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Oops, fc-lang broke when I added cache referencing.
[fontconfig.git] / src / fccache.c
CommitLineData
24330d27 1/*
46b51147 2 * Copyright © 2000 Keith Packard
03a212e5 3 * Copyright © 2005 Patrick Lam
24330d27
KP
4 *
5 * Permission to use, copy, modify, distribute, and sell this software and its
6 * documentation for any purpose is hereby granted without fee, provided that
7 * the above copyright notice appear in all copies and that both that
8 * copyright notice and this permission notice appear in supporting
9 * documentation, and that the name of Keith Packard not be used in
10 * advertising or publicity pertaining to distribution of the software without
11 * specific, written prior permission. Keith Packard makes no
12 * representations about the suitability of this software for any purpose. It
13 * is provided "as is" without express or implied warranty.
14 *
15 * KEITH PACKARD DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE,
16 * INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO
17 * EVENT SHALL KEITH PACKARD BE LIABLE FOR ANY SPECIAL, INDIRECT OR
18 * CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE,
19 * DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
20 * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
21 * PERFORMANCE OF THIS SOFTWARE.
22 */
23
f045376c 24#include "fcint.h"
cf65c055 25#include "../fc-arch/fcarch.h"
00f059e9 26#include <stdio.h>
212c9f43 27#include <fcntl.h>
4262e0b3 28#include <dirent.h>
ea44e218 29#include <string.h>
fd77c154 30#include <sys/types.h>
9e612141 31#include <assert.h>
d6217cc6 32#if defined(HAVE_MMAP) || defined(__CYGWIN__)
93f67dfc 33# include <unistd.h>
d6217cc6 34# include <sys/mman.h>
93f67dfc
PL
35#elif defined(_WIN32)
36# include <windows.h>
d6217cc6 37#endif
24330d27 38
879af706
PL
39#ifndef O_BINARY
40#define O_BINARY 0
41#endif
42
ea44e218
PL
43struct MD5Context {
44 FcChar32 buf[4];
45 FcChar32 bits[2];
46 unsigned char in[64];
47};
48
49static void MD5Init(struct MD5Context *ctx);
50static void MD5Update(struct MD5Context *ctx, unsigned char *buf, unsigned len);
51static void MD5Final(unsigned char digest[16], struct MD5Context *ctx);
52static void MD5Transform(FcChar32 buf[4], FcChar32 in[16]);
53
cf65c055 54#define CACHEBASE_LEN (1 + 32 + 1 + sizeof (FC_ARCHITECTURE) + sizeof (FC_CACHE_SUFFIX))
7410e40b
PL
55
56static const char bin2hex[] = { '0', '1', '2', '3',
57 '4', '5', '6', '7',
58 '8', '9', 'a', 'b',
59 'c', 'd', 'e', 'f' };
60
61static FcChar8 *
62FcDirCacheBasename (const FcChar8 * dir, FcChar8 cache_base[CACHEBASE_LEN])
55c8fa4f 63{
7410e40b
PL
64 unsigned char hash[16];
65 FcChar8 *hex_hash;
66 int cnt;
67 struct MD5Context ctx;
55c8fa4f 68
7410e40b
PL
69 MD5Init (&ctx);
70 MD5Update (&ctx, (unsigned char *)dir, strlen ((char *) dir));
3bfae75d 71
7410e40b
PL
72 MD5Final (hash, &ctx);
73
74 cache_base[0] = '/';
75 hex_hash = cache_base + 1;
76 for (cnt = 0; cnt < 16; ++cnt)
1178b569 77 {
7410e40b
PL
78 hex_hash[2*cnt ] = bin2hex[hash[cnt] >> 4];
79 hex_hash[2*cnt+1] = bin2hex[hash[cnt] & 0xf];
80 }
81 hex_hash[2*cnt] = 0;
cf65c055 82 strcat ((char *) cache_base, "-" FC_ARCHITECTURE FC_CACHE_SUFFIX);
6f9fcb51 83
7410e40b
PL
84 return cache_base;
85}
3bfae75d 86
7410e40b
PL
87FcBool
88FcDirCacheUnlink (const FcChar8 *dir, FcConfig *config)
89{
7410e40b
PL
90 FcChar8 *cache_hashed = NULL;
91 FcChar8 cache_base[CACHEBASE_LEN];
92 FcStrList *list;
93 FcChar8 *cache_dir;
3bfae75d 94
7410e40b 95 FcDirCacheBasename (dir, cache_base);
3bfae75d 96
7410e40b
PL
97 list = FcStrListCreate (config->cacheDirs);
98 if (!list)
99 return FcFalse;
100
101 while ((cache_dir = FcStrListNext (list)))
3bfae75d 102 {
7410e40b
PL
103 cache_hashed = FcStrPlus (cache_dir, cache_base);
104 if (!cache_hashed)
105 break;
00f059e9 106 (void) unlink ((char *) cache_hashed);
1178b569 107 }
7410e40b
PL
108 FcStrListDone (list);
109 /* return FcFalse if something went wrong */
110 if (cache_dir)
111 return FcFalse;
1b7be377
PL
112 return FcTrue;
113}
114
4262e0b3 115static int
bc5e487f 116FcDirCacheOpenFile (const FcChar8 *cache_file, struct stat *file_stat)
4262e0b3 117{
bc5e487f 118 int fd;
4262e0b3 119
bc5e487f
KP
120 fd = open((char *) cache_file, O_RDONLY | O_BINARY);
121 if (fd < 0)
122 return fd;
123 if (fstat (fd, file_stat) < 0)
4262e0b3 124 {
bc5e487f
KP
125 close (fd);
126 return -1;
4262e0b3 127 }
bc5e487f 128 return fd;
4262e0b3
PL
129}
130
2d3387fd
KP
131/*
132 * Look for a cache file for the specified dir. Attempt
133 * to use each one we find, stopping when the callback
134 * indicates success
7410e40b 135 */
2d3387fd
KP
136static FcBool
137FcDirCacheProcess (FcConfig *config, const FcChar8 *dir,
8fe2104a 138 FcBool (*callback) (int fd, struct stat *stat, void *closure),
0a87ce71 139 void *closure, FcChar8 **cache_file_ret)
ea44e218 140{
7ce19673 141 int fd = -1;
7410e40b
PL
142 FcChar8 cache_base[CACHEBASE_LEN];
143 FcStrList *list;
144 FcChar8 *cache_dir;
d2f78684 145 struct stat file_stat, dir_stat;
2d3387fd 146 FcBool ret = FcFalse;
d2f78684
KP
147
148 if (stat ((char *) dir, &dir_stat) < 0)
2d3387fd 149 return FcFalse;
df3efc11 150
7410e40b 151 FcDirCacheBasename (dir, cache_base);
ea44e218 152
7410e40b
PL
153 list = FcStrListCreate (config->cacheDirs);
154 if (!list)
2d3387fd 155 return FcFalse;
7410e40b
PL
156
157 while ((cache_dir = FcStrListNext (list)))
ea44e218 158 {
7ce19673 159 FcChar8 *cache_hashed = FcStrPlus (cache_dir, cache_base);
7410e40b 160 if (!cache_hashed)
d00c3cb5 161 break;
bc5e487f 162 fd = FcDirCacheOpenFile (cache_hashed, &file_stat);
7ce19673 163 if (fd >= 0) {
bc5e487f 164 if (dir_stat.st_mtime <= file_stat.st_mtime)
d2f78684 165 {
8fe2104a 166 ret = (*callback) (fd, &file_stat, closure);
2d3387fd
KP
167 if (ret)
168 {
0a87ce71
KP
169 if (cache_file_ret)
170 *cache_file_ret = cache_hashed;
171 else
172 FcStrFree (cache_hashed);
2d3387fd
KP
173 close (fd);
174 break;
175 }
d2f78684 176 }
7ce19673 177 close (fd);
d2f78684 178 }
0a87ce71 179 FcStrFree (cache_hashed);
7410e40b
PL
180 }
181 FcStrListDone (list);
7410e40b 182
2d3387fd 183 return ret;
ea44e218
PL
184}
185
9e612141
KP
186#define FC_CACHE_MIN_MMAP 1024
187
188/*
189 * Skip list element, make sure the 'next' pointer is the last thing
190 * in the structure, it will be allocated large enough to hold all
191 * of the necessary pointers
192 */
193
194typedef struct _FcCacheSkip FcCacheSkip;
195
196struct _FcCacheSkip {
197 FcCache *cache;
198 int ref;
199 intptr_t size;
200 dev_t cache_dev;
201 ino_t cache_ino;
202 time_t cache_mtime;
203 FcCacheSkip *next[1];
204};
205
206/*
207 * The head of the skip list; pointers for every possible level
208 * in the skip list, plus the largest level in the list
209 */
210
211#define FC_CACHE_MAX_LEVEL 16
212
213static FcCacheSkip *fcCacheChains[FC_CACHE_MAX_LEVEL];
214static int fcCacheMaxLevel;
215
216/*
217 * Generate a random level number, distributed
218 * so that each level is 1/4 as likely as the one before
219 *
220 * Note that level numbers run 1 <= level <= MAX_LEVEL
221 */
222static int
223random_level (void)
224{
225 /* tricky bit -- each bit is '1' 75% of the time */
226 long int bits = random () | random ();
227 int level = 0;
228
229 while (++level < FC_CACHE_MAX_LEVEL)
230 {
231 if (bits & 1)
232 break;
233 bits >>= 1;
234 }
235 return level;
236}
237
238/*
239 * Insert cache into the list
240 */
241static FcBool
242FcCacheInsert (FcCache *cache, struct stat *cache_stat)
243{
244 FcCacheSkip **update[FC_CACHE_MAX_LEVEL];
245 FcCacheSkip *s, **next;
246 int i, level;
247
248 /*
249 * Find links along each chain
250 */
251 next = fcCacheChains;
252 for (i = fcCacheMaxLevel; --i >= 0; )
253 {
254 for (; (s = next[i]); next = s->next)
255 if (s->cache > cache)
256 break;
257 update[i] = &next[i];
258 }
259
260 /*
261 * Create new list element
262 */
263 level = random_level ();
264 if (level > fcCacheMaxLevel)
265 {
266 level = fcCacheMaxLevel + 1;
267 update[fcCacheMaxLevel] = &fcCacheChains[fcCacheMaxLevel];
268 fcCacheMaxLevel = level;
269 }
270
271 s = malloc (sizeof (FcCacheSkip) + (level - 1) * sizeof (FcCacheSkip *));
272 if (!s)
273 return FcFalse;
274
275 s->cache = cache;
276 s->size = cache->size;
277 s->ref = 1;
278 s->cache_dev = cache_stat->st_dev;
279 s->cache_ino = cache_stat->st_ino;
280 s->cache_mtime = cache_stat->st_mtime;
281
282 /*
283 * Insert into all fcCacheChains
284 */
285 for (i = 0; i < level; i++)
286 {
287 s->next[i] = *update[i];
288 *update[i] = s;
289 }
290 return FcTrue;
291}
292
293static FcCacheSkip *
294FcCacheFindByAddr (void *object)
295{
296 int i;
297 FcCacheSkip **next = fcCacheChains;
298 FcCacheSkip *s;
299
300 /*
301 * Walk chain pointers one level at a time
302 */
303 for (i = fcCacheMaxLevel; --i >= 0;)
304 while (next[i] && (char *) object >= ((char *) next[i]->cache + next[i]->size))
305 next = next[i]->next;
306 /*
307 * Here we are
308 */
309 s = next[0];
310 if (s && (char *) object < ((char *) s->cache + s->size))
311 return s;
312 return NULL;
313}
314
315static void
316FcCacheRemove (FcCache *cache)
317{
318 FcCacheSkip **update[FC_CACHE_MAX_LEVEL];
319 FcCacheSkip *s, **next;
320 int i;
321
322 /*
323 * Find links along each chain
324 */
325 next = fcCacheChains;
326 for (i = fcCacheMaxLevel; --i >= 0; )
327 {
328 for (; (s = next[i]); next = s->next)
329 if (s->cache >= cache)
330 break;
331 update[i] = &next[i];
332 }
333 s = next[0];
334 assert (s->cache == cache);
335 for (i = 0; i < fcCacheMaxLevel && *update[i] == s; i++)
336 *update[i] = s->next[i];
337 while (fcCacheMaxLevel > 0 && fcCacheChains[fcCacheMaxLevel - 1] == NULL)
338 fcCacheMaxLevel--;
339 free (s);
340}
341
342static FcCache *
343FcCacheFindByStat (struct stat *cache_stat)
344{
345 FcCacheSkip *s;
346
347 for (s = fcCacheChains[0]; s; s = s->next[0])
348 if (s->cache_dev == cache_stat->st_dev &&
349 s->cache_ino == cache_stat->st_ino &&
350 s->cache_mtime == cache_stat->st_mtime)
351 return s->cache;
352 return NULL;
353}
354
8fe2104a
KP
355static void
356FcDirCacheDispose (FcCache *cache)
357{
358 switch (cache->magic) {
359 case FC_CACHE_MAGIC_ALLOC:
360 free (cache);
361 break;
362 case FC_CACHE_MAGIC_MMAP:
363#if defined(HAVE_MMAP) || defined(__CYGWIN__)
364 munmap (cache, cache->size);
365#elif defined(_WIN32)
366 UnmapViewOfFile (cache);
367#endif
368 break;
369 }
9e612141 370 FcCacheRemove (cache);
8fe2104a
KP
371}
372
9e612141
KP
373void
374FcCacheObjectReference (void *object)
8fe2104a 375{
9e612141 376 FcCacheSkip *skip = FcCacheFindByAddr (object);
8fe2104a 377
9e612141
KP
378 if (skip)
379 skip->ref++;
8fe2104a
KP
380}
381
9e612141
KP
382void
383FcCacheObjectDereference (void *object)
8fe2104a 384{
9e612141 385 FcCacheSkip *skip = FcCacheFindByAddr (object);
8fe2104a 386
9e612141
KP
387 if (skip)
388 {
389 skip->ref--;
390 if (skip->ref <= 0)
391 FcDirCacheDispose (skip->cache);
392 }
8fe2104a
KP
393}
394
395void
396FcCacheFini (void)
397{
398 int i;
8fe2104a 399
9e612141
KP
400 for (i = 0; i < FC_CACHE_MAX_LEVEL; i++)
401 assert (fcCacheChains[i] == NULL);
402 assert (fcCacheMaxLevel == 0);
8fe2104a
KP
403}
404
bc5e487f
KP
405/*
406 * Map a cache file into memory
407 */
408static FcCache *
8fe2104a 409FcDirCacheMapFd (int fd, struct stat *fd_stat)
212c9f43 410{
8fe2104a 411 FcCache *cache;
7ce19673 412 FcBool allocated = FcFalse;
af180c40 413
8fe2104a 414 if (fd_stat->st_size < sizeof (FcCache))
bc5e487f 415 return NULL;
9e612141 416 cache = FcCacheFindByStat (fd_stat);
8fe2104a
KP
417 if (cache)
418 return cache;
bc5e487f
KP
419 /*
420 * For small cache files, just read them into memory
421 */
8fe2104a 422 if (fd_stat->st_size >= FC_CACHE_MIN_MMAP)
bc5e487f 423 {
d6217cc6 424#if defined(HAVE_MMAP) || defined(__CYGWIN__)
8fe2104a 425 cache = mmap (0, fd_stat->st_size, PROT_READ, MAP_SHARED, fd, 0);
93f67dfc 426#elif defined(_WIN32)
7ce19673 427 {
bc5e487f
KP
428 HANDLE hFileMap;
429
430 cache = NULL;
431 hFileMap = CreateFileMapping((HANDLE) _get_osfhandle(fd), NULL,
432 PAGE_READONLY, 0, 0, NULL);
433 if (hFileMap != NULL)
434 {
435 cache = MapViewOfFile (hFileMap, FILE_MAP_READ, 0, 0, size);
436 CloseHandle (hFileMap);
437 }
93f67dfc 438 }
7ce19673 439#endif
bc5e487f 440 }
7ce19673
KP
441 if (!cache)
442 {
8fe2104a 443 cache = malloc (fd_stat->st_size);
7ce19673 444 if (!cache)
bc5e487f 445 return NULL;
eb0cf671 446
8fe2104a 447 if (read (fd, cache, fd_stat->st_size) != fd_stat->st_size)
00f059e9 448 {
7ce19673 449 free (cache);
bc5e487f 450 return NULL;
00f059e9 451 }
7ce19673
KP
452 allocated = FcTrue;
453 }
bc5e487f 454 if (cache->magic != FC_CACHE_MAGIC_MMAP ||
3b8a03c0 455 cache->version < FC_CACHE_CONTENT_VERSION ||
8fe2104a 456 cache->size != fd_stat->st_size ||
9e612141 457 !FcCacheInsert (cache, fd_stat))
7ce19673
KP
458 {
459 if (allocated)
460 free (cache);
461 else
462 {
463#if defined(HAVE_MMAP) || defined(__CYGWIN__)
8fe2104a 464 munmap (cache, fd_stat->st_size);
7ce19673
KP
465#elif defined(_WIN32)
466 UnmapViewOfFile (cache);
00f059e9 467#endif
7ce19673 468 }
bc5e487f 469 return NULL;
00f059e9 470 }
af180c40 471
7ce19673
KP
472 /* Mark allocated caches so they're freed rather than unmapped */
473 if (allocated)
bc5e487f 474 cache->magic = FC_CACHE_MAGIC_ALLOC;
7ce19673 475
bc5e487f
KP
476 return cache;
477}
478
17389539
KP
479void
480FcDirCacheReference (FcCache *cache, int nref)
481{
482 FcCacheSkip *skip = FcCacheFindByAddr (cache);
483
484 if (skip)
485 skip->ref += nref;
486}
487
bc5e487f
KP
488void
489FcDirCacheUnload (FcCache *cache)
490{
9e612141 491 FcCacheObjectDereference (cache);
bc5e487f
KP
492}
493
494static FcBool
8fe2104a 495FcDirCacheMapHelper (int fd, struct stat *fd_stat, void *closure)
bc5e487f 496{
8fe2104a 497 FcCache *cache = FcDirCacheMapFd (fd, fd_stat);
bc5e487f
KP
498
499 if (!cache)
500 return FcFalse;
2d3387fd
KP
501 *((FcCache **) closure) = cache;
502 return FcTrue;
503}
504
505FcCache *
bc5e487f 506FcDirCacheLoad (const FcChar8 *dir, FcConfig *config, FcChar8 **cache_file)
2d3387fd 507{
76abb77f 508 FcCache *cache = NULL;
2d3387fd 509
76abb77f 510 if (!FcDirCacheProcess (config, dir,
bc5e487f 511 FcDirCacheMapHelper,
0a87ce71 512 &cache, cache_file))
76abb77f
KP
513 return NULL;
514 return cache;
af180c40
KP
515}
516
bc5e487f
KP
517FcCache *
518FcDirCacheLoadFile (const FcChar8 *cache_file, struct stat *file_stat)
af180c40 519{
bc5e487f
KP
520 int fd;
521 FcCache *cache;
af180c40 522
bc5e487f
KP
523 fd = FcDirCacheOpenFile (cache_file, file_stat);
524 if (fd < 0)
525 return NULL;
8fe2104a 526 cache = FcDirCacheMapFd (fd, file_stat);
bc5e487f
KP
527 close (fd);
528 return cache;
eb0cf671 529}
bc5e487f
KP
530
531/*
532 * Validate a cache file by reading the header and checking
533 * the magic number and the size field
534 */
2d3387fd 535static FcBool
8fe2104a 536FcDirCacheValidateHelper (int fd, struct stat *fd_stat, void *closure)
2d3387fd
KP
537{
538 FcBool ret = FcTrue;
539 FcCache c;
2d3387fd
KP
540
541 if (read (fd, &c, sizeof (FcCache)) != sizeof (FcCache))
542 ret = FcFalse;
bc5e487f
KP
543 else if (c.magic != FC_CACHE_MAGIC_MMAP)
544 ret = FcFalse;
3b8a03c0 545 else if (c.version < FC_CACHE_CONTENT_VERSION)
2d3387fd 546 ret = FcFalse;
8fe2104a 547 else if (fd_stat->st_size != c.size)
2d3387fd
KP
548 ret = FcFalse;
549 return ret;
550}
551
f57783d2
KP
552static FcBool
553FcDirCacheValidConfig (const FcChar8 *dir, FcConfig *config)
2d3387fd 554{
bc5e487f
KP
555 return FcDirCacheProcess (config, dir,
556 FcDirCacheValidateHelper,
557 NULL, NULL);
2d3387fd
KP
558}
559
f57783d2
KP
560FcBool
561FcDirCacheValid (const FcChar8 *dir)
562{
563 FcConfig *config;
564
565 config = FcConfigGetCurrent ();
566 if (!config)
567 return FcFalse;
568
569 return FcDirCacheValidConfig (dir, config);
570}
571
7ce19673 572/*
bc5e487f 573 * Build a cache structure from the given contents
7ce19673 574 */
bc5e487f
KP
575FcCache *
576FcDirCacheBuild (FcFontSet *set, const FcChar8 *dir, FcStrSet *dirs)
eb0cf671 577{
7ce19673
KP
578 FcSerialize *serialize = FcSerializeCreate ();
579 FcCache *cache;
580 int i;
581 intptr_t cache_offset;
582 intptr_t dirs_offset;
583 FcChar8 *dir_serialize;
584 intptr_t *dirs_serialize;
585 FcFontSet *set_serialize;
586
587 if (!serialize)
588 return NULL;
589 /*
590 * Space for cache structure
591 */
592 cache_offset = FcSerializeReserve (serialize, sizeof (FcCache));
593 /*
594 * Directory name
595 */
596 if (!FcStrSerializeAlloc (serialize, dir))
597 goto bail1;
598 /*
599 * Subdirs
600 */
601 dirs_offset = FcSerializeAlloc (serialize, dirs, dirs->num * sizeof (FcChar8 *));
602 for (i = 0; i < dirs->num; i++)
603 if (!FcStrSerializeAlloc (serialize, dirs->strs[i]))
604 goto bail1;
eb0cf671 605
7ce19673
KP
606 /*
607 * Patterns
608 */
609 if (!FcFontSetSerializeAlloc (serialize, set))
610 goto bail1;
611
612 /* Serialize layout complete. Now allocate space and fill it */
613 cache = malloc (serialize->size);
614 if (!cache)
615 goto bail1;
616 /* shut up valgrind */
617 memset (cache, 0, serialize->size);
d6217cc6 618
7ce19673 619 serialize->linear = cache;
eb0cf671 620
bc5e487f
KP
621 cache->magic = FC_CACHE_MAGIC_ALLOC;
622 cache->version = FC_CACHE_CONTENT_VERSION;
7ce19673 623 cache->size = serialize->size;
eb0cf671 624
7ce19673
KP
625 /*
626 * Serialize directory name
627 */
628 dir_serialize = FcStrSerialize (serialize, dir);
629 if (!dir_serialize)
630 goto bail2;
631 cache->dir = FcPtrToOffset (cache, dir_serialize);
632
633 /*
634 * Serialize sub dirs
635 */
636 dirs_serialize = FcSerializePtr (serialize, dirs);
637 if (!dirs_serialize)
638 goto bail2;
639 cache->dirs = FcPtrToOffset (cache, dirs_serialize);
640 cache->dirs_count = dirs->num;
641 for (i = 0; i < dirs->num; i++)
8e351527 642 {
7ce19673
KP
643 FcChar8 *d_serialize = FcStrSerialize (serialize, dirs->strs[i]);
644 if (!d_serialize)
645 goto bail2;
646 dirs_serialize[i] = FcPtrToOffset (dirs_serialize, d_serialize);
8e351527 647 }
7ce19673
KP
648
649 /*
650 * Serialize font set
651 */
652 set_serialize = FcFontSetSerialize (serialize, set);
653 if (!set_serialize)
654 goto bail2;
655 cache->set = FcPtrToOffset (cache, set_serialize);
eb0cf671 656
7ce19673
KP
657 FcSerializeDestroy (serialize);
658
659 return cache;
212c9f43 660
7ce19673
KP
661bail2:
662 free (cache);
663bail1:
664 FcSerializeDestroy (serialize);
665 return NULL;
212c9f43
PL
666}
667
7410e40b
PL
668static FcBool
669FcMakeDirectory (const FcChar8 *dir)
670{
671 FcChar8 *parent;
672 FcBool ret;
673
674 if (strlen ((char *) dir) == 0)
675 return FcFalse;
676
677 parent = FcStrDirname (dir);
678 if (!parent)
679 return FcFalse;
680 if (access ((char *) parent, W_OK|X_OK) == 0)
681 ret = mkdir ((char *) dir, 0777) == 0;
682 else if (access ((char *) parent, F_OK) == -1)
683 ret = FcMakeDirectory (parent) && (mkdir ((char *) dir, 0777) == 0);
684 else
685 ret = FcFalse;
686 FcStrFree (parent);
687 return ret;
688}
689
212c9f43
PL
690/* write serialized state to the cache file */
691FcBool
bc5e487f 692FcDirCacheWrite (FcCache *cache, FcConfig *config)
212c9f43 693{
bc5e487f 694 FcChar8 *dir = FcCacheDir (cache);
7410e40b
PL
695 FcChar8 cache_base[CACHEBASE_LEN];
696 FcChar8 *cache_hashed;
7ce19673 697 int fd;
1d879de2 698 FcAtomic *atomic;
00f059e9 699 FcStrList *list;
d2f78684
KP
700 FcChar8 *cache_dir = NULL;
701 FcChar8 *test_dir;
bc5e487f
KP
702 int magic;
703 int written;
212c9f43 704
7410e40b 705 /*
d2f78684 706 * Write it to the first directory in the list which is writable
7410e40b 707 */
d2f78684
KP
708
709 list = FcStrListCreate (config->cacheDirs);
710 if (!list)
711 return FcFalse;
712 while ((test_dir = FcStrListNext (list))) {
713 if (access ((char *) test_dir, W_OK|X_OK) == 0)
714 {
715 cache_dir = test_dir;
716 break;
717 }
718 else
719 {
7410e40b
PL
720 /*
721 * If the directory doesn't exist, try to create it
722 */
d2f78684
KP
723 if (access ((char *) test_dir, F_OK) == -1) {
724 if (FcMakeDirectory (test_dir))
725 {
726 cache_dir = test_dir;
7410e40b 727 break;
d2f78684 728 }
7410e40b
PL
729 }
730 }
7410e40b 731 }
d2f78684
KP
732 FcStrListDone (list);
733 if (!cache_dir)
734 return FcFalse;
7ce19673 735
d2f78684
KP
736 FcDirCacheBasename (dir, cache_base);
737 cache_hashed = FcStrPlus (cache_dir, cache_base);
738 if (!cache_hashed)
739 return FcFalse;
ea44e218 740
4262e0b3 741 if (FcDebug () & FC_DBG_CACHE)
c1c3ba06
KP
742 printf ("FcDirCacheWriteDir dir \"%s\" file \"%s\"\n",
743 dir, cache_hashed);
4262e0b3 744
3bfae75d 745 atomic = FcAtomicCreate ((FcChar8 *)cache_hashed);
1d879de2 746 if (!atomic)
bc5e487f 747 goto bail1;
212c9f43 748
1d879de2 749 if (!FcAtomicLock (atomic))
7ce19673 750 goto bail3;
ec760b17 751
879af706 752 fd = open((char *)FcAtomicNewFile (atomic), O_RDWR | O_CREAT | O_BINARY, 0666);
1d879de2 753 if (fd == -1)
7ce19673 754 goto bail4;
00f059e9 755
bc5e487f
KP
756 /* Temporarily switch magic to MMAP while writing to file */
757 magic = cache->magic;
758 if (magic != FC_CACHE_MAGIC_MMAP)
759 cache->magic = FC_CACHE_MAGIC_MMAP;
760
761 /*
762 * Write cache contents to file
763 */
764 written = write (fd, cache, cache->size);
765
766 /* Switch magic back */
767 if (magic != FC_CACHE_MAGIC_MMAP)
768 cache->magic = magic;
769
770 if (written != cache->size)
fff5a5af 771 {
7ce19673 772 perror ("write cache");
68355f38
PL
773 goto bail5;
774 }
4262e0b3 775
212c9f43 776 close(fd);
1d879de2 777 if (!FcAtomicReplaceOrig(atomic))
7ce19673 778 goto bail4;
bc5e487f 779 FcStrFree (cache_hashed);
1d879de2
PL
780 FcAtomicUnlock (atomic);
781 FcAtomicDestroy (atomic);
212c9f43
PL
782 return FcTrue;
783
ea44e218 784 bail5:
1d879de2 785 close (fd);
7ce19673 786 bail4:
1d879de2 787 FcAtomicUnlock (atomic);
7ce19673 788 bail3:
1d879de2 789 FcAtomicDestroy (atomic);
ea44e218 790 bail1:
bc5e487f 791 FcStrFree (cache_hashed);
4262e0b3
PL
792 return FcFalse;
793}
794
4984242e
KP
795/*
796 * Hokey little macro trick to permit the definitions of C functions
797 * with the same name as CPP macros
798 */
799#define args(x...) (x)
800
801const FcChar8 *
802FcCacheDir args(const FcCache *c)
803{
804 return FcCacheDir (c);
805}
806
807FcFontSet *
808FcCacheCopySet args(const FcCache *c)
809{
810 FcFontSet *old = FcCacheSet (c);
811 FcFontSet *new = FcFontSetCreate ();
812 int i;
813
814 if (!new)
815 return NULL;
816 for (i = 0; i < old->nfont; i++)
817 if (!FcFontSetAdd (new, FcFontSetFont (old, i)))
818 {
819 FcFontSetDestroy (new);
820 return NULL;
821 }
822 return new;
823}
824
825const FcChar8 *
826FcCacheSubdir args(const FcCache *c, int i)
827{
828 return FcCacheSubdir (c, i);
829}
830
831int
832FcCacheNumSubdir args(const FcCache *c)
833{
834 return c->dirs_count;
835}
836
837int
838FcCacheNumFont args(const FcCache *c)
839{
840 return FcCacheSet(c)->nfont;
841}
842
ea44e218
PL
843/*
844 * This code implements the MD5 message-digest algorithm.
845 * The algorithm is due to Ron Rivest. This code was
846 * written by Colin Plumb in 1993, no copyright is claimed.
847 * This code is in the public domain; do with it what you wish.
848 *
849 * Equivalent code is available from RSA Data Security, Inc.
850 * This code has been tested against that, and is equivalent,
851 * except that you don't need to include two pages of legalese
852 * with every copy.
853 *
854 * To compute the message digest of a chunk of bytes, declare an
855 * MD5Context structure, pass it to MD5Init, call MD5Update as
856 * needed on buffers full of bytes, and then call MD5Final, which
857 * will fill a supplied 16-byte array with the digest.
858 */
859
860#ifndef HIGHFIRST
861#define byteReverse(buf, len) /* Nothing */
862#else
863/*
864 * Note: this code is harmless on little-endian machines.
865 */
866void byteReverse(unsigned char *buf, unsigned longs)
867{
868 FcChar32 t;
869 do {
870 t = (FcChar32) ((unsigned) buf[3] << 8 | buf[2]) << 16 |
871 ((unsigned) buf[1] << 8 | buf[0]);
872 *(FcChar32 *) buf = t;
873 buf += 4;
874 } while (--longs);
875}
876#endif
877
878/*
879 * Start MD5 accumulation. Set bit count to 0 and buffer to mysterious
880 * initialization constants.
881 */
882static void MD5Init(struct MD5Context *ctx)
883{
884 ctx->buf[0] = 0x67452301;
885 ctx->buf[1] = 0xefcdab89;
886 ctx->buf[2] = 0x98badcfe;
887 ctx->buf[3] = 0x10325476;
888
889 ctx->bits[0] = 0;
890 ctx->bits[1] = 0;
891}
892
893/*
894 * Update context to reflect the concatenation of another buffer full
895 * of bytes.
896 */
897static void MD5Update(struct MD5Context *ctx, unsigned char *buf, unsigned len)
898{
899 FcChar32 t;
900
901 /* Update bitcount */
902
903 t = ctx->bits[0];
904 if ((ctx->bits[0] = t + ((FcChar32) len << 3)) < t)
905 ctx->bits[1]++; /* Carry from low to high */
906 ctx->bits[1] += len >> 29;
907
908 t = (t >> 3) & 0x3f; /* Bytes already in shsInfo->data */
909
910 /* Handle any leading odd-sized chunks */
911
912 if (t) {
913 unsigned char *p = (unsigned char *) ctx->in + t;
914
915 t = 64 - t;
916 if (len < t) {
917 memcpy(p, buf, len);
918 return;
919 }
920 memcpy(p, buf, t);
921 byteReverse(ctx->in, 16);
922 MD5Transform(ctx->buf, (FcChar32 *) ctx->in);
923 buf += t;
924 len -= t;
925 }
926 /* Process data in 64-byte chunks */
927
928 while (len >= 64) {
929 memcpy(ctx->in, buf, 64);
930 byteReverse(ctx->in, 16);
931 MD5Transform(ctx->buf, (FcChar32 *) ctx->in);
932 buf += 64;
933 len -= 64;
934 }
935
936 /* Handle any remaining bytes of data. */
937
938 memcpy(ctx->in, buf, len);
939}
940
941/*
942 * Final wrapup - pad to 64-byte boundary with the bit pattern
943 * 1 0* (64-bit count of bits processed, MSB-first)
944 */
945static void MD5Final(unsigned char digest[16], struct MD5Context *ctx)
946{
947 unsigned count;
948 unsigned char *p;
949
950 /* Compute number of bytes mod 64 */
951 count = (ctx->bits[0] >> 3) & 0x3F;
952
953 /* Set the first char of padding to 0x80. This is safe since there is
954 always at least one byte free */
955 p = ctx->in + count;
956 *p++ = 0x80;
957
958 /* Bytes of padding needed to make 64 bytes */
959 count = 64 - 1 - count;
960
961 /* Pad out to 56 mod 64 */
962 if (count < 8) {
963 /* Two lots of padding: Pad the first block to 64 bytes */
964 memset(p, 0, count);
965 byteReverse(ctx->in, 16);
966 MD5Transform(ctx->buf, (FcChar32 *) ctx->in);
967
968 /* Now fill the next block with 56 bytes */
969 memset(ctx->in, 0, 56);
970 } else {
971 /* Pad block to 56 bytes */
972 memset(p, 0, count - 8);
973 }
974 byteReverse(ctx->in, 14);
975
976 /* Append length in bits and transform */
977 ((FcChar32 *) ctx->in)[14] = ctx->bits[0];
978 ((FcChar32 *) ctx->in)[15] = ctx->bits[1];
979
980 MD5Transform(ctx->buf, (FcChar32 *) ctx->in);
981 byteReverse((unsigned char *) ctx->buf, 4);
982 memcpy(digest, ctx->buf, 16);
983 memset(ctx, 0, sizeof(ctx)); /* In case it's sensitive */
984}
985
986
987/* The four core functions - F1 is optimized somewhat */
988
989/* #define F1(x, y, z) (x & y | ~x & z) */
990#define F1(x, y, z) (z ^ (x & (y ^ z)))
991#define F2(x, y, z) F1(z, x, y)
992#define F3(x, y, z) (x ^ y ^ z)
993#define F4(x, y, z) (y ^ (x | ~z))
994
995/* This is the central step in the MD5 algorithm. */
996#define MD5STEP(f, w, x, y, z, data, s) \
997 ( w += f(x, y, z) + data, w = w<<s | w>>(32-s), w += x )
998
999/*
1000 * The core of the MD5 algorithm, this alters an existing MD5 hash to
1001 * reflect the addition of 16 longwords of new data. MD5Update blocks
1002 * the data and converts bytes into longwords for this routine.
1003 */
1004static void MD5Transform(FcChar32 buf[4], FcChar32 in[16])
1005{
1006 register FcChar32 a, b, c, d;
1007
1008 a = buf[0];
1009 b = buf[1];
1010 c = buf[2];
1011 d = buf[3];
1012
1013 MD5STEP(F1, a, b, c, d, in[0] + 0xd76aa478, 7);
1014 MD5STEP(F1, d, a, b, c, in[1] + 0xe8c7b756, 12);
1015 MD5STEP(F1, c, d, a, b, in[2] + 0x242070db, 17);
1016 MD5STEP(F1, b, c, d, a, in[3] + 0xc1bdceee, 22);
1017 MD5STEP(F1, a, b, c, d, in[4] + 0xf57c0faf, 7);
1018 MD5STEP(F1, d, a, b, c, in[5] + 0x4787c62a, 12);
1019 MD5STEP(F1, c, d, a, b, in[6] + 0xa8304613, 17);
1020 MD5STEP(F1, b, c, d, a, in[7] + 0xfd469501, 22);
1021 MD5STEP(F1, a, b, c, d, in[8] + 0x698098d8, 7);
1022 MD5STEP(F1, d, a, b, c, in[9] + 0x8b44f7af, 12);
1023 MD5STEP(F1, c, d, a, b, in[10] + 0xffff5bb1, 17);
1024 MD5STEP(F1, b, c, d, a, in[11] + 0x895cd7be, 22);
1025 MD5STEP(F1, a, b, c, d, in[12] + 0x6b901122, 7);
1026 MD5STEP(F1, d, a, b, c, in[13] + 0xfd987193, 12);
1027 MD5STEP(F1, c, d, a, b, in[14] + 0xa679438e, 17);
1028 MD5STEP(F1, b, c, d, a, in[15] + 0x49b40821, 22);
1029
1030 MD5STEP(F2, a, b, c, d, in[1] + 0xf61e2562, 5);
1031 MD5STEP(F2, d, a, b, c, in[6] + 0xc040b340, 9);
1032 MD5STEP(F2, c, d, a, b, in[11] + 0x265e5a51, 14);
1033 MD5STEP(F2, b, c, d, a, in[0] + 0xe9b6c7aa, 20);
1034 MD5STEP(F2, a, b, c, d, in[5] + 0xd62f105d, 5);
1035 MD5STEP(F2, d, a, b, c, in[10] + 0x02441453, 9);
1036 MD5STEP(F2, c, d, a, b, in[15] + 0xd8a1e681, 14);
1037 MD5STEP(F2, b, c, d, a, in[4] + 0xe7d3fbc8, 20);
1038 MD5STEP(F2, a, b, c, d, in[9] + 0x21e1cde6, 5);
1039 MD5STEP(F2, d, a, b, c, in[14] + 0xc33707d6, 9);
1040 MD5STEP(F2, c, d, a, b, in[3] + 0xf4d50d87, 14);
1041 MD5STEP(F2, b, c, d, a, in[8] + 0x455a14ed, 20);
1042 MD5STEP(F2, a, b, c, d, in[13] + 0xa9e3e905, 5);
1043 MD5STEP(F2, d, a, b, c, in[2] + 0xfcefa3f8, 9);
1044 MD5STEP(F2, c, d, a, b, in[7] + 0x676f02d9, 14);
1045 MD5STEP(F2, b, c, d, a, in[12] + 0x8d2a4c8a, 20);
1046
1047 MD5STEP(F3, a, b, c, d, in[5] + 0xfffa3942, 4);
1048 MD5STEP(F3, d, a, b, c, in[8] + 0x8771f681, 11);
1049 MD5STEP(F3, c, d, a, b, in[11] + 0x6d9d6122, 16);
1050 MD5STEP(F3, b, c, d, a, in[14] + 0xfde5380c, 23);
1051 MD5STEP(F3, a, b, c, d, in[1] + 0xa4beea44, 4);
1052 MD5STEP(F3, d, a, b, c, in[4] + 0x4bdecfa9, 11);
1053 MD5STEP(F3, c, d, a, b, in[7] + 0xf6bb4b60, 16);
1054 MD5STEP(F3, b, c, d, a, in[10] + 0xbebfbc70, 23);
1055 MD5STEP(F3, a, b, c, d, in[13] + 0x289b7ec6, 4);
1056 MD5STEP(F3, d, a, b, c, in[0] + 0xeaa127fa, 11);
1057 MD5STEP(F3, c, d, a, b, in[3] + 0xd4ef3085, 16);
1058 MD5STEP(F3, b, c, d, a, in[6] + 0x04881d05, 23);
1059 MD5STEP(F3, a, b, c, d, in[9] + 0xd9d4d039, 4);
1060 MD5STEP(F3, d, a, b, c, in[12] + 0xe6db99e5, 11);
1061 MD5STEP(F3, c, d, a, b, in[15] + 0x1fa27cf8, 16);
1062 MD5STEP(F3, b, c, d, a, in[2] + 0xc4ac5665, 23);
1063
1064 MD5STEP(F4, a, b, c, d, in[0] + 0xf4292244, 6);
1065 MD5STEP(F4, d, a, b, c, in[7] + 0x432aff97, 10);
1066 MD5STEP(F4, c, d, a, b, in[14] + 0xab9423a7, 15);
1067 MD5STEP(F4, b, c, d, a, in[5] + 0xfc93a039, 21);
1068 MD5STEP(F4, a, b, c, d, in[12] + 0x655b59c3, 6);
1069 MD5STEP(F4, d, a, b, c, in[3] + 0x8f0ccc92, 10);
1070 MD5STEP(F4, c, d, a, b, in[10] + 0xffeff47d, 15);
1071 MD5STEP(F4, b, c, d, a, in[1] + 0x85845dd1, 21);
1072 MD5STEP(F4, a, b, c, d, in[8] + 0x6fa87e4f, 6);
1073 MD5STEP(F4, d, a, b, c, in[15] + 0xfe2ce6e0, 10);
1074 MD5STEP(F4, c, d, a, b, in[6] + 0xa3014314, 15);
1075 MD5STEP(F4, b, c, d, a, in[13] + 0x4e0811a1, 21);
1076 MD5STEP(F4, a, b, c, d, in[4] + 0xf7537e82, 6);
1077 MD5STEP(F4, d, a, b, c, in[11] + 0xbd3af235, 10);
1078 MD5STEP(F4, c, d, a, b, in[2] + 0x2ad7d2bb, 15);
1079 MD5STEP(F4, b, c, d, a, in[9] + 0xeb86d391, 21);
1080
1081 buf[0] += a;
1082 buf[1] += b;
1083 buf[2] += c;
1084 buf[3] += d;
1085}