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