]> git.wh0rd.org - fontconfig.git/blame - src/fcpat.c
Pass the FcObjectPtr to FcCompareValueList, not the char * (perf).
[fontconfig.git] / src / fcpat.c
CommitLineData
24330d27 1/*
4bd4418a 2 * $RCSId: xc/lib/fontconfig/src/fcpat.c,v 1.18 2002/09/18 17:11:46 tsi Exp $
24330d27 3 *
46b51147 4 * Copyright © 2000 Keith Packard
24330d27
KP
5 *
6 * Permission to use, copy, modify, distribute, and sell this software and its
7 * documentation for any purpose is hereby granted without fee, provided that
8 * the above copyright notice appear in all copies and that both that
9 * copyright notice and this permission notice appear in supporting
10 * documentation, and that the name of Keith Packard not be used in
11 * advertising or publicity pertaining to distribution of the software without
12 * specific, written prior permission. Keith Packard makes no
13 * representations about the suitability of this software for any purpose. It
14 * is provided "as is" without express or implied warranty.
15 *
16 * KEITH PACKARD DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE,
17 * INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO
18 * EVENT SHALL KEITH PACKARD BE LIABLE FOR ANY SPECIAL, INDIRECT OR
19 * CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE,
20 * DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
21 * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
22 * PERFORMANCE OF THIS SOFTWARE.
23 */
24
25#include <stdlib.h>
26#include <string.h>
d8d73958 27#include <assert.h>
24330d27
KP
28#include "fcint.h"
29
4262e0b3
PL
30static FcPattern ** fcpatterns = 0;
31static int fcpattern_bank_count = 0, fcpattern_ptr, fcpattern_count;
9ab79bdf 32FcPatternElt ** fcpatternelts = 0;
cd2ec1a9 33static int fcpatternelt_ptr, fcpatternelt_count;
9ab79bdf 34FcValueList ** fcvaluelists = 0;
4262e0b3 35static int fcvaluelist_bank_count = 0, fcvaluelist_ptr, fcvaluelist_count;
cd2ec1a9 36
793154ed
PL
37static const char *
38FcPatternFindFullFname (const FcPattern *p);
cd2ec1a9
PL
39static FcPatternEltPtr
40FcPatternEltPtrCreateDynamic (FcPatternElt * e);
41
d7b3ac63
PL
42/* If you are trying to duplicate an FcPattern which will be used for
43 * rendering, be aware that (internally) you also have to use
44 * FcPatternTransferFullFname to transfer the associated filename. If
45 * you are copying the font (externally) using FcPatternGetString,
46 * then everything's fine; this caveat only applies if you're copying
47 * the bits individually. */
48
24330d27
KP
49FcPattern *
50FcPatternCreate (void)
51{
52 FcPattern *p;
53
54 p = (FcPattern *) malloc (sizeof (FcPattern));
55 if (!p)
56 return 0;
57 FcMemAlloc (FC_MEM_PATTERN, sizeof (FcPattern));
58 p->num = 0;
59 p->size = 0;
cd2ec1a9 60 p->elts = FcPatternEltPtrCreateDynamic(0);
4262e0b3 61 p->bank = FC_BANK_DYNAMIC;
6f6563ed 62 p->ref = 1;
24330d27
KP
63 return p;
64}
65
66void
67FcValueDestroy (FcValue v)
68{
69 switch (v.type) {
70 case FcTypeString:
4262e0b3 71 FcStrFree ((FcChar8 *) v.u.s);
24330d27
KP
72 break;
73 case FcTypeMatrix:
4262e0b3 74 FcMatrixFree ((FcMatrix *) v.u.m);
24330d27
KP
75 break;
76 case FcTypeCharSet:
4262e0b3 77 FcCharSetDestroy ((FcCharSet *) v.u.c);
24330d27 78 break;
d8d73958 79 case FcTypeLangSet:
4262e0b3 80 FcLangSetDestroy ((FcLangSet *) v.u.l);
d8d73958 81 break;
24330d27
KP
82 default:
83 break;
84 }
85}
86
4262e0b3
PL
87FcValue
88FcValueCanonicalize (const FcValue *v)
89{
90 if (v->type & FC_STORAGE_STATIC)
91 {
92 FcValue new = *v;
93
94 switch (v->type & ~FC_STORAGE_STATIC)
95 {
96 case FcTypeString:
97 new.u.s = fc_value_string(v);
98 new.type = FcTypeString;
99 break;
100 case FcTypeCharSet:
101 new.u.c = fc_value_charset(v);
102 new.type = FcTypeCharSet;
103 break;
104 case FcTypeLangSet:
105 new.u.l = fc_value_langset(v);
106 new.type = FcTypeLangSet;
107 break;
108 }
109 return new;
110 }
111 return *v;
112}
113
24330d27
KP
114FcValue
115FcValueSave (FcValue v)
116{
117 switch (v.type) {
118 case FcTypeString:
4262e0b3
PL
119 v.u.s = FcStrCopy (v.u.s);
120 if (!v.u.s)
24330d27
KP
121 v.type = FcTypeVoid;
122 break;
123 case FcTypeMatrix:
4262e0b3
PL
124 v.u.m = FcMatrixCopy (v.u.m);
125 if (!v.u.m)
24330d27
KP
126 v.type = FcTypeVoid;
127 break;
128 case FcTypeCharSet:
4262e0b3
PL
129 v.u.c = FcCharSetCopy ((FcCharSet *) v.u.c);
130 if (!v.u.c)
24330d27
KP
131 v.type = FcTypeVoid;
132 break;
d8d73958 133 case FcTypeLangSet:
4262e0b3
PL
134 v.u.l = FcLangSetCopy (v.u.l);
135 if (!v.u.l)
d8d73958
KP
136 v.type = FcTypeVoid;
137 break;
24330d27
KP
138 default:
139 break;
140 }
141 return v;
142}
143
144void
cd2ec1a9 145FcValueListDestroy (FcValueListPtr l)
24330d27 146{
cd2ec1a9
PL
147 FcValueListPtr next;
148 for (; FcValueListPtrU(l); l = next)
24330d27 149 {
cd2ec1a9 150 switch (FcValueListPtrU(l)->value.type) {
24330d27 151 case FcTypeString:
4262e0b3 152 FcStrFree ((FcChar8 *)FcValueListPtrU(l)->value.u.s);
24330d27
KP
153 break;
154 case FcTypeMatrix:
4262e0b3 155 FcMatrixFree ((FcMatrix *)FcValueListPtrU(l)->value.u.m);
24330d27
KP
156 break;
157 case FcTypeCharSet:
cd2ec1a9 158 FcCharSetDestroy
4262e0b3 159 ((FcCharSet *) (FcValueListPtrU(l)->value.u.c));
24330d27 160 break;
d8d73958 161 case FcTypeLangSet:
cd2ec1a9 162 FcLangSetDestroy
4262e0b3 163 ((FcLangSet *) (FcValueListPtrU(l)->value.u.l));
d8d73958 164 break;
24330d27
KP
165 default:
166 break;
167 }
cd2ec1a9 168 next = FcValueListPtrU(l)->next;
24330d27 169 FcMemFree (FC_MEM_VALLIST, sizeof (FcValueList));
4262e0b3 170 if (l.bank == FC_BANK_DYNAMIC)
cd2ec1a9 171 free(l.u.dyn);
24330d27
KP
172 }
173}
174
0ab36ca8
KP
175FcBool
176FcValueEqual (FcValue va, FcValue vb)
177{
178 if (va.type != vb.type)
179 {
180 if (va.type == FcTypeInteger)
181 {
182 va.type = FcTypeDouble;
183 va.u.d = va.u.i;
184 }
185 if (vb.type == FcTypeInteger)
186 {
187 vb.type = FcTypeDouble;
188 vb.u.d = vb.u.i;
189 }
190 if (va.type != vb.type)
191 return FcFalse;
192 }
193 switch (va.type) {
194 case FcTypeVoid:
195 return FcTrue;
196 case FcTypeInteger:
197 return va.u.i == vb.u.i;
198 case FcTypeDouble:
199 return va.u.d == vb.u.d;
200 case FcTypeString:
4262e0b3 201 return FcStrCmpIgnoreCase (va.u.s, vb.u.s) == 0;
0ab36ca8
KP
202 case FcTypeBool:
203 return va.u.b == vb.u.b;
204 case FcTypeMatrix:
4262e0b3 205 return FcMatrixEqual (va.u.m, vb.u.m);
0ab36ca8 206 case FcTypeCharSet:
4262e0b3 207 return FcCharSetEqual (va.u.c, vb.u.c);
be094850
KP
208 case FcTypeFTFace:
209 return va.u.f == vb.u.f;
d8d73958 210 case FcTypeLangSet:
4262e0b3 211 return FcLangSetEqual (va.u.l, vb.u.l);
0ab36ca8
KP
212 }
213 return FcFalse;
214}
215
d0f07b8d
KP
216static FcChar32
217FcDoubleHash (double d)
218{
219 if (d < 0)
220 d = -d;
221 if (d > 0xffffffff)
222 d = 0xffffffff;
223 return (FcChar32) d;
224}
225
7f37423d 226FcChar32
d0f07b8d
KP
227FcStringHash (const FcChar8 *s)
228{
229 FcChar8 c;
230 FcChar32 h = 0;
231
232 if (s)
233 while ((c = *s++))
234 h = ((h << 1) | (h >> 31)) ^ c;
235 return h;
236}
237
238static FcChar32
4262e0b3 239FcValueHash (const FcValue *v0)
d0f07b8d 240{
4262e0b3 241 FcValue v = FcValueCanonicalize(v0);
d0f07b8d
KP
242 switch (v.type) {
243 case FcTypeVoid:
244 return 0;
245 case FcTypeInteger:
246 return (FcChar32) v.u.i;
247 case FcTypeDouble:
248 return FcDoubleHash (v.u.d);
249 case FcTypeString:
4262e0b3 250 return FcStringHash (v.u.s);
d0f07b8d
KP
251 case FcTypeBool:
252 return (FcChar32) v.u.b;
253 case FcTypeMatrix:
4262e0b3
PL
254 return (FcDoubleHash (v.u.m->xx) ^
255 FcDoubleHash (v.u.m->xy) ^
256 FcDoubleHash (v.u.m->yx) ^
257 FcDoubleHash (v.u.m->yy));
d0f07b8d 258 case FcTypeCharSet:
4262e0b3 259 return (FcChar32) v.u.c->num;
d0f07b8d
KP
260 case FcTypeFTFace:
261 return FcStringHash ((const FcChar8 *) ((FT_Face) v.u.f)->family_name) ^
262 FcStringHash ((const FcChar8 *) ((FT_Face) v.u.f)->style_name);
d8d73958 263 case FcTypeLangSet:
4262e0b3 264 return FcLangSetHash (v.u.l);
d0f07b8d
KP
265 }
266 return FcFalse;
267}
268
0ab36ca8 269static FcBool
cd2ec1a9 270FcValueListEqual (FcValueListPtr la, FcValueListPtr lb)
0ab36ca8 271{
cd2ec1a9 272 if (FcValueListPtrU(la) == FcValueListPtrU(lb))
d8d73958
KP
273 return FcTrue;
274
cd2ec1a9 275 while (FcValueListPtrU(la) && FcValueListPtrU(lb))
0ab36ca8 276 {
cd2ec1a9
PL
277 if (!FcValueEqual (FcValueListPtrU(la)->value,
278 FcValueListPtrU(lb)->value))
0ab36ca8 279 return FcFalse;
cd2ec1a9
PL
280 la = FcValueListPtrU(la)->next;
281 lb = FcValueListPtrU(lb)->next;
0ab36ca8 282 }
cd2ec1a9 283 if (FcValueListPtrU(la) || FcValueListPtrU(lb))
0ab36ca8
KP
284 return FcFalse;
285 return FcTrue;
286}
287
d0f07b8d 288static FcChar32
cd2ec1a9 289FcValueListHash (FcValueListPtr l)
d0f07b8d
KP
290{
291 FcChar32 hash = 0;
292
cd2ec1a9 293 while (FcValueListPtrU(l))
d0f07b8d 294 {
cd2ec1a9 295 hash = ((hash << 1) | (hash >> 31)) ^
4262e0b3 296 FcValueHash (&FcValueListPtrU(l)->value);
cd2ec1a9 297 l = FcValueListPtrU(l)->next;
d0f07b8d
KP
298 }
299 return hash;
300}
301
24330d27
KP
302void
303FcPatternDestroy (FcPattern *p)
304{
305 int i;
306
d8d73958 307 if (p->ref == FC_REF_CONSTANT || --p->ref > 0)
6f6563ed
KP
308 return;
309
d7b3ac63
PL
310 if (FcPatternFindFullFname (p))
311 {
7358dae4 312 FcStrFree ((FcChar8 *)FcPatternFindFullFname (p));
d7b3ac63
PL
313 FcPatternAddFullFname (p, 0);
314 }
315
24330d27 316 for (i = 0; i < p->num; i++)
cd2ec1a9 317 FcValueListDestroy ((FcPatternEltU(p->elts)+i)->values);
24330d27
KP
318
319 p->num = 0;
4262e0b3 320 if (FcPatternEltU(p->elts) && p->elts.bank == FC_BANK_DYNAMIC)
24330d27
KP
321 {
322 FcMemFree (FC_MEM_PATELT, p->size * sizeof (FcPatternElt));
cd2ec1a9
PL
323 free (FcPatternEltU(p->elts));
324 p->elts = FcPatternEltPtrCreateDynamic(0);
24330d27
KP
325 }
326 p->size = 0;
327 FcMemFree (FC_MEM_PATTERN, sizeof (FcPattern));
328 free (p);
329}
330
d8d73958
KP
331#define FC_VALUE_LIST_HASH_SIZE 257
332#define FC_PATTERN_HASH_SIZE 67
333
334typedef struct _FcValueListEnt FcValueListEnt;
335
336struct _FcValueListEnt {
337 FcValueListEnt *next;
cd2ec1a9 338 FcValueListPtr list;
05336fd8 339 FcChar32 hash, pad;
d8d73958
KP
340};
341
2d79b586
KP
342typedef union _FcValueListAlign {
343 FcValueListEnt ent;
344 FcValueList list;
345} FcValueListAlign;
346
d8d73958
KP
347static int FcValueListFrozenCount[FcTypeLangSet + 1];
348static int FcValueListFrozenBytes[FcTypeLangSet + 1];
67accef4 349static char FcValueListFrozenName[][8] = {
d8d73958
KP
350 "Void",
351 "Integer",
352 "Double",
353 "String",
354 "Bool",
355 "Matrix",
356 "CharSet",
357 "FTFace",
358 "LangSet"
359};
360
361void
362FcValueListReport (void);
363
364void
365FcValueListReport (void)
366{
367 FcType t;
368
369 printf ("Fc Frozen Values:\n");
370 printf ("\t%8s %9s %9s\n", "Type", "Count", "Bytes");
371 for (t = FcTypeVoid; t <= FcTypeLangSet; t++)
372 printf ("\t%8s %9d %9d\n", FcValueListFrozenName[t],
373 FcValueListFrozenCount[t], FcValueListFrozenBytes[t]);
374}
375
376static FcValueListEnt *
cd2ec1a9 377FcValueListEntCreate (FcValueListPtr h)
d8d73958 378{
2d79b586 379 FcValueListAlign *ea;
d8d73958 380 FcValueListEnt *e;
cd2ec1a9
PL
381 FcValueListPtr l;
382 FcValueList *new;
d8d73958 383 int n;
d8d73958
KP
384 int size;
385
386 n = 0;
cd2ec1a9 387 for (l = h; FcValueListPtrU(l); l = FcValueListPtrU(l)->next)
d8d73958 388 n++;
1c52c0f0 389 size = sizeof (FcValueListAlign) + n * sizeof (FcValueList);
cd2ec1a9
PL
390 FcValueListFrozenCount[FcValueListPtrU(h)->value.type]++;
391 FcValueListFrozenBytes[FcValueListPtrU(h)->value.type] += size;
392 // this leaks for some reason
393 ea = malloc (sizeof (FcValueListAlign));
2d79b586 394 if (!ea)
d8d73958 395 return 0;
cd2ec1a9
PL
396 new = malloc (n * sizeof (FcValueList));
397 if (!new)
398 return 0;
399 memset(new, 0, n * sizeof (FcValueList));
d8d73958 400 FcMemAlloc (FC_MEM_VALLIST, size);
2d79b586 401 e = &ea->ent;
cd2ec1a9
PL
402 e->list = (FcValueListPtr) FcValueListPtrCreateDynamic(new);
403 for (l = h; FcValueListPtrU(l);
404 l = FcValueListPtrU(l)->next, new++)
d8d73958 405 {
4262e0b3 406 if ((FcValueListPtrU(l)->value.type & ~FC_STORAGE_STATIC) == FcTypeString)
d8d73958
KP
407 {
408 new->value.type = FcTypeString;
7f37423d 409 new->value.u.s = FcStrStaticName
4262e0b3 410 (fc_value_string(&FcValueListPtrU(l)->value));
d8d73958
KP
411 }
412 else
05336fd8 413 {
4262e0b3
PL
414 new->value = FcValueSave (FcValueCanonicalize
415 (&FcValueListPtrU(l)->value));
cd2ec1a9
PL
416 }
417 new->binding = FcValueListPtrU(l)->binding;
418 if (FcValueListPtrU(FcValueListPtrU(l)->next))
419 {
420 new->next = FcValueListPtrCreateDynamic(new + 1);
05336fd8 421 }
d8d73958 422 else
cd2ec1a9
PL
423 {
424 new->next = FcValueListPtrCreateDynamic(0);
425 }
d8d73958
KP
426 }
427 return e;
428}
429
34cd0514
CW
430static void
431FcValueListEntDestroy (FcValueListEnt *e)
432{
cd2ec1a9 433 FcValueListPtr l;
34cd0514 434
cd2ec1a9 435 FcValueListFrozenCount[FcValueListPtrU(e->list)->value.type]--;
34cd0514
CW
436
437 /* XXX: We should perform these two operations with "size" as
438 computed in FcValueListEntCreate, but we don't have access to
439 that value here. Without this, the FcValueListFrozenBytes
440 values will be wrong as will the FcMemFree counts.
441
442 FcValueListFrozenBytes[e->list->value.type] -= size;
443 FcMemFree (FC_MEM_VALLIST, size);
444 */
445
cd2ec1a9
PL
446 for (l = e->list; FcValueListPtrU(l);
447 l = FcValueListPtrU(l)->next)
34cd0514 448 {
cd2ec1a9
PL
449 if (FcValueListPtrU(l)->value.type != FcTypeString)
450 FcValueDestroy (FcValueListPtrU(l)->value);
34cd0514
CW
451 }
452 /* XXX: Are we being too chummy with the implementation here to
453 free(e) when it was actually the enclosing FcValueListAlign
454 that was allocated? */
455 free (e);
456}
457
d8d73958
KP
458static int FcValueListTotal;
459static int FcValueListUsed;
460
34cd0514
CW
461static FcValueListEnt *FcValueListHashTable[FC_VALUE_LIST_HASH_SIZE];
462
cd2ec1a9
PL
463static FcValueListPtr
464FcValueListFreeze (FcValueListPtr l)
d8d73958 465{
d8d73958 466 FcChar32 hash = FcValueListHash (l);
34cd0514 467 FcValueListEnt **bucket = &FcValueListHashTable[hash % FC_VALUE_LIST_HASH_SIZE];
d8d73958
KP
468 FcValueListEnt *ent;
469
470 FcValueListTotal++;
471 for (ent = *bucket; ent; ent = ent->next)
472 {
473 if (ent->hash == hash && FcValueListEqual (ent->list, l))
474 return ent->list;
475 }
476
477 ent = FcValueListEntCreate (l);
478 if (!ent)
cd2ec1a9 479 return FcValueListPtrCreateDynamic(0);
d8d73958
KP
480
481 FcValueListUsed++;
482 ent->hash = hash;
483 ent->next = *bucket;
484 *bucket = ent;
485 return ent->list;
486}
487
34cd0514
CW
488static void
489FcValueListThawAll (void)
490{
491 int i;
492 FcValueListEnt *ent, *next;
493
494 for (i = 0; i < FC_VALUE_LIST_HASH_SIZE; i++)
495 {
496 for (ent = FcValueListHashTable[i]; ent; ent = next)
497 {
498 next = ent->next;
499 FcValueListEntDestroy (ent);
500 }
501 FcValueListHashTable[i] = 0;
502 }
503
504 FcValueListTotal = 0;
505 FcValueListUsed = 0;
506}
507
d8d73958
KP
508static FcChar32
509FcPatternBaseHash (FcPattern *b)
510{
511 FcChar32 hash = b->num;
512 int i;
513
514 for (i = 0; i < b->num; i++)
cd2ec1a9
PL
515 hash = ((hash << 1) | (hash >> 31)) ^
516 (long) (FcValueListPtrU((FcPatternEltU(b->elts)+i)->values));
d8d73958
KP
517 return hash;
518}
519
520typedef struct _FcPatternEnt FcPatternEnt;
521
522struct _FcPatternEnt {
523 FcPatternEnt *next;
524 FcChar32 hash;
cd2ec1a9 525 FcPattern *pattern;
d8d73958
KP
526};
527
528static int FcPatternTotal;
529static int FcPatternUsed;
530
34cd0514
CW
531static FcPatternEnt *FcPatternHashTable[FC_VALUE_LIST_HASH_SIZE];
532
d8d73958
KP
533static FcPattern *
534FcPatternBaseFreeze (FcPattern *b)
535{
cd2ec1a9
PL
536 FcPattern *ep;
537 FcPatternElt *epp;
d8d73958 538 FcChar32 hash = FcPatternBaseHash (b);
34cd0514 539 FcPatternEnt **bucket = &FcPatternHashTable[hash % FC_VALUE_LIST_HASH_SIZE];
d8d73958
KP
540 FcPatternEnt *ent;
541 int i;
d8d73958
KP
542
543 FcPatternTotal++;
544 for (ent = *bucket; ent; ent = ent->next)
545 {
cd2ec1a9
PL
546 if (ent->hash == hash && b->num == ent->pattern->num)
547 {
d8d73958
KP
548 for (i = 0; i < b->num; i++)
549 {
cd2ec1a9
PL
550 if (FcObjectPtrCompare((FcPatternEltU(b->elts)+i)->object,
551 (FcPatternEltU(ent->pattern->elts)+i)->object) != 0)
d8d73958 552 break;
cd2ec1a9
PL
553 if (FcValueListPtrU((FcPatternEltU(b->elts)+i)->values) !=
554 FcValueListPtrU((FcPatternEltU(ent->pattern->elts)+i)->values))
d8d73958
KP
555 break;
556 }
557 if (i == b->num)
cd2ec1a9 558 return ent->pattern;
d8d73958
KP
559 }
560 }
561
562 /*
1c52c0f0 563 * Compute size of pattern + elts
d8d73958 564 */
cd2ec1a9 565 ent = malloc (sizeof (FcPatternEnt));
d8d73958
KP
566 if (!ent)
567 return 0;
568
cd2ec1a9 569 FcMemAlloc (FC_MEM_PATTERN, sizeof (FcPatternEnt));
d8d73958
KP
570 FcPatternUsed++;
571
cd2ec1a9
PL
572 ep = FcPatternCreate();
573 if (!ep)
574 return 0;
575 ent->pattern = ep;
576 epp = malloc(b->num * sizeof (FcPatternElt));
577 if (!epp)
578 goto bail;
579 ep->elts = FcPatternEltPtrCreateDynamic(epp);
580
581 FcMemAlloc (FC_MEM_PATELT, sizeof (FcPatternElt)*(b->num));
582
583 ep->num = b->num;
584 ep->size = b->num;
585 ep->ref = FC_REF_CONSTANT;
d8d73958 586
d8d73958
KP
587 for (i = 0; i < b->num; i++)
588 {
cd2ec1a9
PL
589 (FcPatternEltU(ep->elts)+i)->values =
590 (FcPatternEltU(b->elts)+i)->values;
591 (FcPatternEltU(ep->elts)+i)->object =
592 (FcPatternEltU(b->elts)+i)->object;
d8d73958
KP
593 }
594
793154ed
PL
595 if (FcPatternFindElt (b, FC_FILE))
596 FcPatternTransferFullFname (ep, b);
597
d8d73958
KP
598 ent->hash = hash;
599 ent->next = *bucket;
600 *bucket = ent;
cd2ec1a9
PL
601 return ent->pattern;
602 bail:
603 free(ent);
604 FcMemFree (FC_MEM_PATTERN, sizeof (FcPatternEnt));
605 FcPatternUsed--;
606 return 0;
d8d73958
KP
607}
608
34cd0514
CW
609static void
610FcPatternBaseThawAll (void)
611{
612 int i;
613 FcPatternEnt *ent, *next;
614
615 for (i = 0; i < FC_VALUE_LIST_HASH_SIZE; i++)
616 {
617 for (ent = FcPatternHashTable[i]; ent; ent = next)
618 {
619 next = ent->next;
620 free (ent);
621 }
622 FcPatternHashTable[i] = 0;
623 }
624
625 FcPatternTotal = 0;
626 FcPatternUsed = 0;
627}
628
d8d73958
KP
629FcPattern *
630FcPatternFreeze (FcPattern *p)
631{
632 FcPattern *b, *n = 0;
cd2ec1a9 633 FcPatternElt *e;
d8d73958
KP
634 int i;
635
2ff4f076
RB
636 if (p->ref == FC_REF_CONSTANT)
637 return p;
638
cd2ec1a9 639 b = FcPatternCreate();
d8d73958 640 if (!b)
cd2ec1a9
PL
641 return 0;
642
d8d73958
KP
643 b->num = p->num;
644 b->size = b->num;
645 b->ref = 1;
cd2ec1a9
PL
646
647 e = malloc(b->num * sizeof (FcPatternElt));
648 if (!e)
649 return 0;
650 b->elts = FcPatternEltPtrCreateDynamic(e);
651 FcMemAlloc (FC_MEM_PATELT, sizeof (FcPatternElt)*(b->num));
652
d8d73958
KP
653 /*
654 * Freeze object lists
655 */
656 for (i = 0; i < p->num; i++)
657 {
cd2ec1a9
PL
658 (FcPatternEltU(b->elts)+i)->object =
659 (FcPatternEltU(p->elts)+i)->object;
660 (FcPatternEltU(b->elts)+i)->values =
661 FcValueListFreeze((FcPatternEltU(p->elts)+i)->values);
662 if (!FcValueListPtrU((FcPatternEltU(p->elts)+i)->values))
d8d73958
KP
663 goto bail;
664 }
793154ed
PL
665
666 if (FcPatternFindElt (p, FC_FILE))
667 FcPatternTransferFullFname (b, p);
668
d8d73958
KP
669 /*
670 * Freeze base
671 */
672 n = FcPatternBaseFreeze (b);
673#ifdef CHATTY
674 if (FcDebug() & FC_DBG_MEMORY)
675 {
676 printf ("ValueLists: total %9d used %9d\n", FcValueListTotal, FcValueListUsed);
677 printf ("Patterns: total %9d used %9d\n", FcPatternTotal, FcPatternUsed);
678 }
679#endif
cd2ec1a9
PL
680 bail:
681 free(FcPatternEltU(b->elts));
682 b->elts = FcPatternEltPtrCreateDynamic(0);
683 FcMemFree (FC_MEM_PATELT, sizeof (FcPatternElt)*(b->num));
684 b->num = -1;
d8d73958
KP
685#ifdef DEBUG
686 assert (FcPatternEqual (n, p));
687#endif
688 return n;
689}
690
e9be9cd1
KP
691static int
692FcPatternPosition (const FcPattern *p, const char *object)
24330d27 693{
e9be9cd1 694 int low, high, mid, c;
cd2ec1a9 695 FcObjectPtr obj;
0ab36ca8 696
4262e0b3 697 obj = FcObjectToPtr(object);
0ab36ca8 698 low = 0;
e9be9cd1
KP
699 high = p->num - 1;
700 c = 1;
701 mid = 0;
702 while (low <= high)
24330d27 703 {
e9be9cd1 704 mid = (low + high) >> 1;
cd2ec1a9 705 c = FcObjectPtrCompare((FcPatternEltU(p->elts)+mid)->object, obj);
e9be9cd1
KP
706 if (c == 0)
707 return mid;
708 if (c < 0)
709 low = mid + 1;
0ab36ca8 710 else
e9be9cd1 711 high = mid - 1;
24330d27 712 }
e9be9cd1
KP
713 if (c < 0)
714 mid++;
715 return -(mid + 1);
716}
24330d27 717
e9be9cd1
KP
718FcPatternElt *
719FcPatternFindElt (const FcPattern *p, const char *object)
720{
721 int i = FcPatternPosition (p, object);
722 if (i < 0)
0ab36ca8 723 return 0;
cd2ec1a9 724 return FcPatternEltU(p->elts)+i;
e9be9cd1 725}
24330d27 726
e9be9cd1
KP
727FcPatternElt *
728FcPatternInsertElt (FcPattern *p, const char *object)
729{
730 int i;
731 FcPatternElt *e;
732
733 i = FcPatternPosition (p, object);
734 if (i < 0)
24330d27 735 {
e9be9cd1
KP
736 i = -i - 1;
737
cd2ec1a9 738 /* reallocate array */
e9be9cd1 739 if (p->num + 1 >= p->size)
24330d27 740 {
e9be9cd1 741 int s = p->size + 16;
cd2ec1a9
PL
742 if (FcPatternEltU(p->elts))
743 {
744 FcPatternElt *e0 = FcPatternEltU(p->elts);
745 e = (FcPatternElt *) realloc (e0, s * sizeof (FcPatternElt));
746 if (!e) /* maybe it was mmapped */
747 {
748 e = malloc(s * sizeof (FcPatternElt));
749 if (e)
750 memcpy(e, e0, p->num * sizeof (FcPatternElt));
751 }
752 }
e9be9cd1
KP
753 else
754 e = (FcPatternElt *) malloc (s * sizeof (FcPatternElt));
755 if (!e)
756 return FcFalse;
cd2ec1a9 757 p->elts = FcPatternEltPtrCreateDynamic(e);
e9be9cd1
KP
758 if (p->size)
759 FcMemFree (FC_MEM_PATELT, p->size * sizeof (FcPatternElt));
760 FcMemAlloc (FC_MEM_PATELT, s * sizeof (FcPatternElt));
761 while (p->size < s)
762 {
0fa680f0 763 (FcPatternEltU(p->elts)+p->size)->object = 0;
cd2ec1a9
PL
764 (FcPatternEltU(p->elts)+p->size)->values =
765 FcValueListPtrCreateDynamic(0);
e9be9cd1
KP
766 p->size++;
767 }
24330d27 768 }
e9be9cd1
KP
769
770 /* move elts up */
cd2ec1a9
PL
771 memmove (FcPatternEltU(p->elts) + i + 1,
772 FcPatternEltU(p->elts) + i,
e9be9cd1
KP
773 sizeof (FcPatternElt) *
774 (p->num - i));
775
776 /* bump count */
777 p->num++;
778
4262e0b3 779 (FcPatternEltU(p->elts)+i)->object = FcObjectToPtr (object);
cd2ec1a9 780 (FcPatternEltU(p->elts)+i)->values = FcValueListPtrCreateDynamic(0);
24330d27
KP
781 }
782
cd2ec1a9 783 return FcPatternEltU(p->elts)+i;
24330d27
KP
784}
785
0ab36ca8 786FcBool
e9be9cd1 787FcPatternEqual (const FcPattern *pa, const FcPattern *pb)
0ab36ca8
KP
788{
789 int i;
790
bd724c85
KP
791 if (pa == pb)
792 return FcTrue;
793
0ab36ca8
KP
794 if (pa->num != pb->num)
795 return FcFalse;
796 for (i = 0; i < pa->num; i++)
797 {
cd2ec1a9
PL
798 if (FcObjectPtrCompare((FcPatternEltU(pa->elts)+i)->object,
799 (FcPatternEltU(pb->elts)+i)->object) != 0)
0ab36ca8 800 return FcFalse;
cd2ec1a9
PL
801 if (!FcValueListEqual ((FcPatternEltU(pa->elts)+i)->values,
802 (FcPatternEltU(pb->elts)+i)->values))
0ab36ca8
KP
803 return FcFalse;
804 }
805 return FcTrue;
806}
807
d0f07b8d
KP
808FcChar32
809FcPatternHash (const FcPattern *p)
810{
811 int i;
812 FcChar32 h = 0;
813
814 for (i = 0; i < p->num; i++)
815 {
816 h = (((h << 1) | (h >> 31)) ^
8245771d 817 FcStringHash ((FcChar8 *)FcObjectPtrU ((FcPatternEltU(p->elts)+i)->object)) ^
cd2ec1a9 818 FcValueListHash ((FcPatternEltU(p->elts)+i)->values));
d0f07b8d
KP
819 }
820 return h;
821}
822
e9be9cd1 823FcBool
cd2ec1a9 824FcPatternEqualSubset (const FcPattern *pai, const FcPattern *pbi, const FcObjectSet *os)
e9be9cd1
KP
825{
826 FcPatternElt *ea, *eb;
827 int i;
828
829 for (i = 0; i < os->nobject; i++)
830 {
4262e0b3
PL
831 ea = FcPatternFindElt (pai, os->objects[i]);
832 eb = FcPatternFindElt (pbi, os->objects[i]);
e9be9cd1
KP
833 if (ea)
834 {
835 if (!eb)
836 return FcFalse;
837 if (!FcValueListEqual (ea->values, eb->values))
838 return FcFalse;
839 }
840 else
841 {
842 if (eb)
843 return FcFalse;
844 }
845 }
846 return FcTrue;
847}
848
24330d27 849FcBool
82f4243f
KP
850FcPatternAddWithBinding (FcPattern *p,
851 const char *object,
852 FcValue value,
853 FcValueBinding binding,
854 FcBool append)
24330d27
KP
855{
856 FcPatternElt *e;
cd2ec1a9 857 FcValueListPtr new, *prev;
1c9fdcca
PL
858 FcValueList *newp;
859 FcObjectPtr objectPtr;
24330d27 860
d8d73958
KP
861 if (p->ref == FC_REF_CONSTANT)
862 goto bail0;
863
cd2ec1a9
PL
864 newp = malloc (sizeof (FcValueList));
865 if (!newp)
24330d27
KP
866 goto bail0;
867
cd2ec1a9
PL
868 memset(newp, 0, sizeof (FcValueList));
869 new = FcValueListPtrCreateDynamic(newp);
24330d27
KP
870 FcMemAlloc (FC_MEM_VALLIST, sizeof (FcValueList));
871 /* dup string */
872 value = FcValueSave (value);
873 if (value.type == FcTypeVoid)
874 goto bail1;
875
1c9fdcca
PL
876 /* quick and dirty hack to enable FcCompareFamily/FcCompareString
877 * speedup: only allow strings to be added under the FC_FAMILY,
878 * FC_FOUNDRY, FC_STYLE, FC_RASTERIZER keys.
879 * and charsets under FC_CHARSET key.
880 * This is slightly semantically different from the old behaviour,
881 * but fonts shouldn't be getting non-strings here anyway.
4f8b266f 882 * a better hack would use FcBaseObjectTypes to check all objects. */
1c9fdcca
PL
883 objectPtr = FcObjectToPtr(object);
884 if ((objectPtr == FcObjectToPtr(FC_FAMILY)
885 || objectPtr == FcObjectToPtr(FC_FOUNDRY)
886 || objectPtr == FcObjectToPtr(FC_STYLE)
887 || objectPtr == FcObjectToPtr(FC_RASTERIZER))
888 && value.type != FcTypeString)
889 goto bail1;
890 if (objectPtr == FcObjectToPtr(FC_CHARSET)
891 && value.type != FcTypeCharSet)
4f8b266f
PL
892 goto bail1;
893
cd2ec1a9
PL
894 FcValueListPtrU(new)->value = value;
895 FcValueListPtrU(new)->binding = binding;
896 FcValueListPtrU(new)->next = FcValueListPtrCreateDynamic(0);
24330d27 897
e9be9cd1 898 e = FcPatternInsertElt (p, object);
24330d27
KP
899 if (!e)
900 goto bail2;
901
902 if (append)
903 {
cd2ec1a9
PL
904 for (prev = &e->values; FcValueListPtrU(*prev); prev = &FcValueListPtrU(*prev)->next)
905 ;
24330d27
KP
906 *prev = new;
907 }
908 else
909 {
cd2ec1a9 910 FcValueListPtrU(new)->next = e->values;
24330d27
KP
911 e->values = new;
912 }
913
914 return FcTrue;
915
916bail2:
917 switch (value.type) {
918 case FcTypeString:
4262e0b3 919 FcStrFree ((FcChar8 *) value.u.s);
24330d27
KP
920 break;
921 case FcTypeMatrix:
4262e0b3 922 FcMatrixFree ((FcMatrix *) value.u.m);
24330d27
KP
923 break;
924 case FcTypeCharSet:
4262e0b3 925 FcCharSetDestroy ((FcCharSet *) value.u.c);
24330d27 926 break;
d8d73958 927 case FcTypeLangSet:
4262e0b3 928 FcLangSetDestroy ((FcLangSet *) value.u.l);
d8d73958 929 break;
24330d27
KP
930 default:
931 break;
932 }
933bail1:
934 FcMemFree (FC_MEM_VALLIST, sizeof (FcValueList));
cd2ec1a9 935 free (FcValueListPtrU(new));
24330d27
KP
936bail0:
937 return FcFalse;
938}
939
82f4243f
KP
940FcBool
941FcPatternAdd (FcPattern *p, const char *object, FcValue value, FcBool append)
942{
943 return FcPatternAddWithBinding (p, object, value, FcValueBindingStrong, append);
944}
945
946FcBool
947FcPatternAddWeak (FcPattern *p, const char *object, FcValue value, FcBool append)
948{
949 return FcPatternAddWithBinding (p, object, value, FcValueBindingWeak, append);
950}
951
24330d27
KP
952FcBool
953FcPatternDel (FcPattern *p, const char *object)
954{
955 FcPatternElt *e;
24330d27 956
e9be9cd1 957 e = FcPatternFindElt (p, object);
24330d27
KP
958 if (!e)
959 return FcFalse;
960
24330d27
KP
961 /* destroy value */
962 FcValueListDestroy (e->values);
963
964 /* shuffle existing ones down */
cd2ec1a9
PL
965 memmove (e, e+1,
966 (FcPatternEltU(p->elts) + p->num - (e + 1)) *
967 sizeof (FcPatternElt));
24330d27 968 p->num--;
0fa680f0 969 (FcPatternEltU(p->elts)+p->num)->object = 0;
cd2ec1a9 970 (FcPatternEltU(p->elts)+p->num)->values = FcValueListPtrCreateDynamic(0);
24330d27
KP
971 return FcTrue;
972}
973
4f27c1c0
KP
974FcBool
975FcPatternRemove (FcPattern *p, const char *object, int id)
976{
cd2ec1a9
PL
977 FcPatternElt *e;
978 FcValueListPtr *prev, l;
4f27c1c0
KP
979
980 e = FcPatternFindElt (p, object);
981 if (!e)
982 return FcFalse;
cd2ec1a9
PL
983 for (prev = &e->values;
984 FcValueListPtrU(l = *prev);
985 prev = &FcValueListPtrU(l)->next)
4f27c1c0
KP
986 {
987 if (!id)
988 {
cd2ec1a9
PL
989 *prev = FcValueListPtrU(l)->next;
990 FcValueListPtrU(l)->next = FcValueListPtrCreateDynamic(0);
4f27c1c0 991 FcValueListDestroy (l);
cd2ec1a9 992 if (!FcValueListPtrU(e->values))
4f27c1c0
KP
993 FcPatternDel (p, object);
994 return FcTrue;
995 }
996 id--;
997 }
998 return FcFalse;
999}
1000
24330d27
KP
1001FcBool
1002FcPatternAddInteger (FcPattern *p, const char *object, int i)
1003{
1004 FcValue v;
1005
1006 v.type = FcTypeInteger;
1007 v.u.i = i;
1008 return FcPatternAdd (p, object, v, FcTrue);
1009}
1010
1011FcBool
1012FcPatternAddDouble (FcPattern *p, const char *object, double d)
1013{
1014 FcValue v;
1015
1016 v.type = FcTypeDouble;
1017 v.u.d = d;
1018 return FcPatternAdd (p, object, v, FcTrue);
1019}
1020
1021
1022FcBool
ccb3e93b 1023FcPatternAddString (FcPattern *p, const char *object, const FcChar8 *s)
24330d27
KP
1024{
1025 FcValue v;
1026
1027 v.type = FcTypeString;
7f37423d 1028 v.u.s = FcStrStaticName(s);
24330d27
KP
1029 return FcPatternAdd (p, object, v, FcTrue);
1030}
1031
1032FcBool
1033FcPatternAddMatrix (FcPattern *p, const char *object, const FcMatrix *s)
1034{
1035 FcValue v;
1036
1037 v.type = FcTypeMatrix;
4262e0b3 1038 v.u.m = s;
24330d27
KP
1039 return FcPatternAdd (p, object, v, FcTrue);
1040}
1041
1042
1043FcBool
1044FcPatternAddBool (FcPattern *p, const char *object, FcBool b)
1045{
1046 FcValue v;
1047
1048 v.type = FcTypeBool;
1049 v.u.b = b;
1050 return FcPatternAdd (p, object, v, FcTrue);
1051}
1052
1053FcBool
1054FcPatternAddCharSet (FcPattern *p, const char *object, const FcCharSet *c)
1055{
1056 FcValue v;
1057
1058 v.type = FcTypeCharSet;
4262e0b3 1059 v.u.c = (FcCharSet *)c;
24330d27
KP
1060 return FcPatternAdd (p, object, v, FcTrue);
1061}
1062
be094850
KP
1063FcBool
1064FcPatternAddFTFace (FcPattern *p, const char *object, const FT_Face f)
1065{
1066 FcValue v;
1067
1068 v.type = FcTypeFTFace;
1069 v.u.f = (void *) f;
1070 return FcPatternAdd (p, object, v, FcTrue);
1071}
1072
d8d73958
KP
1073FcBool
1074FcPatternAddLangSet (FcPattern *p, const char *object, const FcLangSet *ls)
1075{
1076 FcValue v;
1077
1078 v.type = FcTypeLangSet;
4262e0b3 1079 v.u.l = (FcLangSet *)ls;
d8d73958
KP
1080 return FcPatternAdd (p, object, v, FcTrue);
1081}
1082
24330d27 1083FcResult
bff80114 1084FcPatternGet (const FcPattern *p, const char *object, int id, FcValue *v)
24330d27
KP
1085{
1086 FcPatternElt *e;
cd2ec1a9 1087 FcValueListPtr l;
24330d27 1088
e9be9cd1 1089 e = FcPatternFindElt (p, object);
24330d27
KP
1090 if (!e)
1091 return FcResultNoMatch;
cd2ec1a9 1092 for (l = e->values; FcValueListPtrU(l); l = FcValueListPtrU(l)->next)
24330d27
KP
1093 {
1094 if (!id)
1095 {
4262e0b3 1096 *v = FcValueCanonicalize(&FcValueListPtrU(l)->value);
24330d27
KP
1097 return FcResultMatch;
1098 }
1099 id--;
1100 }
1101 return FcResultNoId;
1102}
1103
1104FcResult
bff80114 1105FcPatternGetInteger (const FcPattern *p, const char *object, int id, int *i)
24330d27
KP
1106{
1107 FcValue v;
1108 FcResult r;
1109
1110 r = FcPatternGet (p, object, id, &v);
1111 if (r != FcResultMatch)
1112 return r;
1113 switch (v.type) {
1114 case FcTypeDouble:
1115 *i = (int) v.u.d;
1116 break;
1117 case FcTypeInteger:
1118 *i = v.u.i;
1119 break;
1120 default:
1121 return FcResultTypeMismatch;
1122 }
1123 return FcResultMatch;
1124}
1125
1126FcResult
bff80114 1127FcPatternGetDouble (const FcPattern *p, const char *object, int id, double *d)
24330d27
KP
1128{
1129 FcValue v;
1130 FcResult r;
1131
1132 r = FcPatternGet (p, object, id, &v);
1133 if (r != FcResultMatch)
1134 return r;
1135 switch (v.type) {
1136 case FcTypeDouble:
1137 *d = v.u.d;
1138 break;
1139 case FcTypeInteger:
1140 *d = (double) v.u.i;
1141 break;
1142 default:
1143 return FcResultTypeMismatch;
1144 }
1145 return FcResultMatch;
1146}
1147
1148FcResult
bff80114 1149FcPatternGetString (const FcPattern *p, const char *object, int id, FcChar8 ** s)
24330d27
KP
1150{
1151 FcValue v;
1152 FcResult r;
1153
1154 r = FcPatternGet (p, object, id, &v);
1155 if (r != FcResultMatch)
1156 return r;
1157 if (v.type != FcTypeString)
1158 return FcResultTypeMismatch;
e77c1718
PL
1159
1160 if (FcObjectToPtr(object) == FcObjectToPtr(FC_FILE))
1161 {
1162 const char *fn, *fpath;
1163 FcChar8 *fname;
1164 int size;
1165
1166 fn = FcPatternFindFullFname(p);
1167 if (fn)
1168 {
1169 *s = (FcChar8 *) fn;
1170 return FcResultMatch;
1171 }
1172
1173 if (!p->bank)
1174 {
1175 *s = (FcChar8 *) v.u.s;
1176 return FcResultMatch;
1177 }
1178
1179 fpath = FcCacheFindBankDir (p->bank);
1180 size = strlen((char*)fpath) + 1 + strlen ((char *)v.u.s) + 1;
1181 fname = malloc (size);
1182 if (!fname)
1183 return FcResultOutOfMemory;
1184
1185 FcMemAlloc (FC_MEM_STRING, size);
1186 strcpy ((char *)fname, (char *)fpath);
1187 strcat ((char *)fname, "/");
1188 strcat ((char *)fname, (char *)v.u.s);
1189
1190 FcPatternAddFullFname (p, (const char *)fname);
1191 *s = (FcChar8 *)fname;
1192 return FcResultMatch;
1193 }
1194
4262e0b3 1195 *s = (FcChar8 *) v.u.s;
24330d27
KP
1196 return FcResultMatch;
1197}
1198
1199FcResult
bff80114 1200FcPatternGetMatrix(const FcPattern *p, const char *object, int id, FcMatrix **m)
24330d27
KP
1201{
1202 FcValue v;
1203 FcResult r;
1204
1205 r = FcPatternGet (p, object, id, &v);
1206 if (r != FcResultMatch)
1207 return r;
1208 if (v.type != FcTypeMatrix)
1209 return FcResultTypeMismatch;
4262e0b3 1210 *m = (FcMatrix *)v.u.m;
24330d27
KP
1211 return FcResultMatch;
1212}
1213
1214
1215FcResult
bff80114 1216FcPatternGetBool(const FcPattern *p, const char *object, int id, FcBool *b)
24330d27
KP
1217{
1218 FcValue v;
1219 FcResult r;
1220
1221 r = FcPatternGet (p, object, id, &v);
1222 if (r != FcResultMatch)
1223 return r;
1224 if (v.type != FcTypeBool)
1225 return FcResultTypeMismatch;
1226 *b = v.u.b;
1227 return FcResultMatch;
1228}
1229
1230FcResult
bff80114 1231FcPatternGetCharSet(const FcPattern *p, const char *object, int id, FcCharSet **c)
24330d27
KP
1232{
1233 FcValue v;
1234 FcResult r;
1235
1236 r = FcPatternGet (p, object, id, &v);
1237 if (r != FcResultMatch)
1238 return r;
1239 if (v.type != FcTypeCharSet)
1240 return FcResultTypeMismatch;
4262e0b3 1241 *c = (FcCharSet *)v.u.c;
24330d27
KP
1242 return FcResultMatch;
1243}
1244
be094850 1245FcResult
bff80114 1246FcPatternGetFTFace(const FcPattern *p, const char *object, int id, FT_Face *f)
be094850
KP
1247{
1248 FcValue v;
1249 FcResult r;
1250
1251 r = FcPatternGet (p, object, id, &v);
1252 if (r != FcResultMatch)
1253 return r;
1254 if (v.type != FcTypeFTFace)
1255 return FcResultTypeMismatch;
1256 *f = (FT_Face) v.u.f;
1257 return FcResultMatch;
1258}
1259
d8d73958 1260FcResult
bff80114 1261FcPatternGetLangSet(const FcPattern *p, const char *object, int id, FcLangSet **ls)
d8d73958
KP
1262{
1263 FcValue v;
1264 FcResult r;
1265
1266 r = FcPatternGet (p, object, id, &v);
1267 if (r != FcResultMatch)
1268 return r;
1269 if (v.type != FcTypeLangSet)
1270 return FcResultTypeMismatch;
4262e0b3 1271 *ls = (FcLangSet *)v.u.l;
d8d73958
KP
1272 return FcResultMatch;
1273}
1274
24330d27 1275FcPattern *
bff80114 1276FcPatternDuplicate (const FcPattern *orig)
24330d27
KP
1277{
1278 FcPattern *new;
cd2ec1a9 1279 FcPatternElt *e;
24330d27 1280 int i;
cd2ec1a9 1281 FcValueListPtr l;
24330d27
KP
1282
1283 new = FcPatternCreate ();
1284 if (!new)
1285 goto bail0;
1286
cd2ec1a9
PL
1287 e = FcPatternEltU(orig->elts);
1288
24330d27
KP
1289 for (i = 0; i < orig->num; i++)
1290 {
cd2ec1a9
PL
1291 for (l = (e + i)->values;
1292 FcValueListPtrU(l);
1293 l = FcValueListPtrU(l)->next)
1294 if (!FcPatternAdd (new, FcObjectPtrU((e + i)->object),
9fe2bd7a
PL
1295 FcValueCanonicalize(&FcValueListPtrU(l)->value),
1296 FcTrue))
24330d27
KP
1297 goto bail1;
1298 }
ea9726b6 1299 FcPatternTransferFullFname (new, orig);
24330d27
KP
1300
1301 return new;
1302
1303bail1:
1304 FcPatternDestroy (new);
1305bail0:
1306 return 0;
1307}
1308
6f6563ed
KP
1309void
1310FcPatternReference (FcPattern *p)
1311{
d8d73958
KP
1312 if (p->ref != FC_REF_CONSTANT)
1313 p->ref++;
6f6563ed
KP
1314}
1315
24330d27
KP
1316FcPattern *
1317FcPatternVaBuild (FcPattern *orig, va_list va)
1318{
1319 FcPattern *ret;
1320
1321 FcPatternVapBuild (ret, orig, va);
1322 return ret;
1323}
1324
1325FcPattern *
1326FcPatternBuild (FcPattern *orig, ...)
1327{
1328 va_list va;
1329
1330 va_start (va, orig);
1331 FcPatternVapBuild (orig, orig, va);
1332 va_end (va);
1333 return orig;
1334}
4f27c1c0
KP
1335
1336/*
1337 * Add all of the elements in 's' to 'p'
1338 */
1339FcBool
1340FcPatternAppend (FcPattern *p, FcPattern *s)
1341{
1342 int i;
1343 FcPatternElt *e;
cd2ec1a9 1344 FcValueListPtr v;
4f27c1c0
KP
1345
1346 for (i = 0; i < s->num; i++)
1347 {
cd2ec1a9
PL
1348 e = FcPatternEltU(s->elts)+i;
1349 for (v = e->values; FcValueListPtrU(v);
1350 v = FcValueListPtrU(v)->next)
4f27c1c0 1351 {
cd2ec1a9 1352 if (!FcPatternAddWithBinding (p, FcObjectPtrU(e->object),
4262e0b3 1353 FcValueCanonicalize(&FcValueListPtrU(v)->value),
cd2ec1a9 1354 FcValueListPtrU(v)->binding, FcTrue))
4f27c1c0
KP
1355 return FcFalse;
1356 }
1357 }
1358 return FcTrue;
1359}
1360
4262e0b3 1361#define OBJECT_HASH_SIZE 31
8245771d 1362static struct objectBucket {
4262e0b3
PL
1363 struct objectBucket *next;
1364 FcChar32 hash;
8245771d 1365} *FcObjectBuckets[OBJECT_HASH_SIZE];
4262e0b3 1366
8245771d
PL
1367const FcChar8 *
1368FcStrStaticName (const FcChar8 *name)
4262e0b3 1369{
8245771d
PL
1370 FcChar32 hash = FcStringHash (name);
1371 struct objectBucket **p;
1372 struct objectBucket *b;
1373 int size;
4262e0b3 1374
8245771d
PL
1375 for (p = &FcObjectBuckets[hash % OBJECT_HASH_SIZE]; (b = *p); p = &(b->next))
1376 if (b->hash == hash && !strcmp ((char *)name, (char *) (b + 1)))
1377 return (FcChar8 *) (b + 1);
1378 size = sizeof (struct objectBucket) + strlen ((char *)name) + 1;
23787a8f
PL
1379 b = malloc (size + sizeof (int));
1380 /* workaround glibc bug which reads strlen in groups of 4 */
1381 FcMemAlloc (FC_MEM_STATICSTR, size + sizeof (int));
4262e0b3
PL
1382 if (!b)
1383 return NULL;
1384 b->next = 0;
1385 b->hash = hash;
8245771d 1386 strcpy ((char *) (b + 1), (char *)name);
4262e0b3 1387 *p = b;
8245771d 1388 return (FcChar8 *) (b + 1);
4262e0b3
PL
1389}
1390
1391static void
7f37423d 1392FcStrStaticNameFini (void)
cd2ec1a9 1393{
4262e0b3
PL
1394 int i, size;
1395 struct objectBucket *b, *next;
1396 char *name;
1397
1398 for (i = 0; i < OBJECT_HASH_SIZE; i++)
cd2ec1a9 1399 {
4262e0b3
PL
1400 for (b = FcObjectBuckets[i]; b; b = next)
1401 {
1402 next = b->next;
1403 name = (char *) (b + 1);
1404 size = sizeof (struct objectBucket) + strlen (name) + 1;
1405 FcMemFree (FC_MEM_STATICSTR, size);
1406 free (b);
1407 }
1408 FcObjectBuckets[i] = 0;
cd2ec1a9
PL
1409 }
1410}
1411
4262e0b3
PL
1412void
1413FcPatternFini (void)
1414{
1415 FcPatternBaseThawAll ();
1416 FcValueListThawAll ();
7f37423d 1417 FcStrStaticNameFini ();
4262e0b3
PL
1418 FcObjectStaticNameFini ();
1419}
1420
cd2ec1a9
PL
1421static FcPatternEltPtr
1422FcPatternEltPtrCreateDynamic (FcPatternElt * e)
1423{
1424 FcPatternEltPtr new;
4262e0b3 1425 new.bank = FC_BANK_DYNAMIC;
cd2ec1a9
PL
1426 new.u.dyn = e;
1427 return new;
1428}
1429
1430static FcPatternEltPtr
4262e0b3 1431FcPatternEltPtrCreateStatic (int bank, int i)
cd2ec1a9
PL
1432{
1433 FcPatternEltPtr new;
4262e0b3 1434 new.bank = bank;
cd2ec1a9
PL
1435 new.u.stat = i;
1436 return new;
1437}
1438
4262e0b3
PL
1439static void
1440FcStrNewBank (void);
1441static int
8245771d 1442FcStrNeededBytes (const FcChar8 * s);
7fd7221e
PL
1443static int
1444FcStrNeededBytesAlign (void);
4262e0b3
PL
1445static void *
1446FcStrDistributeBytes (FcCache * metadata, void * block_ptr);
8245771d
PL
1447static const FcChar8 *
1448FcStrSerialize (int bank, const FcChar8 * s);
4262e0b3 1449static void *
61571f3f 1450FcStrUnserialize (FcCache * metadata, void *block_ptr);
4262e0b3
PL
1451
1452static void
1453FcValueListNewBank (void);
1454static int
1455FcValueListNeededBytes (FcValueList * vl);
7fd7221e
PL
1456static int
1457FcValueListNeededBytesAlign (void);
4262e0b3
PL
1458static void *
1459FcValueListDistributeBytes (FcCache * metadata, void *block_ptr);
1460static FcValueListPtr
1461FcValueListSerialize(int bank, FcValueList *pi);
1462static void *
61571f3f 1463FcValueListUnserialize (FcCache * metadata, void *block_ptr);
cd2ec1a9 1464
cd2ec1a9
PL
1465
1466void
4262e0b3 1467FcPatternNewBank (void)
cd2ec1a9 1468{
cd2ec1a9 1469 fcpattern_count = 0;
cd2ec1a9 1470 fcpatternelt_count = 0;
cd2ec1a9 1471
4262e0b3
PL
1472 FcStrNewBank();
1473 FcValueListNewBank();
cd2ec1a9
PL
1474}
1475
4262e0b3
PL
1476int
1477FcPatternNeededBytes (FcPattern * p)
cd2ec1a9 1478{
4262e0b3 1479 int i, cum = 0, c;
cd2ec1a9
PL
1480
1481 fcpattern_count++;
1482 fcpatternelt_count += p->num;
1483
1484 for (i = 0; i < p->num; i++)
1485 {
4262e0b3
PL
1486 c = FcValueListNeededBytes (FcValueListPtrU
1487 (((FcPatternEltU(p->elts)+i)->values)));
1488 if (c < 0)
1489 return c;
1490 cum += c;
cd2ec1a9
PL
1491 }
1492
4262e0b3 1493 return cum + sizeof (FcPattern) + sizeof(FcPatternElt)*p->num;
cd2ec1a9
PL
1494}
1495
7fd7221e
PL
1496int
1497FcPatternNeededBytesAlign (void)
1498{
1499 return __alignof__ (FcPattern) + __alignof__ (FcPatternElt) +
1500 FcValueListNeededBytesAlign ();
1501}
1502
4262e0b3
PL
1503static FcBool
1504FcPatternEnsureBank (int bi)
cd2ec1a9 1505{
4262e0b3
PL
1506 FcPattern **pp;
1507 FcPatternElt **ep;
1508 int i;
cd2ec1a9 1509
4262e0b3 1510 if (!fcpatterns || fcpattern_bank_count <= bi)
cd2ec1a9 1511 {
4262e0b3
PL
1512 int new_count = bi + 4;
1513 pp = realloc (fcpatterns, sizeof (FcPattern *) * new_count);
1514 if (!pp)
1515 return 0;
cd2ec1a9 1516
4262e0b3
PL
1517 FcMemAlloc (FC_MEM_PATTERN, sizeof (FcPattern *) * new_count);
1518 fcpatterns = pp;
1519
1520 ep = realloc (fcpatternelts, sizeof (FcPatternElt *) * new_count);
1521 if (!ep)
1522 return 0;
1523
1524 FcMemAlloc (FC_MEM_PATELT, sizeof (FcPatternElt *) * new_count);
1525 fcpatternelts = ep;
1526
1527 for (i = fcpattern_bank_count; i < new_count; i++)
cd2ec1a9 1528 {
4262e0b3
PL
1529 fcpatterns[i] = 0;
1530 fcpatternelts[i] = 0;
cd2ec1a9 1531 }
4262e0b3
PL
1532
1533 fcpattern_bank_count = new_count;
cd2ec1a9 1534 }
4262e0b3
PL
1535
1536 FcMemAlloc (FC_MEM_PATTERN, sizeof (FcPattern) * fcpattern_count);
cd2ec1a9
PL
1537 return FcTrue;
1538}
1539
4262e0b3
PL
1540void *
1541FcPatternDistributeBytes (FcCache * metadata, void * block_ptr)
1542{
1543 int bi = FcCacheBankToIndex(metadata->bank);
1544
1545 if (!FcPatternEnsureBank(bi))
1546 return 0;
1547
1548 fcpattern_ptr = 0;
7fd7221e 1549 block_ptr = ALIGN(block_ptr, FcPattern);
4262e0b3
PL
1550 fcpatterns[bi] = (FcPattern *)block_ptr;
1551 block_ptr = (void *)((char *)block_ptr +
1552 (sizeof (FcPattern) * fcpattern_count));
1553
1554 FcMemAlloc (FC_MEM_PATELT, sizeof (FcPatternElt) * fcpatternelt_count);
1555 fcpatternelt_ptr = 0;
7fd7221e 1556 block_ptr = ALIGN(block_ptr, FcPatternElt);
4262e0b3
PL
1557 fcpatternelts[bi] = (FcPatternElt *)block_ptr;
1558 block_ptr = (void *)((char *)block_ptr +
1559 (sizeof (FcPatternElt) * fcpatternelt_count));
1560
1561 metadata->pattern_count = fcpattern_count;
1562 metadata->patternelt_count = fcpatternelt_count;
1563
1564 block_ptr = FcStrDistributeBytes (metadata, block_ptr);
1565 block_ptr = FcValueListDistributeBytes (metadata, block_ptr);
1566 return block_ptr;
1567}
1568
cd2ec1a9 1569FcPattern *
4262e0b3 1570FcPatternSerialize (int bank, FcPattern *old)
cd2ec1a9
PL
1571{
1572 FcPattern *p;
1573 FcPatternElt *e, *nep;
1574 FcValueList * nv;
1575 FcValueListPtr v, nv_head, nvp;
4262e0b3 1576 int i, elts, bi = FcCacheBankToIndex(bank);
cd2ec1a9 1577
4262e0b3
PL
1578 p = &fcpatterns[bi][fcpattern_ptr++];
1579 p->bank = bank;
cd2ec1a9 1580 elts = fcpatternelt_ptr;
4262e0b3 1581 nep = &fcpatternelts[bi][elts];
cd2ec1a9
PL
1582 if (!nep)
1583 return FcFalse;
212c9f43 1584
cd2ec1a9 1585 fcpatternelt_ptr += old->num;
212c9f43 1586
cd2ec1a9
PL
1587 for (e = FcPatternEltU(old->elts), i=0; i < old->num; i++, e++)
1588 {
1589 v = e->values;
4262e0b3 1590 nvp = nv_head = FcValueListSerialize(bank, FcValueListPtrU(v));
cd2ec1a9 1591 if (!FcValueListPtrU(nv_head))
4262e0b3 1592 return 0;
cd2ec1a9
PL
1593 nv = FcValueListPtrU(nvp);
1594
1595 for (;
1596 FcValueListPtrU(v);
1597 v = FcValueListPtrU(v)->next,
1598 nv = FcValueListPtrU(nv->next))
1599 {
1600
1601 if (FcValueListPtrU(FcValueListPtrU(v)->next))
1602 {
1603 nvp = FcValueListSerialize
4262e0b3 1604 (bank, FcValueListPtrU(FcValueListPtrU(v)->next));
cd2ec1a9
PL
1605 nv->next = nvp;
1606 }
1607 }
1608
1609 nep[i].values = nv_head;
7f37423d 1610 nep[i].object = e->object;
cd2ec1a9 1611 }
212c9f43
PL
1612
1613 p->elts = old->elts;
4262e0b3 1614 p->elts = FcPatternEltPtrCreateStatic(bank, elts);
cd2ec1a9 1615 p->size = old->num;
212c9f43 1616 p->num = old->num;
cd2ec1a9
PL
1617 p->ref = FC_REF_CONSTANT;
1618 return p;
212c9f43
PL
1619}
1620
7f37423d 1621void *
61571f3f 1622FcPatternUnserialize (FcCache * metadata, void *block_ptr)
212c9f43 1623{
61571f3f 1624 int bi = FcCacheBankToIndex(metadata->bank);
4262e0b3 1625 if (!FcPatternEnsureBank(bi))
212c9f43 1626 return FcFalse;
212c9f43 1627
61571f3f 1628 FcMemAlloc (FC_MEM_PATTERN, sizeof (FcPattern) * metadata->pattern_count);
7fd7221e 1629 block_ptr = ALIGN(block_ptr, FcPattern);
4262e0b3
PL
1630 fcpatterns[bi] = (FcPattern *)block_ptr;
1631 block_ptr = (void *)((char *)block_ptr +
61571f3f 1632 (sizeof (FcPattern) * metadata->pattern_count));
4262e0b3
PL
1633
1634 FcMemAlloc (FC_MEM_PATELT,
61571f3f 1635 sizeof (FcPatternElt) * metadata->patternelt_count);
7fd7221e 1636 block_ptr = ALIGN(block_ptr, FcPatternElt);
4262e0b3
PL
1637 fcpatternelts[bi] = (FcPatternElt *)block_ptr;
1638 block_ptr = (void *)((char *)block_ptr +
61571f3f 1639 (sizeof (FcPatternElt) * metadata->patternelt_count));
4262e0b3
PL
1640
1641 block_ptr = FcStrUnserialize (metadata, block_ptr);
1642 block_ptr = FcValueListUnserialize (metadata, block_ptr);
1643
7f37423d 1644 return block_ptr;
212c9f43
PL
1645}
1646
4262e0b3
PL
1647static void
1648FcValueListNewBank (void)
212c9f43 1649{
4262e0b3
PL
1650 fcvaluelist_count = 0;
1651
1652 FcCharSetNewBank();
1653 FcLangSetNewBank();
1654}
212c9f43 1655
4262e0b3
PL
1656static int
1657FcValueListNeededBytes (FcValueList *p)
1658{
1659 FcValueList *vl;
1660 int cum = 0;
212c9f43 1661
4262e0b3
PL
1662 for (vl = p;
1663 vl;
1664 vl = FcValueListPtrU(vl->next))
212c9f43 1665 {
4262e0b3
PL
1666 FcValue v = FcValueCanonicalize(&vl->value); // unserialize just in case
1667
1668 switch (v.type)
1669 {
1670 case FcTypeCharSet:
1671 cum += FcCharSetNeededBytes(v.u.c);
1672 break;
1673 case FcTypeLangSet:
1674 cum += FcLangSetNeededBytes(v.u.l);
1675 break;
1676 case FcTypeString:
1677 cum += FcStrNeededBytes(v.u.s);
1678 default:
1679 break;
1680 }
1681 fcvaluelist_count++;
1682 cum += sizeof (FcValueList);
212c9f43 1683 }
4262e0b3
PL
1684
1685 return cum;
212c9f43
PL
1686}
1687
7fd7221e
PL
1688static int
1689FcValueListNeededBytesAlign (void)
1690{
1691 return FcCharSetNeededBytesAlign() + FcLangSetNeededBytesAlign() +
1692 FcStrNeededBytesAlign() + __alignof__ (FcValueList);
1693}
1694
4262e0b3
PL
1695static FcBool
1696FcValueListEnsureBank (int bi)
212c9f43 1697{
4262e0b3
PL
1698 FcValueList **pvl;
1699
1700 if (!fcvaluelists || fcvaluelist_bank_count <= bi)
1701 {
1702 int new_count = bi + 2, i;
1703
1704 pvl = realloc (fcvaluelists, sizeof (FcValueList *) * new_count);
1705 if (!pvl)
1706 return FcFalse;
212c9f43 1707
4262e0b3
PL
1708 FcMemAlloc (FC_MEM_VALLIST, sizeof (FcValueList *) * new_count);
1709
1710 fcvaluelists = pvl;
1711 for (i = fcvaluelist_bank_count; i < new_count; i++)
1712 fcvaluelists[i] = 0;
1713
1714 fcvaluelist_bank_count = new_count;
1715 }
212c9f43
PL
1716 return FcTrue;
1717}
1718
4262e0b3
PL
1719static void *
1720FcValueListDistributeBytes (FcCache * metadata, void *block_ptr)
212c9f43 1721{
4262e0b3 1722 int bi = FcCacheBankToIndex(metadata->bank);
212c9f43 1723
4262e0b3
PL
1724 if (!FcValueListEnsureBank(bi))
1725 return 0;
212c9f43 1726
4262e0b3
PL
1727 FcMemAlloc (FC_MEM_VALLIST, sizeof (FcValueList) * fcvaluelist_count);
1728 fcvaluelist_ptr = 0;
7fd7221e 1729 block_ptr = ALIGN(block_ptr, FcValueList);
4262e0b3
PL
1730 fcvaluelists[bi] = (FcValueList *)block_ptr;
1731 block_ptr = (void *)((char *)block_ptr +
1732 (sizeof (FcValueList) * fcvaluelist_count));
1733 metadata->valuelist_count = fcvaluelist_count;
1734
1735 block_ptr = FcCharSetDistributeBytes(metadata, block_ptr);
1736 block_ptr = FcLangSetDistributeBytes(metadata, block_ptr);
1737
1738 return block_ptr;
212c9f43 1739}
cd2ec1a9 1740
4262e0b3
PL
1741static FcValueListPtr
1742FcValueListSerialize(int bank, FcValueList *pi)
cd2ec1a9
PL
1743{
1744 FcValueListPtr new;
1745 FcValue * v;
4262e0b3 1746 int bi = FcCacheBankToIndex(bank);
cd2ec1a9 1747
4262e0b3 1748 if (!pi)
cd2ec1a9 1749 {
4262e0b3
PL
1750 new.bank = FC_BANK_DYNAMIC;
1751 new.u.dyn = 0;
1752 return new;
cd2ec1a9
PL
1753 }
1754
4262e0b3
PL
1755 fcvaluelists[bi][fcvaluelist_ptr] = *pi;
1756 new.bank = bank;
cd2ec1a9 1757 new.u.stat = fcvaluelist_ptr++;
303bcf9b 1758 fcvaluelists[bi][new.u.stat].value = FcValueCanonicalize (&pi->value);
4262e0b3 1759 v = &fcvaluelists[bi][new.u.stat].value;
cd2ec1a9
PL
1760 switch (v->type)
1761 {
1762 case FcTypeString:
4262e0b3 1763 if (v->u.s)
cd2ec1a9 1764 {
8245771d 1765 const FcChar8 * s = FcStrSerialize(bank, v->u.s);
4262e0b3 1766 if (!s)
cd2ec1a9 1767 return FcValueListPtrCreateDynamic(pi);
8245771d 1768 v->u.s_off = s - (const FcChar8 *)v;
4262e0b3 1769 v->type |= FC_STORAGE_STATIC;
cd2ec1a9
PL
1770 }
1771 break;
1772 case FcTypeMatrix:
cd2ec1a9
PL
1773 break;
1774 case FcTypeCharSet:
4262e0b3 1775 if (v->u.c)
cd2ec1a9 1776 {
4262e0b3
PL
1777 FcCharSet * c = FcCharSetSerialize(bank, (FcCharSet *)v->u.c);
1778 if (!c)
cd2ec1a9 1779 return FcValueListPtrCreateDynamic(pi);
4262e0b3
PL
1780 v->u.c_off = (char *)c - (char *)v;
1781 v->type |= FC_STORAGE_STATIC;
cd2ec1a9
PL
1782 }
1783 break;
1784 case FcTypeLangSet:
4262e0b3 1785 if (v->u.l)
cd2ec1a9 1786 {
4262e0b3
PL
1787 FcLangSet * l = FcLangSetSerialize(bank, (FcLangSet *)v->u.l);
1788 if (!l)
cd2ec1a9 1789 return FcValueListPtrCreateDynamic(pi);
4262e0b3
PL
1790 v->u.l_off = (char *)l - (char *)v;
1791 v->type |= FC_STORAGE_STATIC;
cd2ec1a9
PL
1792 }
1793 break;
1794 default:
1795 break;
1796 }
1797 return new;
1798}
1799
4262e0b3 1800static void *
61571f3f 1801FcValueListUnserialize (FcCache * metadata, void *block_ptr)
212c9f43 1802{
61571f3f 1803 int bi = FcCacheBankToIndex(metadata->bank);
212c9f43 1804
4262e0b3
PL
1805 if (!FcValueListEnsureBank(bi))
1806 return 0;
212c9f43 1807
4262e0b3 1808 FcMemAlloc (FC_MEM_VALLIST,
61571f3f 1809 sizeof (FcValueList) * metadata->valuelist_count);
7fd7221e 1810 block_ptr = ALIGN(block_ptr, FcValueList);
4262e0b3
PL
1811 fcvaluelists[bi] = (FcValueList *)block_ptr;
1812 block_ptr = (void *)((char *)block_ptr +
61571f3f 1813 (sizeof (FcValueList) * metadata->valuelist_count));
212c9f43 1814
4262e0b3
PL
1815 block_ptr = FcCharSetUnserialize(metadata, block_ptr);
1816 block_ptr = FcLangSetUnserialize(metadata, block_ptr);
1817
1818 return block_ptr;
212c9f43
PL
1819}
1820
cd2ec1a9
PL
1821FcValueListPtr
1822FcValueListPtrCreateDynamic(FcValueList * p)
1823{
1824 FcValueListPtr r;
1825
4262e0b3 1826 r.bank = FC_BANK_DYNAMIC;
cd2ec1a9
PL
1827 r.u.dyn = p;
1828 return r;
4f27c1c0 1829}
0fa680f0 1830
8245771d 1831static FcChar8 ** static_strs;
4262e0b3 1832static int static_str_bank_count = 0, fcstr_ptr, fcstr_count;
0fa680f0 1833
4262e0b3 1834static struct objectBucket *FcStrBuckets[OBJECT_HASH_SIZE];
0fa680f0 1835
4262e0b3
PL
1836static void
1837FcStrNewBank (void)
0fa680f0 1838{
4262e0b3
PL
1839 int i, size;
1840 struct objectBucket *b, *next;
1841 char *name;
0fa680f0 1842
4262e0b3 1843 for (i = 0; i < OBJECT_HASH_SIZE; i++)
0fa680f0 1844 {
4262e0b3 1845 for (b = FcStrBuckets[i]; b; b = next)
0fa680f0 1846 {
4262e0b3
PL
1847 next = b->next;
1848 name = (char *) (b + 1);
1849 size = sizeof (struct objectBucket) + strlen (name) + 1;
1850 FcMemFree (FC_MEM_STATICSTR, size);
1851 free (b);
0fa680f0 1852 }
4262e0b3 1853 FcStrBuckets[i] = 0;
0fa680f0
PL
1854 }
1855
4262e0b3
PL
1856 fcstr_count = 0;
1857}
0fa680f0 1858
4262e0b3 1859static int
8245771d 1860FcStrNeededBytes (const FcChar8 * s)
4262e0b3
PL
1861{
1862 FcChar32 hash = FcStringHash ((const FcChar8 *) s);
1863 struct objectBucket **p;
1864 struct objectBucket *b;
1865 int size;
0fa680f0 1866
4262e0b3 1867 for (p = &FcStrBuckets[hash % OBJECT_HASH_SIZE]; (b = *p); p = &(b->next))
8245771d 1868 if (b->hash == hash && !strcmp ((char *)s, (char *) (b + 1)))
4262e0b3 1869 return 0;
8245771d 1870 size = sizeof (struct objectBucket) + strlen ((char *)s) + 1 + sizeof(char *);
0fa680f0 1871 b = malloc (size);
0fa680f0 1872 FcMemAlloc (FC_MEM_STATICSTR, size);
4262e0b3
PL
1873 if (!b)
1874 return -1;
0fa680f0
PL
1875 b->next = 0;
1876 b->hash = hash;
8245771d 1877 strcpy ((char *) (b + 1), (char *)s);
7fd7221e
PL
1878
1879 /* Yes, the following line is convoluted. However, it is
1880 * incorrect to replace the with a memset, because the C
1881 * specification doesn't guarantee that the null pointer is
1882 * the same as the zero bit pattern. */
8245771d 1883 *(char **)((char *) (b + 1) + strlen((char *)s) + 1) = 0;
0fa680f0 1884 *p = b;
0fa680f0 1885
8245771d
PL
1886 fcstr_count += strlen((char *)s) + 1;
1887 return strlen((char *)s) + 1;
0fa680f0
PL
1888}
1889
7fd7221e
PL
1890static int
1891FcStrNeededBytesAlign (void)
1892{
1893 return __alignof__ (char);
1894}
1895
0fa680f0 1896static FcBool
4262e0b3 1897FcStrEnsureBank (int bi)
0fa680f0 1898{
8245771d 1899 FcChar8 ** ss;
0fa680f0 1900
4262e0b3 1901 if (!static_strs || static_str_bank_count <= bi)
0fa680f0 1902 {
4262e0b3
PL
1903 int new_count = bi + 4, i;
1904 ss = realloc (static_strs, sizeof (const char *) * new_count);
1905 if (!ss)
1906 return FcFalse;
0fa680f0 1907
4262e0b3
PL
1908 FcMemAlloc (FC_MEM_STRING, sizeof (const char *) * (new_count-static_str_bank_count));
1909 static_strs = ss;
0fa680f0 1910
4262e0b3
PL
1911 for (i = static_str_bank_count; i < new_count; i++)
1912 static_strs[i] = 0;
1913 static_str_bank_count = new_count;
0fa680f0 1914 }
0fa680f0 1915 return FcTrue;
0fa680f0
PL
1916}
1917
4262e0b3
PL
1918static void *
1919FcStrDistributeBytes (FcCache * metadata, void * block_ptr)
0fa680f0 1920{
4262e0b3
PL
1921 int bi = FcCacheBankToIndex(metadata->bank);
1922 if (!FcStrEnsureBank(bi))
1923 return 0;
0fa680f0 1924
4262e0b3 1925 FcMemAlloc (FC_MEM_STRING, sizeof (char) * fcstr_count);
7fd7221e 1926 block_ptr = ALIGN (block_ptr, FcChar8);
8245771d 1927 static_strs[bi] = (FcChar8 *)block_ptr;
4262e0b3
PL
1928 block_ptr = (void *)((char *)block_ptr + (sizeof (char) * fcstr_count));
1929 metadata->str_count = fcstr_count;
1930 fcstr_ptr = 0;
0fa680f0 1931
4262e0b3 1932 return block_ptr;
0fa680f0 1933}
e1b9d091 1934
8245771d
PL
1935static const FcChar8 *
1936FcStrSerialize (int bank, const FcChar8 * s)
212c9f43 1937{
4262e0b3
PL
1938 FcChar32 hash = FcStringHash ((const FcChar8 *) s);
1939 struct objectBucket **p;
1940 struct objectBucket *b;
1941 int bi = FcCacheBankToIndex(bank);
212c9f43 1942
4262e0b3 1943 for (p = &FcStrBuckets[hash % OBJECT_HASH_SIZE]; (b = *p); p = &(b->next))
8245771d 1944 if (b->hash == hash && !strcmp ((char *)s, (char *) (b + 1)))
4262e0b3 1945 {
8245771d 1946 FcChar8 * t = *(FcChar8 **)(((FcChar8 *)(b + 1)) + strlen ((char *)s) + 1);
4262e0b3
PL
1947 if (!t)
1948 {
8245771d
PL
1949 strcpy((char *)(static_strs[bi] + fcstr_ptr), (char *)s);
1950 *(FcChar8 **)((FcChar8 *) (b + 1) + strlen((char *)s) + 1) = (static_strs[bi] + fcstr_ptr);
1951 fcstr_ptr += strlen((char *)s) + 1;
1952 t = *(FcChar8 **)(((FcChar8 *)(b + 1)) + strlen ((char *)s) + 1);
4262e0b3
PL
1953 }
1954 return t;
1955 }
1956 return 0;
212c9f43
PL
1957}
1958
4262e0b3 1959static void *
61571f3f 1960FcStrUnserialize (FcCache * metadata, void *block_ptr)
212c9f43 1961{
61571f3f 1962 int bi = FcCacheBankToIndex(metadata->bank);
4262e0b3
PL
1963 if (!FcStrEnsureBank(bi))
1964 return 0;
212c9f43 1965
61571f3f 1966 FcMemAlloc (FC_MEM_STRING, sizeof (char) * metadata->str_count);
1c5b6345 1967 block_ptr = ALIGN (block_ptr, FcChar8);
8245771d 1968 static_strs[bi] = (FcChar8 *)block_ptr;
4262e0b3 1969 block_ptr = (void *)((char *)block_ptr +
61571f3f 1970 (sizeof (char) * metadata->str_count));
e1b9d091 1971
4262e0b3 1972 return block_ptr;
e1b9d091
PL
1973}
1974
e77c1718
PL
1975/* we don't store these in the FcPattern itself because
1976 * we don't want to serialize the directory names */
1977
1978/* I suppose this should be cleaned, too... */
1979typedef struct _FcPatternDirMapping {
1980 const FcPattern *p;
1981 const char *fname;
1982} FcPatternDirMapping;
1983
1984#define PATTERNDIR_HASH_SIZE 31
1985static struct patternDirBucket {
1986 struct patternDirBucket *next;
1987 FcPatternDirMapping m;
1988} FcPatternDirBuckets[PATTERNDIR_HASH_SIZE];
1989
1990void
1991FcPatternAddFullFname (const FcPattern *p, const char *fname)
1992{
1993 struct patternDirBucket *pb;
1994
1995 /* N.B. FcPatternHash fails, since it's contents-based, not
1996 * address-based, and we're in the process of mutating the FcPattern. */
1997 for (pb = &FcPatternDirBuckets
1998 [((int)p / sizeof (FcPattern *)) % PATTERNDIR_HASH_SIZE];
1999 pb->m.p != p && pb->next;
2000 pb = pb->next)
2001 ;
2002
2003 if (pb->m.p == p)
2004 {
2005 pb->m.fname = fname;
2006 return;
2007 }
2008
2009 pb->next = malloc (sizeof (struct patternDirBucket));
2010 if (!pb->next)
2011 return;
2012 FcMemAlloc (FC_MEM_CACHE, sizeof (struct patternDirBucket));
2013
2014 pb->next->next = 0;
2015 pb->next->m.p = p;
2016 pb->next->m.fname = fname;
2017}
2018
793154ed 2019static const char *
e77c1718
PL
2020FcPatternFindFullFname (const FcPattern *p)
2021{
2022 struct patternDirBucket *pb;
2023
2024 for (pb = &FcPatternDirBuckets
2025 [((int)p / sizeof (FcPattern *)) % PATTERNDIR_HASH_SIZE];
2026 pb; pb = pb->next)
2027 if (pb->m.p == p)
2028 return pb->m.fname;
2029
2030 return 0;
2031}
2032
793154ed
PL
2033void
2034FcPatternTransferFullFname (const FcPattern *new, const FcPattern *orig)
2035{
2036 FcChar8 * s;
2037 FcPatternGetString (orig, FC_FILE, 0, &s);
7358dae4
PL
2038 FcPatternAddFullFname (new,
2039 (char *)FcStrCopy
2040 ((FcChar8 *)FcPatternFindFullFname(orig)));
793154ed 2041}