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[chromium-blink-merge.git] / third_party / harfbuzz-ng / src / hb-ot-shape-complex-indic.cc
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1 /*
2 * Copyright © 2011,2012 Google, Inc.
4 * This is part of HarfBuzz, a text shaping library.
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.
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.
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.
24 * Google Author(s): Behdad Esfahbod
27 #include "hb-ot-shape-complex-indic-private.hh"
28 #include "hb-ot-layout-private.hh"
30 /* buffer var allocations */
31 #define indic_category() complex_var_u8_0() /* indic_category_t */
32 #define indic_position() complex_var_u8_1() /* indic_position_t */
36 * Indic shaper.
40 #define IN_HALF_BLOCK(u, Base) (((u) & ~0x7F) == (Base))
42 #define IS_DEVA(u) (IN_HALF_BLOCK (u, 0x0900))
43 #define IS_BENG(u) (IN_HALF_BLOCK (u, 0x0980))
44 #define IS_GURU(u) (IN_HALF_BLOCK (u, 0x0A00))
45 #define IS_GUJR(u) (IN_HALF_BLOCK (u, 0x0A80))
46 #define IS_ORYA(u) (IN_HALF_BLOCK (u, 0x0B00))
47 #define IS_TAML(u) (IN_HALF_BLOCK (u, 0x0B80))
48 #define IS_TELU(u) (IN_HALF_BLOCK (u, 0x0C00))
49 #define IS_KNDA(u) (IN_HALF_BLOCK (u, 0x0C80))
50 #define IS_MLYM(u) (IN_HALF_BLOCK (u, 0x0D00))
51 #define IS_SINH(u) (IN_HALF_BLOCK (u, 0x0D80))
52 #define IS_KHMR(u) (IN_HALF_BLOCK (u, 0x1780))
55 #define MATRA_POS_LEFT(u) POS_PRE_M
56 #define MATRA_POS_RIGHT(u) ( \
57 IS_DEVA(u) ? POS_AFTER_SUB : \
58 IS_BENG(u) ? POS_AFTER_POST : \
59 IS_GURU(u) ? POS_AFTER_POST : \
60 IS_GUJR(u) ? POS_AFTER_POST : \
61 IS_ORYA(u) ? POS_AFTER_POST : \
62 IS_TAML(u) ? POS_AFTER_POST : \
63 IS_TELU(u) ? (u <= 0x0C42 ? POS_BEFORE_SUB : POS_AFTER_SUB) : \
64 IS_KNDA(u) ? (u < 0x0CC3 || u > 0xCD6 ? POS_BEFORE_SUB : POS_AFTER_SUB) : \
65 IS_MLYM(u) ? POS_AFTER_POST : \
66 IS_SINH(u) ? POS_AFTER_SUB : \
67 IS_KHMR(u) ? POS_AFTER_POST : \
68 /*default*/ POS_AFTER_SUB \
70 #define MATRA_POS_TOP(u) ( /* BENG and MLYM don't have top matras. */ \
71 IS_DEVA(u) ? POS_AFTER_SUB : \
72 IS_GURU(u) ? POS_AFTER_POST : /* Deviate from spec */ \
73 IS_GUJR(u) ? POS_AFTER_SUB : \
74 IS_ORYA(u) ? POS_AFTER_MAIN : \
75 IS_TAML(u) ? POS_AFTER_SUB : \
76 IS_TELU(u) ? POS_BEFORE_SUB : \
77 IS_KNDA(u) ? POS_BEFORE_SUB : \
78 IS_SINH(u) ? POS_AFTER_SUB : \
79 IS_KHMR(u) ? POS_AFTER_POST : \
80 /*default*/ POS_AFTER_SUB \
82 #define MATRA_POS_BOTTOM(u) ( \
83 IS_DEVA(u) ? POS_AFTER_SUB : \
84 IS_BENG(u) ? POS_AFTER_SUB : \
85 IS_GURU(u) ? POS_AFTER_POST : \
86 IS_GUJR(u) ? POS_AFTER_POST : \
87 IS_ORYA(u) ? POS_AFTER_SUB : \
88 IS_TAML(u) ? POS_AFTER_POST : \
89 IS_TELU(u) ? POS_BEFORE_SUB : \
90 IS_KNDA(u) ? POS_BEFORE_SUB : \
91 IS_MLYM(u) ? POS_AFTER_POST : \
92 IS_SINH(u) ? POS_AFTER_SUB : \
93 IS_KHMR(u) ? POS_AFTER_POST : \
94 /*default*/ POS_AFTER_SUB \
97 static inline indic_position_t
98 matra_position (hb_codepoint_t u, indic_position_t side)
100 switch ((int) side)
102 case POS_PRE_C: return MATRA_POS_LEFT (u);
103 case POS_POST_C: return MATRA_POS_RIGHT (u);
104 case POS_ABOVE_C: return MATRA_POS_TOP (u);
105 case POS_BELOW_C: return MATRA_POS_BOTTOM (u);
107 return side;
110 /* XXX
111 * This is a hack for now. We should move this data into the main Indic table.
112 * Or completely remove it and just check in the tables.
114 static const hb_codepoint_t ra_chars[] = {
115 0x0930, /* Devanagari */
116 0x09B0, /* Bengali */
117 0x09F0, /* Bengali */
118 0x0A30, /* Gurmukhi */ /* No Reph */
119 0x0AB0, /* Gujarati */
120 0x0B30, /* Oriya */
121 0x0BB0, /* Tamil */ /* No Reph */
122 0x0C30, /* Telugu */ /* Reph formed only with ZWJ */
123 0x0CB0, /* Kannada */
124 0x0D30, /* Malayalam */ /* No Reph, Logical Repha */
126 0x0DBB, /* Sinhala */ /* Reph formed only with ZWJ */
128 0x179A, /* Khmer */ /* No Reph, Visual Repha */
131 static inline bool
132 is_ra (hb_codepoint_t u)
134 for (unsigned int i = 0; i < ARRAY_LENGTH (ra_chars); i++)
135 if (u == ra_chars[i])
136 return true;
137 return false;
140 static inline bool
141 is_one_of (const hb_glyph_info_t &info, unsigned int flags)
143 /* If it ligated, all bets are off. */
144 if (_hb_glyph_info_ligated (&info)) return false;
145 return !!(FLAG (info.indic_category()) & flags);
148 #define JOINER_FLAGS (FLAG (OT_ZWJ) | FLAG (OT_ZWNJ))
149 static inline bool
150 is_joiner (const hb_glyph_info_t &info)
152 return is_one_of (info, JOINER_FLAGS);
155 #define MEDIAL_FLAGS (FLAG (OT_CM) | FLAG (OT_CM2))
157 /* Note:
159 * We treat Vowels and placeholders as if they were consonants. This is safe because Vowels
160 * cannot happen in a consonant syllable. The plus side however is, we can call the
161 * consonant syllable logic from the vowel syllable function and get it all right! */
162 #define CONSONANT_FLAGS (FLAG (OT_C) | FLAG (OT_Ra) | MEDIAL_FLAGS | FLAG (OT_V) | FLAG (OT_NBSP) | FLAG (OT_DOTTEDCIRCLE))
163 static inline bool
164 is_consonant (const hb_glyph_info_t &info)
166 return is_one_of (info, CONSONANT_FLAGS);
169 #define HALANT_OR_COENG_FLAGS (FLAG (OT_H) | FLAG (OT_Coeng))
170 static inline bool
171 is_halant_or_coeng (const hb_glyph_info_t &info)
173 return is_one_of (info, HALANT_OR_COENG_FLAGS);
176 static inline void
177 set_indic_properties (hb_glyph_info_t &info)
179 hb_codepoint_t u = info.codepoint;
180 unsigned int type = hb_indic_get_categories (u);
181 indic_category_t cat = (indic_category_t) (type & 0x7F);
182 indic_position_t pos = (indic_position_t) (type >> 8);
186 * Re-assign category
190 /* The spec says U+0952 is OT_A. However, testing shows that Uniscribe
191 * treats U+0951..U+0954 all behave similarly.
192 * TESTS:
193 * U+092E,U+0947,U+0952
194 * U+092E,U+0952,U+0947
195 * U+092E,U+0947,U+0951
196 * U+092E,U+0951,U+0947
198 if (unlikely (hb_in_range<hb_codepoint_t> (u, 0x0951, 0x0954)))
199 cat = OT_A;
201 if (unlikely (u == 0x17D1))
202 cat = OT_X;
203 if (cat == OT_X &&
204 unlikely (hb_in_range<hb_codepoint_t> (u, 0x17CB, 0x17D3))) /* Khmer Various signs */
206 /* These are like Top Matras. */
207 cat = OT_M;
208 pos = POS_ABOVE_C;
210 if (u == 0x17C6) /* Khmer Bindu doesn't like to be repositioned. */
211 cat = OT_N;
213 if (unlikely (u == 0x17D2)) cat = OT_Coeng; /* Khmer coeng */
214 else if (unlikely (u == 0x200C)) cat = OT_ZWNJ;
215 else if (unlikely (u == 0x200D)) cat = OT_ZWJ;
216 else if (unlikely (u == 0x25CC)) cat = OT_DOTTEDCIRCLE;
217 else if (unlikely (u == 0x0A71)) cat = OT_SM; /* GURMUKHI ADDAK. Move it to the end. */
218 else if (unlikely (u == 0xA982)) cat = OT_SM; /* Javanese repha. */
219 else if (unlikely (u == 0xA9BE)) cat = OT_CM2; /* Javanese medial ya. */
220 else if (unlikely (u == 0xA9BD)) { cat = OT_M; pos = POS_POST_C; } /* Javanese vocalic r. */
222 if (cat == OT_Repha) {
223 /* There are two kinds of characters marked as Repha:
224 * - The ones that are GenCat=Mn are already positioned visually, ie. after base. (eg. Khmer)
225 * - The ones that are GenCat=Lo is encoded logically, ie. beginning of syllable. (eg. Malayalam)
227 * We recategorize the first kind to look like a Nukta and attached to the base directly.
229 if (_hb_glyph_info_get_general_category (&info) == HB_UNICODE_GENERAL_CATEGORY_NON_SPACING_MARK)
230 cat = OT_N;
236 * Re-assign position.
239 if ((FLAG (cat) & CONSONANT_FLAGS))
241 pos = POS_BASE_C;
242 if (is_ra (u))
243 cat = OT_Ra;
245 else if (cat == OT_M)
247 pos = matra_position (u, pos);
249 else if ((FLAG (cat) & (FLAG (OT_SM) | FLAG (OT_VD) | FLAG (OT_A) | FLAG (OT_Avag))))
251 pos = POS_SMVD;
254 if (unlikely (u == 0x0B01)) pos = POS_BEFORE_SUB; /* Oriya Bindu is BeforeSub in the spec. */
258 info.indic_category() = cat;
259 info.indic_position() = pos;
263 * Things above this line should ideally be moved to the Indic table itself.
268 * Indic configurations. Note that we do not want to keep every single script-specific
269 * behavior in these tables necessarily. This should mainly be used for per-script
270 * properties that are cheaper keeping here, than in the code. Ie. if, say, one and
271 * only one script has an exception, that one script can be if'ed directly in the code,
272 * instead of adding a new flag in these structs.
275 enum base_position_t {
276 BASE_POS_FIRST,
277 BASE_POS_LAST_SINHALA,
278 BASE_POS_LAST
280 enum reph_position_t {
281 REPH_POS_AFTER_MAIN = POS_AFTER_MAIN,
282 REPH_POS_BEFORE_SUB = POS_BEFORE_SUB,
283 REPH_POS_AFTER_SUB = POS_AFTER_SUB,
284 REPH_POS_BEFORE_POST = POS_BEFORE_POST,
285 REPH_POS_AFTER_POST = POS_AFTER_POST,
286 REPH_POS_DONT_CARE = POS_RA_TO_BECOME_REPH
288 enum reph_mode_t {
289 REPH_MODE_IMPLICIT, /* Reph formed out of initial Ra,H sequence. */
290 REPH_MODE_EXPLICIT, /* Reph formed out of initial Ra,H,ZWJ sequence. */
291 REPH_MODE_VIS_REPHA, /* Encoded Repha character, no reordering needed. */
292 REPH_MODE_LOG_REPHA /* Encoded Repha character, needs reordering. */
294 enum blwf_mode_t {
295 BLWF_MODE_PRE_AND_POST, /* Below-forms feature applied to pre-base and post-base. */
296 BLWF_MODE_POST_ONLY /* Below-forms feature applied to post-base only. */
298 enum pref_len_t {
299 PREF_LEN_1 = 1,
300 PREF_LEN_2 = 2,
301 PREF_LEN_DONT_CARE = PREF_LEN_2
303 struct indic_config_t
305 hb_script_t script;
306 bool has_old_spec;
307 hb_codepoint_t virama;
308 base_position_t base_pos;
309 reph_position_t reph_pos;
310 reph_mode_t reph_mode;
311 blwf_mode_t blwf_mode;
312 pref_len_t pref_len;
315 static const indic_config_t indic_configs[] =
317 /* Default. Should be first. */
318 {HB_SCRIPT_INVALID, false, 0,BASE_POS_LAST, REPH_POS_BEFORE_POST,REPH_MODE_IMPLICIT, BLWF_MODE_PRE_AND_POST, PREF_LEN_1},
319 {HB_SCRIPT_DEVANAGARI,true, 0x094D,BASE_POS_LAST, REPH_POS_BEFORE_POST,REPH_MODE_IMPLICIT, BLWF_MODE_PRE_AND_POST, PREF_LEN_DONT_CARE},
320 {HB_SCRIPT_BENGALI, true, 0x09CD,BASE_POS_LAST, REPH_POS_AFTER_SUB, REPH_MODE_IMPLICIT, BLWF_MODE_PRE_AND_POST, PREF_LEN_DONT_CARE},
321 {HB_SCRIPT_GURMUKHI, true, 0x0A4D,BASE_POS_LAST, REPH_POS_BEFORE_SUB, REPH_MODE_IMPLICIT, BLWF_MODE_PRE_AND_POST, PREF_LEN_DONT_CARE},
322 {HB_SCRIPT_GUJARATI, true, 0x0ACD,BASE_POS_LAST, REPH_POS_BEFORE_POST,REPH_MODE_IMPLICIT, BLWF_MODE_PRE_AND_POST, PREF_LEN_DONT_CARE},
323 {HB_SCRIPT_ORIYA, true, 0x0B4D,BASE_POS_LAST, REPH_POS_AFTER_MAIN, REPH_MODE_IMPLICIT, BLWF_MODE_PRE_AND_POST, PREF_LEN_DONT_CARE},
324 {HB_SCRIPT_TAMIL, true, 0x0BCD,BASE_POS_LAST, REPH_POS_AFTER_POST, REPH_MODE_IMPLICIT, BLWF_MODE_PRE_AND_POST, PREF_LEN_2},
325 {HB_SCRIPT_TELUGU, true, 0x0C4D,BASE_POS_LAST, REPH_POS_AFTER_POST, REPH_MODE_EXPLICIT, BLWF_MODE_POST_ONLY, PREF_LEN_2},
326 {HB_SCRIPT_KANNADA, true, 0x0CCD,BASE_POS_LAST, REPH_POS_AFTER_POST, REPH_MODE_IMPLICIT, BLWF_MODE_POST_ONLY, PREF_LEN_2},
327 {HB_SCRIPT_MALAYALAM, true, 0x0D4D,BASE_POS_LAST, REPH_POS_AFTER_MAIN, REPH_MODE_LOG_REPHA,BLWF_MODE_PRE_AND_POST, PREF_LEN_2},
328 {HB_SCRIPT_SINHALA, false,0x0DCA,BASE_POS_LAST_SINHALA,
329 REPH_POS_AFTER_MAIN, REPH_MODE_EXPLICIT, BLWF_MODE_PRE_AND_POST, PREF_LEN_DONT_CARE},
330 {HB_SCRIPT_KHMER, false,0x17D2,BASE_POS_FIRST,REPH_POS_DONT_CARE, REPH_MODE_VIS_REPHA,BLWF_MODE_PRE_AND_POST, PREF_LEN_2},
331 {HB_SCRIPT_JAVANESE, false,0xA9C0,BASE_POS_FIRST,REPH_POS_DONT_CARE, REPH_MODE_VIS_REPHA,BLWF_MODE_PRE_AND_POST, PREF_LEN_1},
337 * Indic shaper.
340 struct feature_list_t {
341 hb_tag_t tag;
342 hb_ot_map_feature_flags_t flags;
345 static const feature_list_t
346 indic_features[] =
349 * Basic features.
350 * These features are applied in order, one at a time, after initial_reordering.
352 {HB_TAG('n','u','k','t'), F_GLOBAL},
353 {HB_TAG('a','k','h','n'), F_GLOBAL},
354 {HB_TAG('r','p','h','f'), F_NONE},
355 {HB_TAG('r','k','r','f'), F_GLOBAL},
356 {HB_TAG('p','r','e','f'), F_NONE},
357 {HB_TAG('b','l','w','f'), F_NONE},
358 {HB_TAG('a','b','v','f'), F_NONE},
359 {HB_TAG('h','a','l','f'), F_NONE},
360 {HB_TAG('p','s','t','f'), F_NONE},
361 {HB_TAG('v','a','t','u'), F_GLOBAL},
362 {HB_TAG('c','j','c','t'), F_GLOBAL},
363 {HB_TAG('c','f','a','r'), F_NONE},
365 * Other features.
366 * These features are applied all at once, after final_reordering.
367 * Default Bengali font in Windows for example has intermixed
368 * lookups for init,pres,abvs,blws features.
370 {HB_TAG('i','n','i','t'), F_NONE},
371 {HB_TAG('p','r','e','s'), F_GLOBAL},
372 {HB_TAG('a','b','v','s'), F_GLOBAL},
373 {HB_TAG('b','l','w','s'), F_GLOBAL},
374 {HB_TAG('p','s','t','s'), F_GLOBAL},
375 {HB_TAG('h','a','l','n'), F_GLOBAL},
376 /* Positioning features, though we don't care about the types. */
377 {HB_TAG('d','i','s','t'), F_GLOBAL},
378 {HB_TAG('a','b','v','m'), F_GLOBAL},
379 {HB_TAG('b','l','w','m'), F_GLOBAL},
383 * Must be in the same order as the indic_features array.
385 enum {
386 _NUKT,
387 _AKHN,
388 RPHF,
389 _RKRF,
390 PREF,
391 BLWF,
392 ABVF,
393 HALF,
394 PSTF,
395 _VATU,
396 _CJCT,
397 CFAR,
399 INIT,
400 _PRES,
401 _ABVS,
402 _BLWS,
403 _PSTS,
404 _HALN,
405 _DIST,
406 _ABVM,
407 _BLWM,
409 INDIC_NUM_FEATURES,
410 INDIC_BASIC_FEATURES = INIT /* Don't forget to update this! */
413 static void
414 setup_syllables (const hb_ot_shape_plan_t *plan,
415 hb_font_t *font,
416 hb_buffer_t *buffer);
417 static void
418 initial_reordering (const hb_ot_shape_plan_t *plan,
419 hb_font_t *font,
420 hb_buffer_t *buffer);
421 static void
422 final_reordering (const hb_ot_shape_plan_t *plan,
423 hb_font_t *font,
424 hb_buffer_t *buffer);
425 static void
426 clear_syllables (const hb_ot_shape_plan_t *plan,
427 hb_font_t *font,
428 hb_buffer_t *buffer);
430 static void
431 collect_features_indic (hb_ot_shape_planner_t *plan)
433 hb_ot_map_builder_t *map = &plan->map;
435 /* Do this before any lookups have been applied. */
436 map->add_gsub_pause (setup_syllables);
438 map->add_global_bool_feature (HB_TAG('l','o','c','l'));
439 /* The Indic specs do not require ccmp, but we apply it here since if
440 * there is a use of it, it's typically at the beginning. */
441 map->add_global_bool_feature (HB_TAG('c','c','m','p'));
444 unsigned int i = 0;
445 map->add_gsub_pause (initial_reordering);
446 for (; i < INDIC_BASIC_FEATURES; i++) {
447 map->add_feature (indic_features[i].tag, 1, indic_features[i].flags | F_MANUAL_ZWJ);
448 map->add_gsub_pause (NULL);
450 map->add_gsub_pause (final_reordering);
451 for (; i < INDIC_NUM_FEATURES; i++) {
452 map->add_feature (indic_features[i].tag, 1, indic_features[i].flags | F_MANUAL_ZWJ);
455 map->add_global_bool_feature (HB_TAG('c','a','l','t'));
456 map->add_global_bool_feature (HB_TAG('c','l','i','g'));
458 map->add_gsub_pause (clear_syllables);
461 static void
462 override_features_indic (hb_ot_shape_planner_t *plan)
464 /* Uniscribe does not apply 'kern' in Khmer. */
465 if (hb_options ().uniscribe_bug_compatible)
467 switch ((hb_tag_t) plan->props.script)
469 case HB_SCRIPT_KHMER:
470 plan->map.add_feature (HB_TAG('k','e','r','n'), 0, F_GLOBAL);
471 break;
475 plan->map.add_feature (HB_TAG('l','i','g','a'), 0, F_GLOBAL);
479 struct would_substitute_feature_t
481 inline void init (const hb_ot_map_t *map, hb_tag_t feature_tag, bool zero_context_)
483 zero_context = zero_context_;
484 map->get_stage_lookups (0/*GSUB*/,
485 map->get_feature_stage (0/*GSUB*/, feature_tag),
486 &lookups, &count);
489 inline bool would_substitute (const hb_codepoint_t *glyphs,
490 unsigned int glyphs_count,
491 hb_face_t *face) const
493 for (unsigned int i = 0; i < count; i++)
494 if (hb_ot_layout_lookup_would_substitute_fast (face, lookups[i].index, glyphs, glyphs_count, zero_context))
495 return true;
496 return false;
499 private:
500 const hb_ot_map_t::lookup_map_t *lookups;
501 unsigned int count;
502 bool zero_context;
505 struct indic_shape_plan_t
507 ASSERT_POD ();
509 inline bool get_virama_glyph (hb_font_t *font, hb_codepoint_t *pglyph) const
511 hb_codepoint_t glyph = virama_glyph;
512 if (unlikely (virama_glyph == (hb_codepoint_t) -1))
514 if (!config->virama || !font->get_glyph (config->virama, 0, &glyph))
515 glyph = 0;
516 /* Technically speaking, the spec says we should apply 'locl' to virama too.
517 * Maybe one day... */
519 /* Our get_glyph() function needs a font, so we can't get the virama glyph
520 * during shape planning... Instead, overwrite it here. It's safe. Don't worry! */
521 (const_cast<indic_shape_plan_t *> (this))->virama_glyph = glyph;
524 *pglyph = glyph;
525 return glyph != 0;
528 const indic_config_t *config;
530 bool is_old_spec;
531 hb_codepoint_t virama_glyph;
533 would_substitute_feature_t rphf;
534 would_substitute_feature_t pref;
535 would_substitute_feature_t blwf;
536 would_substitute_feature_t pstf;
538 hb_mask_t mask_array[INDIC_NUM_FEATURES];
541 static void *
542 data_create_indic (const hb_ot_shape_plan_t *plan)
544 indic_shape_plan_t *indic_plan = (indic_shape_plan_t *) calloc (1, sizeof (indic_shape_plan_t));
545 if (unlikely (!indic_plan))
546 return NULL;
548 indic_plan->config = &indic_configs[0];
549 for (unsigned int i = 1; i < ARRAY_LENGTH (indic_configs); i++)
550 if (plan->props.script == indic_configs[i].script) {
551 indic_plan->config = &indic_configs[i];
552 break;
555 indic_plan->is_old_spec = indic_plan->config->has_old_spec && ((plan->map.chosen_script[0] & 0x000000FF) != '2');
556 indic_plan->virama_glyph = (hb_codepoint_t) -1;
558 /* Use zero-context would_substitute() matching for new-spec of the main
559 * Indic scripts, but not for old-spec or scripts with one spec only. */
560 bool zero_context = indic_plan->config->has_old_spec || !indic_plan->is_old_spec;
561 indic_plan->rphf.init (&plan->map, HB_TAG('r','p','h','f'), zero_context);
562 indic_plan->pref.init (&plan->map, HB_TAG('p','r','e','f'), zero_context);
563 indic_plan->blwf.init (&plan->map, HB_TAG('b','l','w','f'), zero_context);
564 indic_plan->pstf.init (&plan->map, HB_TAG('p','s','t','f'), zero_context);
566 for (unsigned int i = 0; i < ARRAY_LENGTH (indic_plan->mask_array); i++)
567 indic_plan->mask_array[i] = (indic_features[i].flags & F_GLOBAL) ?
568 0 : plan->map.get_1_mask (indic_features[i].tag);
570 return indic_plan;
573 static void
574 data_destroy_indic (void *data)
576 free (data);
579 static indic_position_t
580 consonant_position_from_face (const indic_shape_plan_t *indic_plan,
581 const hb_codepoint_t consonant,
582 const hb_codepoint_t virama,
583 hb_face_t *face)
585 /* For old-spec, the order of glyphs is Consonant,Virama,
586 * whereas for new-spec, it's Virama,Consonant. However,
587 * some broken fonts (like Free Sans) simply copied lookups
588 * from old-spec to new-spec without modification.
589 * And oddly enough, Uniscribe seems to respect those lookups.
590 * Eg. in the sequence U+0924,U+094D,U+0930, Uniscribe finds
591 * base at 0. The font however, only has lookups matching
592 * 930,94D in 'blwf', not the expected 94D,930 (with new-spec
593 * table). As such, we simply match both sequences. Seems
594 * to work. */
595 hb_codepoint_t glyphs[3] = {virama, consonant, virama};
596 if (indic_plan->blwf.would_substitute (glyphs , 2, face) ||
597 indic_plan->blwf.would_substitute (glyphs+1, 2, face))
598 return POS_BELOW_C;
599 if (indic_plan->pstf.would_substitute (glyphs , 2, face) ||
600 indic_plan->pstf.would_substitute (glyphs+1, 2, face))
601 return POS_POST_C;
602 unsigned int pref_len = indic_plan->config->pref_len;
603 if ((pref_len == PREF_LEN_2 &&
604 (indic_plan->pref.would_substitute (glyphs , 2, face) ||
605 indic_plan->pref.would_substitute (glyphs+1, 2, face)))
606 || (pref_len == PREF_LEN_1 &&
607 indic_plan->pref.would_substitute (glyphs+1, 1, face)))
608 return POS_POST_C;
609 return POS_BASE_C;
613 enum syllable_type_t {
614 consonant_syllable,
615 vowel_syllable,
616 standalone_cluster,
617 avagraha_cluster,
618 broken_cluster,
619 non_indic_cluster,
622 #include "hb-ot-shape-complex-indic-machine.hh"
625 static void
626 setup_masks_indic (const hb_ot_shape_plan_t *plan HB_UNUSED,
627 hb_buffer_t *buffer,
628 hb_font_t *font HB_UNUSED)
630 HB_BUFFER_ALLOCATE_VAR (buffer, indic_category);
631 HB_BUFFER_ALLOCATE_VAR (buffer, indic_position);
633 /* We cannot setup masks here. We save information about characters
634 * and setup masks later on in a pause-callback. */
636 unsigned int count = buffer->len;
637 for (unsigned int i = 0; i < count; i++)
638 set_indic_properties (buffer->info[i]);
641 static void
642 setup_syllables (const hb_ot_shape_plan_t *plan HB_UNUSED,
643 hb_font_t *font HB_UNUSED,
644 hb_buffer_t *buffer)
646 find_syllables (buffer);
649 static int
650 compare_indic_order (const hb_glyph_info_t *pa, const hb_glyph_info_t *pb)
652 int a = pa->indic_position();
653 int b = pb->indic_position();
655 return a < b ? -1 : a == b ? 0 : +1;
660 static void
661 update_consonant_positions (const hb_ot_shape_plan_t *plan,
662 hb_font_t *font,
663 hb_buffer_t *buffer)
665 const indic_shape_plan_t *indic_plan = (const indic_shape_plan_t *) plan->data;
667 if (indic_plan->config->base_pos != BASE_POS_LAST)
668 return;
670 hb_codepoint_t virama;
671 if (indic_plan->get_virama_glyph (font, &virama))
673 hb_face_t *face = font->face;
674 unsigned int count = buffer->len;
675 for (unsigned int i = 0; i < count; i++)
676 if (buffer->info[i].indic_position() == POS_BASE_C) {
677 hb_codepoint_t consonant = buffer->info[i].codepoint;
678 buffer->info[i].indic_position() = consonant_position_from_face (indic_plan, consonant, virama, face);
684 /* Rules from:
685 * https://www.microsoft.com/typography/otfntdev/devanot/shaping.aspx */
687 static void
688 initial_reordering_consonant_syllable (const hb_ot_shape_plan_t *plan,
689 hb_face_t *face,
690 hb_buffer_t *buffer,
691 unsigned int start, unsigned int end)
693 const indic_shape_plan_t *indic_plan = (const indic_shape_plan_t *) plan->data;
694 hb_glyph_info_t *info = buffer->info;
697 /* 1. Find base consonant:
699 * The shaping engine finds the base consonant of the syllable, using the
700 * following algorithm: starting from the end of the syllable, move backwards
701 * until a consonant is found that does not have a below-base or post-base
702 * form (post-base forms have to follow below-base forms), or that is not a
703 * pre-base reordering Ra, or arrive at the first consonant. The consonant
704 * stopped at will be the base.
706 * o If the syllable starts with Ra + Halant (in a script that has Reph)
707 * and has more than one consonant, Ra is excluded from candidates for
708 * base consonants.
711 unsigned int base = end;
712 bool has_reph = false;
715 /* -> If the syllable starts with Ra + Halant (in a script that has Reph)
716 * and has more than one consonant, Ra is excluded from candidates for
717 * base consonants. */
718 unsigned int limit = start;
719 if (indic_plan->config->reph_pos != REPH_POS_DONT_CARE &&
720 indic_plan->mask_array[RPHF] &&
721 start + 3 <= end &&
723 (indic_plan->config->reph_mode == REPH_MODE_IMPLICIT && !is_joiner (info[start + 2])) ||
724 (indic_plan->config->reph_mode == REPH_MODE_EXPLICIT && info[start + 2].indic_category() == OT_ZWJ)
727 /* See if it matches the 'rphf' feature. */
728 hb_codepoint_t glyphs[2] = {info[start].codepoint, info[start + 1].codepoint};
729 if (indic_plan->rphf.would_substitute (glyphs, ARRAY_LENGTH (glyphs), face))
731 limit += 2;
732 while (limit < end && is_joiner (info[limit]))
733 limit++;
734 base = start;
735 has_reph = true;
737 } else if (indic_plan->config->reph_mode == REPH_MODE_LOG_REPHA && info[start].indic_category() == OT_Repha)
739 limit += 1;
740 while (limit < end && is_joiner (info[limit]))
741 limit++;
742 base = start;
743 has_reph = true;
746 switch (indic_plan->config->base_pos)
748 default:
749 assert (false);
750 /* fallthrough */
752 case BASE_POS_LAST:
754 /* -> starting from the end of the syllable, move backwards */
755 unsigned int i = end;
756 bool seen_below = false;
757 do {
758 i--;
759 /* -> until a consonant is found */
760 if (is_consonant (info[i]))
762 /* -> that does not have a below-base or post-base form
763 * (post-base forms have to follow below-base forms), */
764 if (info[i].indic_position() != POS_BELOW_C &&
765 (info[i].indic_position() != POS_POST_C || seen_below))
767 base = i;
768 break;
770 if (info[i].indic_position() == POS_BELOW_C)
771 seen_below = true;
773 /* -> or that is not a pre-base reordering Ra,
775 * IMPLEMENTATION NOTES:
777 * Our pre-base reordering Ra's are marked POS_POST_C, so will be skipped
778 * by the logic above already.
781 /* -> or arrive at the first consonant. The consonant stopped at will
782 * be the base. */
783 base = i;
785 else
787 /* A ZWJ after a Halant stops the base search, and requests an explicit
788 * half form.
789 * A ZWJ before a Halant, requests a subjoined form instead, and hence
790 * search continues. This is particularly important for Bengali
791 * sequence Ra,H,Ya that should form Ya-Phalaa by subjoining Ya. */
792 if (start < i &&
793 info[i].indic_category() == OT_ZWJ &&
794 info[i - 1].indic_category() == OT_H)
795 break;
797 } while (i > limit);
799 break;
801 case BASE_POS_LAST_SINHALA:
803 /* Sinhala base positioning is slightly different from main Indic, in that:
804 * 1. It's ZWJ behavior is different,
805 * 2. We don't need to look into the font for consonant positions.
808 if (!has_reph)
809 base = limit;
811 /* Find the last base consonant that is not blocked by ZWJ. If there is
812 * a ZWJ right before a base consonant, that would request a subjoined form. */
813 for (unsigned int i = limit; i < end; i++)
814 if (is_consonant (info[i]))
816 if (limit < i && info[i - 1].indic_category() == OT_ZWJ)
817 break;
818 else
819 base = i;
822 /* Mark all subsequent consonants as below. */
823 for (unsigned int i = base + 1; i < end; i++)
824 if (is_consonant (info[i]))
825 info[i].indic_position() = POS_BELOW_C;
827 break;
829 case BASE_POS_FIRST:
831 /* The first consonant is always the base. */
833 assert (indic_plan->config->reph_mode == REPH_MODE_VIS_REPHA);
834 assert (!has_reph);
836 base = start;
838 /* Mark all subsequent consonants as below. */
839 for (unsigned int i = base + 1; i < end; i++)
840 if (is_consonant (info[i]))
841 info[i].indic_position() = POS_BELOW_C;
843 break;
846 /* -> If the syllable starts with Ra + Halant (in a script that has Reph)
847 * and has more than one consonant, Ra is excluded from candidates for
848 * base consonants.
850 * Only do this for unforced Reph. (ie. not for Ra,H,ZWJ. */
851 if (has_reph && base == start && limit - base <= 2) {
852 /* Have no other consonant, so Reph is not formed and Ra becomes base. */
853 has_reph = false;
858 /* 2. Decompose and reorder Matras:
860 * Each matra and any syllable modifier sign in the cluster are moved to the
861 * appropriate position relative to the consonant(s) in the cluster. The
862 * shaping engine decomposes two- or three-part matras into their constituent
863 * parts before any repositioning. Matra characters are classified by which
864 * consonant in a conjunct they have affinity for and are reordered to the
865 * following positions:
867 * o Before first half form in the syllable
868 * o After subjoined consonants
869 * o After post-form consonant
870 * o After main consonant (for above marks)
872 * IMPLEMENTATION NOTES:
874 * The normalize() routine has already decomposed matras for us, so we don't
875 * need to worry about that.
879 /* 3. Reorder marks to canonical order:
881 * Adjacent nukta and halant or nukta and vedic sign are always repositioned
882 * if necessary, so that the nukta is first.
884 * IMPLEMENTATION NOTES:
886 * We don't need to do this: the normalize() routine already did this for us.
890 /* Reorder characters */
892 for (unsigned int i = start; i < base; i++)
893 info[i].indic_position() = MIN (POS_PRE_C, (indic_position_t) info[i].indic_position());
895 if (base < end)
896 info[base].indic_position() = POS_BASE_C;
898 /* Mark final consonants. A final consonant is one appearing after a matra,
899 * like in Khmer. */
900 for (unsigned int i = base + 1; i < end; i++)
901 if (info[i].indic_category() == OT_M) {
902 for (unsigned int j = i + 1; j < end; j++)
903 if (is_consonant (info[j])) {
904 info[j].indic_position() = POS_FINAL_C;
905 break;
907 break;
910 /* Handle beginning Ra */
911 if (has_reph)
912 info[start].indic_position() = POS_RA_TO_BECOME_REPH;
914 /* For old-style Indic script tags, move the first post-base Halant after
915 * last consonant. Only do this if there is *not* a Halant after last
916 * consonant. Otherwise it becomes messy. */
917 if (indic_plan->is_old_spec) {
918 for (unsigned int i = base + 1; i < end; i++)
919 if (info[i].indic_category() == OT_H) {
920 unsigned int j;
921 for (j = end - 1; j > i; j--)
922 if (is_consonant (info[j]) || info[j].indic_category() == OT_H)
923 break;
924 if (info[j].indic_category() != OT_H && j > i) {
925 /* Move Halant to after last consonant. */
926 hb_glyph_info_t t = info[i];
927 memmove (&info[i], &info[i + 1], (j - i) * sizeof (info[0]));
928 info[j] = t;
930 break;
934 /* Attach misc marks to previous char to move with them. */
936 indic_position_t last_pos = POS_START;
937 for (unsigned int i = start; i < end; i++)
939 if ((FLAG (info[i].indic_category()) & (JOINER_FLAGS | FLAG (OT_N) | FLAG (OT_RS) | MEDIAL_FLAGS | HALANT_OR_COENG_FLAGS)))
941 info[i].indic_position() = last_pos;
942 if (unlikely (info[i].indic_category() == OT_H &&
943 info[i].indic_position() == POS_PRE_M))
946 * Uniscribe doesn't move the Halant with Left Matra.
947 * TEST: U+092B,U+093F,U+094DE
948 * We follow. This is important for the Sinhala
949 * U+0DDA split matra since it decomposes to U+0DD9,U+0DCA
950 * where U+0DD9 is a left matra and U+0DCA is the virama.
951 * We don't want to move the virama with the left matra.
952 * TEST: U+0D9A,U+0DDA
954 for (unsigned int j = i; j > start; j--)
955 if (info[j - 1].indic_position() != POS_PRE_M) {
956 info[i].indic_position() = info[j - 1].indic_position();
957 break;
960 } else if (info[i].indic_position() != POS_SMVD) {
961 last_pos = (indic_position_t) info[i].indic_position();
965 /* For post-base consonants let them own anything before them
966 * since the last consonant or matra. */
968 unsigned int last = base;
969 for (unsigned int i = base + 1; i < end; i++)
970 if (is_consonant (info[i]))
972 for (unsigned int j = last + 1; j < i; j++)
973 if (info[j].indic_position() < POS_SMVD)
974 info[j].indic_position() = info[i].indic_position();
975 last = i;
976 } else if (info[i].indic_category() == OT_M)
977 last = i;
982 /* Use syllable() for sort accounting temporarily. */
983 unsigned int syllable = info[start].syllable();
984 for (unsigned int i = start; i < end; i++)
985 info[i].syllable() = i - start;
987 /* Sit tight, rock 'n roll! */
988 hb_bubble_sort (info + start, end - start, compare_indic_order);
989 /* Find base again */
990 base = end;
991 for (unsigned int i = start; i < end; i++)
992 if (info[i].indic_position() == POS_BASE_C)
994 base = i;
995 break;
997 /* Things are out-of-control for post base positions, they may shuffle
998 * around like crazy. In old-spec mode, we move halants around, so in
999 * that case merge all clusters after base. Otherwise, check the sort
1000 * order and merge as needed.
1001 * For pre-base stuff, we handle cluster issues in final reordering. */
1002 if (indic_plan->is_old_spec || end - base > 127)
1003 buffer->merge_clusters (base, end);
1004 else
1006 /* Note! syllable() is a one-byte field. */
1007 for (unsigned int i = base; i < end; i++)
1008 if (info[i].syllable() != 255)
1010 unsigned int max = i;
1011 unsigned int j = start + info[i].syllable();
1012 while (j != i)
1014 max = MAX (max, j);
1015 unsigned int next = start + info[j].syllable();
1016 info[j].syllable() = 255; /* So we don't process j later again. */
1017 j = next;
1019 if (i != max)
1020 buffer->merge_clusters (i, max + 1);
1024 /* Put syllable back in. */
1025 for (unsigned int i = start; i < end; i++)
1026 info[i].syllable() = syllable;
1029 /* Setup masks now */
1032 hb_mask_t mask;
1034 /* Reph */
1035 for (unsigned int i = start; i < end && info[i].indic_position() == POS_RA_TO_BECOME_REPH; i++)
1036 info[i].mask |= indic_plan->mask_array[RPHF];
1038 /* Pre-base */
1039 mask = indic_plan->mask_array[HALF];
1040 if (!indic_plan->is_old_spec &&
1041 indic_plan->config->blwf_mode == BLWF_MODE_PRE_AND_POST)
1042 mask |= indic_plan->mask_array[BLWF];
1043 for (unsigned int i = start; i < base; i++)
1044 info[i].mask |= mask;
1045 /* Base */
1046 mask = 0;
1047 if (base < end)
1048 info[base].mask |= mask;
1049 /* Post-base */
1050 mask = indic_plan->mask_array[BLWF] | indic_plan->mask_array[ABVF] | indic_plan->mask_array[PSTF];
1051 for (unsigned int i = base + 1; i < end; i++)
1052 info[i].mask |= mask;
1055 if (indic_plan->is_old_spec &&
1056 buffer->props.script == HB_SCRIPT_DEVANAGARI)
1058 /* Old-spec eye-lash Ra needs special handling. From the
1059 * spec:
1061 * "The feature 'below-base form' is applied to consonants
1062 * having below-base forms and following the base consonant.
1063 * The exception is vattu, which may appear below half forms
1064 * as well as below the base glyph. The feature 'below-base
1065 * form' will be applied to all such occurrences of Ra as well."
1067 * Test case: U+0924,U+094D,U+0930,U+094d,U+0915
1068 * with Sanskrit 2003 font.
1070 * However, note that Ra,Halant,ZWJ is the correct way to
1071 * request eyelash form of Ra, so we wouldbn't inhibit it
1072 * in that sequence.
1074 * Test case: U+0924,U+094D,U+0930,U+094d,U+200D,U+0915
1076 for (unsigned int i = start; i + 1 < base; i++)
1077 if (info[i ].indic_category() == OT_Ra &&
1078 info[i+1].indic_category() == OT_H &&
1079 (i + 2 == base ||
1080 info[i+2].indic_category() != OT_ZWJ))
1082 info[i ].mask |= indic_plan->mask_array[BLWF];
1083 info[i+1].mask |= indic_plan->mask_array[BLWF];
1087 unsigned int pref_len = indic_plan->config->pref_len;
1088 if (indic_plan->mask_array[PREF] && base + pref_len < end)
1090 assert (1 <= pref_len && pref_len <= 2);
1091 /* Find a Halant,Ra sequence and mark it for pre-base reordering processing. */
1092 for (unsigned int i = base + 1; i + pref_len - 1 < end; i++) {
1093 hb_codepoint_t glyphs[2];
1094 for (unsigned int j = 0; j < pref_len; j++)
1095 glyphs[j] = info[i + j].codepoint;
1096 if (indic_plan->pref.would_substitute (glyphs, pref_len, face))
1098 for (unsigned int j = 0; j < pref_len; j++)
1099 info[i++].mask |= indic_plan->mask_array[PREF];
1101 /* Mark the subsequent stuff with 'cfar'. Used in Khmer.
1102 * Read the feature spec.
1103 * This allows distinguishing the following cases with MS Khmer fonts:
1104 * U+1784,U+17D2,U+179A,U+17D2,U+1782
1105 * U+1784,U+17D2,U+1782,U+17D2,U+179A
1107 if (indic_plan->mask_array[CFAR])
1108 for (; i < end; i++)
1109 info[i].mask |= indic_plan->mask_array[CFAR];
1111 break;
1116 /* Apply ZWJ/ZWNJ effects */
1117 for (unsigned int i = start + 1; i < end; i++)
1118 if (is_joiner (info[i])) {
1119 bool non_joiner = info[i].indic_category() == OT_ZWNJ;
1120 unsigned int j = i;
1122 do {
1123 j--;
1125 /* ZWJ/ZWNJ should disable CJCT. They do that by simply
1126 * being there, since we don't skip them for the CJCT
1127 * feature (ie. F_MANUAL_ZWJ) */
1129 /* A ZWNJ disables HALF. */
1130 if (non_joiner)
1131 info[j].mask &= ~indic_plan->mask_array[HALF];
1133 } while (j > start && !is_consonant (info[j]));
1138 static void
1139 initial_reordering_vowel_syllable (const hb_ot_shape_plan_t *plan,
1140 hb_face_t *face,
1141 hb_buffer_t *buffer,
1142 unsigned int start, unsigned int end)
1144 /* We made the vowels look like consonants. So let's call the consonant logic! */
1145 initial_reordering_consonant_syllable (plan, face, buffer, start, end);
1148 static void
1149 initial_reordering_standalone_cluster (const hb_ot_shape_plan_t *plan,
1150 hb_face_t *face,
1151 hb_buffer_t *buffer,
1152 unsigned int start, unsigned int end)
1154 /* We treat NBSP/dotted-circle as if they are consonants, so we should just chain.
1155 * Only if not in compatibility mode that is... */
1157 if (hb_options ().uniscribe_bug_compatible)
1159 /* For dotted-circle, this is what Uniscribe does:
1160 * If dotted-circle is the last glyph, it just does nothing.
1161 * Ie. It doesn't form Reph. */
1162 if (buffer->info[end - 1].indic_category() == OT_DOTTEDCIRCLE)
1163 return;
1166 initial_reordering_consonant_syllable (plan, face, buffer, start, end);
1169 static void
1170 initial_reordering_broken_cluster (const hb_ot_shape_plan_t *plan,
1171 hb_face_t *face,
1172 hb_buffer_t *buffer,
1173 unsigned int start, unsigned int end)
1175 /* We already inserted dotted-circles, so just call the standalone_cluster. */
1176 initial_reordering_standalone_cluster (plan, face, buffer, start, end);
1179 static void
1180 initial_reordering_avagraha_cluster (const hb_ot_shape_plan_t *plan HB_UNUSED,
1181 hb_face_t *face HB_UNUSED,
1182 hb_buffer_t *buffer HB_UNUSED,
1183 unsigned int start HB_UNUSED, unsigned int end HB_UNUSED)
1185 /* Nothing to do right now. If we ever switch to using the output
1186 * buffer in the reordering process, we'd need to next_glyph() here. */
1189 static void
1190 initial_reordering_non_indic_cluster (const hb_ot_shape_plan_t *plan HB_UNUSED,
1191 hb_face_t *face HB_UNUSED,
1192 hb_buffer_t *buffer HB_UNUSED,
1193 unsigned int start HB_UNUSED, unsigned int end HB_UNUSED)
1195 /* Nothing to do right now. If we ever switch to using the output
1196 * buffer in the reordering process, we'd need to next_glyph() here. */
1200 static void
1201 initial_reordering_syllable (const hb_ot_shape_plan_t *plan,
1202 hb_face_t *face,
1203 hb_buffer_t *buffer,
1204 unsigned int start, unsigned int end)
1206 syllable_type_t syllable_type = (syllable_type_t) (buffer->info[start].syllable() & 0x0F);
1207 switch (syllable_type) {
1208 case consonant_syllable: initial_reordering_consonant_syllable (plan, face, buffer, start, end); return;
1209 case vowel_syllable: initial_reordering_vowel_syllable (plan, face, buffer, start, end); return;
1210 case standalone_cluster: initial_reordering_standalone_cluster (plan, face, buffer, start, end); return;
1211 case avagraha_cluster: initial_reordering_avagraha_cluster (plan, face, buffer, start, end); return;
1212 case broken_cluster: initial_reordering_broken_cluster (plan, face, buffer, start, end); return;
1213 case non_indic_cluster: initial_reordering_non_indic_cluster (plan, face, buffer, start, end); return;
1217 static inline void
1218 insert_dotted_circles (const hb_ot_shape_plan_t *plan HB_UNUSED,
1219 hb_font_t *font,
1220 hb_buffer_t *buffer)
1222 /* Note: This loop is extra overhead, but should not be measurable. */
1223 bool has_broken_syllables = false;
1224 unsigned int count = buffer->len;
1225 for (unsigned int i = 0; i < count; i++)
1226 if ((buffer->info[i].syllable() & 0x0F) == broken_cluster) {
1227 has_broken_syllables = true;
1228 break;
1230 if (likely (!has_broken_syllables))
1231 return;
1234 hb_codepoint_t dottedcircle_glyph;
1235 if (!font->get_glyph (0x25CC, 0, &dottedcircle_glyph))
1236 return;
1238 hb_glyph_info_t dottedcircle = {0};
1239 dottedcircle.codepoint = 0x25CC;
1240 set_indic_properties (dottedcircle);
1241 dottedcircle.codepoint = dottedcircle_glyph;
1243 buffer->clear_output ();
1245 buffer->idx = 0;
1246 unsigned int last_syllable = 0;
1247 while (buffer->idx < buffer->len)
1249 unsigned int syllable = buffer->cur().syllable();
1250 syllable_type_t syllable_type = (syllable_type_t) (syllable & 0x0F);
1251 if (unlikely (last_syllable != syllable && syllable_type == broken_cluster))
1253 last_syllable = syllable;
1255 hb_glyph_info_t info = dottedcircle;
1256 info.cluster = buffer->cur().cluster;
1257 info.mask = buffer->cur().mask;
1258 info.syllable() = buffer->cur().syllable();
1260 /* Insert dottedcircle after possible Repha. */
1261 while (buffer->idx < buffer->len &&
1262 last_syllable == buffer->cur().syllable() &&
1263 buffer->cur().indic_category() == OT_Repha)
1264 buffer->next_glyph ();
1266 buffer->output_info (info);
1268 else
1269 buffer->next_glyph ();
1272 buffer->swap_buffers ();
1275 static void
1276 initial_reordering (const hb_ot_shape_plan_t *plan,
1277 hb_font_t *font,
1278 hb_buffer_t *buffer)
1280 update_consonant_positions (plan, font, buffer);
1281 insert_dotted_circles (plan, font, buffer);
1283 hb_glyph_info_t *info = buffer->info;
1284 unsigned int count = buffer->len;
1285 if (unlikely (!count)) return;
1286 unsigned int last = 0;
1287 unsigned int last_syllable = info[0].syllable();
1288 for (unsigned int i = 1; i < count; i++)
1289 if (last_syllable != info[i].syllable()) {
1290 initial_reordering_syllable (plan, font->face, buffer, last, i);
1291 last = i;
1292 last_syllable = info[last].syllable();
1294 initial_reordering_syllable (plan, font->face, buffer, last, count);
1297 static void
1298 final_reordering_syllable (const hb_ot_shape_plan_t *plan,
1299 hb_buffer_t *buffer,
1300 unsigned int start, unsigned int end)
1302 const indic_shape_plan_t *indic_plan = (const indic_shape_plan_t *) plan->data;
1303 hb_glyph_info_t *info = buffer->info;
1305 /* 4. Final reordering:
1307 * After the localized forms and basic shaping forms GSUB features have been
1308 * applied (see below), the shaping engine performs some final glyph
1309 * reordering before applying all the remaining font features to the entire
1310 * cluster.
1313 /* Find base again */
1314 unsigned int base;
1315 for (base = start; base < end; base++)
1316 if (info[base].indic_position() >= POS_BASE_C) {
1317 if (start < base && info[base].indic_position() > POS_BASE_C)
1318 base--;
1319 break;
1321 if (base == end && start < base &&
1322 info[base - 1].indic_category() != OT_ZWJ)
1323 base--;
1324 while (start < base &&
1325 (info[base].indic_category() == OT_H ||
1326 info[base].indic_category() == OT_N))
1327 base--;
1330 /* o Reorder matras:
1332 * If a pre-base matra character had been reordered before applying basic
1333 * features, the glyph can be moved closer to the main consonant based on
1334 * whether half-forms had been formed. Actual position for the matra is
1335 * defined as “after last standalone halant glyph, after initial matra
1336 * position and before the main consonant”. If ZWJ or ZWNJ follow this
1337 * halant, position is moved after it.
1340 if (start + 1 < end && start < base) /* Otherwise there can't be any pre-base matra characters. */
1342 /* If we lost track of base, alas, position before last thingy. */
1343 unsigned int new_pos = base == end ? base - 2 : base - 1;
1345 /* Malayalam / Tamil do not have "half" forms or explicit virama forms.
1346 * The glyphs formed by 'half' are Chillus or ligated explicit viramas.
1347 * We want to position matra after them.
1349 if (buffer->props.script != HB_SCRIPT_MALAYALAM && buffer->props.script != HB_SCRIPT_TAMIL)
1351 while (new_pos > start &&
1352 !(is_one_of (info[new_pos], (FLAG (OT_M) | FLAG (OT_H) | FLAG (OT_Coeng)))))
1353 new_pos--;
1355 /* If we found no Halant we are done.
1356 * Otherwise only proceed if the Halant does
1357 * not belong to the Matra itself! */
1358 if (is_halant_or_coeng (info[new_pos]) &&
1359 info[new_pos].indic_position() != POS_PRE_M)
1361 /* -> If ZWJ or ZWNJ follow this halant, position is moved after it. */
1362 if (new_pos + 1 < end && is_joiner (info[new_pos + 1]))
1363 new_pos++;
1365 else
1366 new_pos = start; /* No move. */
1369 if (start < new_pos && info[new_pos].indic_position () != POS_PRE_M)
1371 /* Now go see if there's actually any matras... */
1372 for (unsigned int i = new_pos; i > start; i--)
1373 if (info[i - 1].indic_position () == POS_PRE_M)
1375 unsigned int old_pos = i - 1;
1376 hb_glyph_info_t tmp = info[old_pos];
1377 memmove (&info[old_pos], &info[old_pos + 1], (new_pos - old_pos) * sizeof (info[0]));
1378 info[new_pos] = tmp;
1379 if (old_pos < base && base <= new_pos) /* Shouldn't actually happen. */
1380 base--;
1381 buffer->merge_clusters (new_pos, MIN (end, base + 1));
1382 new_pos--;
1384 } else {
1385 for (unsigned int i = start; i < base; i++)
1386 if (info[i].indic_position () == POS_PRE_M) {
1387 buffer->merge_clusters (i, MIN (end, base + 1));
1388 break;
1394 /* o Reorder reph:
1396 * Reph’s original position is always at the beginning of the syllable,
1397 * (i.e. it is not reordered at the character reordering stage). However,
1398 * it will be reordered according to the basic-forms shaping results.
1399 * Possible positions for reph, depending on the script, are; after main,
1400 * before post-base consonant forms, and after post-base consonant forms.
1403 /* Two cases:
1405 * - If repha is encoded as a sequence of characters (Ra,H or Ra,H,ZWJ), then
1406 * we should only move it if the sequence ligated to the repha form.
1408 * - If repha is encoded separately and in the logical position, we should only
1409 * move it if it did NOT ligate. If it ligated, it's probably the font trying
1410 * to make it work without the reordering.
1412 if (start + 1 < end &&
1413 info[start].indic_position() == POS_RA_TO_BECOME_REPH &&
1414 ((info[start].indic_category() == OT_Repha) ^
1415 _hb_glyph_info_ligated (&info[start])))
1417 unsigned int new_reph_pos;
1418 reph_position_t reph_pos = indic_plan->config->reph_pos;
1420 assert (reph_pos != REPH_POS_DONT_CARE);
1422 /* 1. If reph should be positioned after post-base consonant forms,
1423 * proceed to step 5.
1425 if (reph_pos == REPH_POS_AFTER_POST)
1427 goto reph_step_5;
1430 /* 2. If the reph repositioning class is not after post-base: target
1431 * position is after the first explicit halant glyph between the
1432 * first post-reph consonant and last main consonant. If ZWJ or ZWNJ
1433 * are following this halant, position is moved after it. If such
1434 * position is found, this is the target position. Otherwise,
1435 * proceed to the next step.
1437 * Note: in old-implementation fonts, where classifications were
1438 * fixed in shaping engine, there was no case where reph position
1439 * will be found on this step.
1442 new_reph_pos = start + 1;
1443 while (new_reph_pos < base && !is_halant_or_coeng (info[new_reph_pos]))
1444 new_reph_pos++;
1446 if (new_reph_pos < base && is_halant_or_coeng (info[new_reph_pos]))
1448 /* ->If ZWJ or ZWNJ are following this halant, position is moved after it. */
1449 if (new_reph_pos + 1 < base && is_joiner (info[new_reph_pos + 1]))
1450 new_reph_pos++;
1451 goto reph_move;
1455 /* 3. If reph should be repositioned after the main consonant: find the
1456 * first consonant not ligated with main, or find the first
1457 * consonant that is not a potential pre-base reordering Ra.
1459 if (reph_pos == REPH_POS_AFTER_MAIN)
1461 new_reph_pos = base;
1462 while (new_reph_pos + 1 < end && info[new_reph_pos + 1].indic_position() <= POS_AFTER_MAIN)
1463 new_reph_pos++;
1464 if (new_reph_pos < end)
1465 goto reph_move;
1468 /* 4. If reph should be positioned before post-base consonant, find
1469 * first post-base classified consonant not ligated with main. If no
1470 * consonant is found, the target position should be before the
1471 * first matra, syllable modifier sign or vedic sign.
1473 /* This is our take on what step 4 is trying to say (and failing, BADLY). */
1474 if (reph_pos == REPH_POS_AFTER_SUB)
1476 new_reph_pos = base;
1477 while (new_reph_pos < end &&
1478 !( FLAG (info[new_reph_pos + 1].indic_position()) & (FLAG (POS_POST_C) | FLAG (POS_AFTER_POST) | FLAG (POS_SMVD))))
1479 new_reph_pos++;
1480 if (new_reph_pos < end)
1481 goto reph_move;
1484 /* 5. If no consonant is found in steps 3 or 4, move reph to a position
1485 * immediately before the first post-base matra, syllable modifier
1486 * sign or vedic sign that has a reordering class after the intended
1487 * reph position. For example, if the reordering position for reph
1488 * is post-main, it will skip above-base matras that also have a
1489 * post-main position.
1491 reph_step_5:
1493 /* Copied from step 2. */
1494 new_reph_pos = start + 1;
1495 while (new_reph_pos < base && !is_halant_or_coeng (info[new_reph_pos]))
1496 new_reph_pos++;
1498 if (new_reph_pos < base && is_halant_or_coeng (info[new_reph_pos]))
1500 /* ->If ZWJ or ZWNJ are following this halant, position is moved after it. */
1501 if (new_reph_pos + 1 < base && is_joiner (info[new_reph_pos + 1]))
1502 new_reph_pos++;
1503 goto reph_move;
1507 /* 6. Otherwise, reorder reph to the end of the syllable.
1510 new_reph_pos = end - 1;
1511 while (new_reph_pos > start && info[new_reph_pos].indic_position() == POS_SMVD)
1512 new_reph_pos--;
1515 * If the Reph is to be ending up after a Matra,Halant sequence,
1516 * position it before that Halant so it can interact with the Matra.
1517 * However, if it's a plain Consonant,Halant we shouldn't do that.
1518 * Uniscribe doesn't do this.
1519 * TEST: U+0930,U+094D,U+0915,U+094B,U+094D
1521 if (!hb_options ().uniscribe_bug_compatible &&
1522 unlikely (is_halant_or_coeng (info[new_reph_pos]))) {
1523 for (unsigned int i = base + 1; i < new_reph_pos; i++)
1524 if (info[i].indic_category() == OT_M) {
1525 /* Ok, got it. */
1526 new_reph_pos--;
1529 goto reph_move;
1532 reph_move:
1534 buffer->merge_clusters (start, new_reph_pos + 1);
1536 /* Move */
1537 hb_glyph_info_t reph = info[start];
1538 memmove (&info[start], &info[start + 1], (new_reph_pos - start) * sizeof (info[0]));
1539 info[new_reph_pos] = reph;
1540 if (start < base && base <= new_reph_pos)
1541 base--;
1546 /* o Reorder pre-base reordering consonants:
1548 * If a pre-base reordering consonant is found, reorder it according to
1549 * the following rules:
1552 if (indic_plan->mask_array[PREF] && base + 1 < end) /* Otherwise there can't be any pre-base reordering Ra. */
1554 unsigned int pref_len = indic_plan->config->pref_len;
1555 for (unsigned int i = base + 1; i < end; i++)
1556 if ((info[i].mask & indic_plan->mask_array[PREF]) != 0)
1558 /* 1. Only reorder a glyph produced by substitution during application
1559 * of the <pref> feature. (Note that a font may shape a Ra consonant with
1560 * the feature generally but block it in certain contexts.)
1562 /* Note: We just check that something got substituted. We don't check that
1563 * the <pref> feature actually did it...
1565 * If pref len is longer than one, then only reorder if it ligated. If
1566 * pref len is one, only reorder if it didn't ligate with other things. */
1567 if (_hb_glyph_info_substituted (&info[i]) &&
1568 ((pref_len == 1) ^ _hb_glyph_info_ligated (&info[i])))
1571 * 2. Try to find a target position the same way as for pre-base matra.
1572 * If it is found, reorder pre-base consonant glyph.
1574 * 3. If position is not found, reorder immediately before main
1575 * consonant.
1578 unsigned int new_pos = base;
1579 /* Malayalam / Tamil do not have "half" forms or explicit virama forms.
1580 * The glyphs formed by 'half' are Chillus or ligated explicit viramas.
1581 * We want to position matra after them.
1583 if (buffer->props.script != HB_SCRIPT_MALAYALAM && buffer->props.script != HB_SCRIPT_TAMIL)
1585 while (new_pos > start &&
1586 !(is_one_of (info[new_pos - 1], FLAG(OT_M) | HALANT_OR_COENG_FLAGS)))
1587 new_pos--;
1589 /* In Khmer coeng model, a H,Ra can go *after* matras. If it goes after a
1590 * split matra, it should be reordered to *before* the left part of such matra. */
1591 if (new_pos > start && info[new_pos - 1].indic_category() == OT_M)
1593 unsigned int old_pos = i;
1594 for (unsigned int i = base + 1; i < old_pos; i++)
1595 if (info[i].indic_category() == OT_M)
1597 new_pos--;
1598 break;
1603 if (new_pos > start && is_halant_or_coeng (info[new_pos - 1]))
1605 /* -> If ZWJ or ZWNJ follow this halant, position is moved after it. */
1606 if (new_pos < end && is_joiner (info[new_pos]))
1607 new_pos++;
1611 unsigned int old_pos = i;
1612 buffer->merge_clusters (new_pos, old_pos + 1);
1613 hb_glyph_info_t tmp = info[old_pos];
1614 memmove (&info[new_pos + 1], &info[new_pos], (old_pos - new_pos) * sizeof (info[0]));
1615 info[new_pos] = tmp;
1616 if (new_pos <= base && base < old_pos)
1617 base++;
1621 break;
1626 /* Apply 'init' to the Left Matra if it's a word start. */
1627 if (info[start].indic_position () == POS_PRE_M &&
1628 (!start ||
1629 !(FLAG (_hb_glyph_info_get_general_category (&info[start - 1])) &
1630 FLAG_RANGE (HB_UNICODE_GENERAL_CATEGORY_FORMAT, HB_UNICODE_GENERAL_CATEGORY_NON_SPACING_MARK))))
1631 info[start].mask |= indic_plan->mask_array[INIT];
1635 * Finish off the clusters and go home!
1637 if (hb_options ().uniscribe_bug_compatible)
1639 switch ((hb_tag_t) plan->props.script)
1641 case HB_SCRIPT_TAMIL:
1642 case HB_SCRIPT_SINHALA:
1643 break;
1645 default:
1646 /* Uniscribe merges the entire cluster... Except for Tamil & Sinhala.
1647 * This means, half forms are submerged into the main consonants cluster.
1648 * This is unnecessary, and makes cursor positioning harder, but that's what
1649 * Uniscribe does. */
1650 buffer->merge_clusters (start, end);
1651 break;
1657 static void
1658 final_reordering (const hb_ot_shape_plan_t *plan,
1659 hb_font_t *font HB_UNUSED,
1660 hb_buffer_t *buffer)
1662 unsigned int count = buffer->len;
1663 if (unlikely (!count)) return;
1665 hb_glyph_info_t *info = buffer->info;
1666 unsigned int last = 0;
1667 unsigned int last_syllable = info[0].syllable();
1668 for (unsigned int i = 1; i < count; i++)
1669 if (last_syllable != info[i].syllable()) {
1670 final_reordering_syllable (plan, buffer, last, i);
1671 last = i;
1672 last_syllable = info[last].syllable();
1674 final_reordering_syllable (plan, buffer, last, count);
1676 HB_BUFFER_DEALLOCATE_VAR (buffer, indic_category);
1677 HB_BUFFER_DEALLOCATE_VAR (buffer, indic_position);
1681 static void
1682 clear_syllables (const hb_ot_shape_plan_t *plan HB_UNUSED,
1683 hb_font_t *font HB_UNUSED,
1684 hb_buffer_t *buffer)
1686 hb_glyph_info_t *info = buffer->info;
1687 unsigned int count = buffer->len;
1688 for (unsigned int i = 0; i < count; i++)
1689 info[i].syllable() = 0;
1693 static hb_ot_shape_normalization_mode_t
1694 normalization_preference_indic (const hb_segment_properties_t *props HB_UNUSED)
1696 return HB_OT_SHAPE_NORMALIZATION_MODE_COMPOSED_DIACRITICS_NO_SHORT_CIRCUIT;
1699 static bool
1700 decompose_indic (const hb_ot_shape_normalize_context_t *c,
1701 hb_codepoint_t ab,
1702 hb_codepoint_t *a,
1703 hb_codepoint_t *b)
1705 switch (ab)
1707 /* Don't decompose these. */
1708 case 0x0931 : return false;
1709 case 0x0B94 : return false;
1713 * Decompose split matras that don't have Unicode decompositions.
1716 case 0x0F77 : *a = 0x0FB2; *b= 0x0F81; return true;
1717 case 0x0F79 : *a = 0x0FB3; *b= 0x0F81; return true;
1718 case 0x17BE : *a = 0x17C1; *b= 0x17BE; return true;
1719 case 0x17BF : *a = 0x17C1; *b= 0x17BF; return true;
1720 case 0x17C0 : *a = 0x17C1; *b= 0x17C0; return true;
1721 case 0x17C4 : *a = 0x17C1; *b= 0x17C4; return true;
1722 case 0x17C5 : *a = 0x17C1; *b= 0x17C5; return true;
1723 case 0x1925 : *a = 0x1920; *b= 0x1923; return true;
1724 case 0x1926 : *a = 0x1920; *b= 0x1924; return true;
1725 case 0x1B3C : *a = 0x1B42; *b= 0x1B3C; return true;
1726 case 0x1112E : *a = 0x11127; *b= 0x11131; return true;
1727 case 0x1112F : *a = 0x11127; *b= 0x11132; return true;
1728 #if 0
1729 /* This one has no decomposition in Unicode, but needs no decomposition either. */
1730 /* case 0x0AC9 : return false; */
1731 case 0x0B57 : *a = no decomp, -> RIGHT; return true;
1732 case 0x1C29 : *a = no decomp, -> LEFT; return true;
1733 case 0xA9C0 : *a = no decomp, -> RIGHT; return true;
1734 case 0x111BF : *a = no decomp, -> ABOVE; return true;
1735 #endif
1738 if ((ab == 0x0DDA || hb_in_range<hb_codepoint_t> (ab, 0x0DDC, 0x0DDE)))
1741 * Sinhala split matras... Let the fun begin.
1743 * These four characters have Unicode decompositions. However, Uniscribe
1744 * decomposes them "Khmer-style", that is, it uses the character itself to
1745 * get the second half. The first half of all four decompositions is always
1746 * U+0DD9.
1748 * Now, there are buggy fonts, namely, the widely used lklug.ttf, that are
1749 * broken with Uniscribe. But we need to support them. As such, we only
1750 * do the Uniscribe-style decomposition if the character is transformed into
1751 * its "sec.half" form by the 'pstf' feature. Otherwise, we fall back to
1752 * Unicode decomposition.
1754 * Note that we can't unconditionally use Unicode decomposition. That would
1755 * break some other fonts, that are designed to work with Uniscribe, and
1756 * don't have positioning features for the Unicode-style decomposition.
1758 * Argh...
1760 * The Uniscribe behavior is now documented in the newly published Sinhala
1761 * spec in 2012:
1763 * http://www.microsoft.com/typography/OpenTypeDev/sinhala/intro.htm#shaping
1766 const indic_shape_plan_t *indic_plan = (const indic_shape_plan_t *) c->plan->data;
1768 hb_codepoint_t glyph;
1770 if (hb_options ().uniscribe_bug_compatible ||
1771 (c->font->get_glyph (ab, 0, &glyph) &&
1772 indic_plan->pstf.would_substitute (&glyph, 1, c->font->face)))
1774 /* Ok, safe to use Uniscribe-style decomposition. */
1775 *a = 0x0DD9;
1776 *b = ab;
1777 return true;
1781 return c->unicode->decompose (ab, a, b);
1784 static bool
1785 compose_indic (const hb_ot_shape_normalize_context_t *c,
1786 hb_codepoint_t a,
1787 hb_codepoint_t b,
1788 hb_codepoint_t *ab)
1790 /* Avoid recomposing split matras. */
1791 if (HB_UNICODE_GENERAL_CATEGORY_IS_MARK (c->unicode->general_category (a)))
1792 return false;
1794 /* Composition-exclusion exceptions that we want to recompose. */
1795 if (a == 0x09AF && b == 0x09BC) { *ab = 0x09DF; return true; }
1797 return c->unicode->compose (a, b, ab);
1801 const hb_ot_complex_shaper_t _hb_ot_complex_shaper_indic =
1803 "indic",
1804 collect_features_indic,
1805 override_features_indic,
1806 data_create_indic,
1807 data_destroy_indic,
1808 NULL, /* preprocess_text */
1809 normalization_preference_indic,
1810 decompose_indic,
1811 compose_indic,
1812 setup_masks_indic,
1813 HB_OT_SHAPE_ZERO_WIDTH_MARKS_NONE,
1814 false, /* fallback_position */