Coverage Report

Created: 2025-12-31 07:31

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/psi/zbfont.c
Line
Count
Source
1
/* Copyright (C) 2001-2023 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* Font creation utilities */
18
#include "memory_.h"
19
#include "string_.h"
20
#include "ghost.h"
21
#include "oper.h"
22
#include "gxfixed.h"
23
#include "gscencs.h"
24
#include "gsmatrix.h"
25
#include "gxdevice.h"
26
#include "gxfont.h"
27
#include "bfont.h"
28
#include "ialloc.h"
29
#include "idict.h"
30
#include "idparam.h"
31
#include "ilevel.h"
32
#include "iname.h"
33
#include "inamedef.h"   /* for inlining name_index */
34
#include "interp.h"   /* for initial_enter_name */
35
#include "ipacked.h"
36
#include "istruct.h"
37
#include "store.h"
38
#include "gsstate.h" /* for gs_currentcpsimode() */
39
/* Structure descriptor and GC procedures for font_data */
40
public_st_font_data();
41
static
42
CLEAR_MARKS_PROC(font_data_clear_marks)
43
592k
{
44
592k
    ref_struct_clear_marks(cmem, vptr, offset_of(font_data, u.type42.mru_sfnts_index)/*size*/, pstype);
45
592k
}
46
static
47
ENUM_PTRS_BEGIN_PROC(font_data_enum_ptrs)
48
5.63M
{
49
5.63M
    return ref_struct_enum_ptrs(mem, vptr, offset_of(font_data, u.type42.mru_sfnts_index)/*size*/, index, pep, pstype, gcst);
50
5.63M
}
51
ENUM_PTRS_END_PROC
52
static
53
563k
RELOC_PTRS_BEGIN(font_data_reloc_ptrs)
54
563k
{
55
563k
    ref_struct_reloc_ptrs(vptr, offset_of(font_data, u.type42.mru_sfnts_index)/*size*/, pstype, gcst);
56
563k
}
57
563k
RELOC_PTRS_END
58
59
/* <string|name> <font_dict> .buildfont3 <string|name> <font> */
60
/* Build a type 3 (user-defined) font. */
61
static int
62
zbuildfont3(i_ctx_t *i_ctx_p)
63
184k
{
64
184k
    os_ptr op = osp;
65
184k
    int code;
66
184k
    build_proc_refs build;
67
184k
    gs_font_base *pfont;
68
69
184k
    check_op(2);
70
184k
    check_type(*op, t_dictionary);
71
184k
    code = build_gs_font_procs(op, &build);
72
184k
    if (code < 0)
73
19
        return code;
74
184k
    code = build_gs_simple_font(i_ctx_p, op, &pfont, ft_user_defined,
75
184k
                                &st_gs_font_base, &build, bf_options_none);
76
184k
    if (code < 0)
77
20
        return code;
78
184k
    return define_gs_font(i_ctx_p, (gs_font *) pfont);
79
184k
}
80
81
/* Encode a character. */
82
gs_glyph
83
zfont_encode_char(gs_font *pfont, gs_char chr, gs_glyph_space_t gspace)
84
113M
{
85
113M
    font_data *pdata = pfont_data(pfont);
86
113M
    const ref *pencoding = &pdata->Encoding;
87
113M
    ulong index = chr;  /* work around VAX widening bug */
88
113M
    ref cname;
89
113M
    int code = array_get(pfont->memory, pencoding, (long)index, &cname);
90
91
113M
    if (code < 0 || !r_has_type(&cname, t_name))
92
2.09k
        return GS_NO_GLYPH;
93
113M
    if (pfont->FontType == ft_user_defined && r_type(&pdata->BuildGlyph) == t_null) {
94
103M
        ref nsref, tname;
95
96
103M
        name_string_ref(pfont->memory, &cname, &nsref);
97
103M
        if (r_size(&nsref) == 7 &&
98
17.0M
            !memcmp(nsref.value.const_bytes, ".notdef", r_size(&nsref))) {
99
            /* A special support for high level devices.
100
               They need a glyph name but the font doesn't provide one
101
               due to an instandard BuildChar.
102
               Such fonts don't conform to PLRM section 5.3.7,
103
               but we've got real examples that we want to handle (Bug 686982).
104
               Construct a name here.
105
               Low level devices don't pass here, because regular PS interpretation
106
               doesn't need such names.
107
            */
108
16.2M
            char buf[20];
109
16.2M
            int code;
110
111
16.2M
            if (gspace == GLYPH_SPACE_NOGEN)
112
0
                return GS_NO_GLYPH;
113
16.2M
            gs_snprintf(buf, sizeof(buf), "j%ld", chr); /* 'j' is arbutrary. */
114
16.2M
            code = name_ref(pfont->memory, (const byte *)buf, strlen(buf), &tname, 1);
115
16.2M
            if (code < 0) {
116
                /* Can't propagate the error due to interface limitation,
117
                   return with .notdef */
118
0
            } else
119
16.2M
                cname = tname;
120
16.2M
        }
121
103M
    }
122
113M
    return (gs_glyph)name_index(pfont->memory, &cname);
123
113M
}
124
125
/* Get the name of a glyph. */
126
static int
127
zfont_glyph_name(gs_font *font, gs_glyph index, gs_const_string *pstr)
128
169M
{
129
169M
    ref nref, sref;
130
131
169M
    if (index >= GS_MIN_CID_GLYPH) { /* Fabricate a numeric name. */
132
614
        char cid_name[sizeof(gs_glyph) * 3 + 1];
133
614
        int code;
134
135
614
        gs_snprintf(cid_name, sizeof(cid_name), "%lu", (ulong) index);
136
614
        code = name_ref(font->memory, (const byte *)cid_name, strlen(cid_name),
137
614
                        &nref, 1);
138
614
        if (code < 0)
139
0
            return code;
140
169M
    } else {
141
169M
        name_index_ref(font->memory, index, &nref);
142
169M
        if (nref.value.pname == NULL)
143
0
            return_error(gs_error_unknownerror);
144
169M
    }
145
169M
    name_string_ref(font->memory, &nref, &sref);
146
169M
    pstr->data = sref.value.const_bytes;
147
169M
    pstr->size = r_size(&sref);
148
169M
    return 0;
149
169M
}
150
151
void get_zfont_glyph_name( int (**proc)(gs_font *font, gs_glyph glyph, gs_const_string *pstr) )
152
110k
{
153
110k
    *proc = zfont_glyph_name;
154
110k
}
155
156
static gs_char
157
gs_font_map_glyph_by_dict(const gs_memory_t *mem, const ref *map, gs_glyph glyph, ushort *u, unsigned int length)
158
60.3k
{
159
60.3k
    ref *v, n;
160
60.3k
    uchar *unicode_return = (uchar *)u;
161
60.3k
    if (glyph >= GS_MIN_CID_GLYPH) {
162
0
        uint cid = glyph - GS_MIN_CID_GLYPH;
163
164
0
        if (dict_find_string(map, "CIDCount", &v) > 0) {
165
            /* This is a CIDDEcoding resource. */
166
0
            make_int(&n, cid / 256);
167
0
            if (dict_find(map, &n, &v) > 0) {
168
0
                ref vv;
169
170
0
                if (array_get(mem, v, cid % 256, &vv) == 0 && r_type(&vv) == t_integer) {
171
0
                    if (v->value.intval > 65535) {
172
0
                        if (length < 4)
173
0
                            return 4;
174
0
                        unicode_return[0] = v->value.intval >> 24;
175
0
                        unicode_return[1] = (v->value.intval & 0x00FF0000) >> 16;
176
0
                        unicode_return[2] = (v->value.intval & 0x0000FF00) >> 8;
177
0
                        unicode_return[3] = v->value.intval & 0xFF;
178
0
                        return 4;
179
0
                    } else {
180
0
                        if (length < 2)
181
0
                            return 2;
182
0
                        unicode_return[0] = v->value.intval >> 8;
183
0
                        unicode_return[1] = v->value.intval & 0xFF;
184
0
                        return 2;
185
0
                    }
186
0
                }
187
0
            }
188
0
            return 0; /* Absent in the map. */
189
0
        }
190
        /* This is GlyphNames2Unicode dictionary. */
191
0
        make_int(&n, cid);
192
0
    } else
193
60.3k
        name_index_ref(mem, glyph, &n);
194
60.3k
     if (dict_find(map, &n, &v) > 0) {
195
58.2k
        if (r_has_type(v, t_string)) {
196
0
            int l = r_size(v);
197
198
0
            if (length < l)
199
0
                return l;
200
0
            memcpy(unicode_return, v->value.const_bytes, l);
201
0
            return l;
202
0
        }
203
58.2k
        if (r_type(v) == t_integer) {
204
58.2k
            if (v->value.intval > 65535) {
205
0
                if (length < 4)
206
0
                    return 4;
207
0
                unicode_return[0] = v->value.intval >> 24;
208
0
                unicode_return[1] = (v->value.intval & 0x00FF0000) >> 16;
209
0
                unicode_return[2] = (v->value.intval & 0x0000FF00) >> 8;
210
0
                unicode_return[3] = v->value.intval & 0xFF;
211
0
                return 4;
212
58.2k
            } else {
213
58.2k
                if (length < 2)
214
29.1k
                    return 2;
215
29.1k
                unicode_return[0] = v->value.intval >> 8;
216
29.1k
                unicode_return[1] = v->value.intval & 0xFF;
217
29.1k
                return 2;
218
58.2k
            }
219
58.2k
        }
220
58.2k
    }
221
2.03k
    return 0; /* Absent in the map. */
222
60.3k
}
223
224
/* Get Unicode UTF-16 code for a glyph. */
225
int
226
gs_font_map_glyph_to_unicode(gs_font *font, gs_glyph glyph, int ch, ushort *u, unsigned int length)
227
79.6k
{
228
79.6k
    font_data *pdata = pfont_data(font);
229
79.6k
    const ref *UnicodeDecoding;
230
79.6k
    uchar *unicode_return = (uchar *)u;
231
232
79.6k
    if (r_type(&pdata->GlyphNames2Unicode) == t_dictionary) {
233
0
        int c = gs_font_map_glyph_by_dict(font->memory,
234
0
                                              &pdata->GlyphNames2Unicode, glyph, u, length);
235
236
0
        if (c != 0)
237
0
            return c;
238
0
        if (ch != -1) { /* -1 indicates a CIDFont */
239
            /* Its possible that we have a GlyphNames2Unicode dictionary
240
             * which contains integers and Unicode values, rather than names
241
             * and Unicode values. This happens if the input was PDF, the font
242
             * has a ToUnicode Cmap, but no Encoding. In this case we need to
243
             * use the character code as an index into the dictionary. Try that
244
             * now before we fall back to the UnicodeDecoding.
245
             */
246
0
            ref *v, n;
247
248
0
            make_int(&n, ch);
249
0
            if (dict_find(&pdata->GlyphNames2Unicode, &n, &v) > 0) {
250
0
                if (r_has_type(v, t_string)) {
251
0
                    int l = r_size(v);
252
253
0
                    if (l > length)
254
0
                        return l;
255
256
0
                    memcpy(unicode_return, v->value.const_bytes, l);
257
0
                    return l;
258
0
                }
259
0
                if (r_type(v) == t_integer) {
260
0
                    if (v->value.intval > 65535) {
261
0
                        if (length < 4)
262
0
                            return 4;
263
0
                        unicode_return[0] = v->value.intval >> 24;
264
0
                        unicode_return[1] = (v->value.intval & 0x00FF0000) >> 16;
265
0
                        unicode_return[2] = (v->value.intval & 0x0000FF00) >> 8;
266
0
                        unicode_return[3] = v->value.intval & 0xFF;
267
0
                        return 4;
268
0
                    } else {
269
0
                        if (length < 2)
270
0
                            return 2;
271
0
                        unicode_return[0] = v->value.intval >> 8;
272
0
                        unicode_return[1] = v->value.intval & 0xFF;
273
0
                        return 2;
274
0
                    }
275
0
                }
276
0
            }
277
0
        }
278
        /*
279
         * Fall through, because test.ps for SF bug #529103 requres
280
         * to examine both tables. Due to that the Unicode Decoding resource
281
         * can't be a default value for FontInfo.GlyphNames2Unicode .
282
         */
283
0
    }
284
79.6k
    if (glyph <= GS_MIN_CID_GLYPH && glyph != GS_NO_GLYPH) {
285
79.6k
        UnicodeDecoding = zfont_get_to_unicode_map(font->dir);
286
79.6k
        if (UnicodeDecoding != NULL && r_type(UnicodeDecoding) == t_dictionary)
287
60.3k
            return gs_font_map_glyph_by_dict(font->memory, UnicodeDecoding, glyph, u, length);
288
79.6k
    }
289
19.3k
    return 0; /* No map. */
290
79.6k
}
291
292
/* ------ Initialization procedure ------ */
293
294
const op_def zbfont_op_defs[] =
295
{
296
    {"2.buildfont3", zbuildfont3},
297
    op_def_end(0)
298
};
299
300
/* ------ Subroutines ------ */
301
302
/* Convert strings to executable names for build_proc_refs. */
303
int
304
build_proc_name_refs(const gs_memory_t *mem, build_proc_refs * pbuild,
305
                     const char *bcstr, const char *bgstr)
306
294k
{
307
294k
    int code;
308
309
294k
    if (!bcstr)
310
294k
        make_null(&pbuild->BuildChar);
311
294k
    else {
312
294k
        if ((code = name_ref(mem, (const byte *)bcstr,
313
294k
                             strlen(bcstr), &pbuild->BuildChar, 0)) < 0)
314
0
            return code;
315
294k
        r_set_attrs(&pbuild->BuildChar, a_executable);
316
294k
    }
317
294k
    if (!bgstr)
318
294k
        make_null(&pbuild->BuildGlyph);
319
294k
    else {
320
294k
        if ((code = name_ref(mem, (const byte *)bgstr,
321
294k
                             strlen(bgstr), &pbuild->BuildGlyph, 0)) < 0)
322
0
            return code;
323
294k
        r_set_attrs(&pbuild->BuildGlyph, a_executable);
324
294k
    }
325
294k
    return 0;
326
294k
}
327
328
/* Get the BuildChar and/or BuildGlyph routines from a (base) font. */
329
int
330
build_gs_font_procs(os_ptr op, build_proc_refs * pbuild)
331
184k
{
332
184k
    int ccode, gcode;
333
184k
    ref *pBuildChar;
334
184k
    ref *pBuildGlyph;
335
336
184k
    check_type(*op, t_dictionary);
337
184k
    ccode = dict_find_string(op, "BuildChar", &pBuildChar);
338
184k
    gcode = dict_find_string(op, "BuildGlyph", &pBuildGlyph);
339
184k
    if (ccode <= 0) {
340
15
        if (gcode <= 0)
341
15
            return_error(gs_error_invalidfont);
342
0
        make_null(&pbuild->BuildChar);
343
184k
    } else {
344
184k
        check_proc(*pBuildChar);
345
184k
        pbuild->BuildChar = *pBuildChar;
346
184k
    }
347
184k
    if (gcode <= 0)
348
184k
        make_null(&pbuild->BuildGlyph);
349
0
    else {
350
0
        check_proc(*pBuildGlyph);
351
0
        pbuild->BuildGlyph = *pBuildGlyph;
352
0
    }
353
184k
    return 0;
354
184k
}
355
356
static int font_with_same_UID_and_another_metrics(const gs_font *pfont0, const gs_font *pfont1)
357
285
{
358
285
    const gs_font_base *pbfont0 = (const gs_font_base *)pfont0;
359
285
    const gs_font_base *pbfont1 = (const gs_font_base *)pfont1;
360
361
285
    if (uid_equal(&pbfont0->UID, &pbfont1->UID)) {
362
87
        const ref *pfdict0 = &pfont_data(gs_font_parent(pbfont0))->dict;
363
87
        const ref *pfdict1 = &pfont_data(gs_font_parent(pbfont1))->dict;
364
87
        ref *pmdict0, *pmdict1;
365
366
87
        if (pbfont0->WMode || dict_find_string(pfdict0, "Metrics", &pmdict0) <= 0)
367
87
            pmdict0 = NULL;
368
87
        if (pbfont1->WMode || dict_find_string(pfdict1, "Metrics", &pmdict1) <= 0)
369
87
            pmdict1 = NULL;
370
87
        if (!pmdict0 != !pmdict1)
371
0
            return 1;
372
87
        if (pmdict0 != NULL && !obj_eq(pfont0->memory, pmdict0, pmdict1))
373
0
            return 1;
374
87
        if (!pbfont0->WMode || dict_find_string(pfdict0, "Metrics2", &pmdict0) <= 0)
375
87
            pmdict0 = NULL;
376
87
        if (!pbfont0->WMode || dict_find_string(pfdict1, "Metrics2", &pmdict1) <= 0)
377
87
            pmdict1 = NULL;
378
87
        if (!pmdict0 != !pmdict1)
379
0
            return 1;
380
87
        if (pmdict0 != NULL && !obj_eq(pfont0->memory, pmdict0, pmdict1))
381
0
            return 1;
382
87
    }
383
285
    return 0;
384
285
}
385
386
/* Do the common work for building a primitive font -- one whose execution */
387
/* algorithm is implemented in C (Type 1, Type 2, Type 4, or Type 42). */
388
/* The caller guarantees that *op is a dictionary. */
389
int
390
build_gs_primitive_font(i_ctx_t *i_ctx_p, os_ptr op, gs_font_base ** ppfont,
391
                        font_type ftype, gs_memory_type_ptr_t pstype,
392
                        const build_proc_refs * pbuild,
393
                        build_font_options_t options)
394
147k
{
395
147k
    ref *pcharstrings = 0;
396
147k
    ref CharStrings;
397
147k
    gs_font_base *pfont;
398
147k
    font_data *pdata;
399
147k
    int code;
400
401
147k
    if (dict_find_string(op, "CharStrings", &pcharstrings) <= 0) {
402
0
        if (!(options & bf_CharStrings_optional))
403
0
            return_error(gs_error_invalidfont);
404
147k
    } else {
405
147k
        ref *ignore;
406
407
147k
        if (!r_has_type(pcharstrings, t_dictionary))
408
0
            return_error(gs_error_invalidfont);
409
147k
        if ((options & bf_notdef_required) != 0 &&
410
147k
            dict_find_string(pcharstrings, ".notdef", &ignore) <= 0
411
147k
            )
412
0
            return_error(gs_error_invalidfont);
413
        /*
414
         * Since build_gs_simple_font may resize the dictionary and cause
415
         * pointers to become invalid, save CharStrings.
416
         */
417
147k
        CharStrings = *pcharstrings;
418
147k
    }
419
147k
    code = build_gs_outline_font(i_ctx_p, op, ppfont, ftype, pstype, pbuild,
420
147k
                                 options, build_gs_simple_font);
421
147k
    if (code != 0)
422
44
        return code;
423
147k
    pfont = *ppfont;
424
147k
    pdata = pfont_data(pfont);
425
147k
    if (pcharstrings)
426
147k
        ref_assign(&pdata->CharStrings, &CharStrings);
427
0
    else
428
147k
        make_null(&pdata->CharStrings);
429
    /* Check that the UniqueIDs match.  This is part of the */
430
    /* Adobe protection scheme, but we may as well emulate it. */
431
147k
    if (uid_is_valid(&pfont->UID) &&
432
144
        !dict_check_uid_param(op, &pfont->UID)
433
147k
        )
434
0
        uid_set_invalid(&pfont->UID);
435
147k
    if (uid_is_valid(&pfont->UID)) {
436
144
        const gs_font *pfont0 = (const gs_font *)pfont;
437
438
144
        code = gs_font_find_similar(ifont_dir, &pfont0,
439
144
                       font_with_same_UID_and_another_metrics);
440
144
        if (code < 0)
441
0
            return code; /* Must not happen. */
442
144
        if (code)
443
0
            uid_set_invalid(&pfont->UID);
444
144
    }
445
147k
    return 0;
446
147k
}
447
448
/* Build a FDArray entry for a CIDFontType 0 font. */
449
/* Note that as of Adobe PostScript version 3011, this may be either */
450
/* a Type 1 or Type 2 font. */
451
static int
452
build_FDArray_sub_font(i_ctx_t *i_ctx_p, ref *op,
453
                       gs_font_base **ppfont,
454
                       font_type ftype, gs_memory_type_ptr_t pstype,
455
                       const build_proc_refs * pbuild,
456
                       build_font_options_t ignore_options)
457
2
{
458
2
    gs_font *pfont;
459
2
    int code = build_gs_sub_font(i_ctx_p, op, &pfont, ftype, pstype, pbuild,
460
2
                                 NULL, op);
461
462
2
    if (code >= 0)
463
2
        *ppfont = (gs_font_base *)pfont;
464
2
    return code;
465
2
}
466
int
467
build_gs_FDArray_font(i_ctx_t *i_ctx_p, ref *op,
468
                      gs_font_base **ppfont,
469
                      font_type ftype, gs_memory_type_ptr_t pstype,
470
                      const build_proc_refs * pbuild)
471
2
{
472
2
    gs_font_base *pfont;
473
2
    font_data *pdata;
474
2
    int code = build_gs_outline_font(i_ctx_p, op, &pfont, ftype, pstype,
475
2
                                     pbuild, bf_options_none,
476
2
                                     build_FDArray_sub_font);
477
2
    static const double bbox[4] = { 0, 0, 0, 0 };
478
2
    gs_uid uid;
479
480
2
    if (code < 0)
481
0
        return code;
482
2
    pdata = pfont_data(pfont);
483
    /* Fill in members normally set by build_gs_primitive_font. */
484
2
    make_null(&pdata->CharStrings);
485
    /* Fill in members normally set by build_gs_simple_font. */
486
2
    uid_set_invalid(&uid);
487
2
    init_gs_simple_font(pfont, bbox, &uid);
488
2
    pfont->encoding_index = ENCODING_INDEX_UNKNOWN;
489
2
    pfont->nearest_encoding_index = ENCODING_INDEX_UNKNOWN;
490
    /* Fill in members normally set by build_gs_font. */
491
2
    pfont->key_name = pfont->font_name;
492
2
    *ppfont = pfont;
493
2
    return 0;
494
2
}
495
496
/* Do the common work for building an outline font -- a non-composite font */
497
/* for which PaintType and StrokeWidth are meaningful. */
498
/* The caller guarantees that *op is a dictionary. */
499
int
500
build_gs_outline_font(i_ctx_t *i_ctx_p, os_ptr op, gs_font_base ** ppfont,
501
                      font_type ftype, gs_memory_type_ptr_t pstype,
502
                      const build_proc_refs * pbuild,
503
                      build_font_options_t options,
504
                      build_base_font_proc_t build_base_font)
505
147k
{
506
147k
    int painttype;
507
147k
    float strokewidth;
508
147k
    gs_font_base *pfont;
509
147k
    int code = dict_int_param(op, "PaintType", 0, 3, 0, &painttype);
510
511
147k
    if (code < 0)
512
0
        return code;
513
147k
    code = dict_float_param(op, "StrokeWidth", 0.0, &strokewidth);
514
147k
    if (code < 0)
515
0
        return code;
516
147k
    code = build_base_font(i_ctx_p, op, ppfont, ftype, pstype, pbuild,
517
147k
                           options);
518
147k
    if (code != 0)
519
44
        return code;
520
147k
    pfont = *ppfont;
521
147k
    pfont->PaintType = painttype;
522
147k
    pfont->StrokeWidth = strokewidth;
523
147k
    return 0;
524
147k
}
525
526
void
527
get_GlyphNames2Unicode(i_ctx_t *i_ctx_p, gs_font *pfont, ref *pdref)
528
331k
{
529
331k
    ref *pfontinfo = NULL, *g2u = NULL;
530
331k
    font_data *pdata;
531
532
331k
    if (dict_find_string(pdref, "FontInfo", &pfontinfo) <= 0 ||
533
147k
            !r_has_type(pfontinfo, t_dictionary) ||
534
147k
            dict_find_string(pfontinfo, "GlyphNames2Unicode", &g2u) <= 0 ||
535
0
            !r_has_type(pfontinfo, t_dictionary))
536
331k
        return;
537
    /*
538
     * Since build_gs_font may resize the dictionary and cause
539
     * pointers to become invalid, save Glyph2Unicode
540
     */
541
0
    pdata = pfont_data(pfont);
542
0
    ref_assign_new(&pdata->GlyphNames2Unicode, g2u);
543
0
}
544
545
/* Do the common work for building a font of any non-composite FontType. */
546
/* The caller guarantees that *op is a dictionary. */
547
int
548
build_gs_simple_font(i_ctx_t *i_ctx_p, os_ptr op, gs_font_base ** ppfont,
549
                     font_type ftype, gs_memory_type_ptr_t pstype,
550
                     const build_proc_refs * pbuild,
551
                     build_font_options_t options)
552
331k
{
553
331k
    double bbox[4];
554
331k
    gs_uid uid;
555
331k
    int code;
556
331k
    gs_font_base *pfont;
557
331k
    uint space = ialloc_space(idmemory);
558
559
331k
    code = font_bbox_param(imemory, op, bbox);
560
331k
    if (code < 0)
561
2
        return code;
562
    /*
563
     * Make sure that we allocate uid
564
     * in the same VM as the font dictionary
565
     * (see build_gs_sub_font).
566
     */
567
331k
    ialloc_set_space(idmemory, r_space(op));
568
331k
    code = dict_uid_param(op, &uid, 0, imemory, i_ctx_p);
569
331k
    ialloc_set_space(idmemory, space);
570
331k
    if (code < 0)
571
0
        return code;
572
331k
    if ((options & bf_UniqueID_ignored) && uid_is_UniqueID(&uid))
573
0
        uid_set_invalid(&uid);
574
331k
    code = build_gs_font(i_ctx_p, op, (gs_font **) ppfont, ftype, pstype,
575
331k
                         pbuild, options);
576
331k
    if (code != 0)    /* invalid or scaled font */
577
612
        return code;
578
331k
    pfont = *ppfont;
579
331k
    pfont->procs.init_fstack = gs_default_init_fstack;
580
331k
    pfont->procs.define_font = gs_no_define_font;
581
331k
    pfont->procs.decode_glyph = gs_font_map_glyph_to_unicode;
582
331k
    pfont->procs.make_font = zbase_make_font;
583
331k
    pfont->procs.next_char_glyph = gs_default_next_char_glyph;
584
331k
    pfont->FAPI = 0;
585
331k
    pfont->FAPI_font_data = 0;
586
331k
    init_gs_simple_font(pfont, bbox, &uid);
587
331k
    lookup_gs_simple_font_encoding(pfont);
588
331k
    get_GlyphNames2Unicode(i_ctx_p, (gs_font *)pfont, op);
589
331k
    return 0;
590
331k
}
591
592
/* Initialize the FontBBox and UID of a non-composite font. */
593
void
594
init_gs_simple_font(gs_font_base *pfont, const double bbox[4],
595
                    const gs_uid *puid)
596
331k
{
597
331k
    pfont->FontBBox.p.x = bbox[0];
598
331k
    pfont->FontBBox.p.y = bbox[1];
599
331k
    pfont->FontBBox.q.x = bbox[2];
600
331k
    pfont->FontBBox.q.y = bbox[3];
601
331k
    pfont->UID = *puid;
602
331k
}
603
604
/* Compare the encoding of a simple font with the registered encodings. */
605
void
606
lookup_gs_simple_font_encoding(gs_font_base * pfont)
607
331k
{
608
331k
    const ref *pfe = &pfont_data(pfont)->Encoding;
609
331k
    int index = -1;
610
611
331k
    pfont->encoding_index = index;
612
331k
    if (r_type(pfe) == t_array && r_size(pfe) <= 256) {
613
        /* Look for an encoding that's "close". */
614
331k
        uint esize = r_size(pfe);
615
331k
        int near_index = -1;
616
331k
        uint best = esize / 3;  /* must match at least this many */
617
331k
        gs_const_string fstrs[256];
618
331k
        int i;
619
620
        /* Get the string names of the glyphs in the font's Encoding. */
621
85.1M
        for (i = 0; i < esize; ++i) {
622
84.7M
            ref fchar;
623
624
84.7M
            if (array_get(pfont->memory, pfe, (long)i, &fchar) < 0 ||
625
84.7M
                !r_has_type(&fchar, t_name)
626
84.7M
                )
627
24.6k
                fstrs[i].data = 0, fstrs[i].size = 0;
628
84.7M
            else {
629
84.7M
                ref nsref;
630
631
84.7M
                name_string_ref(pfont->memory, &fchar, &nsref);
632
84.7M
                fstrs[i].data = nsref.value.const_bytes;
633
84.7M
                fstrs[i].size = r_size(&nsref);
634
84.7M
            }
635
84.7M
        }
636
        /* Compare them against the known encodings. */
637
338k
        for (index = 0; index < NUM_KNOWN_REAL_ENCODINGS; ++index) {
638
337k
            uint match = esize;
639
640
86.0M
            for (i = esize; --i >= 0;) {
641
85.7M
                gs_const_string rstr;
642
643
85.7M
                gs_c_glyph_name(gs_c_known_encode((gs_char)i, index), &rstr);
644
85.7M
                if (rstr.size == fstrs[i].size &&
645
84.7M
                    !memcmp(rstr.data, fstrs[i].data, rstr.size)
646
85.7M
                    )
647
84.7M
                    continue;
648
1.01M
                if (--match <= best)
649
6.30k
                    break;
650
1.01M
            }
651
337k
            if (match > best) {
652
331k
                best = match;
653
331k
                near_index = index;
654
                /* If we have a perfect match, stop now. */
655
331k
                if (best == esize)
656
330k
                    break;
657
331k
            }
658
337k
        }
659
331k
        index = near_index;
660
331k
        if (best == esize)
661
330k
            pfont->encoding_index = index;
662
331k
    }
663
331k
    pfont->nearest_encoding_index = index;
664
331k
}
665
666
/* Get FontMatrix and FontName parameters. */
667
static int
668
sub_font_params(gs_memory_t *mem, const ref *op, gs_matrix *pmat, gs_matrix *pomat, ref *pfname)
669
331k
{
670
331k
    ref *pmatrix, *pfontname, *pfontstyle, *porigfont, *pfontinfo;
671
672
331k
    if (dict_find_string(op, "FontMatrix", &pmatrix) <= 0 ||
673
331k
        read_matrix(mem, pmatrix, pmat) < 0
674
331k
        )
675
13
        return_error(gs_error_invalidfont);
676
331k
    if (dict_find_string(op, "OrigFont", &porigfont) <= 0)
677
2
        porigfont = NULL;
678
331k
    if (porigfont != NULL && !r_has_type(porigfont, t_dictionary))
679
0
        return_error(gs_error_typecheck);
680
681
331k
    if (pomat!= NULL) {
682
331k
        if (porigfont == NULL ||
683
331k
            dict_find_string(porigfont, "FontMatrix", &pmatrix) <= 0 ||
684
331k
            read_matrix(mem, pmatrix, pomat) < 0
685
331k
            )
686
2
            memset(pomat, 0, sizeof(*pomat));
687
331k
    }
688
    /* Use the FontInfo/OrigFontName key preferrentially (created by MS PSCRIPT driver) */
689
331k
    if ((dict_find_string((porigfont != NULL ? porigfont : op), "FontInfo", &pfontinfo) > 0) &&
690
147k
        r_has_type(pfontinfo, t_dictionary) &&
691
147k
        (dict_find_string(pfontinfo, "OrigFontName", &pfontname) > 0) && (r_has_type(pfontname, t_name) || r_has_type(pfontname, t_string))) {
692
0
        if ((dict_find_string(pfontinfo, "OrigFontStyle", &pfontstyle) > 0) && (r_has_type(pfontname, t_name) || r_has_type(pfontname, t_string)) &&
693
0
                r_size(pfontstyle) > 0) {
694
0
            const byte *tmpStr1 = pfontname->value.const_bytes;
695
0
            const byte *tmpStr2 = pfontstyle->value.const_bytes;
696
0
            int fssize1 = r_size(pfontname), fssize2 = r_size(pfontstyle), fssize = fssize1 + fssize2 + 1;
697
0
            byte *sfname = gs_alloc_string(mem, fssize, "sub_font_params");
698
699
0
            if (sfname == NULL)
700
0
                return_error(gs_error_VMerror);
701
0
            memcpy(sfname, tmpStr1, fssize1);
702
0
            sfname[fssize1]=',' ;
703
0
            memcpy(sfname + fssize1 + 1, tmpStr2, fssize2);
704
0
            make_string(pfname, a_readonly, fssize, sfname);
705
0
        } else
706
0
            get_font_name(mem, pfname, pfontname);
707
331k
    } else if (dict_find_string((porigfont != NULL ? porigfont : op), ".Alias", &pfontname) > 0) {
708
        /* If we emulate the font, we want the requested name rather than a substitute. */
709
132k
        get_font_name(mem, pfname, pfontname);
710
198k
    } else if (dict_find_string((porigfont != NULL ? porigfont : op), "FontName", &pfontname) > 0) {
711
198k
        get_font_name(mem, pfname, pfontname);
712
198k
    } else
713
898
        make_empty_string(pfname, a_readonly);
714
331k
    return 0;
715
331k
}
716
717
/* Do the common work for building a font of any FontType. */
718
/* The caller guarantees that *op is a dictionary. */
719
/* op[-1] must be the key under which the font is being registered */
720
/* in FontDirectory, normally a name or string. */
721
/* Return 0 for a new font, 1 for a font made by makefont or scalefont, */
722
/* or a negative error code. */
723
int
724
build_gs_font(i_ctx_t *i_ctx_p, os_ptr op, gs_font ** ppfont, font_type ftype,
725
              gs_memory_type_ptr_t pstype, const build_proc_refs * pbuild,
726
              build_font_options_t options)
727
331k
{
728
331k
    ref kname;      /* t_string */
729
331k
    ref *pftype;
730
331k
    ref *pencoding = 0;
731
331k
    bool bitmapwidths;
732
331k
    int exactsize, inbetweensize, transformedchar;
733
331k
    int wmode;
734
331k
    int code;
735
331k
    gs_font *pfont;
736
331k
    ref *pfid;
737
331k
    ref *aop = dict_access_ref(op);
738
331k
    bool cpsi_mode = gs_currentcpsimode(imemory);
739
740
331k
    get_font_name(imemory, &kname, op - 1);
741
331k
    if (dict_find_string(op, "FontType", &pftype) <= 0 ||
742
331k
        !r_has_type(pftype, t_integer) ||
743
331k
        pftype->value.intval != (int)ftype
744
331k
        )
745
2
        return_error(gs_error_invalidfont);
746
331k
    if (dict_find_string(op, "Encoding", &pencoding) <= 0) {
747
7
        if (!(options & bf_Encoding_optional))
748
5
            return_error(gs_error_invalidfont);
749
2
        pencoding = 0;
750
331k
    } else {
751
331k
        if (!r_is_array(pencoding))
752
0
            return_error(gs_error_invalidfont);
753
331k
    }
754
331k
    if (pencoding) {   /* observed Adobe behavior */
755
331k
        int count = r_size(pencoding);
756
331k
        int type = ftype ? t_name : t_integer;
757
331k
        bool fixit = false;
758
759
86.1M
        while (count--) {
760
85.7M
           ref r;
761
85.7M
           if ((code = array_get(imemory, pencoding, count, &r)) < 0 ||
762
85.7M
             !(r_has_type(&r, type) || r_has_type(&r, t_null))) {
763
0
               if (!cpsi_mode && ftype == ft_user_defined) {
764
0
                   if (code < 0 || r_has_type(&r, t_null)) {
765
0
                       return_error(gs_error_typecheck);
766
0
                   }
767
0
                   fixit = true;
768
0
                   break;
769
0
               }
770
0
               else {
771
0
                   return_error(gs_error_typecheck);
772
0
               }
773
0
           }
774
85.7M
        }
775
776
        /* For at least Type 3 fonts, Adobe Distiller will "fix" an Encoding array, as in, for example
777
         * Bug 692681 where the arrays contain integers rather than names. Once the font is instantiated
778
         * the integers have been converted to names.
779
         * It is preferable to to this manipulation here, rather than in Postscript, because we are less
780
         * restricted by read-only attributes and VM save levels.
781
         */
782
331k
        if (fixit) {
783
0
            ref penc;
784
0
            uint size = 0;
785
0
            char buf[32], *bptr;
786
0
            avm_space curglob = ialloc_space(idmemory);
787
0
            avm_space useglob = r_is_local(pencoding) ? avm_local : avm_global;
788
789
0
            ialloc_set_space(idmemory, useglob);
790
791
0
            count = r_size(pencoding);
792
0
            if ((code = ialloc_ref_array(&penc, (r_type_attrs(pencoding) & a_readonly), count, "build_gs_font")) < 0)
793
0
                 return code;
794
795
0
            while (count--) {
796
0
               ref r;
797
0
               if (array_get(imemory, pencoding, count, &r) < 0){
798
0
                   return_error(gs_error_typecheck);
799
0
               }
800
               /* For type 3, we know the Encoding entries must be names */
801
0
               if (r_has_type(&r, t_name)){
802
0
                   ref_assign(&(penc.value.refs[count]), &r);
803
0
               }
804
0
               else {
805
806
0
                   if ((code = obj_cvs(imemory, &r, (byte *)buf, 32, &size, (const byte **)(&bptr))) < 0) {
807
0
                       return(code);
808
0
                   }
809
0
                   if ((code = name_ref(imemory, (const byte *)bptr, size, &r, true)) < 0)
810
0
                        return code;
811
0
                   ref_assign(&(penc.value.refs[count]), &r);
812
0
               }
813
0
            }
814
815
0
            if ((code = dict_put_string(osp, "Encoding", &penc, NULL)) < 0)
816
0
               return code;
817
0
            ialloc_set_space(idmemory, curglob);
818
0
        }
819
331k
    }
820
331k
    if ((code = dict_int_param(op, "WMode", 0, 1, 0, &wmode)) < 0 ||
821
331k
        (code = dict_bool_param(op, "BitmapWidths", false, &bitmapwidths)) < 0 ||
822
331k
        (code = dict_int_param(op, "ExactSize", 0, 2, fbit_use_bitmaps, &exactsize)) < 0 ||
823
331k
        (code = dict_int_param(op, "InBetweenSize", 0, 2, fbit_use_outlines, &inbetweensize)) < 0 ||
824
331k
        (code = dict_int_param(op, "TransformedChar", 0, 2, fbit_use_outlines, &transformedchar)) < 0
825
331k
        )
826
0
        return code;
827
331k
    code = dict_find_string(op, "FID", &pfid);
828
331k
    if (code > 0 && r_has_type(pfid, t_fontID)) { /* silently ignore invalid FID per CET 13-05.ps */
829
        /*
830
         * If this font has a FID entry already, it might be a scaled font
831
         * made by makefont or scalefont; in a Level 2 environment, it might
832
         * be an existing font being registered under a second name, or a
833
         * re-encoded font (which was invalid in Level 1, but dvips did it
834
         * anyway).
835
         */
836
592
        pfont = r_ptr(pfid, gs_font);
837
        /*
838
         * If the following condition is false this is a re-encoded font,
839
         * or some other questionable situation in which the FID
840
         * was preserved.  Pretend the FID wasn't there.
841
         */
842
592
        if (obj_eq(pfont->memory, pfont_dict(pfont), op)) {
843
592
            if (pfont->base == pfont) { /* original font */
844
592
                if (!level2_enabled)
845
0
                    return_error(gs_error_invalidfont);
846
592
                *ppfont = pfont;
847
592
                return 1;
848
592
            } else {   /* This was made by makefont or scalefont. */
849
                /* Just insert the new name. */
850
0
                gs_matrix mat;
851
0
                ref fname;      /* t_string */
852
853
0
                code = sub_font_params(imemory, op, &mat, NULL, &fname);
854
0
                if (code < 0)
855
0
                    return code;
856
0
                code = 1;
857
0
                copy_font_name(&pfont->font_name, &fname);
858
0
                goto set_name;
859
0
            }
860
592
        }
861
592
    }
862
    /* This is a new font. */
863
331k
    if (!r_has_attr(aop, a_write))
864
0
        return_error(gs_error_invalidaccess);
865
331k
    {
866
331k
        ref encoding;
867
868
        /*
869
         * Since add_FID may resize the dictionary and cause
870
         * pencoding to become invalid, save the Encoding.
871
         */
872
331k
        if (pencoding) {
873
331k
            encoding = *pencoding;
874
331k
            pencoding = &encoding;
875
331k
        }
876
331k
        code = build_gs_sub_font(i_ctx_p, op, &pfont, ftype, pstype,
877
331k
                                 pbuild, pencoding, op);
878
331k
        if (code < 0)
879
13
            return code;
880
331k
    }
881
331k
    pfont->BitmapWidths = bitmapwidths;
882
331k
    pfont->ExactSize = (fbit_type)exactsize;
883
331k
    pfont->InBetweenSize = (fbit_type)inbetweensize;
884
331k
    pfont->TransformedChar = (fbit_type)transformedchar;
885
331k
    pfont->WMode = wmode;
886
331k
    pfont->procs.font_info = zfont_info;
887
331k
    code = 0;
888
331k
set_name:
889
331k
    copy_font_name(&pfont->key_name, &kname);
890
331k
    *ppfont = pfont;
891
331k
    return code;
892
331k
}
893
894
/* Create a sub-font -- a font or an entry in the FDArray of a CIDFontType 0 */
895
/* font.  Default BitmapWidths, ExactSize, InBetweenSize, TransformedChar, */
896
/* and WMode; do not fill in key_name. */
897
/* The caller guarantees that *op is a dictionary. */
898
int
899
build_gs_sub_font(i_ctx_t *i_ctx_p, const ref *op, gs_font **ppfont,
900
                  font_type ftype, gs_memory_type_ptr_t pstype,
901
                  const build_proc_refs * pbuild, const ref *pencoding,
902
                  ref *fid_op)
903
331k
{
904
331k
    gs_matrix mat, omat;
905
331k
    ref fname;      /* t_string */
906
331k
    gs_font *pfont;
907
331k
    font_data *pdata;
908
    /*
909
     * Make sure that we allocate the font data
910
     * in the same VM as the font dictionary.
911
     */
912
331k
    uint space = ialloc_space(idmemory);
913
331k
    int code = sub_font_params(imemory, op, &mat, &omat, &fname);
914
915
331k
    if (code < 0)
916
13
        return code;
917
331k
    ialloc_set_space(idmemory, r_space(op));
918
331k
    pfont = gs_font_alloc(imemory, pstype, &gs_font_procs_default, NULL,
919
331k
                          "buildfont(font)");
920
331k
    pdata = ialloc_struct(font_data, &st_font_data,
921
331k
                          "buildfont(data)");
922
331k
    if (pfont == 0 || pdata == 0)
923
0
        code = gs_note_error(gs_error_VMerror);
924
331k
    else if (fid_op)
925
331k
        code = add_FID(i_ctx_p, fid_op, pfont, iimemory);
926
331k
    if (code < 0) {
927
0
        ifree_object(pdata, "buildfont(data)");
928
0
        ifree_object(pfont, "buildfont(font)");
929
0
        ialloc_set_space(idmemory, space);
930
0
        return code;
931
0
    }
932
331k
    refset_null((ref *) pdata, sizeof(font_data) / sizeof(ref));
933
331k
    ref_assign_new(&pdata->dict, op);
934
331k
    ref_assign_new(&pdata->BuildChar, &pbuild->BuildChar);
935
331k
    ref_assign_new(&pdata->BuildGlyph, &pbuild->BuildGlyph);
936
331k
    if (pencoding)
937
331k
        ref_assign_new(&pdata->Encoding, pencoding);
938
331k
    pfont->client_data = pdata;
939
331k
    pfont->FontType = ftype;
940
331k
    pfont->FontMatrix = mat;
941
331k
    pfont->orig_FontMatrix = omat;
942
331k
    pfont->BitmapWidths = false;
943
331k
    pfont->ExactSize = fbit_use_bitmaps;
944
331k
    pfont->InBetweenSize = fbit_use_outlines;
945
331k
    pfont->TransformedChar = fbit_use_outlines;
946
331k
    pfont->WMode = 0;
947
331k
    pfont->procs.encode_char = zfont_encode_char;
948
331k
    pfont->procs.glyph_name = zfont_glyph_name;
949
331k
    ialloc_set_space(idmemory, space);
950
331k
    copy_font_name(&pfont->font_name, &fname);
951
331k
    *ppfont = pfont;
952
331k
    return 0;
953
331k
}
954
955
/* Get the string corresponding to a font name. */
956
/* If the font name isn't a name or a string, return an empty string. */
957
void
958
get_font_name(const gs_memory_t *mem, ref * pfname, const ref * op)
959
662k
{
960
662k
    switch (r_type(op)) {
961
182k
        case t_string:
962
182k
            *pfname = *op;
963
182k
            break;
964
267k
        case t_name:
965
267k
            name_string_ref(mem, op, pfname);
966
267k
            break;
967
211k
        default:
968
            /* This is weird, but legal.... */
969
211k
            make_empty_string(pfname, a_readonly);
970
662k
    }
971
662k
}
972
973
/* Copy a font name into the gs_font structure. */
974
void
975
copy_font_name(gs_font_name * pfstr, const ref * pfname)
976
662k
{
977
662k
    uint size = r_size(pfname);
978
979
662k
    if (size > gs_font_name_max)
980
1.22k
        size = gs_font_name_max;
981
662k
    memcpy(&pfstr->chars[0], pfname->value.const_bytes, size);
982
    /* Following is only for debugging printout. */
983
662k
    pfstr->chars[size] = 0;
984
662k
    pfstr->size = size;
985
662k
}
986
987
/* Finish building a font, by calling gs_definefont if needed. */
988
int
989
define_gs_font(i_ctx_t *i_ctx_p, gs_font * pfont)
990
331k
{
991
331k
    return (pfont->base == pfont && pfont->dir == 0 ?
992
            /* i.e., unregistered original font */
993
331k
            gs_definefont(ifont_dir, pfont) :
994
331k
            0);
995
331k
}