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/***************************************************************************/ |
2 |
/* */ |
3 |
/* afcjk.c */ |
4 |
/* */ |
5 |
/* Auto-fitter hinting routines for CJK script (body). */ |
6 |
/* */ |
7 |
/* Copyright 2006 by */ |
8 |
/* David Turner, Robert Wilhelm, and Werner Lemberg. */ |
9 |
/* */ |
10 |
/* This file is part of the FreeType project, and may only be used, */ |
11 |
/* modified, and distributed under the terms of the FreeType project */ |
12 |
/* license, LICENSE.TXT. By continuing to use, modify, or distribute */ |
13 |
/* this file you indicate that you have read the license and */ |
14 |
/* understand and accept it fully. */ |
15 |
/* */ |
16 |
/***************************************************************************/ |
17 |
|
18 |
/* |
19 |
* The algorithm is based on akito's autohint patch, available here: |
20 |
* |
21 |
* http://www.kde.gr.jp/~akito/patch/freetype2/ |
22 |
* |
23 |
*/ |
24 |
|
25 |
#include "aftypes.h" |
26 |
#include "aflatin.h" |
27 |
|
28 |
|
29 |
#ifdef AF_CONFIG_OPTION_CJK |
30 |
|
31 |
#include "afcjk.h" |
32 |
#include "aferrors.h" |
33 |
|
34 |
|
35 |
#ifdef AF_USE_WARPER |
36 |
#include "afwarp.h" |
37 |
#endif |
38 |
|
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|
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/*************************************************************************/ |
41 |
/*************************************************************************/ |
42 |
/***** *****/ |
43 |
/***** C J K G L O B A L M E T R I C S *****/ |
44 |
/***** *****/ |
45 |
/*************************************************************************/ |
46 |
/*************************************************************************/ |
47 |
|
48 |
static FT_Error |
49 |
af_cjk_metrics_init( AF_LatinMetrics metrics, |
50 |
FT_Face face ) |
51 |
{ |
52 |
FT_CharMap oldmap = face->charmap; |
53 |
|
54 |
|
55 |
metrics->units_per_em = face->units_per_EM; |
56 |
|
57 |
/* TODO are there blues? */ |
58 |
|
59 |
if ( FT_Select_Charmap( face, FT_ENCODING_UNICODE ) ) |
60 |
face->charmap = NULL; |
61 |
|
62 |
/* latin's version would suffice */ |
63 |
af_latin_metrics_init_widths( metrics, face, 0x7530 ); |
64 |
|
65 |
FT_Set_Charmap( face, oldmap ); |
66 |
|
67 |
return AF_Err_Ok; |
68 |
} |
69 |
|
70 |
|
71 |
static void |
72 |
af_cjk_metrics_scale_dim( AF_LatinMetrics metrics, |
73 |
AF_Scaler scaler, |
74 |
AF_Dimension dim ) |
75 |
{ |
76 |
AF_LatinAxis axis; |
77 |
|
78 |
|
79 |
axis = &metrics->axis[dim]; |
80 |
|
81 |
if ( dim == AF_DIMENSION_HORZ ) |
82 |
{ |
83 |
axis->scale = scaler->x_scale; |
84 |
axis->delta = scaler->x_delta; |
85 |
} |
86 |
else |
87 |
{ |
88 |
axis->scale = scaler->y_scale; |
89 |
axis->delta = scaler->y_delta; |
90 |
} |
91 |
} |
92 |
|
93 |
|
94 |
static void |
95 |
af_cjk_metrics_scale( AF_LatinMetrics metrics, |
96 |
AF_Scaler scaler ) |
97 |
{ |
98 |
metrics->root.scaler = *scaler; |
99 |
|
100 |
af_cjk_metrics_scale_dim( metrics, scaler, AF_DIMENSION_HORZ ); |
101 |
af_cjk_metrics_scale_dim( metrics, scaler, AF_DIMENSION_VERT ); |
102 |
} |
103 |
|
104 |
|
105 |
/*************************************************************************/ |
106 |
/*************************************************************************/ |
107 |
/***** *****/ |
108 |
/***** C J K G L Y P H A N A L Y S I S *****/ |
109 |
/***** *****/ |
110 |
/*************************************************************************/ |
111 |
/*************************************************************************/ |
112 |
|
113 |
static FT_Error |
114 |
af_cjk_hints_compute_segments( AF_GlyphHints hints, |
115 |
AF_Dimension dim ) |
116 |
{ |
117 |
AF_AxisHints axis = &hints->axis[dim]; |
118 |
AF_Segment segments = axis->segments; |
119 |
AF_Segment segment_limit = segments + axis->num_segments; |
120 |
FT_Error error; |
121 |
AF_Segment seg; |
122 |
|
123 |
|
124 |
error = af_latin_hints_compute_segments( hints, dim ); |
125 |
if ( error ) |
126 |
return error; |
127 |
|
128 |
/* a segment is round if it doesn't have successive */ |
129 |
/* on-curve points. */ |
130 |
for ( seg = segments; seg < segment_limit; seg++ ) |
131 |
{ |
132 |
AF_Point pt = seg->first; |
133 |
AF_Point last = seg->last; |
134 |
AF_Flags f0 = (AF_Flags)(pt->flags & AF_FLAG_CONTROL); |
135 |
AF_Flags f1; |
136 |
|
137 |
|
138 |
seg->flags &= ~AF_EDGE_ROUND; |
139 |
|
140 |
for ( ; pt != last; f0 = f1 ) |
141 |
{ |
142 |
pt = pt->next; |
143 |
f1 = (AF_Flags)(pt->flags & AF_FLAG_CONTROL); |
144 |
|
145 |
if ( !f0 && !f1 ) |
146 |
break; |
147 |
|
148 |
if ( pt == last ) |
149 |
seg->flags |= AF_EDGE_ROUND; |
150 |
} |
151 |
} |
152 |
|
153 |
return AF_Err_Ok; |
154 |
} |
155 |
|
156 |
|
157 |
static void |
158 |
af_cjk_hints_link_segments( AF_GlyphHints hints, |
159 |
AF_Dimension dim ) |
160 |
{ |
161 |
AF_AxisHints axis = &hints->axis[dim]; |
162 |
AF_Segment segments = axis->segments; |
163 |
AF_Segment segment_limit = segments + axis->num_segments; |
164 |
AF_Direction major_dir = axis->major_dir; |
165 |
AF_Segment seg1, seg2; |
166 |
FT_UShort len_threshold; |
167 |
FT_Pos dist_threshold; |
168 |
|
169 |
|
170 |
len_threshold = AF_LATIN_CONSTANT( hints->metrics, 8 ); |
171 |
|
172 |
dist_threshold = ( dim == AF_DIMENSION_HORZ ) ? hints->x_scale |
173 |
: hints->y_scale; |
174 |
dist_threshold = FT_DivFix( 64 * 3, dist_threshold ); |
175 |
|
176 |
/* now compare each segment to the others */ |
177 |
for ( seg1 = segments; seg1 < segment_limit; seg1++ ) |
178 |
{ |
179 |
/* the fake segments are for metrics hinting only */ |
180 |
if ( seg1->first == seg1->last ) |
181 |
continue; |
182 |
|
183 |
if ( seg1->dir != major_dir ) |
184 |
continue; |
185 |
|
186 |
for ( seg2 = segments; seg2 < segment_limit; seg2++ ) |
187 |
if ( seg2 != seg1 && seg1->dir + seg2->dir == 0 ) |
188 |
{ |
189 |
FT_Pos dist = seg2->pos - seg1->pos; |
190 |
|
191 |
|
192 |
if ( dist < 0 ) |
193 |
continue; |
194 |
|
195 |
{ |
196 |
FT_Pos min = seg1->min_coord; |
197 |
FT_Pos max = seg1->max_coord; |
198 |
FT_Pos len; |
199 |
|
200 |
|
201 |
if ( min < seg2->min_coord ) |
202 |
min = seg2->min_coord; |
203 |
|
204 |
if ( max > seg2->max_coord ) |
205 |
max = seg2->max_coord; |
206 |
|
207 |
len = max - min; |
208 |
if ( len >= len_threshold ) |
209 |
{ |
210 |
if ( dist * 8 < seg1->score * 9 && |
211 |
( dist * 8 < seg1->score * 7 || seg1->len < len ) ) |
212 |
{ |
213 |
seg1->score = dist; |
214 |
seg1->len = len; |
215 |
seg1->link = seg2; |
216 |
} |
217 |
|
218 |
if ( dist * 8 < seg2->score * 9 && |
219 |
( dist * 8 < seg2->score * 7 || seg2->len < len ) ) |
220 |
{ |
221 |
seg2->score = dist; |
222 |
seg2->len = len; |
223 |
seg2->link = seg1; |
224 |
} |
225 |
} |
226 |
} |
227 |
} |
228 |
} |
229 |
|
230 |
/* |
231 |
* now compute the `serif' segments |
232 |
* |
233 |
* In Hanzi, some strokes are wider on one or both of the ends. |
234 |
* We either identify the stems on the ends as serifs or remove |
235 |
* the linkage, depending on the length of the stems. |
236 |
* |
237 |
*/ |
238 |
|
239 |
{ |
240 |
AF_Segment link1, link2; |
241 |
|
242 |
|
243 |
for ( seg1 = segments; seg1 < segment_limit; seg1++ ) |
244 |
{ |
245 |
link1 = seg1->link; |
246 |
if ( !link1 || link1->link != seg1 || link1->pos <= seg1->pos ) |
247 |
continue; |
248 |
|
249 |
if ( seg1->score >= dist_threshold ) |
250 |
continue; |
251 |
|
252 |
for ( seg2 = segments; seg2 < segment_limit; seg2++ ) |
253 |
{ |
254 |
if ( seg2->pos > seg1->pos || seg1 == seg2 ) |
255 |
continue; |
256 |
|
257 |
link2 = seg2->link; |
258 |
if ( !link2 || link2->link != seg2 || link2->pos < link1->pos ) |
259 |
continue; |
260 |
|
261 |
if ( seg1->pos == seg2->pos && link1->pos == link2->pos ) |
262 |
continue; |
263 |
|
264 |
if ( seg2->score <= seg1->score || seg1->score * 4 <= seg2->score ) |
265 |
continue; |
266 |
|
267 |
/* seg2 < seg1 < link1 < link2 */ |
268 |
|
269 |
if ( seg1->len >= seg2->len * 3 ) |
270 |
{ |
271 |
AF_Segment seg; |
272 |
|
273 |
|
274 |
for ( seg = segments; seg < segment_limit; seg++ ) |
275 |
{ |
276 |
AF_Segment link = seg->link; |
277 |
|
278 |
|
279 |
if ( link == seg2 ) |
280 |
{ |
281 |
seg->link = 0; |
282 |
seg->serif = link1; |
283 |
} |
284 |
else if ( link == link2 ) |
285 |
{ |
286 |
seg->link = 0; |
287 |
seg->serif = seg1; |
288 |
} |
289 |
} |
290 |
} |
291 |
else |
292 |
{ |
293 |
seg1->link = link1->link = 0; |
294 |
|
295 |
break; |
296 |
} |
297 |
} |
298 |
} |
299 |
} |
300 |
|
301 |
for ( seg1 = segments; seg1 < segment_limit; seg1++ ) |
302 |
{ |
303 |
seg2 = seg1->link; |
304 |
|
305 |
if ( seg2 ) |
306 |
{ |
307 |
seg2->num_linked++; |
308 |
if ( seg2->link != seg1 ) |
309 |
{ |
310 |
seg1->link = 0; |
311 |
|
312 |
if ( seg2->score < dist_threshold || seg1->score < seg2->score * 4 ) |
313 |
seg1->serif = seg2->link; |
314 |
else |
315 |
seg2->num_linked--; |
316 |
} |
317 |
} |
318 |
} |
319 |
} |
320 |
|
321 |
|
322 |
static FT_Error |
323 |
af_cjk_hints_compute_edges( AF_GlyphHints hints, |
324 |
AF_Dimension dim ) |
325 |
{ |
326 |
AF_AxisHints axis = &hints->axis[dim]; |
327 |
FT_Error error = AF_Err_Ok; |
328 |
FT_Memory memory = hints->memory; |
329 |
AF_LatinAxis laxis = &((AF_LatinMetrics)hints->metrics)->axis[dim]; |
330 |
|
331 |
AF_Segment segments = axis->segments; |
332 |
AF_Segment segment_limit = segments + axis->num_segments; |
333 |
AF_Segment seg; |
334 |
|
335 |
AF_Direction up_dir; |
336 |
FT_Fixed scale; |
337 |
FT_Pos edge_distance_threshold; |
338 |
|
339 |
|
340 |
axis->num_edges = 0; |
341 |
|
342 |
scale = ( dim == AF_DIMENSION_HORZ ) ? hints->x_scale |
343 |
: hints->y_scale; |
344 |
|
345 |
up_dir = ( dim == AF_DIMENSION_HORZ ) ? AF_DIR_UP |
346 |
: AF_DIR_RIGHT; |
347 |
|
348 |
/*********************************************************************/ |
349 |
/* */ |
350 |
/* We begin by generating a sorted table of edges for the current */ |
351 |
/* direction. To do so, we simply scan each segment and try to find */ |
352 |
/* an edge in our table that corresponds to its position. */ |
353 |
/* */ |
354 |
/* If no edge is found, we create and insert a new edge in the */ |
355 |
/* sorted table. Otherwise, we simply add the segment to the edge's */ |
356 |
/* list which is then processed in the second step to compute the */ |
357 |
/* edge's properties. */ |
358 |
/* */ |
359 |
/* Note that the edges table is sorted along the segment/edge */ |
360 |
/* position. */ |
361 |
/* */ |
362 |
/*********************************************************************/ |
363 |
|
364 |
edge_distance_threshold = FT_MulFix( laxis->edge_distance_threshold, |
365 |
scale ); |
366 |
if ( edge_distance_threshold > 64 / 4 ) |
367 |
edge_distance_threshold = FT_DivFix( 64 / 4, scale ); |
368 |
else |
369 |
edge_distance_threshold = laxis->edge_distance_threshold; |
370 |
|
371 |
for ( seg = segments; seg < segment_limit; seg++ ) |
372 |
{ |
373 |
AF_Edge found = 0; |
374 |
FT_Pos best = 0xFFFFU; |
375 |
FT_Int ee; |
376 |
|
377 |
|
378 |
/* look for an edge corresponding to the segment */ |
379 |
for ( ee = 0; ee < axis->num_edges; ee++ ) |
380 |
{ |
381 |
AF_Edge edge = axis->edges + ee; |
382 |
FT_Pos dist; |
383 |
|
384 |
|
385 |
if ( edge->dir != seg->dir ) |
386 |
continue; |
387 |
|
388 |
dist = seg->pos - edge->fpos; |
389 |
if ( dist < 0 ) |
390 |
dist = -dist; |
391 |
|
392 |
if ( dist < edge_distance_threshold && dist < best ) |
393 |
{ |
394 |
AF_Segment link = seg->link; |
395 |
|
396 |
|
397 |
/* check whether all linked segments of the candidate edge */ |
398 |
/* can make a single edge. */ |
399 |
if ( link ) |
400 |
{ |
401 |
AF_Segment seg1 = edge->first; |
402 |
AF_Segment link1; |
403 |
FT_Pos dist2 = 0; |
404 |
|
405 |
|
406 |
do |
407 |
{ |
408 |
link1 = seg1->link; |
409 |
if ( link1 ) |
410 |
{ |
411 |
dist2 = AF_SEGMENT_DIST( link, link1 ); |
412 |
if ( dist2 >= edge_distance_threshold ) |
413 |
break; |
414 |
} |
415 |
|
416 |
} while ( ( seg1 = seg1->edge_next ) != edge->first ); |
417 |
|
418 |
if ( dist2 >= edge_distance_threshold ) |
419 |
continue; |
420 |
} |
421 |
|
422 |
best = dist; |
423 |
found = edge; |
424 |
} |
425 |
} |
426 |
|
427 |
if ( !found ) |
428 |
{ |
429 |
AF_Edge edge; |
430 |
|
431 |
|
432 |
/* insert a new edge in the list and */ |
433 |
/* sort according to the position */ |
434 |
error = af_axis_hints_new_edge( axis, seg->pos, memory, &edge ); |
435 |
if ( error ) |
436 |
goto Exit; |
437 |
|
438 |
/* add the segment to the new edge's list */ |
439 |
FT_ZERO( edge ); |
440 |
|
441 |
edge->first = seg; |
442 |
edge->last = seg; |
443 |
edge->fpos = seg->pos; |
444 |
edge->opos = edge->pos = FT_MulFix( seg->pos, scale ); |
445 |
seg->edge_next = seg; |
446 |
edge->dir = seg->dir; |
447 |
} |
448 |
else |
449 |
{ |
450 |
/* if an edge was found, simply add the segment to the edge's */ |
451 |
/* list */ |
452 |
seg->edge_next = found->first; |
453 |
found->last->edge_next = seg; |
454 |
found->last = seg; |
455 |
} |
456 |
} |
457 |
|
458 |
/*********************************************************************/ |
459 |
/* */ |
460 |
/* Good, we now compute each edge's properties according to segments */ |
461 |
/* found on its position. Basically, these are as follows. */ |
462 |
/* */ |
463 |
/* - edge's main direction */ |
464 |
/* - stem edge, serif edge or both (which defaults to stem then) */ |
465 |
/* - rounded edge, straight or both (which defaults to straight) */ |
466 |
/* - link for edge */ |
467 |
/* */ |
468 |
/*********************************************************************/ |
469 |
|
470 |
/* first of all, set the `edge' field in each segment -- this is */ |
471 |
/* required in order to compute edge links */ |
472 |
/* */ |
473 |
/* Note that removing this loop and setting the `edge' field of each */ |
474 |
/* segment directly in the code above slows down execution speed for */ |
475 |
/* some reasons on platforms like the Sun. */ |
476 |
|
477 |
{ |
478 |
AF_Edge edges = axis->edges; |
479 |
AF_Edge edge_limit = edges + axis->num_edges; |
480 |
AF_Edge edge; |
481 |
|
482 |
|
483 |
for ( edge = edges; edge < edge_limit; edge++ ) |
484 |
{ |
485 |
seg = edge->first; |
486 |
if ( seg ) |
487 |
do |
488 |
{ |
489 |
seg->edge = edge; |
490 |
seg = seg->edge_next; |
491 |
|
492 |
} while ( seg != edge->first ); |
493 |
} |
494 |
|
495 |
/* now compute each edge properties */ |
496 |
for ( edge = edges; edge < edge_limit; edge++ ) |
497 |
{ |
498 |
FT_Int is_round = 0; /* does it contain round segments? */ |
499 |
FT_Int is_straight = 0; /* does it contain straight segments? */ |
500 |
|
501 |
|
502 |
seg = edge->first; |
503 |
|
504 |
do |
505 |
{ |
506 |
FT_Bool is_serif; |
507 |
|
508 |
|
509 |
/* check for roundness of segment */ |
510 |
if ( seg->flags & AF_EDGE_ROUND ) |
511 |
is_round++; |
512 |
else |
513 |
is_straight++; |
514 |
|
515 |
/* check for links -- if seg->serif is set, then seg->link must */ |
516 |
/* be ignored */ |
517 |
is_serif = (FT_Bool)( seg->serif && seg->serif->edge != edge ); |
518 |
|
519 |
if ( seg->link || is_serif ) |
520 |
{ |
521 |
AF_Edge edge2; |
522 |
AF_Segment seg2; |
523 |
|
524 |
|
525 |
edge2 = edge->link; |
526 |
seg2 = seg->link; |
527 |
|
528 |
if ( is_serif ) |
529 |
{ |
530 |
seg2 = seg->serif; |
531 |
edge2 = edge->serif; |
532 |
} |
533 |
|
534 |
if ( edge2 ) |
535 |
{ |
536 |
FT_Pos edge_delta; |
537 |
FT_Pos seg_delta; |
538 |
|
539 |
|
540 |
edge_delta = edge->fpos - edge2->fpos; |
541 |
if ( edge_delta < 0 ) |
542 |
edge_delta = -edge_delta; |
543 |
|
544 |
seg_delta = AF_SEGMENT_DIST( seg, seg2 ); |
545 |
|
546 |
if ( seg_delta < edge_delta ) |
547 |
edge2 = seg2->edge; |
548 |
} |
549 |
else |
550 |
edge2 = seg2->edge; |
551 |
|
552 |
if ( is_serif ) |
553 |
{ |
554 |
edge->serif = edge2; |
555 |
edge2->flags |= AF_EDGE_SERIF; |
556 |
} |
557 |
else |
558 |
edge->link = edge2; |
559 |
} |
560 |
|
561 |
seg = seg->edge_next; |
562 |
|
563 |
} while ( seg != edge->first ); |
564 |
|
565 |
/* set the round/straight flags */ |
566 |
edge->flags = AF_EDGE_NORMAL; |
567 |
|
568 |
if ( is_round > 0 && is_round >= is_straight ) |
569 |
edge->flags |= AF_EDGE_ROUND; |
570 |
|
571 |
/* get rid of serifs if link is set */ |
572 |
/* XXX: This gets rid of many unpleasant artefacts! */ |
573 |
/* Example: the `c' in cour.pfa at size 13 */ |
574 |
|
575 |
if ( edge->serif && edge->link ) |
576 |
edge->serif = 0; |
577 |
} |
578 |
} |
579 |
|
580 |
Exit: |
581 |
return error; |
582 |
} |
583 |
|
584 |
|
585 |
static FT_Error |
586 |
af_cjk_hints_detect_features( AF_GlyphHints hints, |
587 |
AF_Dimension dim ) |
588 |
{ |
589 |
FT_Error error; |
590 |
|
591 |
|
592 |
error = af_cjk_hints_compute_segments( hints, dim ); |
593 |
if ( !error ) |
594 |
{ |
595 |
af_cjk_hints_link_segments( hints, dim ); |
596 |
|
597 |
error = af_cjk_hints_compute_edges( hints, dim ); |
598 |
} |
599 |
return error; |
600 |
} |
601 |
|
602 |
|
603 |
static FT_Error |
604 |
af_cjk_hints_init( AF_GlyphHints hints, |
605 |
AF_LatinMetrics metrics ) |
606 |
{ |
607 |
FT_Render_Mode mode; |
608 |
FT_UInt32 scaler_flags, other_flags; |
609 |
|
610 |
|
611 |
af_glyph_hints_rescale( hints, (AF_ScriptMetrics)metrics ); |
612 |
|
613 |
/* |
614 |
* correct x_scale and y_scale when needed, since they may have |
615 |
* been modified af_cjk_scale_dim above |
616 |
*/ |
617 |
hints->x_scale = metrics->axis[AF_DIMENSION_HORZ].scale; |
618 |
hints->x_delta = metrics->axis[AF_DIMENSION_HORZ].delta; |
619 |
hints->y_scale = metrics->axis[AF_DIMENSION_VERT].scale; |
620 |
hints->y_delta = metrics->axis[AF_DIMENSION_VERT].delta; |
621 |
|
622 |
/* compute flags depending on render mode, etc. */ |
623 |
mode = metrics->root.scaler.render_mode; |
624 |
|
625 |
#ifdef AF_USE_WARPER |
626 |
if ( mode == FT_RENDER_MODE_LCD || mode == FT_RENDER_MODE_LCD_V ) |
627 |
metrics->root.scaler.render_mode = mode = FT_RENDER_MODE_NORMAL; |
628 |
#endif |
629 |
|
630 |
scaler_flags = hints->scaler_flags; |
631 |
other_flags = 0; |
632 |
|
633 |
/* |
634 |
* We snap the width of vertical stems for the monochrome and |
635 |
* horizontal LCD rendering targets only. |
636 |
*/ |
637 |
if ( mode == FT_RENDER_MODE_MONO || mode == FT_RENDER_MODE_LCD ) |
638 |
other_flags |= AF_LATIN_HINTS_HORZ_SNAP; |
639 |
|
640 |
/* |
641 |
* We snap the width of horizontal stems for the monochrome and |
642 |
* vertical LCD rendering targets only. |
643 |
*/ |
644 |
if ( mode == FT_RENDER_MODE_MONO || mode == FT_RENDER_MODE_LCD_V ) |
645 |
other_flags |= AF_LATIN_HINTS_VERT_SNAP; |
646 |
|
647 |
/* |
648 |
* We adjust stems to full pixels only if we don't use the `light' mode. |
649 |
*/ |
650 |
if ( mode != FT_RENDER_MODE_LIGHT ) |
651 |
other_flags |= AF_LATIN_HINTS_STEM_ADJUST; |
652 |
|
653 |
if ( mode == FT_RENDER_MODE_MONO ) |
654 |
other_flags |= AF_LATIN_HINTS_MONO; |
655 |
|
656 |
scaler_flags |= AF_SCALER_FLAG_NO_ADVANCE; |
657 |
|
658 |
hints->scaler_flags = scaler_flags; |
659 |
hints->other_flags = other_flags; |
660 |
|
661 |
return 0; |
662 |
} |
663 |
|
664 |
|
665 |
/*************************************************************************/ |
666 |
/*************************************************************************/ |
667 |
/***** *****/ |
668 |
/***** C J K G L Y P H G R I D - F I T T I N G *****/ |
669 |
/***** *****/ |
670 |
/*************************************************************************/ |
671 |
/*************************************************************************/ |
672 |
|
673 |
/* snap a given width in scaled coordinates to one of the */ |
674 |
/* current standard widths */ |
675 |
|
676 |
static FT_Pos |
677 |
af_cjk_snap_width( AF_Width widths, |
678 |
FT_Int count, |
679 |
FT_Pos width ) |
680 |
{ |
681 |
int n; |
682 |
FT_Pos best = 64 + 32 + 2; |
683 |
FT_Pos reference = width; |
684 |
FT_Pos scaled; |
685 |
|
686 |
|
687 |
for ( n = 0; n < count; n++ ) |
688 |
{ |
689 |
FT_Pos w; |
690 |
FT_Pos dist; |
691 |
|
692 |
|
693 |
w = widths[n].cur; |
694 |
dist = width - w; |
695 |
if ( dist < 0 ) |
696 |
dist = -dist; |
697 |
if ( dist < best ) |
698 |
{ |
699 |
best = dist; |
700 |
reference = w; |
701 |
} |
702 |
} |
703 |
|
704 |
scaled = FT_PIX_ROUND( reference ); |
705 |
|
706 |
if ( width >= reference ) |
707 |
{ |
708 |
if ( width < scaled + 48 ) |
709 |
width = reference; |
710 |
} |
711 |
else |
712 |
{ |
713 |
if ( width > scaled - 48 ) |
714 |
width = reference; |
715 |
} |
716 |
|
717 |
return width; |
718 |
} |
719 |
|
720 |
|
721 |
/* compute the snapped width of a given stem */ |
722 |
|
723 |
static FT_Pos |
724 |
af_cjk_compute_stem_width( AF_GlyphHints hints, |
725 |
AF_Dimension dim, |
726 |
FT_Pos width, |
727 |
AF_Edge_Flags base_flags, |
728 |
AF_Edge_Flags stem_flags ) |
729 |
{ |
730 |
AF_LatinMetrics metrics = (AF_LatinMetrics) hints->metrics; |
731 |
AF_LatinAxis axis = & metrics->axis[dim]; |
732 |
FT_Pos dist = width; |
733 |
FT_Int sign = 0; |
734 |
FT_Int vertical = ( dim == AF_DIMENSION_VERT ); |
735 |
|
736 |
FT_UNUSED( base_flags ); |
737 |
FT_UNUSED( stem_flags ); |
738 |
|
739 |
|
740 |
if ( !AF_LATIN_HINTS_DO_STEM_ADJUST( hints ) ) |
741 |
return width; |
742 |
|
743 |
if ( dist < 0 ) |
744 |
{ |
745 |
dist = -width; |
746 |
sign = 1; |
747 |
} |
748 |
|
749 |
if ( ( vertical && !AF_LATIN_HINTS_DO_VERT_SNAP( hints ) ) || |
750 |
( !vertical && !AF_LATIN_HINTS_DO_HORZ_SNAP( hints ) ) ) |
751 |
{ |
752 |
/* smooth hinting process: very lightly quantize the stem width */ |
753 |
|
754 |
if ( axis->width_count > 0 ) |
755 |
{ |
756 |
if ( FT_ABS( dist - axis->widths[0].cur ) < 40 ) |
757 |
{ |
758 |
dist = axis->widths[0].cur; |
759 |
if ( dist < 48 ) |
760 |
dist = 48; |
761 |
|
762 |
goto Done_Width; |
763 |
} |
764 |
} |
765 |
|
766 |
if ( dist < 54 ) |
767 |
dist += ( 54 - dist ) / 2 ; |
768 |
else if ( dist < 3 * 64 ) |
769 |
{ |
770 |
FT_Pos delta; |
771 |
|
772 |
|
773 |
delta = dist & 63; |
774 |
dist &= -64; |
775 |
|
776 |
if ( delta < 10 ) |
777 |
dist += delta; |
778 |
else if ( delta < 22 ) |
779 |
dist += 10; |
780 |
else if ( delta < 42 ) |
781 |
dist += delta; |
782 |
else if ( delta < 54 ) |
783 |
dist += 54; |
784 |
else |
785 |
dist += delta; |
786 |
} |
787 |
} |
788 |
else |
789 |
{ |
790 |
/* strong hinting process: snap the stem width to integer pixels */ |
791 |
|
792 |
dist = af_cjk_snap_width( axis->widths, axis->width_count, dist ); |
793 |
|
794 |
if ( vertical ) |
795 |
{ |
796 |
/* in the case of vertical hinting, always round */ |
797 |
/* the stem heights to integer pixels */ |
798 |
|
799 |
if ( dist >= 64 ) |
800 |
dist = ( dist + 16 ) & ~63; |
801 |
else |
802 |
dist = 64; |
803 |
} |
804 |
else |
805 |
{ |
806 |
if ( AF_LATIN_HINTS_DO_MONO( hints ) ) |
807 |
{ |
808 |
/* monochrome horizontal hinting: snap widths to integer pixels */ |
809 |
/* with a different threshold */ |
810 |
|
811 |
if ( dist < 64 ) |
812 |
dist = 64; |
813 |
else |
814 |
dist = ( dist + 32 ) & ~63; |
815 |
} |
816 |
else |
817 |
{ |
818 |
/* for horizontal anti-aliased hinting, we adopt a more subtle */ |
819 |
/* approach: we strengthen small stems, round stems whose size */ |
820 |
/* is between 1 and 2 pixels to an integer, otherwise nothing */ |
821 |
|
822 |
if ( dist < 48 ) |
823 |
dist = ( dist + 64 ) >> 1; |
824 |
|
825 |
else if ( dist < 128 ) |
826 |
dist = ( dist + 22 ) & ~63; |
827 |
else |
828 |
/* round otherwise to prevent color fringes in LCD mode */ |
829 |
dist = ( dist + 32 ) & ~63; |
830 |
} |
831 |
} |
832 |
} |
833 |
|
834 |
Done_Width: |
835 |
if ( sign ) |
836 |
dist = -dist; |
837 |
|
838 |
return dist; |
839 |
} |
840 |
|
841 |
|
842 |
/* align one stem edge relative to the previous stem edge */ |
843 |
|
844 |
static void |
845 |
af_cjk_align_linked_edge( AF_GlyphHints hints, |
846 |
AF_Dimension dim, |
847 |
AF_Edge base_edge, |
848 |
AF_Edge stem_edge ) |
849 |
{ |
850 |
FT_Pos dist = stem_edge->opos - base_edge->opos; |
851 |
|
852 |
FT_Pos fitted_width = af_cjk_compute_stem_width( |
853 |
hints, dim, dist, |
854 |
(AF_Edge_Flags)base_edge->flags, |
855 |
(AF_Edge_Flags)stem_edge->flags ); |
856 |
|
857 |
|
858 |
stem_edge->pos = base_edge->pos + fitted_width; |
859 |
} |
860 |
|
861 |
|
862 |
static void |
863 |
af_cjk_align_serif_edge( AF_GlyphHints hints, |
864 |
AF_Edge base, |
865 |
AF_Edge serif ) |
866 |
{ |
867 |
FT_UNUSED( hints ); |
868 |
|
869 |
serif->pos = base->pos + ( serif->opos - base->opos ); |
870 |
} |
871 |
|
872 |
|
873 |
/*************************************************************************/ |
874 |
/*************************************************************************/ |
875 |
/*************************************************************************/ |
876 |
/**** ****/ |
877 |
/**** E D G E H I N T I N G ****/ |
878 |
/**** ****/ |
879 |
/*************************************************************************/ |
880 |
/*************************************************************************/ |
881 |
/*************************************************************************/ |
882 |
|
883 |
|
884 |
#define AF_LIGHT_MODE_MAX_HORZ_GAP 9 |
885 |
#define AF_LIGHT_MODE_MAX_VERT_GAP 15 |
886 |
#define AF_LIGHT_MODE_MAX_DELTA_ABS 14 |
887 |
|
888 |
|
889 |
static FT_Pos |
890 |
af_hint_normal_stem( AF_GlyphHints hints, |
891 |
AF_Edge edge, |
892 |
AF_Edge edge2, |
893 |
FT_Pos anchor, |
894 |
AF_Dimension dim ) |
895 |
{ |
896 |
FT_Pos org_len, cur_len, org_center; |
897 |
FT_Pos cur_pos1, cur_pos2; |
898 |
FT_Pos d_off1, u_off1, d_off2, u_off2, delta; |
899 |
FT_Pos offset; |
900 |
FT_Pos threshold = 64; |
901 |
|
902 |
|
903 |
if ( !AF_LATIN_HINTS_DO_STEM_ADJUST( hints ) ) |
904 |
{ |
905 |
if ( ( edge->flags & AF_EDGE_ROUND ) && |
906 |
( edge2->flags & AF_EDGE_ROUND ) ) |
907 |
{ |
908 |
if ( dim == AF_DIMENSION_VERT ) |
909 |
threshold = 64 - AF_LIGHT_MODE_MAX_HORZ_GAP; |
910 |
else |
911 |
threshold = 64 - AF_LIGHT_MODE_MAX_VERT_GAP; |
912 |
} |
913 |
else |
914 |
{ |
915 |
if ( dim == AF_DIMENSION_VERT ) |
916 |
threshold = 64 - AF_LIGHT_MODE_MAX_HORZ_GAP / 3; |
917 |
else |
918 |
threshold = 64 - AF_LIGHT_MODE_MAX_VERT_GAP / 3; |
919 |
} |
920 |
} |
921 |
|
922 |
org_len = edge2->opos - edge->opos; |
923 |
cur_len = af_cjk_compute_stem_width( hints, dim, org_len, |
924 |
(AF_Edge_Flags)edge->flags, |
925 |
(AF_Edge_Flags)edge2->flags ); |
926 |
|
927 |
org_center = ( edge->opos + edge2->opos ) / 2 + anchor; |
928 |
cur_pos1 = org_center - cur_len / 2; |
929 |
cur_pos2 = cur_pos1 + cur_len; |
930 |
d_off1 = cur_pos1 - FT_PIX_FLOOR( cur_pos1 ); |
931 |
d_off2 = cur_pos2 - FT_PIX_FLOOR( cur_pos2 ); |
932 |
u_off1 = 64 - d_off1; |
933 |
u_off2 = 64 - d_off2; |
934 |
delta = 0; |
935 |
|
936 |
|
937 |
if ( d_off1 == 0 || d_off2 == 0 ) |
938 |
goto Exit; |
939 |
|
940 |
if ( cur_len <= threshold ) |
941 |
{ |
942 |
if ( d_off2 < cur_len ) |
943 |
{ |
944 |
if ( u_off1 <= d_off2 ) |
945 |
delta = u_off1; |
946 |
else |
947 |
delta = -d_off2; |
948 |
} |
949 |
|
950 |
goto Exit; |
951 |
} |
952 |
|
953 |
if ( threshold < 64 ) |
954 |
{ |
955 |
if ( d_off1 >= threshold || u_off1 >= threshold || |
956 |
d_off2 >= threshold || u_off2 >= threshold ) |
957 |
goto Exit; |
958 |
} |
959 |
|
960 |
offset = cur_len % 64; |
961 |
|
962 |
if ( offset < 32 ) |
963 |
{ |
964 |
if ( u_off1 <= offset || d_off2 <= offset ) |
965 |
goto Exit; |
966 |
} |
967 |
else |
968 |
offset = 64 - threshold; |
969 |
|
970 |
d_off1 = threshold - u_off1; |
971 |
u_off1 = u_off1 - offset; |
972 |
u_off2 = threshold - d_off2; |
973 |
d_off2 = d_off2 - offset; |
974 |
|
975 |
if ( d_off1 <= u_off1 ) |
976 |
u_off1 = -d_off1; |
977 |
|
978 |
if ( d_off2 <= u_off2 ) |
979 |
u_off2 = -d_off2; |
980 |
|
981 |
if ( FT_ABS( u_off1 ) <= FT_ABS( u_off2 ) ) |
982 |
delta = u_off1; |
983 |
else |
984 |
delta = u_off2; |
985 |
|
986 |
Exit: |
987 |
|
988 |
#if 1 |
989 |
if ( !AF_LATIN_HINTS_DO_STEM_ADJUST( hints ) ) |
990 |
{ |
991 |
if ( delta > AF_LIGHT_MODE_MAX_DELTA_ABS ) |
992 |
delta = AF_LIGHT_MODE_MAX_DELTA_ABS; |
993 |
else if ( delta < -AF_LIGHT_MODE_MAX_DELTA_ABS ) |
994 |
delta = -AF_LIGHT_MODE_MAX_DELTA_ABS; |
995 |
} |
996 |
#endif |
997 |
|
998 |
cur_pos1 += delta; |
999 |
|
1000 |
if ( edge->opos < edge2->opos ) |
1001 |
{ |
1002 |
edge->pos = cur_pos1; |
1003 |
edge2->pos = cur_pos1 + cur_len; |
1004 |
} |
1005 |
else |
1006 |
{ |
1007 |
edge->pos = cur_pos1 + cur_len; |
1008 |
edge2->pos = cur_pos1; |
1009 |
} |
1010 |
|
1011 |
return delta; |
1012 |
} |
1013 |
|
1014 |
|
1015 |
static void |
1016 |
af_cjk_hint_edges( AF_GlyphHints hints, |
1017 |
AF_Dimension dim ) |
1018 |
{ |
1019 |
AF_AxisHints axis = &hints->axis[dim]; |
1020 |
AF_Edge edges = axis->edges; |
1021 |
AF_Edge edge_limit = edges + axis->num_edges; |
1022 |
FT_Int n_edges; |
1023 |
AF_Edge edge; |
1024 |
AF_Edge anchor = 0; |
1025 |
FT_Pos delta = 0; |
1026 |
FT_Int skipped = 0; |
1027 |
|
1028 |
|
1029 |
/* now we align all stem edges. */ |
1030 |
for ( edge = edges; edge < edge_limit; edge++ ) |
1031 |
{ |
1032 |
AF_Edge edge2; |
1033 |
|
1034 |
|
1035 |
if ( edge->flags & AF_EDGE_DONE ) |
1036 |
continue; |
1037 |
|
1038 |
/* skip all non-stem edges */ |
1039 |
edge2 = edge->link; |
1040 |
if ( !edge2 ) |
1041 |
{ |
1042 |
skipped++; |
1043 |
continue; |
1044 |
} |
1045 |
|
1046 |
/* now align the stem */ |
1047 |
|
1048 |
if ( edge2 < edge ) |
1049 |
{ |
1050 |
af_cjk_align_linked_edge( hints, dim, edge2, edge ); |
1051 |
edge->flags |= AF_EDGE_DONE; |
1052 |
continue; |
1053 |
} |
1054 |
|
1055 |
if ( dim != AF_DIMENSION_VERT && !anchor ) |
1056 |
{ |
1057 |
|
1058 |
#if 0 |
1059 |
if ( fixedpitch ) |
1060 |
{ |
1061 |
AF_Edge left = edge; |
1062 |
AF_Edge right = edge_limit - 1; |
1063 |
AF_EdgeRec left1, left2, right1, right2; |
1064 |
FT_Pos target, center1, center2; |
1065 |
FT_Pos delta1, delta2, d1, d2; |
1066 |
|
1067 |
|
1068 |
while ( right > left && !right->link ) |
1069 |
right--; |
1070 |
|
1071 |
left1 = *left; |
1072 |
left2 = *left->link; |
1073 |
right1 = *right->link; |
1074 |
right2 = *right; |
1075 |
|
1076 |
delta = ( ( ( hinter->pp2.x + 32 ) & -64 ) - hinter->pp2.x ) / 2; |
1077 |
target = left->opos + ( right->opos - left->opos ) / 2 + delta - 16; |
1078 |
|
1079 |
delta1 = delta; |
1080 |
delta1 += af_hint_normal_stem( hints, left, left->link, |
1081 |
delta1, 0 ); |
1082 |
|
1083 |
if ( left->link != right ) |
1084 |
af_hint_normal_stem( hints, right->link, right, delta1, 0 ); |
1085 |
|
1086 |
center1 = left->pos + ( right->pos - left->pos ) / 2; |
1087 |
|
1088 |
if ( center1 >= target ) |
1089 |
delta2 = delta - 32; |
1090 |
else |
1091 |
delta2 = delta + 32; |
1092 |
|
1093 |
delta2 += af_hint_normal_stem( hints, &left1, &left2, delta2, 0 ); |
1094 |
|
1095 |
if ( delta1 != delta2 ) |
1096 |
{ |
1097 |
if ( left->link != right ) |
1098 |
af_hint_normal_stem( hints, &right1, &right2, delta2, 0 ); |
1099 |
|
1100 |
center2 = left1.pos + ( right2.pos - left1.pos ) / 2; |
1101 |
|
1102 |
d1 = center1 - target; |
1103 |
d2 = center2 - target; |
1104 |
|
1105 |
if ( FT_ABS( d2 ) < FT_ABS( d1 ) ) |
1106 |
{ |
1107 |
left->pos = left1.pos; |
1108 |
left->link->pos = left2.pos; |
1109 |
|
1110 |
if ( left->link != right ) |
1111 |
{ |
1112 |
right->link->pos = right1.pos; |
1113 |
right->pos = right2.pos; |
1114 |
} |
1115 |
|
1116 |
delta1 = delta2; |
1117 |
} |
1118 |
} |
1119 |
|
1120 |
delta = delta1; |
1121 |
right->link->flags |= AF_EDGE_DONE; |
1122 |
right->flags |= AF_EDGE_DONE; |
1123 |
} |
1124 |
else |
1125 |
|
1126 |
#endif /* 0 */ |
1127 |
|
1128 |
delta = af_hint_normal_stem( hints, edge, edge2, 0, |
1129 |
AF_DIMENSION_HORZ ); |
1130 |
} |
1131 |
else |
1132 |
af_hint_normal_stem( hints, edge, edge2, delta, dim ); |
1133 |
|
1134 |
#if 0 |
1135 |
printf( "stem (%d,%d) adjusted (%.1f,%.1f)\n", |
1136 |
edge - edges, edge2 - edges, |
1137 |
( edge->pos - edge->opos ) / 64.0, |
1138 |
( edge2->pos - edge2->opos ) / 64.0 ); |
1139 |
#endif |
1140 |
|
1141 |
anchor = edge; |
1142 |
edge->flags |= AF_EDGE_DONE; |
1143 |
edge2->flags |= AF_EDGE_DONE; |
1144 |
} |
1145 |
|
1146 |
/* make sure that lowercase m's maintain their symmetry */ |
1147 |
|
1148 |
/* In general, lowercase m's have six vertical edges if they are sans */ |
1149 |
/* serif, or twelve if they are with serifs. This implementation is */ |
1150 |
/* based on that assumption, and seems to work very well with most */ |
1151 |
/* faces. However, if for a certain face this assumption is not */ |
1152 |
/* true, the m is just rendered like before. In addition, any stem */ |
1153 |
/* correction will only be applied to symmetrical glyphs (even if the */ |
1154 |
/* glyph is not an m), so the potential for unwanted distortion is */ |
1155 |
/* relatively low. */ |
1156 |
|
1157 |
/* We don't handle horizontal edges since we can't easily assure that */ |
1158 |
/* the third (lowest) stem aligns with the base line; it might end up */ |
1159 |
/* one pixel higher or lower. */ |
1160 |
|
1161 |
n_edges = edge_limit - edges; |
1162 |
if ( dim == AF_DIMENSION_HORZ && ( n_edges == 6 || n_edges == 12 ) ) |
1163 |
{ |
1164 |
AF_Edge edge1, edge2, edge3; |
1165 |
FT_Pos dist1, dist2, span; |
1166 |
|
1167 |
|
1168 |
if ( n_edges == 6 ) |
1169 |
{ |
1170 |
edge1 = edges; |
1171 |
edge2 = edges + 2; |
1172 |
edge3 = edges + 4; |
1173 |
} |
1174 |
else |
1175 |
{ |
1176 |
edge1 = edges + 1; |
1177 |
edge2 = edges + 5; |
1178 |
edge3 = edges + 9; |
1179 |
} |
1180 |
|
1181 |
dist1 = edge2->opos - edge1->opos; |
1182 |
dist2 = edge3->opos - edge2->opos; |
1183 |
|
1184 |
span = dist1 - dist2; |
1185 |
if ( span < 0 ) |
1186 |
span = -span; |
1187 |
|
1188 |
if ( edge1->link == edge1 + 1 && |
1189 |
edge2->link == edge2 + 1 && |
1190 |
edge3->link == edge3 + 1 && span < 8 ) |
1191 |
{ |
1192 |
delta = edge3->pos - ( 2 * edge2->pos - edge1->pos ); |
1193 |
edge3->pos -= delta; |
1194 |
if ( edge3->link ) |
1195 |
edge3->link->pos -= delta; |
1196 |
|
1197 |
/* move the serifs along with the stem */ |
1198 |
if ( n_edges == 12 ) |
1199 |
{ |
1200 |
( edges + 8 )->pos -= delta; |
1201 |
( edges + 11 )->pos -= delta; |
1202 |
} |
1203 |
|
1204 |
edge3->flags |= AF_EDGE_DONE; |
1205 |
if ( edge3->link ) |
1206 |
edge3->link->flags |= AF_EDGE_DONE; |
1207 |
} |
1208 |
} |
1209 |
|
1210 |
if ( !skipped ) |
1211 |
return; |
1212 |
|
1213 |
/* |
1214 |
* now hint the remaining edges (serifs and single) in order |
1215 |
* to complete our processing |
1216 |
*/ |
1217 |
for ( edge = edges; edge < edge_limit; edge++ ) |
1218 |
{ |
1219 |
if ( edge->flags & AF_EDGE_DONE ) |
1220 |
continue; |
1221 |
|
1222 |
if ( edge->serif ) |
1223 |
{ |
1224 |
af_cjk_align_serif_edge( hints, edge->serif, edge ); |
1225 |
edge->flags |= AF_EDGE_DONE; |
1226 |
skipped--; |
1227 |
} |
1228 |
} |
1229 |
|
1230 |
if ( !skipped ) |
1231 |
return; |
1232 |
|
1233 |
for ( edge = edges; edge < edge_limit; edge++ ) |
1234 |
{ |
1235 |
AF_Edge before, after; |
1236 |
|
1237 |
|
1238 |
if ( edge->flags & AF_EDGE_DONE ) |
1239 |
continue; |
1240 |
|
1241 |
before = after = edge; |
1242 |
|
1243 |
while ( --before >= edges ) |
1244 |
if ( before->flags & AF_EDGE_DONE ) |
1245 |
break; |
1246 |
|
1247 |
while ( ++after < edge_limit ) |
1248 |
if ( after->flags & AF_EDGE_DONE ) |
1249 |
break; |
1250 |
|
1251 |
if ( before >= edges || after < edge_limit ) |
1252 |
{ |
1253 |
if ( before < edges ) |
1254 |
af_cjk_align_serif_edge( hints, after, edge ); |
1255 |
else if ( after >= edge_limit ) |
1256 |
af_cjk_align_serif_edge( hints, before, edge ); |
1257 |
else |
1258 |
edge->pos = before->pos + |
1259 |
FT_MulDiv( edge->fpos - before->fpos, |
1260 |
after->pos - before->pos, |
1261 |
after->fpos - before->fpos ); |
1262 |
} |
1263 |
} |
1264 |
} |
1265 |
|
1266 |
|
1267 |
static void |
1268 |
af_cjk_align_edge_points( AF_GlyphHints hints, |
1269 |
AF_Dimension dim ) |
1270 |
{ |
1271 |
AF_AxisHints axis = & hints->axis[dim]; |
1272 |
AF_Edge edges = axis->edges; |
1273 |
AF_Edge edge_limit = edges + axis->num_edges; |
1274 |
AF_Edge edge; |
1275 |
FT_Bool snapping; |
1276 |
|
1277 |
|
1278 |
snapping = ( ( dim == AF_DIMENSION_HORZ && |
1279 |
AF_LATIN_HINTS_DO_HORZ_SNAP( hints ) ) || |
1280 |
( dim == AF_DIMENSION_VERT && |
1281 |
AF_LATIN_HINTS_DO_VERT_SNAP( hints ) ) ); |
1282 |
|
1283 |
for ( edge = edges; edge < edge_limit; edge++ ) |
1284 |
{ |
1285 |
/* move the points of each segment */ |
1286 |
/* in each edge to the edge's position */ |
1287 |
AF_Segment seg = edge->first; |
1288 |
|
1289 |
|
1290 |
if ( snapping ) |
1291 |
{ |
1292 |
do |
1293 |
{ |
1294 |
AF_Point point = seg->first; |
1295 |
|
1296 |
|
1297 |
for (;;) |
1298 |
{ |
1299 |
if ( dim == AF_DIMENSION_HORZ ) |
1300 |
{ |
1301 |
point->x = edge->pos; |
1302 |
point->flags |= AF_FLAG_TOUCH_X; |
1303 |
} |
1304 |
else |
1305 |
{ |
1306 |
point->y = edge->pos; |
1307 |
point->flags |= AF_FLAG_TOUCH_Y; |
1308 |
} |
1309 |
|
1310 |
if ( point == seg->last ) |
1311 |
break; |
1312 |
|
1313 |
point = point->next; |
1314 |
} |
1315 |
|
1316 |
seg = seg->edge_next; |
1317 |
|
1318 |
} while ( seg != edge->first ); |
1319 |
} |
1320 |
else |
1321 |
{ |
1322 |
FT_Pos delta = edge->pos - edge->opos; |
1323 |
|
1324 |
|
1325 |
do |
1326 |
{ |
1327 |
AF_Point point = seg->first; |
1328 |
|
1329 |
|
1330 |
for (;;) |
1331 |
{ |
1332 |
if ( dim == AF_DIMENSION_HORZ ) |
1333 |
{ |
1334 |
point->x += delta; |
1335 |
point->flags |= AF_FLAG_TOUCH_X; |
1336 |
} |
1337 |
else |
1338 |
{ |
1339 |
point->y += delta; |
1340 |
point->flags |= AF_FLAG_TOUCH_Y; |
1341 |
} |
1342 |
|
1343 |
if ( point == seg->last ) |
1344 |
break; |
1345 |
|
1346 |
point = point->next; |
1347 |
} |
1348 |
|
1349 |
seg = seg->edge_next; |
1350 |
|
1351 |
} while ( seg != edge->first ); |
1352 |
} |
1353 |
} |
1354 |
} |
1355 |
|
1356 |
|
1357 |
static FT_Error |
1358 |
af_cjk_hints_apply( AF_GlyphHints hints, |
1359 |
FT_Outline* outline, |
1360 |
AF_LatinMetrics metrics ) |
1361 |
{ |
1362 |
FT_Error error; |
1363 |
int dim; |
1364 |
|
1365 |
FT_UNUSED( metrics ); |
1366 |
|
1367 |
|
1368 |
error = af_glyph_hints_reload( hints, outline ); |
1369 |
if ( error ) |
1370 |
goto Exit; |
1371 |
|
1372 |
/* analyze glyph outline */ |
1373 |
if ( AF_HINTS_DO_HORIZONTAL( hints ) ) |
1374 |
{ |
1375 |
error = af_cjk_hints_detect_features( hints, AF_DIMENSION_HORZ ); |
1376 |
if ( error ) |
1377 |
goto Exit; |
1378 |
} |
1379 |
|
1380 |
if ( AF_HINTS_DO_VERTICAL( hints ) ) |
1381 |
{ |
1382 |
error = af_cjk_hints_detect_features( hints, AF_DIMENSION_VERT ); |
1383 |
if ( error ) |
1384 |
goto Exit; |
1385 |
} |
1386 |
|
1387 |
/* grid-fit the outline */ |
1388 |
for ( dim = 0; dim < AF_DIMENSION_MAX; dim++ ) |
1389 |
{ |
1390 |
if ( ( dim == AF_DIMENSION_HORZ && AF_HINTS_DO_HORIZONTAL( hints ) ) || |
1391 |
( dim == AF_DIMENSION_VERT && AF_HINTS_DO_VERTICAL( hints ) ) ) |
1392 |
{ |
1393 |
|
1394 |
#ifdef AF_USE_WARPER |
1395 |
if ( dim == AF_DIMENSION_HORZ && |
1396 |
metrics->root.scaler.render_mode == FT_RENDER_MODE_NORMAL ) |
1397 |
{ |
1398 |
AF_WarperRec warper; |
1399 |
FT_Fixed scale; |
1400 |
FT_Pos delta; |
1401 |
|
1402 |
|
1403 |
af_warper_compute( &warper, hints, dim, &scale, &delta ); |
1404 |
af_glyph_hints_scale_dim( hints, dim, scale, delta ); |
1405 |
continue; |
1406 |
} |
1407 |
#endif /* AF_USE_WARPER */ |
1408 |
|
1409 |
af_cjk_hint_edges( hints, (AF_Dimension)dim ); |
1410 |
af_cjk_align_edge_points( hints, (AF_Dimension)dim ); |
1411 |
af_glyph_hints_align_strong_points( hints, (AF_Dimension)dim ); |
1412 |
af_glyph_hints_align_weak_points( hints, (AF_Dimension)dim ); |
1413 |
} |
1414 |
} |
1415 |
|
1416 |
#if 0 |
1417 |
af_glyph_hints_dump_points( hints ); |
1418 |
af_glyph_hints_dump_segments( hints ); |
1419 |
af_glyph_hints_dump_edges( hints ); |
1420 |
#endif |
1421 |
|
1422 |
af_glyph_hints_save( hints, outline ); |
1423 |
|
1424 |
Exit: |
1425 |
return error; |
1426 |
} |
1427 |
|
1428 |
|
1429 |
/*************************************************************************/ |
1430 |
/*************************************************************************/ |
1431 |
/***** *****/ |
1432 |
/***** C J K S C R I P T C L A S S *****/ |
1433 |
/***** *****/ |
1434 |
/*************************************************************************/ |
1435 |
/*************************************************************************/ |
1436 |
|
1437 |
|
1438 |
static const AF_Script_UniRangeRec af_cjk_uniranges[] = |
1439 |
{ |
1440 |
{ 0x2E80, 0x2EFF }, /* CJK Radicals Supplement */ |
1441 |
{ 0x2F00, 0x2FDF }, /* Kangxi Radicals */ |
1442 |
{ 0x3000, 0x303F }, /* CJK Symbols and Punctuation */ |
1443 |
{ 0x3040, 0x309F }, /* Hiragana */ |
1444 |
{ 0x30A0, 0x30FF }, /* Katakana */ |
1445 |
{ 0x3100, 0x312F }, /* Bopomofo */ |
1446 |
{ 0x3130, 0x318F }, /* Hangul Compatibility Jamo */ |
1447 |
{ 0x31A0, 0x31BF }, /* Bopomofo Extended */ |
1448 |
{ 0x31C0, 0x31EF }, /* CJK Strokes */ |
1449 |
{ 0x31F0, 0x31FF }, /* Katakana Phonetic Extensions */ |
1450 |
{ 0x3200, 0x32FF }, /* Enclosed CJK Letters and Months */ |
1451 |
{ 0x3300, 0x33FF }, /* CJK Compatibility */ |
1452 |
{ 0x3400, 0x4DBF }, /* CJK Unified Ideographs Extension A */ |
1453 |
{ 0x4DC0, 0x4DFF }, /* Yijing Hexagram Symbols */ |
1454 |
{ 0x4E00, 0x9FFF }, /* CJK Unified Ideographs */ |
1455 |
{ 0xF900, 0xFAFF }, /* CJK Compatibility Ideographs */ |
1456 |
{ 0xFE30, 0xFE4F }, /* CJK Compatibility Forms */ |
1457 |
{ 0xFF00, 0xFFEF }, /* Halfwidth and Fullwidth Forms */ |
1458 |
{ 0x20000, 0x2A6DF }, /* CJK Unified Ideographs Extension B */ |
1459 |
{ 0x2F800, 0x2FA1F }, /* CJK Compatibility Ideographs Supplement */ |
1460 |
{ 0, 0 } |
1461 |
}; |
1462 |
|
1463 |
|
1464 |
FT_CALLBACK_TABLE_DEF const AF_ScriptClassRec |
1465 |
af_cjk_script_class = |
1466 |
{ |
1467 |
AF_SCRIPT_CJK, |
1468 |
af_cjk_uniranges, |
1469 |
|
1470 |
sizeof( AF_LatinMetricsRec ), |
1471 |
|
1472 |
(AF_Script_InitMetricsFunc) af_cjk_metrics_init, |
1473 |
(AF_Script_ScaleMetricsFunc)af_cjk_metrics_scale, |
1474 |
(AF_Script_DoneMetricsFunc) NULL, |
1475 |
|
1476 |
(AF_Script_InitHintsFunc) af_cjk_hints_init, |
1477 |
(AF_Script_ApplyHintsFunc) af_cjk_hints_apply |
1478 |
}; |
1479 |
|
1480 |
#else /* !AF_CONFIG_OPTION_CJK */ |
1481 |
|
1482 |
static const AF_Script_UniRangeRec af_cjk_uniranges[] = |
1483 |
{ |
1484 |
{ 0, 0 } |
1485 |
}; |
1486 |
|
1487 |
|
1488 |
FT_CALLBACK_TABLE_DEF const AF_ScriptClassRec |
1489 |
af_cjk_script_class = |
1490 |
{ |
1491 |
AF_SCRIPT_CJK, |
1492 |
af_cjk_uniranges, |
1493 |
|
1494 |
sizeof( AF_LatinMetricsRec ), |
1495 |
|
1496 |
(AF_Script_InitMetricsFunc) NULL, |
1497 |
(AF_Script_ScaleMetricsFunc)NULL, |
1498 |
(AF_Script_DoneMetricsFunc) NULL, |
1499 |
|
1500 |
(AF_Script_InitHintsFunc) NULL, |
1501 |
(AF_Script_ApplyHintsFunc) NULL |
1502 |
}; |
1503 |
|
1504 |
#endif /* !AF_CONFIG_OPTION_CJK */ |
1505 |
|
1506 |
|
1507 |
/* END */ |