]> git.wh0rd.org - fontconfig.git/blame_incremental - src/fcpat.c
Remove stale architecture signatures.
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1/*
2 * Copyright © 2000 Keith Packard
3 *
4 * Permission to use, copy, modify, distribute, and sell this software and its
5 * documentation for any purpose is hereby granted without fee, provided that
6 * the above copyright notice appear in all copies and that both that
7 * copyright notice and this permission notice appear in supporting
8 * documentation, and that the name of Keith Packard not be used in
9 * advertising or publicity pertaining to distribution of the software without
10 * specific, written prior permission. Keith Packard makes no
11 * representations about the suitability of this software for any purpose. It
12 * is provided "as is" without express or implied warranty.
13 *
14 * KEITH PACKARD DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE,
15 * INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO
16 * EVENT SHALL KEITH PACKARD BE LIABLE FOR ANY SPECIAL, INDIRECT OR
17 * CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE,
18 * DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
19 * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
20 * PERFORMANCE OF THIS SOFTWARE.
21 */
22
23#include "fcint.h"
24#include <stdlib.h>
25#include <string.h>
26#include <assert.h>
27
28static FcBool
29FcStrHashed (const FcChar8 *name);
30
31FcPattern *
32FcPatternCreate (void)
33{
34 FcPattern *p;
35
36 p = (FcPattern *) malloc (sizeof (FcPattern));
37 if (!p)
38 return 0;
39 FcMemAlloc (FC_MEM_PATTERN, sizeof (FcPattern));
40 p->num = 0;
41 p->size = 0;
42 p->elts_offset = FcPtrToOffset (p, NULL);
43 p->ref = 1;
44 return p;
45}
46
47void
48FcValueDestroy (FcValue v)
49{
50 switch (v.type) {
51 case FcTypeString:
52 if (!FcStrHashed (v.u.s))
53 FcStrFree ((FcChar8 *) v.u.s);
54 break;
55 case FcTypeMatrix:
56 FcMatrixFree ((FcMatrix *) v.u.m);
57 break;
58 case FcTypeCharSet:
59 FcCharSetDestroy ((FcCharSet *) v.u.c);
60 break;
61 case FcTypeLangSet:
62 FcLangSetDestroy ((FcLangSet *) v.u.l);
63 break;
64 default:
65 break;
66 }
67}
68
69FcValue
70FcValueCanonicalize (const FcValue *v)
71{
72 FcValue new;
73
74 switch (v->type)
75 {
76 case FcTypeString:
77 new.u.s = fc_value_string(v);
78 new.type = FcTypeString;
79 break;
80 case FcTypeCharSet:
81 new.u.c = fc_value_charset(v);
82 new.type = FcTypeCharSet;
83 break;
84 case FcTypeLangSet:
85 new.u.l = fc_value_langset(v);
86 new.type = FcTypeLangSet;
87 break;
88 default:
89 new = *v;
90 break;
91 }
92 return new;
93}
94
95FcValue
96FcValueSave (FcValue v)
97{
98 switch (v.type) {
99 case FcTypeString:
100 v.u.s = FcStrCopy (v.u.s);
101 if (!v.u.s)
102 v.type = FcTypeVoid;
103 break;
104 case FcTypeMatrix:
105 v.u.m = FcMatrixCopy (v.u.m);
106 if (!v.u.m)
107 v.type = FcTypeVoid;
108 break;
109 case FcTypeCharSet:
110 v.u.c = FcCharSetCopy ((FcCharSet *) v.u.c);
111 if (!v.u.c)
112 v.type = FcTypeVoid;
113 break;
114 case FcTypeLangSet:
115 v.u.l = FcLangSetCopy (v.u.l);
116 if (!v.u.l)
117 v.type = FcTypeVoid;
118 break;
119 default:
120 break;
121 }
122 return v;
123}
124
125void
126FcValueListDestroy (FcValueListPtr l)
127{
128 FcValueListPtr next;
129 for (; l; l = next)
130 {
131 switch (l->value.type) {
132 case FcTypeString:
133 if (!FcStrHashed ((FcChar8 *)l->value.u.s))
134 FcStrFree ((FcChar8 *)l->value.u.s);
135 break;
136 case FcTypeMatrix:
137 FcMatrixFree ((FcMatrix *)l->value.u.m);
138 break;
139 case FcTypeCharSet:
140 FcCharSetDestroy
141 ((FcCharSet *) (l->value.u.c));
142 break;
143 case FcTypeLangSet:
144 FcLangSetDestroy
145 ((FcLangSet *) (l->value.u.l));
146 break;
147 default:
148 break;
149 }
150 next = FcValueListNext(l);
151 FcMemFree (FC_MEM_VALLIST, sizeof (FcValueList));
152 free(l);
153 }
154}
155
156FcBool
157FcValueEqual (FcValue va, FcValue vb)
158{
159 if (va.type != vb.type)
160 {
161 if (va.type == FcTypeInteger)
162 {
163 va.type = FcTypeDouble;
164 va.u.d = va.u.i;
165 }
166 if (vb.type == FcTypeInteger)
167 {
168 vb.type = FcTypeDouble;
169 vb.u.d = vb.u.i;
170 }
171 if (va.type != vb.type)
172 return FcFalse;
173 }
174 switch (va.type) {
175 case FcTypeVoid:
176 return FcTrue;
177 case FcTypeInteger:
178 return va.u.i == vb.u.i;
179 case FcTypeDouble:
180 return va.u.d == vb.u.d;
181 case FcTypeString:
182 return FcStrCmpIgnoreCase (va.u.s, vb.u.s) == 0;
183 case FcTypeBool:
184 return va.u.b == vb.u.b;
185 case FcTypeMatrix:
186 return FcMatrixEqual (va.u.m, vb.u.m);
187 case FcTypeCharSet:
188 return FcCharSetEqual (va.u.c, vb.u.c);
189 case FcTypeFTFace:
190 return va.u.f == vb.u.f;
191 case FcTypeLangSet:
192 return FcLangSetEqual (va.u.l, vb.u.l);
193 }
194 return FcFalse;
195}
196
197static FcChar32
198FcDoubleHash (double d)
199{
200 if (d < 0)
201 d = -d;
202 if (d > 0xffffffff)
203 d = 0xffffffff;
204 return (FcChar32) d;
205}
206
207FcChar32
208FcStringHash (const FcChar8 *s)
209{
210 FcChar8 c;
211 FcChar32 h = 0;
212
213 if (s)
214 while ((c = *s++))
215 h = ((h << 1) | (h >> 31)) ^ c;
216 return h;
217}
218
219static FcChar32
220FcValueHash (const FcValue *v)
221{
222 switch (fc_storage_type(v)) {
223 case FcTypeVoid:
224 return 0;
225 case FcTypeInteger:
226 return (FcChar32) v->u.i;
227 case FcTypeDouble:
228 return FcDoubleHash (v->u.d);
229 case FcTypeString:
230 return FcStringHash (fc_value_string(v));
231 case FcTypeBool:
232 return (FcChar32) v->u.b;
233 case FcTypeMatrix:
234 return (FcDoubleHash (v->u.m->xx) ^
235 FcDoubleHash (v->u.m->xy) ^
236 FcDoubleHash (v->u.m->yx) ^
237 FcDoubleHash (v->u.m->yy));
238 case FcTypeCharSet:
239 return (FcChar32) fc_value_charset(v)->num;
240 case FcTypeFTFace:
241 return FcStringHash ((const FcChar8 *) ((FT_Face) v->u.f)->family_name) ^
242 FcStringHash ((const FcChar8 *) ((FT_Face) v->u.f)->style_name);
243 case FcTypeLangSet:
244 return FcLangSetHash (fc_value_langset(v));
245 }
246 return FcFalse;
247}
248
249static FcBool
250FcValueListEqual (FcValueListPtr la, FcValueListPtr lb)
251{
252 if (la == lb)
253 return FcTrue;
254
255 while (la && lb)
256 {
257 if (!FcValueEqual (la->value, lb->value))
258 return FcFalse;
259 la = FcValueListNext(la);
260 lb = FcValueListNext(lb);
261 }
262 if (la || lb)
263 return FcFalse;
264 return FcTrue;
265}
266
267static FcChar32
268FcValueListHash (FcValueListPtr l)
269{
270 FcChar32 hash = 0;
271
272 for (; l; l = FcValueListNext(l))
273 {
274 hash = ((hash << 1) | (hash >> 31)) ^ FcValueHash (&l->value);
275 }
276 return hash;
277}
278
279void
280FcPatternDestroy (FcPattern *p)
281{
282 int i;
283 FcPatternElt *elts;
284
285 if (p->ref == FC_REF_CONSTANT || --p->ref > 0)
286 return;
287
288 elts = FcPatternElts (p);
289 for (i = 0; i < p->num; i++)
290 FcValueListDestroy (FcPatternEltValues(&elts[i]));
291
292 FcMemFree (FC_MEM_PATELT, p->size * sizeof (FcPatternElt));
293 free (elts);
294 FcMemFree (FC_MEM_PATTERN, sizeof (FcPattern));
295 free (p);
296}
297
298static int
299FcPatternObjectPosition (const FcPattern *p, FcObject object)
300{
301 int low, high, mid, c;
302 FcPatternElt *elts = FcPatternElts(p);
303
304 low = 0;
305 high = p->num - 1;
306 c = 1;
307 mid = 0;
308 while (low <= high)
309 {
310 mid = (low + high) >> 1;
311 c = elts[mid].object - object;
312 if (c == 0)
313 return mid;
314 if (c < 0)
315 low = mid + 1;
316 else
317 high = mid - 1;
318 }
319 if (c < 0)
320 mid++;
321 return -(mid + 1);
322}
323
324FcPatternElt *
325FcPatternObjectFindElt (const FcPattern *p, FcObject object)
326{
327 int i = FcPatternObjectPosition (p, object);
328 if (i < 0)
329 return 0;
330 return &FcPatternElts(p)[i];
331}
332
333FcPatternElt *
334FcPatternObjectInsertElt (FcPattern *p, FcObject object)
335{
336 int i;
337 FcPatternElt *e;
338
339 i = FcPatternObjectPosition (p, object);
340 if (i < 0)
341 {
342 i = -i - 1;
343
344 /* reallocate array */
345 if (p->num + 1 >= p->size)
346 {
347 int s = p->size + 16;
348 if (p->size)
349 {
350 FcPatternElt *e0 = FcPatternElts(p);
351 e = (FcPatternElt *) realloc (e0, s * sizeof (FcPatternElt));
352 if (!e) /* maybe it was mmapped */
353 {
354 e = malloc(s * sizeof (FcPatternElt));
355 if (e)
356 memcpy(e, e0, p->num * sizeof (FcPatternElt));
357 }
358 }
359 else
360 e = (FcPatternElt *) malloc (s * sizeof (FcPatternElt));
361 if (!e)
362 return FcFalse;
363 p->elts_offset = FcPtrToOffset (p, e);
364 if (p->size)
365 FcMemFree (FC_MEM_PATELT, p->size * sizeof (FcPatternElt));
366 FcMemAlloc (FC_MEM_PATELT, s * sizeof (FcPatternElt));
367 while (p->size < s)
368 {
369 e[p->size].object = 0;
370 e[p->size].values = NULL;
371 p->size++;
372 }
373 }
374
375 e = FcPatternElts(p);
376 /* move elts up */
377 memmove (e + i + 1,
378 e + i,
379 sizeof (FcPatternElt) *
380 (p->num - i));
381
382 /* bump count */
383 p->num++;
384
385 e[i].object = object;
386 e[i].values = NULL;
387 }
388
389 return FcPatternElts(p) + i;
390}
391
392FcBool
393FcPatternEqual (const FcPattern *pa, const FcPattern *pb)
394{
395 int i;
396 FcPatternElt *pae, *pbe;
397
398 if (pa == pb)
399 return FcTrue;
400
401 if (pa->num != pb->num)
402 return FcFalse;
403 pae = FcPatternElts(pa);
404 pbe = FcPatternElts(pb);
405 for (i = 0; i < pa->num; i++)
406 {
407 if (pae[i].object != pbe[i].object)
408 return FcFalse;
409 if (!FcValueListEqual (FcPatternEltValues(&pae[i]),
410 FcPatternEltValues(&pbe[i])))
411 return FcFalse;
412 }
413 return FcTrue;
414}
415
416FcChar32
417FcPatternHash (const FcPattern *p)
418{
419 int i;
420 FcChar32 h = 0;
421 FcPatternElt *pe = FcPatternElts(p);
422
423 for (i = 0; i < p->num; i++)
424 {
425 h = (((h << 1) | (h >> 31)) ^
426 pe[i].object ^
427 FcValueListHash (FcPatternEltValues(&pe[i])));
428 }
429 return h;
430}
431
432FcBool
433FcPatternEqualSubset (const FcPattern *pai, const FcPattern *pbi, const FcObjectSet *os)
434{
435 FcPatternElt *ea, *eb;
436 int i;
437
438 for (i = 0; i < os->nobject; i++)
439 {
440 FcObject object = FcObjectFromName (os->objects[i]);
441 ea = FcPatternObjectFindElt (pai, object);
442 eb = FcPatternObjectFindElt (pbi, object);
443 if (ea)
444 {
445 if (!eb)
446 return FcFalse;
447 if (!FcValueListEqual (FcPatternEltValues(ea), FcPatternEltValues(eb)))
448 return FcFalse;
449 }
450 else
451 {
452 if (eb)
453 return FcFalse;
454 }
455 }
456 return FcTrue;
457}
458
459FcBool
460FcPatternObjectAddWithBinding (FcPattern *p,
461 FcObject object,
462 FcValue value,
463 FcValueBinding binding,
464 FcBool append)
465{
466 FcPatternElt *e;
467 FcValueListPtr new, *prev;
468
469 if (p->ref == FC_REF_CONSTANT)
470 goto bail0;
471
472 new = malloc (sizeof (FcValueList));
473 if (!new)
474 goto bail0;
475
476 memset(new, 0, sizeof (FcValueList));
477 FcMemAlloc (FC_MEM_VALLIST, sizeof (FcValueList));
478 /* dup string */
479 if (value.type == FcTypeString)
480 {
481 value.u.s = FcStrStaticName (value.u.s);
482 if (!value.u.s)
483 value.type = FcTypeVoid;
484 }
485 else
486 value = FcValueSave (value);
487 if (value.type == FcTypeVoid)
488 goto bail1;
489
490 /*
491 * Make sure the stored type is valid for built-in objects
492 */
493 if (!FcObjectValidType (object, value.type))
494 goto bail1;
495
496 new->value = value;
497 new->binding = binding;
498 new->next = NULL;
499
500 e = FcPatternObjectInsertElt (p, object);
501 if (!e)
502 goto bail2;
503
504 if (append)
505 {
506 for (prev = &e->values; *prev; prev = &(*prev)->next)
507 ;
508 *prev = new;
509 }
510 else
511 {
512 new->next = e->values;
513 e->values = new;
514 }
515
516 return FcTrue;
517
518bail2:
519 FcValueDestroy (value);
520bail1:
521 FcMemFree (FC_MEM_VALLIST, sizeof (FcValueList));
522 free (new);
523bail0:
524 return FcFalse;
525}
526
527FcBool
528FcPatternObjectAdd (FcPattern *p, FcObject object, FcValue value, FcBool append)
529{
530 return FcPatternObjectAddWithBinding (p, object,
531 value, FcValueBindingStrong, append);
532}
533
534FcBool
535FcPatternAdd (FcPattern *p, const char *object, FcValue value, FcBool append)
536{
537 return FcPatternObjectAddWithBinding (p, FcObjectFromName (object),
538 value, FcValueBindingStrong, append);
539}
540
541FcBool
542FcPatternAddWeak (FcPattern *p, const char *object, FcValue value, FcBool append)
543{
544 return FcPatternObjectAddWithBinding (p, FcObjectFromName (object),
545 value, FcValueBindingWeak, append);
546}
547
548FcBool
549FcPatternObjectDel (FcPattern *p, FcObject object)
550{
551 FcPatternElt *e;
552
553 e = FcPatternObjectFindElt (p, object);
554 if (!e)
555 return FcFalse;
556
557 /* destroy value */
558 FcValueListDestroy (e->values);
559
560 /* shuffle existing ones down */
561 memmove (e, e+1,
562 (FcPatternElts(p) + p->num - (e + 1)) *
563 sizeof (FcPatternElt));
564 p->num--;
565 e = FcPatternElts(p) + p->num;
566 e->object = 0;
567 e->values = NULL;
568 return FcTrue;
569}
570
571FcBool
572FcPatternDel (FcPattern *p, const char *object)
573{
574 return FcPatternObjectDel (p, FcObjectFromName (object));
575}
576
577FcBool
578FcPatternRemove (FcPattern *p, const char *object, int id)
579{
580 FcPatternElt *e;
581 FcValueListPtr *prev, l;
582
583 e = FcPatternObjectFindElt (p, FcObjectFromName (object));
584 if (!e)
585 return FcFalse;
586 for (prev = &e->values; (l = *prev); prev = &l->next)
587 {
588 if (!id)
589 {
590 *prev = l->next;
591 l->next = NULL;
592 FcValueListDestroy (l);
593 if (!e->values)
594 FcPatternDel (p, object);
595 return FcTrue;
596 }
597 id--;
598 }
599 return FcFalse;
600}
601
602FcBool
603FcPatternObjectAddInteger (FcPattern *p, FcObject object, int i)
604{
605 FcValue v;
606
607 v.type = FcTypeInteger;
608 v.u.i = i;
609 return FcPatternObjectAdd (p, object, v, FcTrue);
610}
611
612FcBool
613FcPatternAddInteger (FcPattern *p, const char *object, int i)
614{
615 return FcPatternObjectAddInteger (p, FcObjectFromName (object), i);
616}
617
618FcBool
619FcPatternObjectAddDouble (FcPattern *p, FcObject object, double d)
620{
621 FcValue v;
622
623 v.type = FcTypeDouble;
624 v.u.d = d;
625 return FcPatternObjectAdd (p, object, v, FcTrue);
626}
627
628
629FcBool
630FcPatternAddDouble (FcPattern *p, const char *object, double d)
631{
632 return FcPatternObjectAddDouble (p, FcObjectFromName (object), d);
633}
634
635FcBool
636FcPatternObjectAddString (FcPattern *p, FcObject object, const FcChar8 *s)
637{
638 FcValue v;
639
640 if (!s)
641 {
642 v.type = FcTypeVoid;
643 v.u.s = 0;
644 return FcPatternObjectAdd (p, object, v, FcTrue);
645 }
646
647 v.type = FcTypeString;
648 v.u.s = FcStrStaticName(s);
649 return FcPatternObjectAdd (p, object, v, FcTrue);
650}
651
652FcBool
653FcPatternAddString (FcPattern *p, const char *object, const FcChar8 *s)
654{
655 return FcPatternObjectAddString (p, FcObjectFromName (object), s);
656}
657
658FcBool
659FcPatternAddMatrix (FcPattern *p, const char *object, const FcMatrix *s)
660{
661 FcValue v;
662
663 v.type = FcTypeMatrix;
664 v.u.m = s;
665 return FcPatternAdd (p, object, v, FcTrue);
666}
667
668
669FcBool
670FcPatternObjectAddBool (FcPattern *p, FcObject object, FcBool b)
671{
672 FcValue v;
673
674 v.type = FcTypeBool;
675 v.u.b = b;
676 return FcPatternObjectAdd (p, object, v, FcTrue);
677}
678
679FcBool
680FcPatternAddBool (FcPattern *p, const char *object, FcBool b)
681{
682 return FcPatternObjectAddBool (p, FcObjectFromName (object), b);
683}
684
685FcBool
686FcPatternAddCharSet (FcPattern *p, const char *object, const FcCharSet *c)
687{
688 FcValue v;
689
690 v.type = FcTypeCharSet;
691 v.u.c = (FcCharSet *)c;
692 return FcPatternAdd (p, object, v, FcTrue);
693}
694
695FcBool
696FcPatternAddFTFace (FcPattern *p, const char *object, const FT_Face f)
697{
698 FcValue v;
699
700 v.type = FcTypeFTFace;
701 v.u.f = (void *) f;
702 return FcPatternAdd (p, object, v, FcTrue);
703}
704
705FcBool
706FcPatternAddLangSet (FcPattern *p, const char *object, const FcLangSet *ls)
707{
708 FcValue v;
709
710 v.type = FcTypeLangSet;
711 v.u.l = (FcLangSet *)ls;
712 return FcPatternAdd (p, object, v, FcTrue);
713}
714
715FcResult
716FcPatternObjectGet (const FcPattern *p, FcObject object, int id, FcValue *v)
717{
718 FcPatternElt *e;
719 FcValueListPtr l;
720
721 e = FcPatternObjectFindElt (p, object);
722 if (!e)
723 return FcResultNoMatch;
724 for (l = FcPatternEltValues(e); l; l = FcValueListNext(l))
725 {
726 if (!id)
727 {
728 *v = FcValueCanonicalize(&l->value);
729 return FcResultMatch;
730 }
731 id--;
732 }
733 return FcResultNoId;
734}
735
736FcResult
737FcPatternGet (const FcPattern *p, const char *object, int id, FcValue *v)
738{
739 return FcPatternObjectGet (p, FcObjectFromName (object), id, v);
740}
741
742FcResult
743FcPatternObjectGetInteger (const FcPattern *p, FcObject object, int id, int *i)
744{
745 FcValue v;
746 FcResult r;
747
748 r = FcPatternObjectGet (p, object, id, &v);
749 if (r != FcResultMatch)
750 return r;
751 switch (v.type) {
752 case FcTypeDouble:
753 *i = (int) v.u.d;
754 break;
755 case FcTypeInteger:
756 *i = v.u.i;
757 break;
758 default:
759 return FcResultTypeMismatch;
760 }
761 return FcResultMatch;
762}
763
764FcResult
765FcPatternGetInteger (const FcPattern *p, const char *object, int id, int *i)
766{
767 return FcPatternObjectGetInteger (p, FcObjectFromName (object), id, i);
768}
769
770
771FcResult
772FcPatternObjectGetDouble (const FcPattern *p, FcObject object, int id, double *d)
773{
774 FcValue v;
775 FcResult r;
776
777 r = FcPatternObjectGet (p, object, id, &v);
778 if (r != FcResultMatch)
779 return r;
780 switch (v.type) {
781 case FcTypeDouble:
782 *d = v.u.d;
783 break;
784 case FcTypeInteger:
785 *d = (double) v.u.i;
786 break;
787 default:
788 return FcResultTypeMismatch;
789 }
790 return FcResultMatch;
791}
792
793FcResult
794FcPatternGetDouble (const FcPattern *p, const char *object, int id, double *d)
795{
796 return FcPatternObjectGetDouble (p, FcObjectFromName (object), id, d);
797}
798
799FcResult
800FcPatternObjectGetString (const FcPattern *p, FcObject object, int id, FcChar8 ** s)
801{
802 FcValue v;
803 FcResult r;
804
805 r = FcPatternObjectGet (p, object, id, &v);
806 if (r != FcResultMatch)
807 return r;
808 if (v.type != FcTypeString)
809 return FcResultTypeMismatch;
810
811 *s = (FcChar8 *) v.u.s;
812 return FcResultMatch;
813}
814
815FcResult
816FcPatternGetString (const FcPattern *p, const char *object, int id, FcChar8 ** s)
817{
818 return FcPatternObjectGetString (p, FcObjectFromName (object), id, s);
819}
820
821FcResult
822FcPatternGetMatrix(const FcPattern *p, const char *object, int id, FcMatrix **m)
823{
824 FcValue v;
825 FcResult r;
826
827 r = FcPatternGet (p, object, id, &v);
828 if (r != FcResultMatch)
829 return r;
830 if (v.type != FcTypeMatrix)
831 return FcResultTypeMismatch;
832 *m = (FcMatrix *)v.u.m;
833 return FcResultMatch;
834}
835
836
837FcResult
838FcPatternGetBool(const FcPattern *p, const char *object, int id, FcBool *b)
839{
840 FcValue v;
841 FcResult r;
842
843 r = FcPatternGet (p, object, id, &v);
844 if (r != FcResultMatch)
845 return r;
846 if (v.type != FcTypeBool)
847 return FcResultTypeMismatch;
848 *b = v.u.b;
849 return FcResultMatch;
850}
851
852FcResult
853FcPatternGetCharSet(const FcPattern *p, const char *object, int id, FcCharSet **c)
854{
855 FcValue v;
856 FcResult r;
857
858 r = FcPatternGet (p, object, id, &v);
859 if (r != FcResultMatch)
860 return r;
861 if (v.type != FcTypeCharSet)
862 return FcResultTypeMismatch;
863 *c = (FcCharSet *)v.u.c;
864 return FcResultMatch;
865}
866
867FcResult
868FcPatternGetFTFace(const FcPattern *p, const char *object, int id, FT_Face *f)
869{
870 FcValue v;
871 FcResult r;
872
873 r = FcPatternGet (p, object, id, &v);
874 if (r != FcResultMatch)
875 return r;
876 if (v.type != FcTypeFTFace)
877 return FcResultTypeMismatch;
878 *f = (FT_Face) v.u.f;
879 return FcResultMatch;
880}
881
882FcResult
883FcPatternGetLangSet(const FcPattern *p, const char *object, int id, FcLangSet **ls)
884{
885 FcValue v;
886 FcResult r;
887
888 r = FcPatternGet (p, object, id, &v);
889 if (r != FcResultMatch)
890 return r;
891 if (v.type != FcTypeLangSet)
892 return FcResultTypeMismatch;
893 *ls = (FcLangSet *)v.u.l;
894 return FcResultMatch;
895}
896
897FcPattern *
898FcPatternDuplicate (const FcPattern *orig)
899{
900 FcPattern *new;
901 FcPatternElt *e;
902 int i;
903 FcValueListPtr l;
904
905 new = FcPatternCreate ();
906 if (!new)
907 goto bail0;
908
909 e = FcPatternElts(orig);
910
911 for (i = 0; i < orig->num; i++)
912 {
913 for (l = FcPatternEltValues(e + i); l; l = FcValueListNext(l))
914 if (!FcPatternObjectAdd (new, e[i].object,
915 FcValueCanonicalize(&l->value),
916 FcTrue))
917 goto bail1;
918 }
919
920 return new;
921
922bail1:
923 FcPatternDestroy (new);
924bail0:
925 return 0;
926}
927
928void
929FcPatternReference (FcPattern *p)
930{
931 if (p->ref != FC_REF_CONSTANT)
932 p->ref++;
933}
934
935FcPattern *
936FcPatternVaBuild (FcPattern *orig, va_list va)
937{
938 FcPattern *ret;
939
940 FcPatternVapBuild (ret, orig, va);
941 return ret;
942}
943
944FcPattern *
945FcPatternBuild (FcPattern *orig, ...)
946{
947 va_list va;
948
949 va_start (va, orig);
950 FcPatternVapBuild (orig, orig, va);
951 va_end (va);
952 return orig;
953}
954
955/*
956 * Add all of the elements in 's' to 'p'
957 */
958FcBool
959FcPatternAppend (FcPattern *p, FcPattern *s)
960{
961 int i;
962 FcPatternElt *e;
963 FcValueListPtr v;
964
965 for (i = 0; i < s->num; i++)
966 {
967 e = FcPatternElts(s)+i;
968 for (v = FcPatternEltValues(e); v; v = FcValueListNext(v))
969 {
970 if (!FcPatternObjectAddWithBinding (p, e->object,
971 FcValueCanonicalize(&v->value),
972 v->binding, FcTrue))
973 return FcFalse;
974 }
975 }
976 return FcTrue;
977}
978
979#define OBJECT_HASH_SIZE 31
980static struct objectBucket {
981 struct objectBucket *next;
982 FcChar32 hash;
983} *FcObjectBuckets[OBJECT_HASH_SIZE];
984
985static FcBool
986FcStrHashed (const FcChar8 *name)
987{
988 FcChar32 hash = FcStringHash (name);
989 struct objectBucket **p;
990 struct objectBucket *b;
991
992 for (p = &FcObjectBuckets[hash % OBJECT_HASH_SIZE]; (b = *p); p = &(b->next))
993 if (b->hash == hash && !strcmp ((char *)name, (char *) (b + 1)))
994 return FcTrue;
995 return FcFalse;
996}
997
998const FcChar8 *
999FcStrStaticName (const FcChar8 *name)
1000{
1001 FcChar32 hash = FcStringHash (name);
1002 struct objectBucket **p;
1003 struct objectBucket *b;
1004 int size;
1005
1006 for (p = &FcObjectBuckets[hash % OBJECT_HASH_SIZE]; (b = *p); p = &(b->next))
1007 if (b->hash == hash && !strcmp ((char *)name, (char *) (b + 1)))
1008 return (FcChar8 *) (b + 1);
1009 size = sizeof (struct objectBucket) + strlen ((char *)name) + 1;
1010 b = malloc (size + sizeof (int));
1011 /* workaround glibc bug which reads strlen in groups of 4 */
1012 FcMemAlloc (FC_MEM_STATICSTR, size + sizeof (int));
1013 if (!b)
1014 return NULL;
1015 b->next = 0;
1016 b->hash = hash;
1017 strcpy ((char *) (b + 1), (char *)name);
1018 *p = b;
1019 return (FcChar8 *) (b + 1);
1020}
1021
1022static void
1023FcStrStaticNameFini (void)
1024{
1025 int i, size;
1026 struct objectBucket *b, *next;
1027 char *name;
1028
1029 for (i = 0; i < OBJECT_HASH_SIZE; i++)
1030 {
1031 for (b = FcObjectBuckets[i]; b; b = next)
1032 {
1033 next = b->next;
1034 name = (char *) (b + 1);
1035 size = sizeof (struct objectBucket) + strlen (name) + 1;
1036 FcMemFree (FC_MEM_STATICSTR, size);
1037 free (b);
1038 }
1039 FcObjectBuckets[i] = 0;
1040 }
1041}
1042
1043void
1044FcPatternFini (void)
1045{
1046 FcStrStaticNameFini ();
1047 FcObjectFini ();
1048}
1049
1050FcBool
1051FcPatternSerializeAlloc (FcSerialize *serialize, const FcPattern *pat)
1052{
1053 int i;
1054 FcPatternElt *elts = FcPatternElts(pat);
1055
1056 if (!FcSerializeAlloc (serialize, pat, sizeof (FcPattern)))
1057 return FcFalse;
1058 if (!FcSerializeAlloc (serialize, elts, pat->num * sizeof (FcPatternElt)))
1059 return FcFalse;
1060 for (i = 0; i < pat->num; i++)
1061 if (!FcValueListSerializeAlloc (serialize, FcPatternEltValues(elts+i)))
1062 return FcFalse;
1063 return FcTrue;
1064}
1065
1066FcPattern *
1067FcPatternSerialize (FcSerialize *serialize, const FcPattern *pat)
1068{
1069 FcPattern *pat_serialized;
1070 FcPatternElt *elts = FcPatternElts (pat);
1071 FcPatternElt *elts_serialized;
1072 FcValueList *values_serialized;
1073 int i;
1074
1075 pat_serialized = FcSerializePtr (serialize, pat);
1076 if (!pat_serialized)
1077 return NULL;
1078 *pat_serialized = *pat;
1079 pat_serialized->size = pat->num;
1080 pat_serialized->ref = FC_REF_CONSTANT;
1081
1082 elts_serialized = FcSerializePtr (serialize, elts);
1083 if (!elts_serialized)
1084 return NULL;
1085
1086 pat_serialized->elts_offset = FcPtrToOffset (pat_serialized,
1087 elts_serialized);
1088
1089 for (i = 0; i < pat->num; i++)
1090 {
1091 values_serialized = FcValueListSerialize (serialize, FcPatternEltValues (elts+i));
1092 if (!values_serialized)
1093 return NULL;
1094 elts_serialized[i].object = elts[i].object;
1095 elts_serialized[i].values = FcPtrToEncodedOffset (&elts_serialized[i],
1096 values_serialized,
1097 FcValueList);
1098 }
1099 if (FcDebug() & FC_DBG_CACHEV) {
1100 printf ("Raw pattern:\n");
1101 FcPatternPrint (pat);
1102 printf ("Serialized pattern:\n");
1103 FcPatternPrint (pat_serialized);
1104 printf ("\n");
1105 }
1106 return pat_serialized;
1107}
1108
1109FcBool
1110FcValueListSerializeAlloc (FcSerialize *serialize, const FcValueList *vl)
1111{
1112 while (vl)
1113 {
1114 if (!FcSerializeAlloc (serialize, vl, sizeof (FcValueList)))
1115 return FcFalse;
1116 switch (vl->value.type) {
1117 case FcTypeString:
1118 if (!FcStrSerializeAlloc (serialize, vl->value.u.s))
1119 return FcFalse;
1120 break;
1121 case FcTypeCharSet:
1122 if (!FcCharSetSerializeAlloc (serialize, vl->value.u.c))
1123 return FcFalse;
1124 break;
1125 case FcTypeLangSet:
1126 if (!FcLangSetSerializeAlloc (serialize, vl->value.u.l))
1127 return FcFalse;
1128 break;
1129 default:
1130 break;
1131 }
1132 vl = vl->next;
1133 }
1134 return FcTrue;
1135}
1136
1137FcValueList *
1138FcValueListSerialize (FcSerialize *serialize, const FcValueList *vl)
1139{
1140 FcValueList *vl_serialized;
1141 FcChar8 *s_serialized;
1142 FcCharSet *c_serialized;
1143 FcLangSet *l_serialized;
1144 FcValueList *head_serialized = NULL;
1145 FcValueList *prev_serialized = NULL;
1146
1147 while (vl)
1148 {
1149 vl_serialized = FcSerializePtr (serialize, vl);
1150 if (!vl_serialized)
1151 return NULL;
1152
1153 if (prev_serialized)
1154 prev_serialized->next = FcPtrToEncodedOffset (prev_serialized,
1155 vl_serialized,
1156 FcValueList);
1157 else
1158 head_serialized = vl_serialized;
1159
1160 vl_serialized->next = NULL;
1161 vl_serialized->value = vl->value;
1162 switch (vl->value.type) {
1163 case FcTypeString:
1164 s_serialized = FcStrSerialize (serialize, vl->value.u.s);
1165 if (!s_serialized)
1166 return NULL;
1167 vl_serialized->value.u.s = FcPtrToEncodedOffset (&vl_serialized->value,
1168 s_serialized,
1169 FcChar8);
1170 break;
1171 case FcTypeCharSet:
1172 c_serialized = FcCharSetSerialize (serialize, vl->value.u.c);
1173 if (!c_serialized)
1174 return NULL;
1175 vl_serialized->value.u.c = FcPtrToEncodedOffset (&vl_serialized->value,
1176 c_serialized,
1177 FcCharSet);
1178 break;
1179 case FcTypeLangSet:
1180 l_serialized = FcLangSetSerialize (serialize, vl->value.u.l);
1181 if (!l_serialized)
1182 return NULL;
1183 vl_serialized->value.u.l = FcPtrToEncodedOffset (&vl_serialized->value,
1184 l_serialized,
1185 FcLangSet);
1186 break;
1187 default:
1188 break;
1189 }
1190 prev_serialized = vl_serialized;
1191 vl = vl->next;
1192 }
1193 return head_serialized;
1194}