1 /*
2 * Copyright © 2011,2012,2013 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 #include "hb.hh"
28
29 #ifdef HAVE_UNISCRIBE
30
31 #ifdef HB_NO_OT_TAG
32 #error "Cannot compile 'uniscribe' shaper with HB_NO_OT_TAG."
33 #endif
34
35 #include "hb-shaper-impl.hh"
36
37 #include <windows.h>
38 #include <usp10.h>
39 #include <rpc.h>
40
41 #ifndef E_NOT_SUFFICIENT_BUFFER
42 #define E_NOT_SUFFICIENT_BUFFER HRESULT_FROM_WIN32 (ERROR_INSUFFICIENT_BUFFER)
43 #endif
44
45 #include "hb-uniscribe.h"
46
47 #include "hb-ms-feature-ranges.hh"
48 #include "hb-open-file.hh"
49 #include "hb-ot-name-table.hh"
50 #include "hb-ot-layout.h"
51
52
53 /**
54 * SECTION:hb-uniscribe
55 * @title: hb-uniscribe
56 * @short_description: Windows integration
57 * @include: hb-uniscribe.h
58 *
59 * Functions for using HarfBuzz with Windows fonts.
60 **/
61
62 typedef HRESULT (WINAPI *SIOT) /*ScriptItemizeOpenType*/(
63 const WCHAR *pwcInChars,
64 int cInChars,
65 int cMaxItems,
66 const SCRIPT_CONTROL *psControl,
67 const SCRIPT_STATE *psState,
68 SCRIPT_ITEM *pItems,
69 OPENTYPE_TAG *pScriptTags,
70 int *pcItems
71 );
72
73 typedef HRESULT (WINAPI *SSOT) /*ScriptShapeOpenType*/(
74 HDC hdc,
75 SCRIPT_CACHE *psc,
76 SCRIPT_ANALYSIS *psa,
77 OPENTYPE_TAG tagScript,
78 OPENTYPE_TAG tagLangSys,
79 int *rcRangeChars,
80 TEXTRANGE_PROPERTIES **rpRangeProperties,
81 int cRanges,
82 const WCHAR *pwcChars,
83 int cChars,
84 int cMaxGlyphs,
85 WORD *pwLogClust,
86 SCRIPT_CHARPROP *pCharProps,
87 WORD *pwOutGlyphs,
88 SCRIPT_GLYPHPROP *pOutGlyphProps,
89 int *pcGlyphs
90 );
91
92 typedef HRESULT (WINAPI *SPOT) /*ScriptPlaceOpenType*/(
93 HDC hdc,
94 SCRIPT_CACHE *psc,
95 SCRIPT_ANALYSIS *psa,
96 OPENTYPE_TAG tagScript,
97 OPENTYPE_TAG tagLangSys,
98 int *rcRangeChars,
99 TEXTRANGE_PROPERTIES **rpRangeProperties,
100 int cRanges,
101 const WCHAR *pwcChars,
102 WORD *pwLogClust,
103 SCRIPT_CHARPROP *pCharProps,
104 int cChars,
105 const WORD *pwGlyphs,
106 const SCRIPT_GLYPHPROP *pGlyphProps,
107 int cGlyphs,
108 int *piAdvance,
109 GOFFSET *pGoffset,
110 ABC *pABC
111 );
112
113
114 /* Fallback implementations. */
115
116 static HRESULT WINAPI
hb_ScriptItemizeOpenType(const WCHAR * pwcInChars,int cInChars,int cMaxItems,const SCRIPT_CONTROL * psControl,const SCRIPT_STATE * psState,SCRIPT_ITEM * pItems,OPENTYPE_TAG * pScriptTags,int * pcItems)117 hb_ScriptItemizeOpenType(
118 const WCHAR *pwcInChars,
119 int cInChars,
120 int cMaxItems,
121 const SCRIPT_CONTROL *psControl,
122 const SCRIPT_STATE *psState,
123 SCRIPT_ITEM *pItems,
124 OPENTYPE_TAG *pScriptTags,
125 int *pcItems
126 )
127 {
128 {
129 return ScriptItemize (pwcInChars,
130 cInChars,
131 cMaxItems,
132 psControl,
133 psState,
134 pItems,
135 pcItems);
136 }
137 }
138
139 static HRESULT WINAPI
hb_ScriptShapeOpenType(HDC hdc,SCRIPT_CACHE * psc,SCRIPT_ANALYSIS * psa,OPENTYPE_TAG tagScript,OPENTYPE_TAG tagLangSys,int * rcRangeChars,TEXTRANGE_PROPERTIES ** rpRangeProperties,int cRanges,const WCHAR * pwcChars,int cChars,int cMaxGlyphs,WORD * pwLogClust,SCRIPT_CHARPROP * pCharProps,WORD * pwOutGlyphs,SCRIPT_GLYPHPROP * pOutGlyphProps,int * pcGlyphs)140 hb_ScriptShapeOpenType(
141 HDC hdc,
142 SCRIPT_CACHE *psc,
143 SCRIPT_ANALYSIS *psa,
144 OPENTYPE_TAG tagScript,
145 OPENTYPE_TAG tagLangSys,
146 int *rcRangeChars,
147 TEXTRANGE_PROPERTIES **rpRangeProperties,
148 int cRanges,
149 const WCHAR *pwcChars,
150 int cChars,
151 int cMaxGlyphs,
152 WORD *pwLogClust,
153 SCRIPT_CHARPROP *pCharProps,
154 WORD *pwOutGlyphs,
155 SCRIPT_GLYPHPROP *pOutGlyphProps,
156 int *pcGlyphs
157 )
158 {
159 SCRIPT_VISATTR *psva = (SCRIPT_VISATTR *) pOutGlyphProps;
160 return ScriptShape (hdc,
161 psc,
162 pwcChars,
163 cChars,
164 cMaxGlyphs,
165 psa,
166 pwOutGlyphs,
167 pwLogClust,
168 psva,
169 pcGlyphs);
170 }
171
172 static HRESULT WINAPI
hb_ScriptPlaceOpenType(HDC hdc,SCRIPT_CACHE * psc,SCRIPT_ANALYSIS * psa,OPENTYPE_TAG tagScript,OPENTYPE_TAG tagLangSys,int * rcRangeChars,TEXTRANGE_PROPERTIES ** rpRangeProperties,int cRanges,const WCHAR * pwcChars,WORD * pwLogClust,SCRIPT_CHARPROP * pCharProps,int cChars,const WORD * pwGlyphs,const SCRIPT_GLYPHPROP * pGlyphProps,int cGlyphs,int * piAdvance,GOFFSET * pGoffset,ABC * pABC)173 hb_ScriptPlaceOpenType(
174 HDC hdc,
175 SCRIPT_CACHE *psc,
176 SCRIPT_ANALYSIS *psa,
177 OPENTYPE_TAG tagScript,
178 OPENTYPE_TAG tagLangSys,
179 int *rcRangeChars,
180 TEXTRANGE_PROPERTIES **rpRangeProperties,
181 int cRanges,
182 const WCHAR *pwcChars,
183 WORD *pwLogClust,
184 SCRIPT_CHARPROP *pCharProps,
185 int cChars,
186 const WORD *pwGlyphs,
187 const SCRIPT_GLYPHPROP *pGlyphProps,
188 int cGlyphs,
189 int *piAdvance,
190 GOFFSET *pGoffset,
191 ABC *pABC
192 )
193 {
194 SCRIPT_VISATTR *psva = (SCRIPT_VISATTR *) pGlyphProps;
195 return ScriptPlace (hdc,
196 psc,
197 pwGlyphs,
198 cGlyphs,
199 psva,
200 psa,
201 piAdvance,
202 pGoffset,
203 pABC);
204 }
205
206
207 struct hb_uniscribe_shaper_funcs_t
208 {
209 SIOT ScriptItemizeOpenType;
210 SSOT ScriptShapeOpenType;
211 SPOT ScriptPlaceOpenType;
212
inithb_uniscribe_shaper_funcs_t213 void init ()
214 {
215 HMODULE hinstLib;
216 this->ScriptItemizeOpenType = nullptr;
217 this->ScriptShapeOpenType = nullptr;
218 this->ScriptPlaceOpenType = nullptr;
219
220 hinstLib = GetModuleHandle (TEXT ("usp10.dll"));
221 if (hinstLib)
222 {
223 #pragma GCC diagnostic push
224 #pragma GCC diagnostic ignored "-Wcast-function-type"
225 this->ScriptItemizeOpenType = (SIOT) GetProcAddress (hinstLib, "ScriptItemizeOpenType");
226 this->ScriptShapeOpenType = (SSOT) GetProcAddress (hinstLib, "ScriptShapeOpenType");
227 this->ScriptPlaceOpenType = (SPOT) GetProcAddress (hinstLib, "ScriptPlaceOpenType");
228 #pragma GCC diagnostic pop
229 }
230 if (!this->ScriptItemizeOpenType ||
231 !this->ScriptShapeOpenType ||
232 !this->ScriptPlaceOpenType)
233 {
234 DEBUG_MSG (UNISCRIBE, nullptr, "OpenType versions of functions not found; falling back.");
235 this->ScriptItemizeOpenType = hb_ScriptItemizeOpenType;
236 this->ScriptShapeOpenType = hb_ScriptShapeOpenType;
237 this->ScriptPlaceOpenType = hb_ScriptPlaceOpenType;
238 }
239 }
240 };
241
242 static inline void free_static_uniscribe_shaper_funcs ();
243
244 static struct hb_uniscribe_shaper_funcs_lazy_loader_t : hb_lazy_loader_t<hb_uniscribe_shaper_funcs_t,
245 hb_uniscribe_shaper_funcs_lazy_loader_t>
246 {
createhb_uniscribe_shaper_funcs_lazy_loader_t247 static hb_uniscribe_shaper_funcs_t *create ()
248 {
249 hb_uniscribe_shaper_funcs_t *funcs = (hb_uniscribe_shaper_funcs_t *) hb_calloc (1, sizeof (hb_uniscribe_shaper_funcs_t));
250 if (unlikely (!funcs))
251 return nullptr;
252
253 funcs->init ();
254
255 hb_atexit (free_static_uniscribe_shaper_funcs);
256
257 return funcs;
258 }
destroyhb_uniscribe_shaper_funcs_lazy_loader_t259 static void destroy (hb_uniscribe_shaper_funcs_t *p)
260 {
261 hb_free ((void *) p);
262 }
get_nullhb_uniscribe_shaper_funcs_lazy_loader_t263 static hb_uniscribe_shaper_funcs_t *get_null ()
264 {
265 return nullptr;
266 }
267 } static_uniscribe_shaper_funcs;
268
269 static inline
free_static_uniscribe_shaper_funcs()270 void free_static_uniscribe_shaper_funcs ()
271 {
272 static_uniscribe_shaper_funcs.free_instance ();
273 }
274
275 static hb_uniscribe_shaper_funcs_t *
hb_uniscribe_shaper_get_funcs()276 hb_uniscribe_shaper_get_funcs ()
277 {
278 return static_uniscribe_shaper_funcs.get_unconst ();
279 }
280
281
282 /*
283 * shaper face data
284 */
285
286 struct hb_uniscribe_face_data_t {
287 HANDLE fh;
288 hb_uniscribe_shaper_funcs_t *funcs;
289 wchar_t face_name[LF_FACESIZE];
290 };
291
292 /* face_name should point to a wchar_t[LF_FACESIZE] object. */
293 static void
_hb_generate_unique_face_name(wchar_t * face_name,unsigned int * plen)294 _hb_generate_unique_face_name (wchar_t *face_name, unsigned int *plen)
295 {
296 /* We'll create a private name for the font from a UUID using a simple,
297 * somewhat base64-like encoding scheme */
298 const char *enc = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+-";
299 UUID id;
300 UuidCreate ((UUID*) &id);
301 static_assert ((2 + 3 * (16/2) < LF_FACESIZE), "");
302 unsigned int name_str_len = 0;
303 face_name[name_str_len++] = 'F';
304 face_name[name_str_len++] = '_';
305 unsigned char *p = (unsigned char *) &id;
306 for (unsigned int i = 0; i < 16; i += 2)
307 {
308 /* Spread the 16 bits from two bytes of the UUID across three chars of face_name,
309 * using the bits in groups of 5,5,6 to select chars from enc.
310 * This will generate 24 characters; with the 'F_' prefix we already provided,
311 * the name will be 26 chars (plus the NUL terminator), so will always fit within
312 * face_name (LF_FACESIZE = 32). */
313 face_name[name_str_len++] = enc[p[i] >> 3];
314 face_name[name_str_len++] = enc[((p[i] << 2) | (p[i + 1] >> 6)) & 0x1f];
315 face_name[name_str_len++] = enc[p[i + 1] & 0x3f];
316 }
317 face_name[name_str_len] = 0;
318 if (plen)
319 *plen = name_str_len;
320 }
321
322 /* Destroys blob. */
323 static hb_blob_t *
_hb_rename_font(hb_blob_t * blob,wchar_t * new_name)324 _hb_rename_font (hb_blob_t *blob, wchar_t *new_name)
325 {
326 /* Create a copy of the font data, with the 'name' table replaced by a
327 * table that names the font with our private F_* name created above.
328 * For simplicity, we just append a new 'name' table and update the
329 * sfnt directory; the original table is left in place, but unused.
330 *
331 * The new table will contain just 5 name IDs: family, style, unique,
332 * full, PS. All of them point to the same name data with our unique name.
333 */
334
335 blob = hb_sanitize_context_t ().sanitize_blob<OT::OpenTypeFontFile> (blob);
336
337 unsigned int length, new_length, name_str_len;
338 const char *orig_sfnt_data = hb_blob_get_data (blob, &length);
339
340 _hb_generate_unique_face_name (new_name, &name_str_len);
341
342 static const uint16_t name_IDs[] = { 1, 2, 3, 4, 6 };
343
344 unsigned int name_table_length = OT::name::min_size +
345 ARRAY_LENGTH (name_IDs) * OT::NameRecord::static_size +
346 name_str_len * 2; /* for name data in UTF16BE form */
347 unsigned int padded_name_table_length = ((name_table_length + 3) & ~3);
348 unsigned int name_table_offset = (length + 3) & ~3;
349
350 new_length = name_table_offset + padded_name_table_length;
351 void *new_sfnt_data = hb_calloc (1, new_length);
352 if (!new_sfnt_data)
353 {
354 hb_blob_destroy (blob);
355 return nullptr;
356 }
357
358 hb_memcpy(new_sfnt_data, orig_sfnt_data, length);
359
360 OT::name &name = StructAtOffset<OT::name> (new_sfnt_data, name_table_offset);
361 name.format = 0;
362 name.count = ARRAY_LENGTH (name_IDs);
363 name.stringOffset = name.get_size ();
364 for (unsigned int i = 0; i < ARRAY_LENGTH (name_IDs); i++)
365 {
366 OT::NameRecord &record = name.nameRecordZ[i];
367 record.platformID = 3;
368 record.encodingID = 1;
369 record.languageID = 0x0409u; /* English */
370 record.nameID = name_IDs[i];
371 record.length = name_str_len * 2;
372 record.offset = 0;
373 }
374
375 /* Copy string data from new_name, converting wchar_t to UTF16BE. */
376 unsigned char *p = &StructAfter<unsigned char> (name);
377 for (unsigned int i = 0; i < name_str_len; i++)
378 {
379 *p++ = new_name[i] >> 8;
380 *p++ = new_name[i] & 0xff;
381 }
382
383 /* Adjust name table entry to point to new name table */
384 const OT::OpenTypeFontFile &file = * (OT::OpenTypeFontFile *) (new_sfnt_data);
385 unsigned int face_count = file.get_face_count ();
386 for (unsigned int face_index = 0; face_index < face_count; face_index++)
387 {
388 /* Note: doing multiple edits (ie. TTC) can be unsafe. There may be
389 * toe-stepping. But we don't really care. */
390 const OT::OpenTypeFontFace &face = file.get_face (face_index);
391 unsigned int index;
392 if (face.find_table_index (HB_OT_TAG_name, &index))
393 {
394 OT::TableRecord &record = const_cast<OT::TableRecord &> (face.get_table (index));
395 record.checkSum.set_for_data (&name, padded_name_table_length);
396 record.offset = name_table_offset;
397 record.length = name_table_length;
398 }
399 else if (face_index == 0) /* Fail if first face doesn't have 'name' table. */
400 {
401 hb_free (new_sfnt_data);
402 hb_blob_destroy (blob);
403 return nullptr;
404 }
405 }
406
407 /* The checkSumAdjustment field in the 'head' table is now wrong,
408 * but that doesn't actually seem to cause any problems so we don't
409 * bother. */
410
411 hb_blob_destroy (blob);
412 return hb_blob_create ((const char *) new_sfnt_data, new_length,
413 HB_MEMORY_MODE_WRITABLE, new_sfnt_data, hb_free);
414 }
415
416 hb_uniscribe_face_data_t *
_hb_uniscribe_shaper_face_data_create(hb_face_t * face)417 _hb_uniscribe_shaper_face_data_create (hb_face_t *face)
418 {
419 hb_uniscribe_face_data_t *data = (hb_uniscribe_face_data_t *) hb_calloc (1, sizeof (hb_uniscribe_face_data_t));
420 if (unlikely (!data))
421 return nullptr;
422
423 data->funcs = hb_uniscribe_shaper_get_funcs ();
424 if (unlikely (!data->funcs))
425 {
426 hb_free (data);
427 return nullptr;
428 }
429
430 hb_blob_t *blob = hb_face_reference_blob (face);
431 if (unlikely (!hb_blob_get_length (blob)))
432 DEBUG_MSG (UNISCRIBE, face, "Face has empty blob");
433
434 blob = _hb_rename_font (blob, data->face_name);
435 if (unlikely (!blob))
436 {
437 hb_free (data);
438 return nullptr;
439 }
440
441 DWORD num_fonts_installed;
442 data->fh = AddFontMemResourceEx ((void *) hb_blob_get_data (blob, nullptr),
443 hb_blob_get_length (blob),
444 0, &num_fonts_installed);
445 if (unlikely (!data->fh))
446 {
447 DEBUG_MSG (UNISCRIBE, face, "Face AddFontMemResourceEx() failed");
448 hb_free (data);
449 return nullptr;
450 }
451
452 return data;
453 }
454
455 void
_hb_uniscribe_shaper_face_data_destroy(hb_uniscribe_face_data_t * data)456 _hb_uniscribe_shaper_face_data_destroy (hb_uniscribe_face_data_t *data)
457 {
458 RemoveFontMemResourceEx (data->fh);
459 hb_free (data);
460 }
461
462
463 /*
464 * shaper font data
465 */
466
467 struct hb_uniscribe_font_data_t
468 {
469 HDC hdc;
470 mutable LOGFONTW log_font;
471 HFONT hfont;
472 mutable SCRIPT_CACHE script_cache;
473 double x_mult, y_mult; /* From LOGFONT space to HB space. */
474 };
475
476 static bool
populate_log_font(LOGFONTW * lf,hb_font_t * font,unsigned int font_size)477 populate_log_font (LOGFONTW *lf,
478 hb_font_t *font,
479 unsigned int font_size)
480 {
481 hb_memset (lf, 0, sizeof (*lf));
482 lf->lfHeight = - (int) font_size;
483 lf->lfCharSet = DEFAULT_CHARSET;
484
485 hb_memcpy (lf->lfFaceName, font->face->data.uniscribe->face_name, sizeof (lf->lfFaceName));
486
487 return true;
488 }
489
490 hb_uniscribe_font_data_t *
_hb_uniscribe_shaper_font_data_create(hb_font_t * font)491 _hb_uniscribe_shaper_font_data_create (hb_font_t *font)
492 {
493 hb_uniscribe_font_data_t *data = (hb_uniscribe_font_data_t *) hb_calloc (1, sizeof (hb_uniscribe_font_data_t));
494 if (unlikely (!data))
495 return nullptr;
496
497 int font_size = font->face->get_upem (); /* Default... */
498 /* No idea if the following is even a good idea. */
499 if (font->y_ppem)
500 font_size = font->y_ppem;
501
502 if (font_size < 0)
503 font_size = -font_size;
504 data->x_mult = (double) font->x_scale / font_size;
505 data->y_mult = (double) font->y_scale / font_size;
506
507 data->hdc = GetDC (nullptr);
508
509 if (unlikely (!populate_log_font (&data->log_font, font, font_size))) {
510 DEBUG_MSG (UNISCRIBE, font, "Font populate_log_font() failed");
511 _hb_uniscribe_shaper_font_data_destroy (data);
512 return nullptr;
513 }
514
515 data->hfont = CreateFontIndirectW (&data->log_font);
516 if (unlikely (!data->hfont)) {
517 DEBUG_MSG (UNISCRIBE, font, "Font CreateFontIndirectW() failed");
518 _hb_uniscribe_shaper_font_data_destroy (data);
519 return nullptr;
520 }
521
522 if (!SelectObject (data->hdc, data->hfont)) {
523 DEBUG_MSG (UNISCRIBE, font, "Font SelectObject() failed");
524 _hb_uniscribe_shaper_font_data_destroy (data);
525 return nullptr;
526 }
527
528 return data;
529 }
530
531 void
_hb_uniscribe_shaper_font_data_destroy(hb_uniscribe_font_data_t * data)532 _hb_uniscribe_shaper_font_data_destroy (hb_uniscribe_font_data_t *data)
533 {
534 if (data->hdc)
535 ReleaseDC (nullptr, data->hdc);
536 if (data->hfont)
537 DeleteObject (data->hfont);
538 if (data->script_cache)
539 ScriptFreeCache (&data->script_cache);
540 hb_free (data);
541 }
542
543 /**
544 * hb_uniscribe_font_get_logfontw:
545 * @font: The #hb_font_t to work upon
546 *
547 * Fetches the LOGFONTW structure that corresponds to the
548 * specified #hb_font_t font.
549 *
550 * Return value: a pointer to the LOGFONTW retrieved
551 *
552 **/
553 LOGFONTW *
hb_uniscribe_font_get_logfontw(hb_font_t * font)554 hb_uniscribe_font_get_logfontw (hb_font_t *font)
555 {
556 const hb_uniscribe_font_data_t *data = font->data.uniscribe;
557 return data ? &data->log_font : nullptr;
558 }
559
560 /**
561 * hb_uniscribe_font_get_hfont:
562 * @font: The #hb_font_t to work upon
563 *
564 * Fetches the HFONT handle that corresponds to the
565 * specified #hb_font_t font.
566 *
567 * Return value: the HFONT retreieved
568 *
569 **/
570 HFONT
hb_uniscribe_font_get_hfont(hb_font_t * font)571 hb_uniscribe_font_get_hfont (hb_font_t *font)
572 {
573 const hb_uniscribe_font_data_t *data = font->data.uniscribe;
574 return data ? data->hfont : nullptr;
575 }
576
577
578 /*
579 * shaper
580 */
581
582
583 hb_bool_t
_hb_uniscribe_shape(hb_shape_plan_t * shape_plan,hb_font_t * font,hb_buffer_t * buffer,const hb_feature_t * features,unsigned int num_features)584 _hb_uniscribe_shape (hb_shape_plan_t *shape_plan,
585 hb_font_t *font,
586 hb_buffer_t *buffer,
587 const hb_feature_t *features,
588 unsigned int num_features)
589 {
590 hb_face_t *face = font->face;
591 const hb_uniscribe_face_data_t *face_data = face->data.uniscribe;
592 const hb_uniscribe_font_data_t *font_data = font->data.uniscribe;
593 hb_uniscribe_shaper_funcs_t *funcs = face_data->funcs;
594
595 #define FAIL(...) \
596 HB_STMT_START { \
597 DEBUG_MSG (UNISCRIBE, nullptr, __VA_ARGS__); \
598 return false; \
599 } HB_STMT_END
600
601 HRESULT hr;
602
603 retry:
604
605 unsigned int scratch_size;
606 hb_buffer_t::scratch_buffer_t *scratch = buffer->get_scratch_buffer (&scratch_size);
607
608 #define ALLOCATE_ARRAY(Type, name, len) \
609 Type *name = (Type *) scratch; \
610 do { \
611 unsigned int _consumed = DIV_CEIL ((len) * sizeof (Type), sizeof (*scratch)); \
612 assert (_consumed <= scratch_size); \
613 scratch += _consumed; \
614 scratch_size -= _consumed; \
615 } while (0)
616
617 #define utf16_index() var1.u32
618
619 ALLOCATE_ARRAY (WCHAR, pchars, buffer->len * 2);
620
621 unsigned int chars_len = 0;
622 for (unsigned int i = 0; i < buffer->len; i++)
623 {
624 hb_codepoint_t c = buffer->info[i].codepoint;
625 buffer->info[i].utf16_index() = chars_len;
626 if (likely (c <= 0xFFFFu))
627 pchars[chars_len++] = c;
628 else if (unlikely (c > 0x10FFFFu))
629 pchars[chars_len++] = 0xFFFDu;
630 else {
631 pchars[chars_len++] = 0xD800u + ((c - 0x10000u) >> 10);
632 pchars[chars_len++] = 0xDC00u + ((c - 0x10000u) & ((1u << 10) - 1));
633 }
634 }
635
636 ALLOCATE_ARRAY (WORD, log_clusters, chars_len);
637 ALLOCATE_ARRAY (SCRIPT_CHARPROP, char_props, chars_len);
638
639 if (num_features)
640 {
641 /* Need log_clusters to assign features. */
642 chars_len = 0;
643 for (unsigned int i = 0; i < buffer->len; i++)
644 {
645 hb_codepoint_t c = buffer->info[i].codepoint;
646 unsigned int cluster = buffer->info[i].cluster;
647 log_clusters[chars_len++] = cluster;
648 if (hb_in_range (c, 0x10000u, 0x10FFFFu))
649 log_clusters[chars_len++] = cluster; /* Surrogates. */
650 }
651 }
652
653 /* The -2 in the following is to compensate for possible
654 * alignment needed after the WORD array. sizeof(WORD) == 2. */
655 unsigned int glyphs_size = (scratch_size * sizeof (int) - 2)
656 / (sizeof (WORD) +
657 sizeof (SCRIPT_GLYPHPROP) +
658 sizeof (int) +
659 sizeof (GOFFSET) +
660 sizeof (uint32_t));
661
662 ALLOCATE_ARRAY (WORD, glyphs, glyphs_size);
663 ALLOCATE_ARRAY (SCRIPT_GLYPHPROP, glyph_props, glyphs_size);
664 ALLOCATE_ARRAY (int, advances, glyphs_size);
665 ALLOCATE_ARRAY (GOFFSET, offsets, glyphs_size);
666 ALLOCATE_ARRAY (uint32_t, vis_clusters, glyphs_size);
667
668 /* Note:
669 * We can't touch the contents of glyph_props. Our fallback
670 * implementations of Shape and Place functions use that buffer
671 * by casting it to a different type. It works because they
672 * both agree about it, but if we want to access it here we
673 * need address that issue first.
674 */
675
676 #undef ALLOCATE_ARRAY
677
678 #define MAX_ITEMS 256
679
680 SCRIPT_ITEM items[MAX_ITEMS + 1];
681 SCRIPT_CONTROL bidi_control = {0};
682 SCRIPT_STATE bidi_state = {0};
683 ULONG script_tags[MAX_ITEMS];
684 int item_count;
685
686 /* MinGW32 doesn't define fMergeNeutralItems, so we bruteforce */
687 //bidi_control.fMergeNeutralItems = true;
688 *(uint32_t*)&bidi_control |= 1u<<24;
689
690 bidi_state.uBidiLevel = HB_DIRECTION_IS_FORWARD (buffer->props.direction) ? 0 : 1;
691 bidi_state.fOverrideDirection = 1;
692
693 hr = funcs->ScriptItemizeOpenType (pchars,
694 chars_len,
695 MAX_ITEMS,
696 &bidi_control,
697 &bidi_state,
698 items,
699 script_tags,
700 &item_count);
701 if (unlikely (FAILED (hr)))
702 FAIL ("ScriptItemizeOpenType() failed: 0x%08lx", hr);
703
704 #undef MAX_ITEMS
705
706 hb_tag_t lang_tag;
707 unsigned int lang_count = 1;
708 hb_ot_tags_from_script_and_language (buffer->props.script,
709 buffer->props.language,
710 nullptr, nullptr,
711 &lang_count, &lang_tag);
712 OPENTYPE_TAG language_tag = hb_uint32_swap (lang_count ? lang_tag : HB_TAG_NONE);
713
714 /*
715 * Set up features.
716 */
717 static_assert ((sizeof (TEXTRANGE_PROPERTIES) == sizeof (hb_ms_features_t)), "");
718 static_assert ((sizeof (OPENTYPE_FEATURE_RECORD) == sizeof (hb_ms_feature_t)), "");
719 hb_vector_t<hb_ms_feature_t> feature_records;
720 hb_vector_t<hb_ms_range_record_t> range_records;
721 bool has_features = false;
722 if (num_features)
723 has_features = hb_ms_setup_features (features,
724 num_features,
725 feature_records,
726 range_records);
727
728 hb_vector_t<hb_ms_features_t*> range_properties;
729 hb_vector_t<uint32_t> range_char_counts;
730
731 unsigned int glyphs_offset = 0;
732 unsigned int glyphs_len;
733 bool backward = HB_DIRECTION_IS_BACKWARD (buffer->props.direction);
734 for (int i = 0; i < item_count; i++)
735 {
736 unsigned int chars_offset = items[i].iCharPos;
737 unsigned int item_chars_len = items[i + 1].iCharPos - chars_offset;
738
739 if (has_features)
740 hb_ms_make_feature_ranges (feature_records,
741 range_records,
742 item_chars_len,
743 chars_offset,
744 log_clusters,
745 range_properties,
746 range_char_counts);
747
748 /* Asking for glyphs in logical order circumvents at least
749 * one bug in Uniscribe. */
750 items[i].a.fLogicalOrder = true;
751
752 retry_shape:
753 hr = funcs->ScriptShapeOpenType (font_data->hdc,
754 &font_data->script_cache,
755 &items[i].a,
756 script_tags[i],
757 language_tag,
758 (int *) range_char_counts.arrayZ,
759 (TEXTRANGE_PROPERTIES**) range_properties.arrayZ,
760 range_properties.length,
761 pchars + chars_offset,
762 item_chars_len,
763 glyphs_size - glyphs_offset,
764 /* out */
765 log_clusters + chars_offset,
766 char_props + chars_offset,
767 glyphs + glyphs_offset,
768 glyph_props + glyphs_offset,
769 (int *) &glyphs_len);
770
771 if (unlikely (items[i].a.fNoGlyphIndex))
772 FAIL ("ScriptShapeOpenType() set fNoGlyphIndex");
773 if (unlikely (hr == E_OUTOFMEMORY || hr == E_NOT_SUFFICIENT_BUFFER))
774 {
775 if (unlikely (!buffer->ensure (buffer->allocated * 2)))
776 FAIL ("Buffer resize failed");
777 goto retry;
778 }
779 if (unlikely (hr == USP_E_SCRIPT_NOT_IN_FONT))
780 {
781 if (items[i].a.eScript == SCRIPT_UNDEFINED)
782 FAIL ("ScriptShapeOpenType() failed: Font doesn't support script");
783 items[i].a.eScript = SCRIPT_UNDEFINED;
784 goto retry_shape;
785 }
786 if (unlikely (FAILED (hr)))
787 {
788 FAIL ("ScriptShapeOpenType() failed: 0x%08lx", hr);
789 }
790
791 for (unsigned int j = chars_offset; j < chars_offset + item_chars_len; j++)
792 log_clusters[j] += glyphs_offset;
793
794 hr = funcs->ScriptPlaceOpenType (font_data->hdc,
795 &font_data->script_cache,
796 &items[i].a,
797 script_tags[i],
798 language_tag,
799 (int *) range_char_counts.arrayZ,
800 (TEXTRANGE_PROPERTIES**) range_properties.arrayZ,
801 range_properties.length,
802 pchars + chars_offset,
803 log_clusters + chars_offset,
804 char_props + chars_offset,
805 item_chars_len,
806 glyphs + glyphs_offset,
807 glyph_props + glyphs_offset,
808 glyphs_len,
809 /* out */
810 advances + glyphs_offset,
811 offsets + glyphs_offset,
812 nullptr);
813 if (unlikely (FAILED (hr)))
814 FAIL ("ScriptPlaceOpenType() failed: 0x%08lx", hr);
815
816 if (DEBUG_ENABLED (UNISCRIBE))
817 fprintf (stderr, "Item %d RTL %d LayoutRTL %d LogicalOrder %d ScriptTag %c%c%c%c\n",
818 i,
819 items[i].a.fRTL,
820 items[i].a.fLayoutRTL,
821 items[i].a.fLogicalOrder,
822 HB_UNTAG (hb_uint32_swap (script_tags[i])));
823
824 glyphs_offset += glyphs_len;
825 }
826 glyphs_len = glyphs_offset;
827
828 /* Ok, we've got everything we need, now compose output buffer,
829 * very, *very*, carefully! */
830
831 /* Calculate visual-clusters. That's what we ship. */
832 for (unsigned int i = 0; i < glyphs_len; i++)
833 vis_clusters[i] = (uint32_t) -1;
834 for (unsigned int i = 0; i < buffer->len; i++) {
835 uint32_t *p = &vis_clusters[log_clusters[buffer->info[i].utf16_index()]];
836 *p = hb_min (*p, buffer->info[i].cluster);
837 }
838 for (unsigned int i = 1; i < glyphs_len; i++)
839 if (vis_clusters[i] == (uint32_t) -1)
840 vis_clusters[i] = vis_clusters[i - 1];
841
842 #undef utf16_index
843
844 if (unlikely (!buffer->ensure (glyphs_len)))
845 FAIL ("Buffer in error");
846
847 #undef FAIL
848
849 /* Set glyph infos */
850 buffer->len = 0;
851 for (unsigned int i = 0; i < glyphs_len; i++)
852 {
853 hb_glyph_info_t *info = &buffer->info[buffer->len++];
854
855 info->codepoint = glyphs[i];
856 info->cluster = vis_clusters[i];
857
858 /* The rest is crap. Let's store position info there for now. */
859 info->mask = advances[i];
860 info->var1.i32 = offsets[i].du;
861 info->var2.i32 = offsets[i].dv;
862 }
863
864 /* Set glyph positions */
865 buffer->clear_positions ();
866 double x_mult = font_data->x_mult, y_mult = font_data->y_mult;
867 for (unsigned int i = 0; i < glyphs_len; i++)
868 {
869 hb_glyph_info_t *info = &buffer->info[i];
870 hb_glyph_position_t *pos = &buffer->pos[i];
871
872 /* TODO vertical */
873 pos->x_advance = x_mult * (int32_t) info->mask;
874 pos->x_offset = x_mult * (backward ? -info->var1.i32 : info->var1.i32);
875 pos->y_offset = y_mult * info->var2.i32;
876 }
877
878 if (backward)
879 hb_buffer_reverse (buffer);
880
881 buffer->clear_glyph_flags ();
882 buffer->unsafe_to_break ();
883
884 /* Wow, done! */
885 return true;
886 }
887
888
889 #endif
890