (snap);
1148
0
      return nullptr;
1149
0
    }
1150
0
    else
1151
0
    {
1152
0
      if (unlikely (!c->check_assign (out->len,
1153
0
                                      (c->length () - init_len) / UnicodeValueRange::static_size,
1154
0
                                      HB_SERIALIZE_ERROR_INT_OVERFLOW))) return nullptr;
1155
0
      return out;
1156
0
    }
1157
0
  }
1158
1159
  public:
1160
  DEFINE_SIZE_ARRAY (4, *this);
1161
};
1162
1163
struct UVSMapping
1164
{
1165
  int cmp (const hb_codepoint_t &codepoint) const
1166
0
  { return unicodeValue.cmp (codepoint); }
1167
1168
  bool sanitize (hb_sanitize_context_t *c) const
1169
0
  {
1170
0
    TRACE_SANITIZE (this);
1171
0
    return_trace (c->check_struct (this));
1172
0
  }
1173
1174
  HBUINT24  unicodeValue; /* Base Unicode value of the UVS */
1175
  HBGlyphID16 glyphID;  /* Glyph ID of the UVS */
1176
  public:
1177
  DEFINE_SIZE_STATIC (5);
1178
};
1179
1180
struct NonDefaultUVS : SortedArray32Of<UVSMapping>
1181
{
1182
  void collect_unicodes (hb_set_t *out) const
1183
0
  {
1184
0
    for (const auto& a : as_array ())
1185
0
      out->add (a.unicodeValue);
1186
0
  }
1187
1188
  void collect_mapping (hb_set_t *unicodes, /* OUT */
1189
      hb_map_t *mapping /* OUT */) const
1190
0
  {
1191
0
    for (const auto& a : as_array ())
1192
0
    {
1193
0
      hb_codepoint_t unicode = a.unicodeValue;
1194
0
      hb_codepoint_t glyphid = a.glyphID;
1195
0
      unicodes->add (unicode);
1196
0
      mapping->set (unicode, glyphid);
1197
0
    }
1198
0
  }
1199
1200
  void closure_glyphs (const hb_set_t      *unicodes,
1201
           hb_set_t            *glyphset) const
1202
0
  {
1203
0
    + as_array ()
1204
0
    | hb_filter (unicodes, &UVSMapping::unicodeValue)
1205
0
    | hb_map (&UVSMapping::glyphID)
1206
0
    | hb_sink (glyphset)
1207
0
    ;
1208
0
  }
1209
1210
  NonDefaultUVS* copy (hb_serialize_context_t *c,
1211
           const hb_set_t *unicodes,
1212
           const hb_set_t *glyphs_requested,
1213
           const hb_map_t *glyph_map) const
1214
0
  {
1215
0
    auto *out = c->start_embed<NonDefaultUVS> ();
1216
0
    auto it =
1217
0
    + as_array ()
1218
0
    | hb_filter ([&] (const UVSMapping& _)
1219
0
     {
1220
0
       return unicodes->has (_.unicodeValue) || glyphs_requested->has (_.glyphID);
1221
0
     })
1222
0
    ;
1223
0
1224
0
    if (!it) return nullptr;
1225
0
1226
0
    HBUINT32 len;
1227
0
    len = it.len ();
1228
0
    if (unlikely (!c->copy<HBUINT32> (len))) return nullptr;
1229
0
1230
0
    for (const UVSMapping& _ : it)
1231
0
    {
1232
0
      UVSMapping mapping;
1233
0
      mapping.unicodeValue = _.unicodeValue;
1234
0
      mapping.glyphID = glyph_map->get (_.glyphID);
1235
0
      c->copy<UVSMapping> (mapping);
1236
0
    }
1237
0
1238
0
    return out;
1239
0
  }
1240
1241
  public:
1242
  DEFINE_SIZE_ARRAY (4, *this);
1243
};
1244
1245
struct VariationSelectorRecord
1246
{
1247
  glyph_variant_t get_glyph (hb_codepoint_t codepoint,
1248
           hb_codepoint_t *glyph,
1249
           const void *base) const
1250
0
  {
1251
0
    if ((base+defaultUVS).bfind (codepoint))
1252
0
      return GLYPH_VARIANT_USE_DEFAULT;
1253
0
    const UVSMapping &nonDefault = (base+nonDefaultUVS).bsearch (codepoint);
1254
0
    if (nonDefault.glyphID)
1255
0
    {
1256
0
      *glyph = nonDefault.glyphID;
1257
0
       return GLYPH_VARIANT_FOUND;
1258
0
    }
1259
0
    return GLYPH_VARIANT_NOT_FOUND;
1260
0
  }
1261
1262
  VariationSelectorRecord(const VariationSelectorRecord& other)
1263
0
  {
1264
0
    *this = other;
1265
0
  }
1266
1267
  void operator= (const VariationSelectorRecord& other)
1268
0
  {
1269
0
    varSelector = other.varSelector;
1270
0
    HBUINT32 offset = other.defaultUVS;
1271
0
    defaultUVS = offset;
1272
0
    offset = other.nonDefaultUVS;
1273
0
    nonDefaultUVS = offset;
1274
0
  }
1275
1276
  void collect_unicodes (hb_set_t *out, const void *base) const
1277
0
  {
1278
0
    (base+defaultUVS).collect_unicodes (out);
1279
0
    (base+nonDefaultUVS).collect_unicodes (out);
1280
0
  }
1281
1282
  void collect_mapping (const void *base,
1283
      hb_set_t *unicodes, /* OUT */
1284
      hb_map_t *mapping /* OUT */) const
1285
0
  {
1286
0
    (base+defaultUVS).collect_unicodes (unicodes);
1287
0
    (base+nonDefaultUVS).collect_mapping (unicodes, mapping);
1288
0
  }
1289
1290
  int cmp (const hb_codepoint_t &variation_selector) const
1291
0
  { return varSelector.cmp (variation_selector); }
1292
1293
  bool sanitize (hb_sanitize_context_t *c, const void *base) const
1294
0
  {
1295
0
    TRACE_SANITIZE (this);
1296
0
    return_trace (c->check_struct (this) &&
1297
0
      defaultUVS.sanitize (c, base) &&
1298
0
      nonDefaultUVS.sanitize (c, base));
1299
0
  }
1300
1301
  hb_pair_t<unsigned, unsigned>
1302
  copy (hb_serialize_context_t *c,
1303
  const hb_set_t *unicodes,
1304
  const hb_set_t *glyphs_requested,
1305
  const hb_map_t *glyph_map,
1306
  const void *base) const
1307
0
  {
1308
0
    auto snap = c->snapshot ();
1309
0
    auto *out = c->embed<VariationSelectorRecord> (*this);
1310
0
    if (unlikely (!out)) return hb_pair (0, 0);
1311
0
1312
0
    out->defaultUVS = 0;
1313
0
    out->nonDefaultUVS = 0;
1314
0
1315
0
    unsigned non_default_uvs_objidx = 0;
1316
0
    if (nonDefaultUVS != 0)
1317
0
    {
1318
0
      c->push ();
1319
0
      if (c->copy (base+nonDefaultUVS, unicodes, glyphs_requested, glyph_map))
1320
0
  non_default_uvs_objidx = c->pop_pack ();
1321
0
      else c->pop_discard ();
1322
0
    }
1323
0
1324
0
    unsigned default_uvs_objidx = 0;
1325
0
    if (defaultUVS != 0)
1326
0
    {
1327
0
      c->push ();
1328
0
      if (c->copy (base+defaultUVS, unicodes))
1329
0
  default_uvs_objidx = c->pop_pack ();
1330
0
      else c->pop_discard ();
1331
0
    }
1332
0
1333
0
1334
0
    if (!default_uvs_objidx && !non_default_uvs_objidx)
1335
0
      c->revert (snap);
1336
0
1337
0
    return hb_pair (default_uvs_objidx, non_default_uvs_objidx);
1338
0
  }
1339
1340
  HBUINT24  varSelector;  /* Variation selector. */
1341
  Offset32To<DefaultUVS>
1342
    defaultUVS; /* Offset to Default UVS Table.  May be 0. */
1343
  Offset32To<NonDefaultUVS>
1344
    nonDefaultUVS;  /* Offset to Non-Default UVS Table.  May be 0. */
1345
  public:
1346
  DEFINE_SIZE_STATIC (11);
1347
};
1348
1349
struct CmapSubtableFormat14
1350
{
1351
  glyph_variant_t get_glyph_variant (hb_codepoint_t codepoint,
1352
             hb_codepoint_t variation_selector,
1353
             hb_codepoint_t *glyph) const
1354
0
  { return record.bsearch (variation_selector).get_glyph (codepoint, glyph, this); }
1355
1356
  void collect_variation_selectors (hb_set_t *out) const
1357
0
  {
1358
0
    for (const auto& a : record.as_array ())
1359
0
      out->add (a.varSelector);
1360
0
  }
1361
  void collect_variation_unicodes (hb_codepoint_t variation_selector,
1362
           hb_set_t *out) const
1363
0
  { record.bsearch (variation_selector).collect_unicodes (out, this); }
1364
1365
  void serialize (hb_serialize_context_t *c,
1366
      const hb_set_t *unicodes,
1367
      const hb_set_t *glyphs_requested,
1368
      const hb_map_t *glyph_map,
1369
      const void *base)
1370
0
  {
1371
0
    auto snap = c->snapshot ();
1372
0
    unsigned table_initpos = c->length ();
1373
0
    const char* init_tail = c->tail;
1374
0
1375
0
    if (unlikely (!c->extend_min (this))) return;
1376
0
    this->format = 14;
1377
0
1378
0
    auto src_tbl = reinterpret_cast<const CmapSubtableFormat14*> (base);
1379
0
1380
0
    /*
1381
0
     * Some versions of OTS require that offsets are in order. Due to the use
1382
0
     * of push()/pop_pack() serializing the variation records in order results
1383
0
     * in the offsets being in reverse order (first record has the largest
1384
0
     * offset). While this is perfectly valid, it will cause some versions of
1385
0
     * OTS to consider this table bad.
1386
0
     *
1387
0
     * So to prevent this issue we serialize the variation records in reverse
1388
0
     * order, so that the offsets are ordered from small to large. Since
1389
0
     * variation records are supposed to be in increasing order of varSelector
1390
0
     * we then have to reverse the order of the written variation selector
1391
0
     * records after everything is finalized.
1392
0
     */
1393
0
    hb_vector_t<hb_pair_t<unsigned, unsigned>> obj_indices;
1394
0
    for (int i = src_tbl->record.len - 1; i >= 0; i--)
1395
0
    {
1396
0
      if (!unicodes->has(src_tbl->record[i].varSelector))
1397
0
        continue;
1398
0
1399
0
      hb_pair_t<unsigned, unsigned> result = src_tbl->record[i].copy (c, unicodes, glyphs_requested, glyph_map, base);
1400
0
      if (result.first || result.second)
1401
0
  obj_indices.push (result);
1402
0
    }
1403
0
1404
0
    if (c->length () - table_initpos == CmapSubtableFormat14::min_size)
1405
0
    {
1406
0
      c->revert (snap);
1407
0
      return;
1408
0
    }
1409
0
1410
0
    if (unlikely (!c->check_success (!obj_indices.in_error ())))
1411
0
      return;
1412
0
1413
0
    int tail_len = init_tail - c->tail;
1414
0
    c->check_assign (this->length, c->length () - table_initpos + tail_len,
1415
0
                     HB_SERIALIZE_ERROR_INT_OVERFLOW);
1416
0
    c->check_assign (this->record.len,
1417
0
         (c->length () - table_initpos - CmapSubtableFormat14::min_size) /
1418
0
         VariationSelectorRecord::static_size,
1419
0
                     HB_SERIALIZE_ERROR_INT_OVERFLOW);
1420
0
1421
0
    /* Correct the incorrect write order by reversing the order of the variation
1422
0
       records array. */
1423
0
    _reverse_variation_records ();
1424
0
1425
0
    /* Now that records are in the right order, we can set up the offsets. */
1426
0
    _add_links_to_variation_records (c, obj_indices);
1427
0
  }
1428
1429
  void _reverse_variation_records ()
1430
0
  {
1431
0
    record.as_array ().reverse ();
1432
0
  }
1433
1434
  void _add_links_to_variation_records (hb_serialize_context_t *c,
1435
          const hb_vector_t<hb_pair_t<unsigned, unsigned>>& obj_indices)
1436
0
  {
1437
0
    for (unsigned i = 0; i < obj_indices.length; i++)
1438
0
    {
1439
0
      /*
1440
0
       * Since the record array has been reversed (see comments in copy())
1441
0
       * but obj_indices has not been, the indices at obj_indices[i]
1442
0
       * are for the variation record at record[j].
1443
0
       */
1444
0
      int j = obj_indices.length - 1 - i;
1445
0
      c->add_link (record[j].defaultUVS, obj_indices[i].first);
1446
0
      c->add_link (record[j].nonDefaultUVS, obj_indices[i].second);
1447
0
    }
1448
0
  }
1449
1450
  void closure_glyphs (const hb_set_t      *unicodes,
1451
           hb_set_t            *glyphset) const
1452
0
  {
1453
0
    + hb_iter (record)
1454
0
    | hb_filter (hb_bool, &VariationSelectorRecord::nonDefaultUVS)
1455
0
    | hb_filter (unicodes, &VariationSelectorRecord::varSelector)
1456
0
    | hb_map (&VariationSelectorRecord::nonDefaultUVS)
1457
0
    | hb_map (hb_add (this))
1458
0
    | hb_apply ([=] (const NonDefaultUVS& _) { _.closure_glyphs (unicodes, glyphset); })
1459
0
    ;
1460
0
  }
1461
1462
  void collect_unicodes (hb_set_t *out) const
1463
0
  {
1464
0
    for (const VariationSelectorRecord& _ : record)
1465
0
      _.collect_unicodes (out, this);
1466
0
  }
1467
1468
  void collect_mapping (hb_set_t *unicodes, /* OUT */
1469
      hb_map_t *mapping /* OUT */) const
1470
0
  {
1471
0
    for (const VariationSelectorRecord& _ : record)
1472
0
      _.collect_mapping (this, unicodes, mapping);
1473
0
  }
1474
1475
  bool sanitize (hb_sanitize_context_t *c) const
1476
0
  {
1477
0
    TRACE_SANITIZE (this);
1478
0
    return_trace (c->check_struct (this) &&
1479
0
      record.sanitize (c, this));
1480
0
  }
1481
1482
  protected:
1483
  HBUINT16  format;   /* Format number is set to 14. */
1484
  HBUINT32  length;   /* Byte length of this subtable. */
1485
  SortedArray32Of<VariationSelectorRecord>
1486
    record;   /* Variation selector records; sorted
1487
         * in increasing order of `varSelector'. */
1488
  public:
1489
  DEFINE_SIZE_ARRAY (10, record);
1490
};
1491
1492
struct CmapSubtable
1493
{
1494
  /* Note: We intentionally do NOT implement subtable formats 2 and 8. */
1495
1496
  bool get_glyph (hb_codepoint_t codepoint,
1497
      hb_codepoint_t *glyph) const
1498
0
  {
1499
0
    switch (u.format) {
1500
0
    case  0: hb_barrier (); return u.format0 .get_glyph (codepoint, glyph);
1501
0
    case  4: hb_barrier (); return u.format4 .get_glyph (codepoint, glyph);
1502
0
    case  6: hb_barrier (); return u.format6 .get_glyph (codepoint, glyph);
1503
0
    case 10: hb_barrier (); return u.format10.get_glyph (codepoint, glyph);
1504
0
    case 12: hb_barrier (); return u.format12.get_glyph (codepoint, glyph);
1505
0
    case 13: hb_barrier (); return u.format13.get_glyph (codepoint, glyph);
1506
0
    case 14:
1507
0
    default: return false;
1508
0
    }
1509
0
  }
1510
  void collect_unicodes (hb_set_t *out, unsigned int num_glyphs = UINT_MAX) const
1511
0
  {
1512
0
    switch (u.format) {
1513
0
    case  0: hb_barrier (); u.format0 .collect_unicodes (out); return;
1514
0
    case  4: hb_barrier (); u.format4 .collect_unicodes (out); return;
1515
0
    case  6: hb_barrier (); u.format6 .collect_unicodes (out); return;
1516
0
    case 10: hb_barrier (); u.format10.collect_unicodes (out); return;
1517
0
    case 12: hb_barrier (); u.format12.collect_unicodes (out, num_glyphs); return;
1518
0
    case 13: hb_barrier (); u.format13.collect_unicodes (out, num_glyphs); return;
1519
0
    case 14:
1520
0
    default: return;
1521
0
    }
1522
0
  }
1523
1524
  void collect_mapping (hb_set_t *unicodes, /* OUT */
1525
      hb_map_t *mapping, /* OUT */
1526
      unsigned num_glyphs = UINT_MAX) const
1527
0
  {
1528
0
    switch (u.format) {
1529
0
    case  0: hb_barrier (); u.format0 .collect_mapping (unicodes, mapping); return;
1530
0
    case  4: hb_barrier (); u.format4 .collect_mapping (unicodes, mapping); return;
1531
0
    case  6: hb_barrier (); u.format6 .collect_mapping (unicodes, mapping); return;
1532
0
    case 10: hb_barrier (); u.format10.collect_mapping (unicodes, mapping); return;
1533
0
    case 12: hb_barrier (); u.format12.collect_mapping (unicodes, mapping, num_glyphs); return;
1534
0
    case 13: hb_barrier (); u.format13.collect_mapping (unicodes, mapping, num_glyphs); return;
1535
0
    case 14:
1536
0
    default: return;
1537
0
    }
1538
0
  }
1539
1540
  unsigned get_language () const
1541
0
  {
1542
0
    switch (u.format) {
1543
0
    case  0: hb_barrier (); return u.format0 .get_language ();
1544
0
    case  4: hb_barrier (); return u.format4 .get_language ();
1545
0
    case  6: hb_barrier (); return u.format6 .get_language ();
1546
0
    case 10: hb_barrier (); return u.format10.get_language ();
1547
0
    case 12: hb_barrier (); return u.format12.get_language ();
1548
0
    case 13: hb_barrier (); return u.format13.get_language ();
1549
0
    case 14:
1550
0
    default: return 0;
1551
0
    }
1552
0
  }
1553
1554
  template<typename Iterator,
1555
     hb_requires (hb_is_iterator (Iterator))>
1556
  void serialize (hb_serialize_context_t *c,
1557
      Iterator it,
1558
      unsigned format,
1559
      const hb_subset_plan_t *plan,
1560
      const void *base)
1561
0
  {
1562
0
    switch (format) {
1563
0
    case  4: hb_barrier (); return u.format4.serialize (c, it);
1564
0
    case 12: hb_barrier (); return u.format12.serialize (c, it);
1565
0
    case 14: hb_barrier (); return u.format14.serialize (c, &plan->unicodes, &plan->glyphs_requested, plan->glyph_map, base);
1566
0
    default: return;
1567
0
    }
1568
0
  }
Unexecuted instantiation: hb-face.cc:_ZN2OT12CmapSubtable9serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_jPK16hb_subset_plan_tPKv
Unexecuted instantiation: hb-face.cc:_ZN2OT12CmapSubtable9serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_jPK16hb_subset_plan_tPKv
Unexecuted instantiation: hb-ot-face.cc:_ZN2OT12CmapSubtable9serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_jPK16hb_subset_plan_tPKv
Unexecuted instantiation: hb-ot-face.cc:_ZN2OT12CmapSubtable9serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_jPK16hb_subset_plan_tPKv
Unexecuted instantiation: hb-ot-font.cc:_ZN2OT12CmapSubtable9serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_jPK16hb_subset_plan_tPKv
Unexecuted instantiation: hb-ot-font.cc:_ZN2OT12CmapSubtable9serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_jPK16hb_subset_plan_tPKv
Unexecuted instantiation: hb-static.cc:_ZN2OT12CmapSubtable9serializeI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSP_jPK16hb_subset_plan_tPKv
Unexecuted instantiation: hb-static.cc:_ZN2OT12CmapSubtable9serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEvP22hb_serialize_context_tSI_jPK16hb_subset_plan_tPKv
1569
1570
  bool sanitize (hb_sanitize_context_t *c) const
1571
0
  {
1572
0
    TRACE_SANITIZE (this);
1573
0
    if (!u.format.sanitize (c)) return_trace (false);
1574
0
    hb_barrier ();
1575
0
    switch (u.format) {
1576
0
    case  0: hb_barrier (); return_trace (u.format0 .sanitize (c));
1577
0
    case  4: hb_barrier (); return_trace (u.format4 .sanitize (c));
1578
0
    case  6: hb_barrier (); return_trace (u.format6 .sanitize (c));
1579
0
    case 10: hb_barrier (); return_trace (u.format10.sanitize (c));
1580
0
    case 12: hb_barrier (); return_trace (u.format12.sanitize (c));
1581
0
    case 13: hb_barrier (); return_trace (u.format13.sanitize (c));
1582
0
    case 14: hb_barrier (); return_trace (u.format14.sanitize (c));
1583
0
    default:return_trace (true);
1584
0
    }
1585
0
  }
1586
1587
  public:
1588
  union {
1589
  HBUINT16    format;   /* Format identifier */
1590
  CmapSubtableFormat0 format0;
1591
  CmapSubtableFormat4 format4;
1592
  CmapSubtableFormat6 format6;
1593
  CmapSubtableFormat10  format10;
1594
  CmapSubtableFormat12  format12;
1595
  CmapSubtableFormat13  format13;
1596
  CmapSubtableFormat14  format14;
1597
  } u;
1598
  public:
1599
  DEFINE_SIZE_UNION (2, format);
1600
};
1601
1602
1603
struct EncodingRecord
1604
{
1605
  int cmp (const EncodingRecord &other) const
1606
0
  {
1607
0
    int ret;
1608
0
    ret = platformID.cmp (other.platformID);
1609
0
    if (ret) return ret;
1610
0
    if (other.encodingID != 0xFFFF)
1611
0
    {
1612
0
      ret = encodingID.cmp (other.encodingID);
1613
0
      if (ret) return ret;
1614
0
    }
1615
0
    return 0;
1616
0
  }
1617
1618
  bool sanitize (hb_sanitize_context_t *c, const void *base) const
1619
0
  {
1620
0
    TRACE_SANITIZE (this);
1621
0
    return_trace (c->check_struct (this) &&
1622
0
      subtable.sanitize (c, base));
1623
0
  }
1624
1625
  template<typename Iterator,
1626
     hb_requires (hb_is_iterator (Iterator))>
1627
  EncodingRecord* copy (hb_serialize_context_t *c,
1628
      Iterator it,
1629
      unsigned format,
1630
      const void *base,
1631
      const hb_subset_plan_t *plan,
1632
      /* INOUT */ unsigned *objidx) const
1633
0
  {
1634
0
    TRACE_SERIALIZE (this);
1635
0
    auto snap = c->snapshot ();
1636
0
    auto *out = c->embed (this);
1637
0
    if (unlikely (!out)) return_trace (nullptr);
1638
0
    out->subtable = 0;
1639
0
1640
0
    if (*objidx == 0)
1641
0
    {
1642
0
      CmapSubtable *cmapsubtable = c->push<CmapSubtable> ();
1643
0
      unsigned origin_length = c->length ();
1644
0
      cmapsubtable->serialize (c, it, format, plan, &(base+subtable));
1645
0
      if (c->length () - origin_length > 0 && !c->in_error()) *objidx = c->pop_pack ();
1646
0
      else c->pop_discard ();
1647
0
    }
1648
0
1649
0
    if (*objidx == 0)
1650
0
    {
1651
0
      c->revert (snap);
1652
0
      return_trace (nullptr);
1653
0
    }
1654
0
1655
0
    c->add_link (out->subtable, *objidx);
1656
0
    return_trace (out);
1657
0
  }
Unexecuted instantiation: hb-face.cc:_ZNK2OT14EncodingRecord4copyI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEPS0_P22hb_serialize_context_tSP_jPKvPK16hb_subset_plan_tPj
Unexecuted instantiation: hb-face.cc:_ZNK2OT14EncodingRecord4copyI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEPS0_P22hb_serialize_context_tSI_jPKvPK16hb_subset_plan_tPj
Unexecuted instantiation: hb-ot-face.cc:_ZNK2OT14EncodingRecord4copyI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEPS0_P22hb_serialize_context_tSP_jPKvPK16hb_subset_plan_tPj
Unexecuted instantiation: hb-ot-face.cc:_ZNK2OT14EncodingRecord4copyI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEPS0_P22hb_serialize_context_tSI_jPKvPK16hb_subset_plan_tPj
Unexecuted instantiation: hb-ot-font.cc:_ZNK2OT14EncodingRecord4copyI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEPS0_P22hb_serialize_context_tSP_jPKvPK16hb_subset_plan_tPj
Unexecuted instantiation: hb-ot-font.cc:_ZNK2OT14EncodingRecord4copyI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEPS0_P22hb_serialize_context_tSI_jPKvPK16hb_subset_plan_tPj
Unexecuted instantiation: hb-static.cc:_ZNK2OT14EncodingRecord4copyI16hb_filter_iter_tIS2_I17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EERK8hb_set_tRK3$_6LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSP_6item_tEEE5valueEvE4typeELSF_0EEEPS0_P22hb_serialize_context_tSP_jPKvPK16hb_subset_plan_tPj
Unexecuted instantiation: hb-static.cc:_ZNK2OT14EncodingRecord4copyI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS_4cmap6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NSI_6item_tEEE5valueEvE4typeELSF_0EEEPS0_P22hb_serialize_context_tSI_jPKvPK16hb_subset_plan_tPj
1658
1659
  HBUINT16  platformID; /* Platform ID. */
1660
  HBUINT16  encodingID; /* Platform-specific encoding ID. */
1661
  Offset32To<CmapSubtable>
1662
    subtable; /* Byte offset from beginning of table to the subtable for this encoding. */
1663
  public:
1664
  DEFINE_SIZE_STATIC (8);
1665
};
1666
1667
struct cmap;
1668
1669
struct SubtableUnicodesCache {
1670
1671
 private:
1672
  hb_blob_ptr_t<cmap> base_blob;
1673
  const char* base;
1674
  hb_hashmap_t<unsigned, hb::unique_ptr<hb_set_t>> cached_unicodes;
1675
1676
 public:
1677
1678
  static SubtableUnicodesCache* create (hb_blob_ptr_t<cmap> source_table)
1679
0
  {
1680
0
    SubtableUnicodesCache* cache =
1681
0
        (SubtableUnicodesCache*) hb_malloc (sizeof(SubtableUnicodesCache));
1682
0
    new (cache) SubtableUnicodesCache (source_table);
1683
0
    return cache;
1684
0
  }
1685
1686
0
  static void destroy (void* value) {
1687
0
    if (!value) return;
1688
0
1689
0
    SubtableUnicodesCache* cache = (SubtableUnicodesCache*) value;
1690
0
    cache->~SubtableUnicodesCache ();
1691
0
    hb_free (cache);
1692
0
  }
1693
1694
  SubtableUnicodesCache(const void* cmap_base)
1695
      : base_blob(),
1696
        base ((const char*) cmap_base),
1697
        cached_unicodes ()
1698
0
  {}
1699
1700
  SubtableUnicodesCache(hb_blob_ptr_t<cmap> base_blob_)
1701
      : base_blob(base_blob_),
1702
        base ((const char *) base_blob.get()),
1703
        cached_unicodes ()
1704
0
  {}
1705
1706
  ~SubtableUnicodesCache()
1707
0
  {
1708
0
    base_blob.destroy ();
1709
0
  }
1710
1711
  bool same_base(const void* other) const
1712
0
  {
1713
0
    return other == (const void*) base;
1714
0
  }
1715
1716
  const hb_set_t* set_for (const EncodingRecord* record,
1717
                           SubtableUnicodesCache& mutable_cache) const
1718
0
  {
1719
0
    if (cached_unicodes.has ((unsigned) ((const char *) record - base)))
1720
0
      return cached_unicodes.get ((unsigned) ((const char *) record - base));
1721
0
1722
0
    return mutable_cache.set_for (record);
1723
0
  }
1724
1725
  const hb_set_t* set_for (const EncodingRecord* record)
1726
0
  {
1727
0
    if (!cached_unicodes.has ((unsigned) ((const char *) record - base)))
1728
0
    {
1729
0
      hb_set_t *s = hb_set_create ();
1730
0
      if (unlikely (s->in_error ()))
1731
0
  return hb_set_get_empty ();
1732
0
1733
0
      (base+record->subtable).collect_unicodes (s);
1734
0
1735
0
      if (unlikely (!cached_unicodes.set ((unsigned) ((const char *) record - base), hb::unique_ptr<hb_set_t> {s})))
1736
0
        return hb_set_get_empty ();
1737
0
1738
0
      return s;
1739
0
    }
1740
0
    return cached_unicodes.get ((unsigned) ((const char *) record - base));
1741
0
  }
1742
1743
};
1744
1745
static inline uint_fast16_t
1746
_hb_symbol_pua_map (unsigned codepoint)
1747
0
{
1748
0
  if (codepoint <= 0x00FFu)
1749
0
  {
1750
    /* For symbol-encoded OpenType fonts, we duplicate the
1751
     * U+F000..F0FF range at U+0000..U+00FF.  That's what
1752
     * Windows seems to do, and that's hinted about at:
1753
     * https://docs.microsoft.com/en-us/typography/opentype/spec/recom
1754
     * under "Non-Standard (Symbol) Fonts". */
1755
0
    return 0xF000u + codepoint;
1756
0
  }
1757
0
  return 0;
1758
0
}
Unexecuted instantiation: hb-face.cc:OT::_hb_symbol_pua_map(unsigned int)
Unexecuted instantiation: hb-ot-face.cc:OT::_hb_symbol_pua_map(unsigned int)
Unexecuted instantiation: hb-ot-font.cc:OT::_hb_symbol_pua_map(unsigned int)
Unexecuted instantiation: hb-static.cc:OT::_hb_symbol_pua_map(unsigned int)
1759
1760
struct cmap
1761
{
1762
  static constexpr hb_tag_t tableTag = HB_OT_TAG_cmap;
1763
1764
1765
0
  static SubtableUnicodesCache* create_filled_cache(hb_blob_ptr_t<cmap> source_table) {
1766
0
    const cmap* cmap = source_table.get();
1767
0
    auto it =
1768
0
    + hb_iter (cmap->encodingRecord)
1769
0
    | hb_filter ([&](const EncodingRecord& _) {
1770
0
      return cmap::filter_encoding_records_for_subset (cmap, _);
1771
0
    })
1772
0
    ;
1773
0
1774
0
    SubtableUnicodesCache* cache = SubtableUnicodesCache::create(source_table);
1775
0
    for (const EncodingRecord& _ : it)
1776
0
      cache->set_for(&_); // populate the cache for this encoding record.
1777
0
1778
0
    return cache;
1779
0
  }
1780
1781
  template<typename Iterator, typename EncodingRecIter,
1782
     hb_requires (hb_is_iterator (EncodingRecIter))>
1783
  bool serialize (hb_serialize_context_t *c,
1784
      Iterator it,
1785
      EncodingRecIter encodingrec_iter,
1786
      const void *base,
1787
      hb_subset_plan_t *plan,
1788
                  bool drop_format_4 = false)
1789
0
  {
1790
0
    if (unlikely (!c->extend_min ((*this))))  return false;
1791
0
    this->version = 0;
1792
0
1793
0
    unsigned format4objidx = 0, format12objidx = 0, format14objidx = 0;
1794
0
    auto snap = c->snapshot ();
1795
0
1796
0
    SubtableUnicodesCache local_unicodes_cache (base);
1797
0
    const SubtableUnicodesCache* unicodes_cache = &local_unicodes_cache;
1798
0
1799
0
    if (plan->accelerator &&
1800
0
        plan->accelerator->cmap_cache &&
1801
0
        plan->accelerator->cmap_cache->same_base (base))
1802
0
      unicodes_cache = plan->accelerator->cmap_cache;
1803
0
1804
0
    for (const EncodingRecord& _ : encodingrec_iter)
1805
0
    {
1806
0
      if (c->in_error ())
1807
0
        return false;
1808
0
1809
0
      unsigned format = (base+_.subtable).u.format;
1810
0
      if (format != 4 && format != 12 && format != 14) continue;
1811
0
1812
0
      const hb_set_t* unicodes_set = unicodes_cache->set_for (&_, local_unicodes_cache);
1813
0
1814
0
      if (!drop_format_4 && format == 4)
1815
0
      {
1816
0
        c->copy (_, + it | hb_filter (*unicodes_set, hb_first), 4u, base, plan, &format4objidx);
1817
0
        if (c->in_error () && c->only_overflow ())
1818
0
        {
1819
0
          // cmap4 overflowed, reset and retry serialization without format 4 subtables.
1820
0
          c->revert (snap);
1821
0
          return serialize (c, it,
1822
0
                            encodingrec_iter,
1823
0
                            base,
1824
0
                            plan,
1825
0
                            true);
1826
0
        }
1827
0
      }
1828
0
1829
0
      else if (format == 12)
1830
0
      {
1831
0
        if (_can_drop (_,
1832
0
                       *unicodes_set,
1833
0
                       base,
1834
0
                       *unicodes_cache,
1835
0
                       local_unicodes_cache,
1836
0
                       + it | hb_map (hb_first), encodingrec_iter))
1837
0
          continue;
1838
0
        c->copy (_, + it | hb_filter (*unicodes_set, hb_first), 12u, base, plan, &format12objidx);
1839
0
      }
1840
0
      else if (format == 14) c->copy (_, it, 14u, base, plan, &format14objidx);
1841
0
    }
1842
0
    c->check_assign(this->encodingRecord.len,
1843
0
                    (c->length () - cmap::min_size)/EncodingRecord::static_size,
1844
0
                    HB_SERIALIZE_ERROR_INT_OVERFLOW);
1845
0
1846
0
    // Fail if format 4 was dropped and there is no cmap12.
1847
0
    return !drop_format_4 || format12objidx;
1848
0
  }
Unexecuted instantiation: hb-face.cc:_ZN2OT4cmap9serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS0_6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EES2_IS3_IKNS_14EncodingRecordEEZNKS0_6subsetES9_EUlRSH_E_SD_LSE_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT0_NSN_6item_tEEE5valueEvE4typeELSE_0EEEbP22hb_serialize_context_tT_SN_PKvP16hb_subset_plan_tb
Unexecuted instantiation: hb-ot-face.cc:_ZN2OT4cmap9serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS0_6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EES2_IS3_IKNS_14EncodingRecordEEZNKS0_6subsetES9_EUlRSH_E_SD_LSE_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT0_NSN_6item_tEEE5valueEvE4typeELSE_0EEEbP22hb_serialize_context_tT_SN_PKvP16hb_subset_plan_tb
Unexecuted instantiation: hb-ot-font.cc:_ZN2OT4cmap9serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS0_6subsetEP19hb_subset_context_tEUlS5_E_RK4$_18LPv0EES2_IS3_IKNS_14EncodingRecordEEZNKS0_6subsetES9_EUlRSH_E_SD_LSE_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT0_NSN_6item_tEEE5valueEvE4typeELSE_0EEEbP22hb_serialize_context_tT_SN_PKvP16hb_subset_plan_tb
Unexecuted instantiation: hb-static.cc:_ZN2OT4cmap9serializeI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS0_6subsetEP19hb_subset_context_tEUlS5_E_RK4$_19LPv0EES2_IS3_IKNS_14EncodingRecordEEZNKS0_6subsetES9_EUlRSH_E_SD_LSE_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT0_NSN_6item_tEEE5valueEvE4typeELSE_0EEEbP22hb_serialize_context_tT_SN_PKvP16hb_subset_plan_tb
1849
1850
  template<typename Iterator, typename EncodingRecordIterator,
1851
      hb_requires (hb_is_iterator (Iterator)),
1852
      hb_requires (hb_is_iterator (EncodingRecordIterator))>
1853
  bool _can_drop (const EncodingRecord& cmap12,
1854
                  const hb_set_t& cmap12_unicodes,
1855
                  const void* base,
1856
                  const SubtableUnicodesCache& unicodes_cache,
1857
                  SubtableUnicodesCache& local_unicodes_cache,
1858
                  Iterator subset_unicodes,
1859
                  EncodingRecordIterator encoding_records)
1860
0
  {
1861
0
    for (auto cp : + subset_unicodes | hb_filter (cmap12_unicodes))
1862
0
    {
1863
0
      if (cp >= 0x10000) return false;
1864
0
    }
1865
0
1866
0
    unsigned target_platform;
1867
0
    unsigned target_encoding;
1868
0
    unsigned target_language = (base+cmap12.subtable).get_language ();
1869
0
1870
0
    if (cmap12.platformID == 0 && cmap12.encodingID == 4)
1871
0
    {
1872
0
      target_platform = 0;
1873
0
      target_encoding = 3;
1874
0
    } else if (cmap12.platformID == 3 && cmap12.encodingID == 10) {
1875
0
      target_platform = 3;
1876
0
      target_encoding = 1;
1877
0
    } else {
1878
0
      return false;
1879
0
    }
1880
0
1881
0
    for (const auto& _ : encoding_records)
1882
0
    {
1883
0
      if (_.platformID != target_platform
1884
0
          || _.encodingID != target_encoding
1885
0
          || (base+_.subtable).get_language() != target_language)
1886
0
        continue;
1887
0
1888
0
      const hb_set_t* sibling_unicodes = unicodes_cache.set_for (&_, local_unicodes_cache);
1889
0
1890
0
      auto cmap12 = + subset_unicodes | hb_filter (cmap12_unicodes);
1891
0
      auto sibling = + subset_unicodes | hb_filter (*sibling_unicodes);
1892
0
      for (; cmap12 && sibling; cmap12++, sibling++)
1893
0
      {
1894
0
        unsigned a = *cmap12;
1895
0
        unsigned b = *sibling;
1896
0
        if (a != b) return false;
1897
0
      }
1898
0
1899
0
      return !cmap12 && !sibling;
1900
0
    }
1901
0
1902
0
    return false;
1903
0
  }
Unexecuted instantiation: hb-face.cc:_ZN2OT4cmap9_can_dropI13hb_map_iter_tI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS0_6subsetEP19hb_subset_context_tEUlS6_E_RK4$_18LPv0EERK3$_6L24hb_function_sortedness_t0ELSF_0EES3_IS4_IKNS_14EncodingRecordEEZNKS0_6subsetESA_EUlRSN_E_SE_LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NST_6item_tEEE5valueEvE4typeELSF_0ETnPNSS_IXsr17hb_is_iterator_ofIT0_NSY_6item_tEEE5valueEvE4typeELSF_0EEEbSP_RK8hb_set_tPKvRKNS_21SubtableUnicodesCacheERS18_ST_SY_
Unexecuted instantiation: hb-ot-face.cc:_ZN2OT4cmap9_can_dropI13hb_map_iter_tI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS0_6subsetEP19hb_subset_context_tEUlS6_E_RK4$_19LPv0EERK3$_6L24hb_function_sortedness_t0ELSF_0EES3_IS4_IKNS_14EncodingRecordEEZNKS0_6subsetESA_EUlRSN_E_SE_LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NST_6item_tEEE5valueEvE4typeELSF_0ETnPNSS_IXsr17hb_is_iterator_ofIT0_NSY_6item_tEEE5valueEvE4typeELSF_0EEEbSP_RK8hb_set_tPKvRKNS_21SubtableUnicodesCacheERS18_ST_SY_
Unexecuted instantiation: hb-ot-font.cc:_ZN2OT4cmap9_can_dropI13hb_map_iter_tI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS0_6subsetEP19hb_subset_context_tEUlS6_E_RK4$_18LPv0EERK3$_6L24hb_function_sortedness_t0ELSF_0EES3_IS4_IKNS_14EncodingRecordEEZNKS0_6subsetESA_EUlRSN_E_SE_LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NST_6item_tEEE5valueEvE4typeELSF_0ETnPNSS_IXsr17hb_is_iterator_ofIT0_NSY_6item_tEEE5valueEvE4typeELSF_0EEEbSP_RK8hb_set_tPKvRKNS_21SubtableUnicodesCacheERS18_ST_SY_
Unexecuted instantiation: hb-static.cc:_ZN2OT4cmap9_can_dropI13hb_map_iter_tI16hb_filter_iter_tI17hb_sorted_array_tIK9hb_pair_tIjjEEZNKS0_6subsetEP19hb_subset_context_tEUlS6_E_RK4$_19LPv0EERK3$_6L24hb_function_sortedness_t0ELSF_0EES3_IS4_IKNS_14EncodingRecordEEZNKS0_6subsetESA_EUlRSN_E_SE_LSF_0EETnPN12hb_enable_ifIXsr17hb_is_iterator_ofIT_NST_6item_tEEE5valueEvE4typeELSF_0ETnPNSS_IXsr17hb_is_iterator_ofIT0_NSY_6item_tEEE5valueEvE4typeELSF_0EEEbSP_RK8hb_set_tPKvRKNS_21SubtableUnicodesCacheERS18_ST_SY_
1904
1905
  void closure_glyphs (const hb_set_t      *unicodes,
1906
           hb_set_t            *glyphset) const
1907
0
  {
1908
0
    + hb_iter (encodingRecord)
1909
0
    | hb_map (&EncodingRecord::subtable)
1910
0
    | hb_map (hb_add (this))
1911
0
    | hb_filter ([&] (const CmapSubtable& _) { return _.u.format == 14; })
1912
0
    | hb_apply ([=] (const CmapSubtable& _) { _.u.format14.closure_glyphs (unicodes, glyphset); })
1913
0
    ;
1914
0
  }
1915
1916
  bool subset (hb_subset_context_t *c) const
1917
0
  {
1918
0
    TRACE_SUBSET (this);
1919
0
1920
0
    cmap *cmap_prime = c->serializer->start_embed<cmap> ();
1921
0
1922
0
    auto encodingrec_iter =
1923
0
    + hb_iter (encodingRecord)
1924
0
    | hb_filter ([&](const EncodingRecord& _) {
1925
0
      return cmap::filter_encoding_records_for_subset (this, _);
1926
0
    })
1927
0
    ;
1928
0
1929
0
    if (unlikely (!encodingrec_iter.len ())) return_trace (false);
1930
0
1931
0
    const EncodingRecord *unicode_bmp= nullptr, *unicode_ucs4 = nullptr, *ms_bmp = nullptr, *ms_ucs4 = nullptr;
1932
0
    bool has_format12 = false;
1933
0
1934
0
    for (const EncodingRecord& _ : encodingrec_iter)
1935
0
    {
1936
0
      unsigned format = (this + _.subtable).u.format;
1937
0
      if (format == 12) has_format12 = true;
1938
0
1939
0
      const EncodingRecord *table = std::addressof (_);
1940
0
      if      (_.platformID == 0 && _.encodingID ==  3) unicode_bmp = table;
1941
0
      else if (_.platformID == 0 && _.encodingID ==  4) unicode_ucs4 = table;
1942
0
      else if (_.platformID == 3 && _.encodingID ==  1) ms_bmp = table;
1943
0
      else if (_.platformID == 3 && _.encodingID == 10) ms_ucs4 = table;
1944
0
    }
1945
0
1946
0
    if (unlikely (!has_format12 && !unicode_bmp && !ms_bmp)) return_trace (false);
1947
0
    if (unlikely (has_format12 && (!unicode_ucs4 && !ms_ucs4))) return_trace (false);
1948
0
1949
0
    auto it =
1950
0
    + c->plan->unicode_to_new_gid_list.iter ()
1951
0
    | hb_filter ([&] (const hb_codepoint_pair_t _)
1952
0
     { return (_.second != HB_MAP_VALUE_INVALID); })
1953
0
    ;
1954
0
1955
0
    return_trace (cmap_prime->serialize (c->serializer,
1956
0
                                         it,
1957
0
                                         encodingrec_iter,
1958
0
                                         this,
1959
0
                                         c->plan));
1960
0
  }
1961
1962
  const CmapSubtable *find_best_subtable (bool *symbol = nullptr,
1963
            bool *mac = nullptr,
1964
            bool *macroman = nullptr) const
1965
0
  {
1966
0
    if (symbol) *symbol = false;
1967
0
    if (mac) *mac = false;
1968
0
    if (macroman) *macroman = false;
1969
1970
0
    const CmapSubtable *subtable;
1971
1972
    /* Symbol subtable.
1973
     * Prefer symbol if available.
1974
     * https://github.com/harfbuzz/harfbuzz/issues/1918 */
1975
0
    if ((subtable = this->find_subtable (3, 0)))
1976
0
    {
1977
0
      if (symbol) *symbol = true;
1978
0
      return subtable;
1979
0
    }
1980
1981
    /* 32-bit subtables. */
1982
0
    if ((subtable = this->find_subtable (3, 10))) return subtable;
1983
0
    if ((subtable = this->find_subtable (0, 6))) return subtable;
1984
0
    if ((subtable = this->find_subtable (0, 4))) return subtable;
1985
1986
    /* 16-bit subtables. */
1987
0
    if ((subtable = this->find_subtable (3, 1))) return subtable;
1988
0
    if ((subtable = this->find_subtable (0, 3))) return subtable;
1989
0
    if ((subtable = this->find_subtable (0, 2))) return subtable;
1990
0
    if ((subtable = this->find_subtable (0, 1))) return subtable;
1991
0
    if ((subtable = this->find_subtable (0, 0))) return subtable;
1992
1993
    /* MacRoman subtable. */
1994
0
    if ((subtable = this->find_subtable (1, 0)))
1995
0
    {
1996
0
      if (mac) *mac = true;
1997
0
      if (macroman) *macroman = true;
1998
0
      return subtable;
1999
0
    }
2000
    /* Any other Mac subtable; we just map ASCII for these. */
2001
0
    if ((subtable = this->find_subtable (1, 0xFFFF)))
2002
0
    {
2003
0
      if (mac) *mac = true;
2004
0
      return subtable;
2005
0
    }
2006
2007
    /* Meh. */
2008
0
    return &Null (CmapSubtable);
2009
0
  }
2010
2011
  struct accelerator_t
2012
  {
2013
    using cache_t = hb_cache_t<21, 19>;
2014
    static_assert (sizeof (cache_t) == 1024, "");
2015
2016
    accelerator_t (hb_face_t *face)
2017
0
    {
2018
0
      this->table = hb_sanitize_context_t ().reference_table<cmap> (face);
2019
0
      bool symbol, mac, macroman;
2020
0
      this->subtable = table->find_best_subtable (&symbol, &mac, &macroman);
2021
0
      this->subtable_uvs = &Null (CmapSubtableFormat14);
2022
0
      {
2023
0
  const CmapSubtable *st = table->find_subtable (0, 5);
2024
0
  if (st && st->u.format == 14)
2025
0
    subtable_uvs = &st->u.format14;
2026
0
      }
2027
2028
0
#ifndef HB_NO_OT_FONT_CMAP_CACHE
2029
0
      cache = (cache_t *) hb_malloc (sizeof (cache_t));
2030
0
      if (cache)
2031
0
  new (cache) cache_t ();
2032
0
      else
2033
0
        return; // Such that get_glyph_funcZ remains null.
2034
0
#endif
2035
2036
0
      this->get_glyph_data = subtable;
2037
0
#ifndef HB_NO_CMAP_LEGACY_SUBTABLES
2038
0
      if (unlikely (symbol))
2039
0
      {
2040
0
  switch ((unsigned) face->table.OS2->get_font_page ()) {
2041
0
  case OS2::font_page_t::FONT_PAGE_NONE:
2042
0
    this->get_glyph_funcZ = get_glyph_from_symbol<CmapSubtable, _hb_symbol_pua_map>;
2043
0
    break;
2044
0
#ifndef HB_NO_OT_SHAPER_ARABIC_FALLBACK
2045
0
  case OS2::font_page_t::FONT_PAGE_SIMP_ARABIC:
2046
0
    this->get_glyph_funcZ = get_glyph_from_symbol<CmapSubtable, _hb_arabic_pua_simp_map>;
2047
0
    break;
2048
0
  case OS2::font_page_t::FONT_PAGE_TRAD_ARABIC:
2049
0
    this->get_glyph_funcZ = get_glyph_from_symbol<CmapSubtable, _hb_arabic_pua_trad_map>;
2050
0
    break;
2051
0
#endif
2052
0
  default:
2053
0
    this->get_glyph_funcZ = get_glyph_from<CmapSubtable>;
2054
0
    break;
2055
0
  }
2056
0
      }
2057
0
      else if (unlikely (macroman))
2058
0
      {
2059
0
  this->get_glyph_funcZ = get_glyph_from_macroman<CmapSubtable>;
2060
0
      }
2061
0
      else if (unlikely (mac))
2062
0
      {
2063
0
  this->get_glyph_funcZ = get_glyph_from_ascii<CmapSubtable>;
2064
0
      }
2065
0
      else
2066
0
#endif
2067
0
      {
2068
0
  switch (subtable->u.format) {
2069
    /* Accelerate format 4 and format 12. */
2070
0
    default:
2071
0
      this->get_glyph_funcZ = get_glyph_from<CmapSubtable>;
2072
0
      break;
2073
0
    case 12:
2074
0
      this->get_glyph_funcZ = get_glyph_from<CmapSubtableFormat12>;
2075
0
      break;
2076
0
    case  4:
2077
0
    {
2078
0
      this->format4_accel.init (&subtable->u.format4);
2079
0
      this->get_glyph_data = &this->format4_accel;
2080
0
      this->get_glyph_funcZ = this->format4_accel.get_glyph_func;
2081
0
      break;
2082
0
    }
2083
0
  }
2084
0
      }
2085
0
    }
2086
    ~accelerator_t ()
2087
0
    {
2088
0
#ifndef HB_NO_OT_FONT_CMAP_CACHE
2089
0
      hb_free (cache);
2090
0
#endif
2091
0
      table.destroy ();
2092
0
    }
2093
2094
    inline bool _cached_get (hb_codepoint_t unicode,
2095
           hb_codepoint_t *glyph) const
2096
0
    {
2097
0
#ifndef HB_NO_OT_FONT_CMAP_CACHE
2098
      // cache is always non-null if we have a get_glyph_funcZ
2099
0
      unsigned v;
2100
0
      if (cache->get (unicode, &v))
2101
0
      {
2102
0
        *glyph = v;
2103
0
  return true;
2104
0
      }
2105
0
#endif
2106
0
      bool ret  = this->get_glyph_funcZ (this->get_glyph_data, unicode, glyph);
2107
2108
0
#ifndef HB_NO_OT_FONT_CMAP_CACHE
2109
0
      if (ret)
2110
0
        cache->set (unicode, *glyph);
2111
0
#endif
2112
2113
0
      return ret;
2114
0
    }
2115
2116
    bool get_nominal_glyph (hb_codepoint_t  unicode,
2117
          hb_codepoint_t *glyph) const
2118
0
    {
2119
0
      if (unlikely (!this->get_glyph_funcZ)) return false;
2120
0
      return _cached_get (unicode, glyph);
2121
0
    }
2122
2123
    unsigned int get_nominal_glyphs (unsigned int count,
2124
             const hb_codepoint_t *first_unicode,
2125
             unsigned int unicode_stride,
2126
             hb_codepoint_t *first_glyph,
2127
             unsigned int glyph_stride) const
2128
0
    {
2129
0
      if (unlikely (!this->get_glyph_funcZ)) return 0;
2130
2131
0
      unsigned int done;
2132
0
      for (done = 0;
2133
0
     done < count && _cached_get (*first_unicode, first_glyph);
2134
0
     done++)
2135
0
      {
2136
0
  first_unicode = &StructAtOffsetUnaligned<hb_codepoint_t> (first_unicode, unicode_stride);
2137
0
  first_glyph = &StructAtOffsetUnaligned<hb_codepoint_t> (first_glyph, glyph_stride);
2138
0
      }
2139
0
      return done;
2140
0
    }
2141
2142
    bool get_variation_glyph (hb_codepoint_t  unicode,
2143
            hb_codepoint_t  variation_selector,
2144
            hb_codepoint_t *glyph) const
2145
0
    {
2146
0
      switch (this->subtable_uvs->get_glyph_variant (unicode,
2147
0
                 variation_selector,
2148
0
                 glyph))
2149
0
      {
2150
0
  case GLYPH_VARIANT_NOT_FOUND: return false;
2151
0
  case GLYPH_VARIANT_FOUND: return true;
2152
0
  case GLYPH_VARIANT_USE_DEFAULT: break;
2153
0
      }
2154
2155
0
      return get_nominal_glyph (unicode, glyph);
2156
0
    }
2157
2158
    void collect_unicodes (hb_set_t *out, unsigned int num_glyphs) const
2159
0
    { subtable->collect_unicodes (out, num_glyphs); }
2160
    void collect_mapping (hb_set_t *unicodes, hb_map_t *mapping,
2161
        unsigned num_glyphs = UINT_MAX) const
2162
0
    { subtable->collect_mapping (unicodes, mapping, num_glyphs); }
2163
    void collect_variation_selectors (hb_set_t *out) const
2164
0
    { subtable_uvs->collect_variation_selectors (out); }
2165
    void collect_variation_unicodes (hb_codepoint_t variation_selector,
2166
             hb_set_t *out) const
2167
0
    { subtable_uvs->collect_variation_unicodes (variation_selector, out); }
2168
2169
    protected:
2170
    typedef bool (*hb_cmap_get_glyph_func_t) (const void *obj,
2171
                hb_codepoint_t codepoint,
2172
                hb_codepoint_t *glyph);
2173
    typedef uint_fast16_t (*hb_pua_remap_func_t) (unsigned);
2174
2175
    template <typename Type>
2176
    HB_INTERNAL static bool get_glyph_from (const void *obj,
2177
              hb_codepoint_t codepoint,
2178
              hb_codepoint_t *glyph)
2179
0
    {
2180
0
      const Type *typed_obj = (const Type *) obj;
2181
0
      return typed_obj->get_glyph (codepoint, glyph);
2182
0
    }
Unexecuted instantiation: bool OT::cmap::accelerator_t::get_glyph_from<OT::CmapSubtable>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: bool OT::cmap::accelerator_t::get_glyph_from<OT::CmapSubtableFormat12>(void const*, unsigned int, unsigned int*)
2183
2184
    template <typename Type, hb_pua_remap_func_t remap>
2185
    HB_INTERNAL static bool get_glyph_from_symbol (const void *obj,
2186
               hb_codepoint_t codepoint,
2187
               hb_codepoint_t *glyph)
2188
0
    {
2189
0
      const Type *typed_obj = (const Type *) obj;
2190
0
      if (likely (typed_obj->get_glyph (codepoint, glyph)))
2191
0
  return true;
2192
2193
0
      if (hb_codepoint_t c = remap (codepoint))
2194
0
  return typed_obj->get_glyph (c, glyph);
2195
2196
0
      return false;
2197
0
    }
Unexecuted instantiation: hb-face.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &OT::_hb_symbol_pua_map>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-face.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &(_hb_arabic_pua_simp_map(unsigned int))>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-face.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &(_hb_arabic_pua_trad_map(unsigned int))>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-ot-face.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &OT::_hb_symbol_pua_map>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-ot-face.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &(_hb_arabic_pua_simp_map(unsigned int))>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-ot-face.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &(_hb_arabic_pua_trad_map(unsigned int))>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-ot-font.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &OT::_hb_symbol_pua_map>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-ot-font.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &(_hb_arabic_pua_simp_map(unsigned int))>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-ot-font.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &(_hb_arabic_pua_trad_map(unsigned int))>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-static.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &OT::_hb_symbol_pua_map>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-static.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &(_hb_arabic_pua_simp_map(unsigned int))>(void const*, unsigned int, unsigned int*)
Unexecuted instantiation: hb-static.cc:bool OT::cmap::accelerator_t::get_glyph_from_symbol<OT::CmapSubtable, &(_hb_arabic_pua_trad_map(unsigned int))>(void const*, unsigned int, unsigned int*)
2198
2199
    template <typename Type>
2200
    HB_INTERNAL static bool get_glyph_from_ascii (const void *obj,
2201
              hb_codepoint_t codepoint,
2202
              hb_codepoint_t *glyph)
2203
0
    {
2204
0
      const Type *typed_obj = (const Type *) obj;
2205
0
      return codepoint < 0x80 && typed_obj->get_glyph (codepoint, glyph);
2206
0
    }
2207
2208
    template <typename Type>
2209
    HB_INTERNAL static bool get_glyph_from_macroman (const void *obj,
2210
                 hb_codepoint_t codepoint,
2211
                 hb_codepoint_t *glyph)
2212
0
    {
2213
0
      if (get_glyph_from_ascii<Type> (obj, codepoint, glyph))
2214
0
  return true;
2215
2216
0
      const Type *typed_obj = (const Type *) obj;
2217
0
      unsigned c = unicode_to_macroman (codepoint);
2218
0
      return c && typed_obj->get_glyph (c, glyph);
2219
0
    }
2220
2221
    private:
2222
    hb_nonnull_ptr_t<const CmapSubtable> subtable;
2223
    hb_nonnull_ptr_t<const CmapSubtableFormat14> subtable_uvs;
2224
2225
    hb_cmap_get_glyph_func_t get_glyph_funcZ = nullptr;
2226
    const void *get_glyph_data = nullptr;
2227
2228
    CmapSubtableFormat4::accelerator_t format4_accel;
2229
2230
#ifndef HB_NO_OT_FONT_CMAP_CACHE
2231
    cache_t *cache = nullptr;
2232
#endif
2233
2234
    public:
2235
    hb_blob_ptr_t<cmap> table;
2236
  };
2237
2238
  protected:
2239
2240
  const CmapSubtable *find_subtable (unsigned int platform_id,
2241
             unsigned int encoding_id) const
2242
0
  {
2243
0
    EncodingRecord key;
2244
0
    key.platformID = platform_id;
2245
0
    key.encodingID = encoding_id;
2246
2247
0
    const EncodingRecord &result = encodingRecord.bsearch (key);
2248
0
    if (!result.subtable)
2249
0
      return nullptr;
2250
2251
0
    return &(this+result.subtable);
2252
0
  }
2253
2254
  public:
2255
2256
  bool sanitize (hb_sanitize_context_t *c) const
2257
0
  {
2258
0
    TRACE_SANITIZE (this);
2259
0
    return_trace (c->check_struct (this) &&
2260
0
      hb_barrier () &&
2261
0
      likely (version == 0) &&
2262
0
      encodingRecord.sanitize (c, this));
2263
0
  }
2264
2265
 private:
2266
2267
  static bool filter_encoding_records_for_subset(const cmap* cmap,
2268
                                                 const EncodingRecord& _)
2269
0
  {
2270
0
    return
2271
0
        (_.platformID == 0 && _.encodingID == 3) ||
2272
0
        (_.platformID == 0 && _.encodingID == 4) ||
2273
0
        (_.platformID == 3 && _.encodingID == 1) ||
2274
0
        (_.platformID == 3 && _.encodingID == 10) ||
2275
0
        (cmap + _.subtable).u.format == 14;
2276
0
  }
2277
2278
  protected:
2279
  HBUINT16  version;  /* Table version number (0). */
2280
  SortedArray16Of<EncodingRecord>
2281
    encodingRecord; /* Encoding tables. */
2282
  public:
2283
  DEFINE_SIZE_ARRAY (4, encodingRecord);
2284
};
2285
2286
struct cmap_accelerator_t : cmap::accelerator_t {
2287
0
  cmap_accelerator_t (hb_face_t *face) : cmap::accelerator_t (face) {}
2288
};
2289
2290
} /* namespace OT */
2291
2292
2293
#endif /* HB_OT_CMAP_TABLE_HH */