/src/ghostpdl/psi/zfcmap.c
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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 | | /* CMap creation operator */ |
18 | | #include "memory_.h" |
19 | | #include "ghost.h" |
20 | | #include "oper.h" |
21 | | #include "gsmatrix.h" /* for gxfont.h */ |
22 | | #include "gsstruct.h" |
23 | | #include "gsutil.h" /* for bytes_compare */ |
24 | | #include "gxfcmap1.h" |
25 | | #include "gxfont.h" |
26 | | #include "ialloc.h" |
27 | | #include "icid.h" |
28 | | #include "iddict.h" |
29 | | #include "idparam.h" |
30 | | #include "ifont.h" /* for zfont_mark_glyph_name */ |
31 | | #include "iname.h" |
32 | | #include "store.h" |
33 | | |
34 | | /* Exported for zfont0.c */ |
35 | | int ztype0_get_cmap(const gs_cmap_t ** ppcmap, const ref * pfdepvector, |
36 | | const ref * op, gs_memory_t *imem); |
37 | | |
38 | | /* |
39 | | * Define whether to check the compatibility of CIDSystemInfo between the |
40 | | * CMap and the composite font. PLRM2 says compatibility is required, but |
41 | | * PLRM3 says the interpreter doesn't check it. |
42 | | */ |
43 | | /*#define CHECK_CID_SYSTEM_INFO_COMPATIBILITY*/ |
44 | | |
45 | | /* ---------------- Internal procedures ---------------- */ |
46 | | |
47 | | /* Free a code map in case of VMerror. */ |
48 | | static void |
49 | | free_code_map(gx_code_map_t * pcmap, gs_memory_t * mem) |
50 | 0 | { |
51 | 0 | if (pcmap->lookup) { |
52 | 0 | int i; |
53 | |
|
54 | 0 | for (i = 0; i < pcmap->num_lookup; ++i) { |
55 | 0 | gx_cmap_lookup_range_t *pclr = &pcmap->lookup[i]; |
56 | |
|
57 | 0 | if (pclr->value_type == CODE_VALUE_GLYPH) |
58 | 0 | gs_free_string(mem, pclr->values.data, pclr->values.size, |
59 | 0 | "free_code_map(values)"); |
60 | 0 | } |
61 | 0 | gs_free_object(mem, pcmap->lookup, "free_code_map(map)"); |
62 | 0 | } |
63 | 0 | } |
64 | | |
65 | | /* Convert code ranges to internal form. */ |
66 | | static int |
67 | | acquire_code_ranges(gs_cmap_adobe1_t *cmap, const ref *pref, gs_memory_t *mem) |
68 | 0 | { |
69 | 0 | uint num_ranges = 0; |
70 | 0 | gx_code_space_range_t *ranges; |
71 | 0 | uint i, j, elem_sz; |
72 | 0 | ref elem; |
73 | |
|
74 | 0 | if (!r_is_array(pref)) |
75 | 0 | return_error(gs_error_rangecheck); |
76 | 0 | for (i=0; i < r_size(pref); i++) { |
77 | 0 | int code = array_get(mem, pref, i, &elem); |
78 | 0 | if (code < 0) |
79 | 0 | return code; |
80 | 0 | elem_sz = r_size(&elem); |
81 | 0 | if (elem_sz & 1 || elem_sz > max_uint - num_ranges) |
82 | 0 | return_error(gs_error_rangecheck); |
83 | 0 | num_ranges += elem_sz; |
84 | 0 | } |
85 | 0 | if (num_ranges == 0) |
86 | 0 | return_error(gs_error_rangecheck); |
87 | 0 | num_ranges >>= 1; |
88 | |
|
89 | 0 | ranges = (gx_code_space_range_t *) |
90 | 0 | gs_alloc_byte_array(mem, num_ranges, sizeof(gx_code_space_range_t), |
91 | 0 | "acquire_code_ranges"); |
92 | 0 | if (ranges == 0) |
93 | 0 | return_error(gs_error_VMerror); |
94 | 0 | cmap->code_space.ranges = ranges; |
95 | 0 | cmap->code_space.num_ranges = num_ranges; |
96 | |
|
97 | 0 | for (i = 0; i < r_size(pref); i++) { |
98 | 0 | array_get(mem, pref, i, &elem); |
99 | 0 | elem_sz = r_size(&elem); |
100 | 0 | for (j = 0; j < elem_sz; j += 2) { |
101 | 0 | ref rfirst, rlast; |
102 | 0 | int size; |
103 | |
|
104 | 0 | array_get(mem, &elem, j, &rfirst); |
105 | 0 | array_get(mem, &elem, j + 1, &rlast); |
106 | 0 | if (!r_has_type(&rfirst, t_string) || |
107 | 0 | !r_has_type(&rlast, t_string) || |
108 | 0 | (size = r_size(&rfirst)) == 0 || size > MAX_CMAP_CODE_SIZE || |
109 | 0 | r_size(&rlast) != size || |
110 | 0 | memcmp(rfirst.value.bytes, rlast.value.bytes, size) > 0) |
111 | 0 | return_error(gs_error_rangecheck); |
112 | 0 | memcpy(ranges->first, rfirst.value.bytes, size); |
113 | 0 | memcpy(ranges->last, rlast.value.bytes, size); |
114 | 0 | ranges->size = size; |
115 | 0 | ++ranges; |
116 | 0 | } |
117 | 0 | } |
118 | 0 | return 0; |
119 | 0 | } |
120 | | |
121 | | /* Convert a code map to internal form. */ |
122 | | static int |
123 | | acquire_code_map(gx_code_map_t *pcmap, const ref *pref, gs_cmap_adobe1_t *root, |
124 | | gs_memory_t *mem) |
125 | 0 | { |
126 | 0 | uint num_lookup = 0; |
127 | 0 | gx_cmap_lookup_range_t *pclr; |
128 | 0 | long i; |
129 | 0 | ref elem; |
130 | 0 | uint elem_sz; |
131 | |
|
132 | 0 | if (!r_is_array(pref)) |
133 | 0 | return_error(gs_error_rangecheck); |
134 | 0 | for (i=0; i < r_size(pref); i++) { |
135 | 0 | int code = array_get(mem, pref, i, &elem); |
136 | 0 | if (code < 0) |
137 | 0 | return code; |
138 | 0 | elem_sz = r_size(&elem); |
139 | 0 | if (elem_sz % 5 != 0 || elem_sz > max_uint - num_lookup) |
140 | 0 | return_error(gs_error_rangecheck); |
141 | 0 | num_lookup += elem_sz; |
142 | 0 | } |
143 | 0 | num_lookup /= 5; |
144 | 0 | pclr = gs_alloc_struct_array(mem, num_lookup, gx_cmap_lookup_range_t, |
145 | 0 | &st_cmap_lookup_range_element, |
146 | 0 | "acquire_code_map(lookup ranges)"); |
147 | 0 | if (pclr == 0) |
148 | 0 | return_error(gs_error_VMerror); |
149 | 0 | memset(pclr, 0, sizeof(*pclr) * num_lookup); |
150 | 0 | pcmap->lookup = pclr; |
151 | 0 | pcmap->num_lookup = num_lookup; |
152 | |
|
153 | 0 | for (i = 0; i < r_size(pref); i++) { |
154 | 0 | uint j; |
155 | 0 | array_get(mem, pref, i, &elem); |
156 | 0 | elem_sz = r_size(&elem); |
157 | 0 | for (j = 0; j < elem_sz; j += 5) { |
158 | 0 | ref rprefix, rmisc, rkeys, rvalues, rfxs; |
159 | |
|
160 | 0 | array_get(mem, &elem, j, &rprefix); |
161 | 0 | array_get(mem, &elem, j + 1, &rmisc); |
162 | 0 | array_get(mem, &elem, j + 2, &rkeys); |
163 | 0 | array_get(mem, &elem, j + 3, &rvalues); |
164 | 0 | array_get(mem, &elem, j + 4, &rfxs); |
165 | |
|
166 | 0 | if (!r_has_type(&rprefix, t_string) || |
167 | 0 | !r_has_type(&rmisc, t_string) || |
168 | 0 | !r_has_type(&rkeys, t_string) || |
169 | 0 | !(r_has_type(&rvalues, t_string) || r_is_array(&rvalues)) || |
170 | 0 | !r_has_type(&rfxs, t_integer) |
171 | 0 | ) |
172 | 0 | return_error(gs_error_typecheck); |
173 | 0 | if (r_size(&rmisc) != 4 || |
174 | 0 | rmisc.value.bytes[0] > MAX_CMAP_CODE_SIZE - r_size(&rprefix) || |
175 | 0 | rmisc.value.bytes[1] > 1 || |
176 | 0 | rmisc.value.bytes[2] > CODE_VALUE_MAX || |
177 | 0 | rmisc.value.bytes[3] == 0) |
178 | 0 | return_error(gs_error_rangecheck); |
179 | 0 | pclr->cmap = root; |
180 | 0 | pclr->key_size = rmisc.value.bytes[0]; |
181 | 0 | pclr->key_prefix_size = r_size(&rprefix); |
182 | 0 | memcpy(pclr->key_prefix, rprefix.value.bytes, pclr->key_prefix_size); |
183 | 0 | pclr->key_is_range = rmisc.value.bytes[1]; |
184 | 0 | if (pclr->key_size == 0) { |
185 | | /* This is a single entry consisting only of the prefix. */ |
186 | 0 | if (r_size(&rkeys) != 0) |
187 | 0 | return_error(gs_error_rangecheck); |
188 | 0 | pclr->num_entries = 1; |
189 | 0 | } else { |
190 | 0 | int step = pclr->key_size * (pclr->key_is_range ? 2 : 1); |
191 | |
|
192 | 0 | if (r_size(&rkeys) % step != 0) |
193 | 0 | return_error(gs_error_rangecheck); |
194 | 0 | pclr->num_entries = r_size(&rkeys) / step; |
195 | 0 | } |
196 | 0 | pclr->keys.data = rkeys.value.bytes, |
197 | 0 | pclr->keys.size = r_size(&rkeys); |
198 | 0 | pclr->value_type = rmisc.value.bytes[2]; |
199 | 0 | pclr->value_size = rmisc.value.bytes[3]; |
200 | 0 | if (r_has_type(&rvalues, t_string)) { |
201 | 0 | if (pclr->value_type == CODE_VALUE_GLYPH) |
202 | 0 | return_error(gs_error_rangecheck); |
203 | 0 | if (r_size(&rvalues) % pclr->num_entries != 0 || |
204 | 0 | r_size(&rvalues) / pclr->num_entries != pclr->value_size) |
205 | 0 | return_error(gs_error_rangecheck); |
206 | 0 | pclr->values.data = rvalues.value.bytes, |
207 | 0 | pclr->values.size = r_size(&rvalues); |
208 | 0 | } else { |
209 | 0 | uint values_size = pclr->num_entries * pclr->value_size; |
210 | 0 | long k; |
211 | 0 | byte *pvalue; |
212 | |
|
213 | 0 | if (pclr->value_type != CODE_VALUE_GLYPH || |
214 | 0 | r_size(&rvalues) != pclr->num_entries || |
215 | 0 | pclr->value_size > sizeof(gs_glyph)) |
216 | 0 | return_error(gs_error_rangecheck); |
217 | 0 | pclr->values.data = gs_alloc_string(mem, values_size, |
218 | 0 | "acquire_code_map(values)"); |
219 | 0 | if (pclr->values.data == 0) |
220 | 0 | return_error(gs_error_VMerror); |
221 | 0 | pclr->values.size = values_size; |
222 | 0 | pvalue = pclr->values.data; |
223 | 0 | for (k = 0; k < pclr->num_entries; ++k) { |
224 | 0 | ref rvalue; |
225 | 0 | gs_glyph value; |
226 | 0 | int i; |
227 | |
|
228 | 0 | array_get(mem, &rvalues, k, &rvalue); |
229 | 0 | if (!r_has_type(&rvalue, t_name)) |
230 | 0 | return_error(gs_error_rangecheck); |
231 | 0 | value = name_index(mem, &rvalue); |
232 | | /* |
233 | | * We need a special check here because some CPUs cannot |
234 | | * shift by the full size of an int or long. |
235 | | */ |
236 | 0 | if (pclr->value_size < sizeof(value) && |
237 | 0 | (value >> (pclr->value_size * 8)) != 0 |
238 | 0 | ) |
239 | 0 | return_error(gs_error_rangecheck); |
240 | 0 | for (i = pclr->value_size; --i >= 0; ) |
241 | 0 | *pvalue++ = (byte)(value >> (i * 8)); |
242 | 0 | } |
243 | 0 | } |
244 | 0 | check_int_leu_only(rfxs, 0xff); |
245 | 0 | pclr->font_index = (int)rfxs.value.intval; |
246 | 0 | ++pclr; |
247 | 0 | } |
248 | 0 | } |
249 | 0 | return 0; |
250 | 0 | } |
251 | | |
252 | | /* |
253 | | * Acquire the CIDSystemInfo array from a dictionary. If missing, fabricate |
254 | | * a 0-element array and return 1. |
255 | | */ |
256 | | static int |
257 | | acquire_cid_system_info(ref *psia, const ref *op) |
258 | 0 | { |
259 | 0 | ref *prcidsi; |
260 | |
|
261 | 0 | if (dict_find_string(op, "CIDSystemInfo", &prcidsi) <= 0) { |
262 | 0 | make_empty_array(psia, a_readonly); |
263 | 0 | return 1; |
264 | 0 | } |
265 | 0 | if (r_has_type(prcidsi, t_dictionary)) { |
266 | 0 | make_array(psia, a_readonly, 1, prcidsi); |
267 | 0 | return 0; |
268 | 0 | } |
269 | 0 | if (!r_is_array(prcidsi)) |
270 | 0 | return_error(gs_error_typecheck); |
271 | 0 | *psia = *prcidsi; |
272 | 0 | return 0; |
273 | 0 | } |
274 | | |
275 | | /* |
276 | | * Get one element of a CIDSystemInfo array. If the element is missing or |
277 | | * null, return 1. |
278 | | */ |
279 | | static int |
280 | | get_cid_system_info(const gs_memory_t *mem, gs_cid_system_info_t *pcidsi, const ref *psia, uint index) |
281 | 0 | { |
282 | 0 | ref rcidsi; |
283 | 0 | int code = array_get(mem, psia, (long)index, &rcidsi); |
284 | |
|
285 | 0 | if (code < 0 || r_has_type(&rcidsi, t_null)) { |
286 | 0 | cid_system_info_set_null(pcidsi); |
287 | 0 | return 1; |
288 | 0 | } |
289 | 0 | return cid_system_info_param(pcidsi, &rcidsi); |
290 | 0 | } |
291 | | |
292 | | #ifdef CHECK_CID_SYSTEM_INFO_COMPATIBILITY |
293 | | |
294 | | /* Check compatibility of CIDSystemInfo. */ |
295 | | static bool |
296 | | bytes_eq(const gs_const_string *pcs1, const gs_const_string *pcs2) |
297 | | { |
298 | | return !bytes_compare(pcs1->data, pcs1->size, |
299 | | pcs2->data, pcs2->size); |
300 | | } |
301 | | static bool |
302 | | cid_system_info_compatible(const gs_cid_system_info_t * psi1, |
303 | | const gs_cid_system_info_t * psi2) |
304 | | { |
305 | | return bytes_eq(&psi1->Registry, &psi2->Registry) && |
306 | | bytes_eq(&psi1->Ordering, &psi2->Ordering); |
307 | | } |
308 | | |
309 | | #endif /* CHECK_CID_SYSTEM_INFO_COMPATIBILITY */ |
310 | | |
311 | | /* ---------------- (Semi-)public procedures ---------------- */ |
312 | | |
313 | | extern_st(st_cmap_tt_16bit_format4); |
314 | | extern_st(st_cmap_identity); |
315 | | extern_st(st_cmap_ToUnicode); |
316 | | |
317 | | /* Get the CodeMap from a Type 0 font, and check the CIDSystemInfo of */ |
318 | | /* its subsidiary fonts. */ |
319 | | int |
320 | | ztype0_get_cmap(const gs_cmap_t **ppcmap, const ref *pfdepvector, |
321 | | const ref *op, gs_memory_t *imem) |
322 | 0 | { |
323 | 0 | ref *prcmap; |
324 | 0 | ref *pcodemap; |
325 | 0 | const gs_cmap_t *pcmap; |
326 | 0 | int code; |
327 | 0 | uint num_fonts; |
328 | 0 | uint i; |
329 | |
|
330 | 0 | if (dict_find_string(op, "CMap", &prcmap) <= 0 || |
331 | 0 | !r_has_type(prcmap, t_dictionary) || |
332 | 0 | dict_find_string(prcmap, "CodeMap", &pcodemap) <= 0 || |
333 | 0 | !r_is_struct(pcodemap) || (!r_has_stype(pcodemap, imem, st_cmap_tt_16bit_format4) && |
334 | 0 | !r_has_stype(pcodemap, imem, st_cmap_identity) && !r_has_stype(pcodemap, imem, st_cmap_ToUnicode) && |
335 | 0 | !r_has_stype(pcodemap, imem, st_cmap_adobe1)) |
336 | 0 | ) |
337 | 0 | return_error(gs_error_invalidfont); |
338 | 0 | pcmap = r_ptr(pcodemap, gs_cmap_t); |
339 | 0 | num_fonts = r_size(pfdepvector); |
340 | 0 | for (i = 0; i < num_fonts; ++i) { |
341 | 0 | ref rfdep, rfsi; |
342 | |
|
343 | 0 | array_get(imem, pfdepvector, (long)i, &rfdep); |
344 | 0 | code = acquire_cid_system_info(&rfsi, &rfdep); |
345 | 0 | if (code < 0) |
346 | 0 | return code; |
347 | 0 | if (code == 0) { |
348 | 0 | if (r_size(&rfsi) != 1) |
349 | 0 | return_error(gs_error_rangecheck); |
350 | | #ifdef CHECK_CID_SYSTEM_INFO_COMPATIBILITY |
351 | | { |
352 | | gs_cid_system_info_t cidsi; |
353 | | |
354 | | get_cid_system_info(&cidsi, &rfsi, 0); |
355 | | if (!cid_system_info_is_null(&cidsi) && |
356 | | !cid_system_info_compatible(&cidsi, |
357 | | pcmap->CIDSystemInfo + i)) |
358 | | return_error(gs_error_rangecheck); |
359 | | } |
360 | | #endif |
361 | 0 | } |
362 | 0 | } |
363 | 0 | *ppcmap = pcmap; |
364 | 0 | return 0; |
365 | 0 | } |
366 | | |
367 | | /* ---------------- Operators ---------------- */ |
368 | | |
369 | | /* <CMap> .buildcmap <CMap> */ |
370 | | /* |
371 | | * Create the internal form of a CMap. The initial CMap must be read-write |
372 | | * and have an entry with key = CodeMap and value = null; the result is |
373 | | * read-only and has a real CodeMap. |
374 | | * |
375 | | * This operator reads the CMapType, CMapName, CIDSystemInfo, CMapVersion, |
376 | | * UIDOffset, XUID, WMode, and .CodeMapData elements of the CMap dictionary. |
377 | | * For details, see lib/gs_cmap.ps and the Adobe documentation. |
378 | | */ |
379 | | static int |
380 | | zfcmap_glyph_name(const gs_memory_t *mem, |
381 | | gs_glyph glyph, gs_const_string *pstr, void *proc_data) |
382 | 0 | { |
383 | 0 | ref nref, nsref; |
384 | |
|
385 | 0 | name_index_ref(mem, (uint)glyph, &nref); |
386 | 0 | name_string_ref(mem, &nref, &nsref); |
387 | 0 | pstr->data = nsref.value.const_bytes; |
388 | 0 | pstr->size = r_size(&nsref); |
389 | 0 | return 0; |
390 | 0 | } |
391 | | static int |
392 | | zbuildcmap(i_ctx_t *i_ctx_p) |
393 | 0 | { |
394 | 0 | os_ptr op = osp; |
395 | 0 | int code; |
396 | 0 | ref *pcmapname; |
397 | 0 | ref *puidoffset; |
398 | 0 | ref *pcodemapdata; |
399 | 0 | ref *pcodemap; |
400 | 0 | ref rname, rcidsi, rcoderanges, rdefs, rnotdefs; |
401 | 0 | gs_cmap_adobe1_t *pcmap = 0; |
402 | 0 | ref rcmap; |
403 | 0 | uint i; |
404 | |
|
405 | 0 | check_op(1); |
406 | 0 | check_type(*op, t_dictionary); |
407 | 0 | check_dict_write(*op); |
408 | 0 | if ((code = dict_find_string(op, "CMapName", &pcmapname)) <= 0) { |
409 | 0 | code = gs_note_error(gs_error_rangecheck); |
410 | 0 | goto fail; |
411 | 0 | } |
412 | 0 | if (!r_has_type(pcmapname, t_name)) { |
413 | 0 | code = gs_note_error(gs_error_typecheck); |
414 | 0 | goto fail; |
415 | 0 | } |
416 | 0 | name_string_ref(imemory, pcmapname, &rname); |
417 | 0 | if (dict_find_string(op, ".CodeMapData", &pcodemapdata) <= 0 || |
418 | 0 | !r_has_type(pcodemapdata, t_array) || |
419 | 0 | r_size(pcodemapdata) != 3 || |
420 | 0 | dict_find_string(op, "CodeMap", &pcodemap) <= 0 || |
421 | 0 | !r_has_type(pcodemap, t_null) |
422 | 0 | ) { |
423 | 0 | code = gs_note_error(gs_error_rangecheck); |
424 | 0 | goto fail; |
425 | 0 | } |
426 | 0 | if ((code = acquire_cid_system_info(&rcidsi, op)) < 0) |
427 | 0 | goto fail; |
428 | 0 | if ((code = gs_cmap_adobe1_alloc(&pcmap, 0, rname.value.const_bytes, |
429 | 0 | r_size(&rname), r_size(&rcidsi), |
430 | 0 | 0, 0, 0, 0, 0, imemory)) < 0) |
431 | 0 | goto fail; |
432 | 0 | if ((code = dict_int_param(op, "CMapType", 0, 1, 0, &pcmap->CMapType)) < 0 || |
433 | 0 | (code = dict_float_param(op, "CMapVersion", 0.0, &pcmap->CMapVersion)) < 0 || |
434 | 0 | (code = dict_uid_param(op, &pcmap->uid, 0, imemory, i_ctx_p)) < 0 || |
435 | 0 | (code = dict_int_param(op, "WMode", 0, 1, 0, &pcmap->WMode)) < 0 |
436 | 0 | ) |
437 | 0 | goto fail; |
438 | 0 | if (dict_find_string(op, "UIDOffset", &puidoffset) > 0) { |
439 | 0 | if (!r_has_type(puidoffset, t_integer)) { |
440 | 0 | code = gs_note_error(gs_error_typecheck); |
441 | 0 | goto fail; |
442 | 0 | } |
443 | 0 | pcmap->UIDOffset = puidoffset->value.intval; /* long, not int */ |
444 | 0 | } |
445 | 0 | for (i = 0; i < r_size(&rcidsi); ++i) { |
446 | 0 | code = get_cid_system_info(imemory, pcmap->CIDSystemInfo + i, &rcidsi, i); |
447 | 0 | if (code < 0) |
448 | 0 | goto fail; |
449 | 0 | } |
450 | 0 | array_get(imemory, pcodemapdata, 0L, &rcoderanges); |
451 | 0 | array_get(imemory, pcodemapdata, 1L, &rdefs); |
452 | 0 | array_get(imemory, pcodemapdata, 2L, &rnotdefs); |
453 | 0 | if ((code = acquire_code_ranges(pcmap, &rcoderanges, imemory)) < 0) |
454 | 0 | goto fail; |
455 | 0 | if ((code = acquire_code_map(&pcmap->def, &rdefs, pcmap, imemory)) < 0) |
456 | 0 | goto fail; |
457 | 0 | if ((code = acquire_code_map(&pcmap->notdef, &rnotdefs, pcmap, imemory)) < 0) |
458 | 0 | goto fail; |
459 | 0 | if (!bytes_compare(pcmap->CIDSystemInfo->Registry.data, pcmap->CIDSystemInfo->Registry.size, |
460 | 0 | (const byte *)"Artifex", 7) && |
461 | 0 | !bytes_compare(pcmap->CIDSystemInfo->Ordering.data, pcmap->CIDSystemInfo->Ordering.size, |
462 | 0 | (const byte *)"Unicode", 7)) |
463 | 0 | pcmap->from_Unicode = true; |
464 | 0 | pcmap->mark_glyph = zfont_mark_glyph_name; |
465 | 0 | pcmap->mark_glyph_data = 0; |
466 | 0 | pcmap->glyph_name = zfcmap_glyph_name; |
467 | 0 | pcmap->glyph_name_data = 0; |
468 | 0 | make_istruct_new(&rcmap, a_readonly, pcmap); |
469 | 0 | code = idict_put_string(op, "CodeMap", &rcmap); |
470 | 0 | if (code < 0) |
471 | 0 | goto fail; |
472 | 0 | return zreadonly(i_ctx_p); |
473 | 0 | fail: |
474 | 0 | if (pcmap) { |
475 | 0 | free_code_map(&pcmap->notdef, imemory); |
476 | 0 | free_code_map(&pcmap->def, imemory); |
477 | 0 | ifree_object(pcmap->CIDSystemInfo, "zbuildcmap(CIDSystemInfo)"); |
478 | 0 | ifree_object(pcmap, "zbuildcmap(cmap)"); |
479 | 0 | } |
480 | 0 | return code; |
481 | 0 | } |
482 | | |
483 | | /* ------ Initialization procedure ------ */ |
484 | | |
485 | | const op_def zfcmap_op_defs[] = |
486 | | { |
487 | | {"1.buildcmap", zbuildcmap}, |
488 | | op_def_end(0) |
489 | | }; |