Coverage Report

Created: 2023-10-24 09:31

/src/libxml2/hash.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * hash.c: chained hash tables
3
 *
4
 * Reference: Your favorite introductory book on algorithms
5
 *
6
 * Copyright (C) 2000,2012 Bjorn Reese and Daniel Veillard.
7
 *
8
 * Permission to use, copy, modify, and distribute this software for any
9
 * purpose with or without fee is hereby granted, provided that the above
10
 * copyright notice and this permission notice appear in all copies.
11
 *
12
 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
13
 * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
14
 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. THE AUTHORS AND
15
 * CONTRIBUTORS ACCEPT NO RESPONSIBILITY IN ANY CONCEIVABLE MANNER.
16
 *
17
 * Author: breese@users.sourceforge.net
18
 */
19
20
#define IN_LIBXML
21
#include "libxml.h"
22
23
#include <string.h>
24
#include <stdlib.h>
25
#include <time.h>
26
27
/*
28
 * Following http://www.ocert.org/advisories/ocert-2011-003.html
29
 * it seems that having hash randomization might be a good idea
30
 * when using XML with untrusted data
31
 */
32
#if !defined(FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION)
33
#define HASH_RANDOMIZATION
34
#endif
35
36
#include <libxml/parser.h>
37
#include <libxml/hash.h>
38
#include <libxml/xmlmemory.h>
39
#include <libxml/xmlerror.h>
40
#include <libxml/globals.h>
41
42
#include "private/dict.h"
43
44
35.7M
#define MAX_HASH_LEN 8
45
46
/* #define DEBUG_GROW */
47
48
/*
49
 * A single entry in the hash table
50
 */
51
typedef struct _xmlHashEntry xmlHashEntry;
52
typedef xmlHashEntry *xmlHashEntryPtr;
53
struct _xmlHashEntry {
54
    struct _xmlHashEntry *next;
55
    xmlChar *name;
56
    xmlChar *name2;
57
    xmlChar *name3;
58
    void *payload;
59
    int valid;
60
};
61
62
/*
63
 * The entire hash table
64
 */
65
struct _xmlHashTable {
66
    struct _xmlHashEntry *table;
67
    int size;
68
    int nbElems;
69
    xmlDictPtr dict;
70
#ifdef HASH_RANDOMIZATION
71
    int random_seed;
72
#endif
73
};
74
75
/*
76
 * xmlHashComputeKey:
77
 * Calculate the hash key
78
 */
79
#ifdef __clang__
80
ATTRIBUTE_NO_SANITIZE("unsigned-integer-overflow")
81
#endif
82
static unsigned long
83
xmlHashComputeKey(xmlHashTablePtr table, const xmlChar *name,
84
852M
            const xmlChar *name2, const xmlChar *name3) {
85
852M
    unsigned long value = 0L;
86
852M
    unsigned long ch;
87
88
#ifdef HASH_RANDOMIZATION
89
    value = table->random_seed;
90
#endif
91
852M
    if (name != NULL) {
92
852M
  value += 30 * (*name);
93
14.7G
  while ((ch = *name++) != 0) {
94
13.9G
      value = value ^ ((value << 5) + (value >> 3) + ch);
95
13.9G
  }
96
852M
    }
97
852M
    value = value ^ ((value << 5) + (value >> 3));
98
852M
    if (name2 != NULL) {
99
190M
  while ((ch = *name2++) != 0) {
100
161M
      value = value ^ ((value << 5) + (value >> 3) + ch);
101
161M
  }
102
28.8M
    }
103
852M
    value = value ^ ((value << 5) + (value >> 3));
104
852M
    if (name3 != NULL) {
105
285M
  while ((ch = *name3++) != 0) {
106
243M
      value = value ^ ((value << 5) + (value >> 3) + ch);
107
243M
  }
108
42.3M
    }
109
852M
    return (value % table->size);
110
852M
}
111
112
#ifdef __clang__
113
ATTRIBUTE_NO_SANITIZE("unsigned-integer-overflow")
114
#endif
115
static unsigned long
116
xmlHashComputeQKey(xmlHashTablePtr table,
117
       const xmlChar *prefix, const xmlChar *name,
118
       const xmlChar *prefix2, const xmlChar *name2,
119
7.96M
       const xmlChar *prefix3, const xmlChar *name3) {
120
7.96M
    unsigned long value = 0L;
121
7.96M
    unsigned long ch;
122
123
#ifdef HASH_RANDOMIZATION
124
    value = table->random_seed;
125
#endif
126
7.96M
    if (prefix != NULL)
127
357k
  value += 30 * (*prefix);
128
7.60M
    else
129
7.60M
  value += 30 * (*name);
130
131
7.96M
    if (prefix != NULL) {
132
1.43M
  while ((ch = *prefix++) != 0) {
133
1.08M
      value = value ^ ((value << 5) + (value >> 3) + ch);
134
1.08M
  }
135
357k
  value = value ^ ((value << 5) + (value >> 3) + ':');
136
357k
    }
137
7.96M
    if (name != NULL) {
138
48.2M
  while ((ch = *name++) != 0) {
139
40.3M
      value = value ^ ((value << 5) + (value >> 3) + ch);
140
40.3M
  }
141
7.96M
    }
142
7.96M
    value = value ^ ((value << 5) + (value >> 3));
143
7.96M
    if (prefix2 != NULL) {
144
1.58M
  while ((ch = *prefix2++) != 0) {
145
1.20M
      value = value ^ ((value << 5) + (value >> 3) + ch);
146
1.20M
  }
147
375k
  value = value ^ ((value << 5) + (value >> 3) + ':');
148
375k
    }
149
7.96M
    if (name2 != NULL) {
150
33.6M
  while ((ch = *name2++) != 0) {
151
25.6M
      value = value ^ ((value << 5) + (value >> 3) + ch);
152
25.6M
  }
153
7.96M
    }
154
7.96M
    value = value ^ ((value << 5) + (value >> 3));
155
7.96M
    if (prefix3 != NULL) {
156
0
  while ((ch = *prefix3++) != 0) {
157
0
      value = value ^ ((value << 5) + (value >> 3) + ch);
158
0
  }
159
0
  value = value ^ ((value << 5) + (value >> 3) + ':');
160
0
    }
161
7.96M
    if (name3 != NULL) {
162
0
  while ((ch = *name3++) != 0) {
163
0
      value = value ^ ((value << 5) + (value >> 3) + ch);
164
0
  }
165
0
    }
166
7.96M
    return (value % table->size);
167
7.96M
}
168
169
/**
170
 * xmlHashCreate:
171
 * @size: the size of the hash table
172
 *
173
 * Create a new xmlHashTablePtr.
174
 *
175
 * Returns the newly created object, or NULL if an error occurred.
176
 */
177
xmlHashTablePtr
178
1.38M
xmlHashCreate(int size) {
179
1.38M
    xmlHashTablePtr table;
180
181
1.38M
    if (size <= 0)
182
895k
        size = 256;
183
184
1.38M
    table = xmlMalloc(sizeof(xmlHashTable));
185
1.38M
    if (table) {
186
1.38M
        table->dict = NULL;
187
1.38M
        table->size = size;
188
1.38M
  table->nbElems = 0;
189
1.38M
        table->table = xmlMalloc(size * sizeof(xmlHashEntry));
190
1.38M
        if (table->table) {
191
1.38M
      memset(table->table, 0, size * sizeof(xmlHashEntry));
192
#ifdef HASH_RANDOMIZATION
193
            table->random_seed = __xmlRandom();
194
#endif
195
1.38M
      return(table);
196
1.38M
        }
197
0
        xmlFree(table);
198
0
    }
199
0
    return(NULL);
200
1.38M
}
201
202
/**
203
 * xmlHashCreateDict:
204
 * @size: the size of the hash table
205
 * @dict: a dictionary to use for the hash
206
 *
207
 * Create a new xmlHashTablePtr which will use @dict as the internal dictionary
208
 *
209
 * Returns the newly created object, or NULL if an error occurred.
210
 */
211
xmlHashTablePtr
212
1.07M
xmlHashCreateDict(int size, xmlDictPtr dict) {
213
1.07M
    xmlHashTablePtr table;
214
215
1.07M
    table = xmlHashCreate(size);
216
1.07M
    if (table != NULL) {
217
1.07M
        table->dict = dict;
218
1.07M
  xmlDictReference(dict);
219
1.07M
    }
220
1.07M
    return(table);
221
1.07M
}
222
223
/**
224
 * xmlHashGrow:
225
 * @table: the hash table
226
 * @size: the new size of the hash table
227
 *
228
 * resize the hash table
229
 *
230
 * Returns 0 in case of success, -1 in case of failure
231
 */
232
static int
233
36.7k
xmlHashGrow(xmlHashTablePtr table, int size) {
234
36.7k
    unsigned long key;
235
36.7k
    int oldsize, i;
236
36.7k
    xmlHashEntryPtr iter, next;
237
36.7k
    struct _xmlHashEntry *oldtable;
238
#ifdef DEBUG_GROW
239
    unsigned long nbElem = 0;
240
#endif
241
242
36.7k
    if (table == NULL)
243
0
  return(-1);
244
36.7k
    if (size < 8)
245
0
        return(-1);
246
36.7k
    if (size > 8 * 2048)
247
0
  return(-1);
248
249
36.7k
    oldsize = table->size;
250
36.7k
    oldtable = table->table;
251
36.7k
    if (oldtable == NULL)
252
0
        return(-1);
253
254
36.7k
    table->table = xmlMalloc(size * sizeof(xmlHashEntry));
255
36.7k
    if (table->table == NULL) {
256
0
  table->table = oldtable;
257
0
  return(-1);
258
0
    }
259
36.7k
    memset(table->table, 0, size * sizeof(xmlHashEntry));
260
36.7k
    table->size = size;
261
262
    /*  If the two loops are merged, there would be situations where
263
  a new entry needs to allocated and data copied into it from
264
  the main table. So instead, we run through the array twice, first
265
  copying all the elements in the main array (where we can't get
266
  conflicts) and then the rest, so we only free (and don't allocate)
267
    */
268
988k
    for (i = 0; i < oldsize; i++) {
269
951k
  if (oldtable[i].valid == 0)
270
23.8k
      continue;
271
928k
  key = xmlHashComputeKey(table, oldtable[i].name, oldtable[i].name2,
272
928k
        oldtable[i].name3);
273
928k
  memcpy(&(table->table[key]), &(oldtable[i]), sizeof(xmlHashEntry));
274
928k
  table->table[key].next = NULL;
275
928k
    }
276
277
988k
    for (i = 0; i < oldsize; i++) {
278
951k
  iter = oldtable[i].next;
279
4.42M
  while (iter) {
280
3.47M
      next = iter->next;
281
282
      /*
283
       * put back the entry in the new table
284
       */
285
286
3.47M
      key = xmlHashComputeKey(table, iter->name, iter->name2,
287
3.47M
                        iter->name3);
288
3.47M
      if (table->table[key].valid == 0) {
289
2.35M
    memcpy(&(table->table[key]), iter, sizeof(xmlHashEntry));
290
2.35M
    table->table[key].next = NULL;
291
2.35M
    xmlFree(iter);
292
2.35M
      } else {
293
1.12M
    iter->next = table->table[key].next;
294
1.12M
    table->table[key].next = iter;
295
1.12M
      }
296
297
#ifdef DEBUG_GROW
298
      nbElem++;
299
#endif
300
301
3.47M
      iter = next;
302
3.47M
  }
303
951k
    }
304
305
36.7k
    xmlFree(oldtable);
306
307
#ifdef DEBUG_GROW
308
    xmlGenericError(xmlGenericErrorContext,
309
      "xmlHashGrow : from %d to %d, %d elems\n", oldsize, size, nbElem);
310
#endif
311
312
36.7k
    return(0);
313
36.7k
}
314
315
/**
316
 * xmlHashFree:
317
 * @table: the hash table
318
 * @f:  the deallocator function for items in the hash
319
 *
320
 * Free the hash @table and its contents. The userdata is
321
 * deallocated with @f if provided.
322
 */
323
void
324
1.38M
xmlHashFree(xmlHashTablePtr table, xmlHashDeallocator f) {
325
1.38M
    int i;
326
1.38M
    xmlHashEntryPtr iter;
327
1.38M
    xmlHashEntryPtr next;
328
1.38M
    int inside_table = 0;
329
1.38M
    int nbElems;
330
331
1.38M
    if (table == NULL)
332
0
  return;
333
1.38M
    if (table->table) {
334
1.38M
  nbElems = table->nbElems;
335
196M
  for(i = 0; (i < table->size) && (nbElems > 0); i++) {
336
194M
      iter = &(table->table[i]);
337
194M
      if (iter->valid == 0)
338
171M
    continue;
339
23.5M
      inside_table = 1;
340
57.3M
      while (iter) {
341
33.8M
    next = iter->next;
342
33.8M
    if ((f != NULL) && (iter->payload != NULL))
343
27.3M
        f(iter->payload, iter->name);
344
33.8M
    if (table->dict == NULL) {
345
11.9M
        if (iter->name)
346
11.9M
      xmlFree(iter->name);
347
11.9M
        if (iter->name2)
348
370k
      xmlFree(iter->name2);
349
11.9M
        if (iter->name3)
350
6.34M
      xmlFree(iter->name3);
351
11.9M
    }
352
33.8M
    iter->payload = NULL;
353
33.8M
    if (!inside_table)
354
10.2M
        xmlFree(iter);
355
33.8M
    nbElems--;
356
33.8M
    inside_table = 0;
357
33.8M
    iter = next;
358
33.8M
      }
359
23.5M
  }
360
1.38M
  xmlFree(table->table);
361
1.38M
    }
362
1.38M
    if (table->dict)
363
676k
        xmlDictFree(table->dict);
364
1.38M
    xmlFree(table);
365
1.38M
}
366
367
/**
368
 * xmlHashDefaultDeallocator:
369
 * @entry: the hash table entry
370
 * @name: the entry's name
371
 *
372
 * Free a hash table entry with xmlFree.
373
 */
374
void
375
780k
xmlHashDefaultDeallocator(void *entry, const xmlChar *name ATTRIBUTE_UNUSED) {
376
780k
    xmlFree(entry);
377
780k
}
378
379
/**
380
 * xmlHashAddEntry:
381
 * @table: the hash table
382
 * @name: the name of the userdata
383
 * @userdata: a pointer to the userdata
384
 *
385
 * Add the @userdata to the hash @table. This can later be retrieved
386
 * by using the @name. Duplicate names generate errors.
387
 *
388
 * Returns 0 the addition succeeded and -1 in case of error.
389
 */
390
int
391
12.1M
xmlHashAddEntry(xmlHashTablePtr table, const xmlChar *name, void *userdata) {
392
12.1M
    return(xmlHashAddEntry3(table, name, NULL, NULL, userdata));
393
12.1M
}
394
395
/**
396
 * xmlHashAddEntry2:
397
 * @table: the hash table
398
 * @name: the name of the userdata
399
 * @name2: a second name of the userdata
400
 * @userdata: a pointer to the userdata
401
 *
402
 * Add the @userdata to the hash @table. This can later be retrieved
403
 * by using the (@name, @name2) tuple. Duplicate tuples generate errors.
404
 *
405
 * Returns 0 the addition succeeded and -1 in case of error.
406
 */
407
int
408
xmlHashAddEntry2(xmlHashTablePtr table, const xmlChar *name,
409
13.7M
          const xmlChar *name2, void *userdata) {
410
13.7M
    return(xmlHashAddEntry3(table, name, name2, NULL, userdata));
411
13.7M
}
412
413
/**
414
 * xmlHashUpdateEntry:
415
 * @table: the hash table
416
 * @name: the name of the userdata
417
 * @userdata: a pointer to the userdata
418
 * @f: the deallocator function for replaced item (if any)
419
 *
420
 * Add the @userdata to the hash @table. This can later be retrieved
421
 * by using the @name. Existing entry for this @name will be removed
422
 * and freed with @f if found.
423
 *
424
 * Returns 0 the addition succeeded and -1 in case of error.
425
 */
426
int
427
xmlHashUpdateEntry(xmlHashTablePtr table, const xmlChar *name,
428
0
             void *userdata, xmlHashDeallocator f) {
429
0
    return(xmlHashUpdateEntry3(table, name, NULL, NULL, userdata, f));
430
0
}
431
432
/**
433
 * xmlHashUpdateEntry2:
434
 * @table: the hash table
435
 * @name: the name of the userdata
436
 * @name2: a second name of the userdata
437
 * @userdata: a pointer to the userdata
438
 * @f: the deallocator function for replaced item (if any)
439
 *
440
 * Add the @userdata to the hash @table. This can later be retrieved
441
 * by using the (@name, @name2) tuple. Existing entry for this tuple will
442
 * be removed and freed with @f if found.
443
 *
444
 * Returns 0 the addition succeeded and -1 in case of error.
445
 */
446
int
447
xmlHashUpdateEntry2(xmlHashTablePtr table, const xmlChar *name,
448
             const xmlChar *name2, void *userdata,
449
351k
       xmlHashDeallocator f) {
450
351k
    return(xmlHashUpdateEntry3(table, name, name2, NULL, userdata, f));
451
351k
}
452
453
/**
454
 * xmlHashLookup:
455
 * @table: the hash table
456
 * @name: the name of the userdata
457
 *
458
 * Find the userdata specified by the @name.
459
 *
460
 * Returns the pointer to the userdata
461
 */
462
void *
463
701M
xmlHashLookup(xmlHashTablePtr table, const xmlChar *name) {
464
701M
    return(xmlHashLookup3(table, name, NULL, NULL));
465
701M
}
466
467
/**
468
 * xmlHashLookup2:
469
 * @table: the hash table
470
 * @name: the name of the userdata
471
 * @name2: a second name of the userdata
472
 *
473
 * Find the userdata specified by the (@name, @name2) tuple.
474
 *
475
 * Returns the pointer to the userdata
476
 */
477
void *
478
xmlHashLookup2(xmlHashTablePtr table, const xmlChar *name,
479
79.0M
        const xmlChar *name2) {
480
79.0M
    return(xmlHashLookup3(table, name, name2, NULL));
481
79.0M
}
482
483
/**
484
 * xmlHashQLookup:
485
 * @table: the hash table
486
 * @prefix: the prefix of the userdata
487
 * @name: the name of the userdata
488
 *
489
 * Find the userdata specified by the QName @prefix:@name/@name.
490
 *
491
 * Returns the pointer to the userdata
492
 */
493
void *
494
xmlHashQLookup(xmlHashTablePtr table, const xmlChar *prefix,
495
0
               const xmlChar *name) {
496
0
    return(xmlHashQLookup3(table, prefix, name, NULL, NULL, NULL, NULL));
497
0
}
498
499
/**
500
 * xmlHashQLookup2:
501
 * @table: the hash table
502
 * @prefix: the prefix of the userdata
503
 * @name: the name of the userdata
504
 * @prefix2: the second prefix of the userdata
505
 * @name2: a second name of the userdata
506
 *
507
 * Find the userdata specified by the QNames tuple
508
 *
509
 * Returns the pointer to the userdata
510
 */
511
void *
512
xmlHashQLookup2(xmlHashTablePtr table, const xmlChar *prefix,
513
                const xmlChar *name, const xmlChar *prefix2,
514
7.96M
          const xmlChar *name2) {
515
7.96M
    return(xmlHashQLookup3(table, prefix, name, prefix2, name2, NULL, NULL));
516
7.96M
}
517
518
/**
519
 * xmlHashAddEntry3:
520
 * @table: the hash table
521
 * @name: the name of the userdata
522
 * @name2: a second name of the userdata
523
 * @name3: a third name of the userdata
524
 * @userdata: a pointer to the userdata
525
 *
526
 * Add the @userdata to the hash @table. This can later be retrieved
527
 * by using the tuple (@name, @name2, @name3). Duplicate entries generate
528
 * errors.
529
 *
530
 * Returns 0 the addition succeeded and -1 in case of error.
531
 */
532
int
533
xmlHashAddEntry3(xmlHashTablePtr table, const xmlChar *name,
534
           const xmlChar *name2, const xmlChar *name3,
535
41.0M
     void *userdata) {
536
41.0M
    unsigned long key, len = 0;
537
41.0M
    xmlHashEntryPtr entry;
538
41.0M
    xmlHashEntryPtr insert;
539
540
41.0M
    if ((table == NULL) || (name == NULL))
541
0
  return(-1);
542
543
    /*
544
     * If using a dict internalize if needed
545
     */
546
41.0M
    if (table->dict) {
547
26.5M
        if (!xmlDictOwns(table->dict, name)) {
548
2.33M
      name = xmlDictLookup(table->dict, name, -1);
549
2.33M
      if (name == NULL)
550
0
          return(-1);
551
2.33M
  }
552
26.5M
        if ((name2 != NULL) && (!xmlDictOwns(table->dict, name2))) {
553
145k
      name2 = xmlDictLookup(table->dict, name2, -1);
554
145k
      if (name2 == NULL)
555
0
          return(-1);
556
145k
  }
557
26.5M
        if ((name3 != NULL) && (!xmlDictOwns(table->dict, name3))) {
558
0
      name3 = xmlDictLookup(table->dict, name3, -1);
559
0
      if (name3 == NULL)
560
0
          return(-1);
561
0
  }
562
26.5M
    }
563
564
    /*
565
     * Check for duplicate and insertion location.
566
     */
567
41.0M
    key = xmlHashComputeKey(table, name, name2, name3);
568
41.0M
    if (table->table[key].valid == 0) {
569
21.7M
  insert = NULL;
570
21.7M
    } else {
571
19.3M
        if (table->dict) {
572
26.5M
      for (insert = &(table->table[key]); insert->next != NULL;
573
13.5M
     insert = insert->next) {
574
12.9M
    if ((insert->name == name) &&
575
12.9M
        (insert->name2 == name2) &&
576
12.9M
        (insert->name3 == name3))
577
26.8k
        return(-1);
578
12.9M
    len++;
579
12.9M
      }
580
13.5M
      if ((insert->name == name) &&
581
13.5M
    (insert->name2 == name2) &&
582
13.5M
    (insert->name3 == name3))
583
2.85M
    return(-1);
584
13.5M
  } else {
585
7.44M
      for (insert = &(table->table[key]); insert->next != NULL;
586
5.80M
     insert = insert->next) {
587
1.67M
    if ((xmlStrEqual(insert->name, name)) &&
588
1.67M
        (xmlStrEqual(insert->name2, name2)) &&
589
1.67M
        (xmlStrEqual(insert->name3, name3)))
590
37.9k
        return(-1);
591
1.64M
    len++;
592
1.64M
      }
593
5.76M
      if ((xmlStrEqual(insert->name, name)) &&
594
5.76M
    (xmlStrEqual(insert->name2, name2)) &&
595
5.76M
    (xmlStrEqual(insert->name3, name3)))
596
2.49M
    return(-1);
597
5.76M
  }
598
19.3M
    }
599
600
35.6M
    if (insert == NULL) {
601
21.7M
  entry = &(table->table[key]);
602
21.7M
    } else {
603
13.9M
  entry = xmlMalloc(sizeof(xmlHashEntry));
604
13.9M
  if (entry == NULL)
605
0
       return(-1);
606
13.9M
    }
607
608
35.6M
    if (table->dict != NULL) {
609
23.6M
        entry->name = (xmlChar *) name;
610
23.6M
        entry->name2 = (xmlChar *) name2;
611
23.6M
        entry->name3 = (xmlChar *) name3;
612
23.6M
    } else {
613
11.9M
  entry->name = xmlStrdup(name);
614
11.9M
  entry->name2 = xmlStrdup(name2);
615
11.9M
  entry->name3 = xmlStrdup(name3);
616
11.9M
    }
617
35.6M
    entry->payload = userdata;
618
35.6M
    entry->next = NULL;
619
35.6M
    entry->valid = 1;
620
621
622
35.6M
    if (insert != NULL)
623
13.9M
  insert->next = entry;
624
625
35.6M
    table->nbElems++;
626
627
35.6M
    if (len > MAX_HASH_LEN)
628
36.7k
  xmlHashGrow(table, MAX_HASH_LEN * table->size);
629
630
35.6M
    return(0);
631
35.6M
}
632
633
/**
634
 * xmlHashUpdateEntry3:
635
 * @table: the hash table
636
 * @name: the name of the userdata
637
 * @name2: a second name of the userdata
638
 * @name3: a third name of the userdata
639
 * @userdata: a pointer to the userdata
640
 * @f: the deallocator function for replaced item (if any)
641
 *
642
 * Add the @userdata to the hash @table. This can later be retrieved
643
 * by using the tuple (@name, @name2, @name3). Existing entry for this tuple
644
 * will be removed and freed with @f if found.
645
 *
646
 * Returns 0 the addition succeeded and -1 in case of error.
647
 */
648
int
649
xmlHashUpdateEntry3(xmlHashTablePtr table, const xmlChar *name,
650
             const xmlChar *name2, const xmlChar *name3,
651
351k
       void *userdata, xmlHashDeallocator f) {
652
351k
    unsigned long key;
653
351k
    xmlHashEntryPtr entry;
654
351k
    xmlHashEntryPtr insert;
655
656
351k
    if ((table == NULL) || name == NULL)
657
0
  return(-1);
658
659
    /*
660
     * If using a dict internalize if needed
661
     */
662
351k
    if (table->dict) {
663
351k
        if (!xmlDictOwns(table->dict, name)) {
664
0
      name = xmlDictLookup(table->dict, name, -1);
665
0
      if (name == NULL)
666
0
          return(-1);
667
0
  }
668
351k
        if ((name2 != NULL) && (!xmlDictOwns(table->dict, name2))) {
669
0
      name2 = xmlDictLookup(table->dict, name2, -1);
670
0
      if (name2 == NULL)
671
0
          return(-1);
672
0
  }
673
351k
        if ((name3 != NULL) && (!xmlDictOwns(table->dict, name3))) {
674
0
      name3 = xmlDictLookup(table->dict, name3, -1);
675
0
      if (name3 == NULL)
676
0
          return(-1);
677
0
  }
678
351k
    }
679
680
    /*
681
     * Check for duplicate and insertion location.
682
     */
683
351k
    key = xmlHashComputeKey(table, name, name2, name3);
684
351k
    if (table->table[key].valid == 0) {
685
226k
  insert = NULL;
686
226k
    } else {
687
124k
        if (table ->dict) {
688
234k
      for (insert = &(table->table[key]); insert->next != NULL;
689
124k
     insert = insert->next) {
690
109k
    if ((insert->name == name) &&
691
109k
        (insert->name2 == name2) &&
692
109k
        (insert->name3 == name3)) {
693
196
        if (f)
694
0
      f(insert->payload, insert->name);
695
196
        insert->payload = userdata;
696
196
        return(0);
697
196
    }
698
109k
      }
699
124k
      if ((insert->name == name) &&
700
124k
    (insert->name2 == name2) &&
701
124k
    (insert->name3 == name3)) {
702
3.60k
    if (f)
703
0
        f(insert->payload, insert->name);
704
3.60k
    insert->payload = userdata;
705
3.60k
    return(0);
706
3.60k
      }
707
124k
  } else {
708
0
      for (insert = &(table->table[key]); insert->next != NULL;
709
0
     insert = insert->next) {
710
0
    if ((xmlStrEqual(insert->name, name)) &&
711
0
        (xmlStrEqual(insert->name2, name2)) &&
712
0
        (xmlStrEqual(insert->name3, name3))) {
713
0
        if (f)
714
0
      f(insert->payload, insert->name);
715
0
        insert->payload = userdata;
716
0
        return(0);
717
0
    }
718
0
      }
719
0
      if ((xmlStrEqual(insert->name, name)) &&
720
0
    (xmlStrEqual(insert->name2, name2)) &&
721
0
    (xmlStrEqual(insert->name3, name3))) {
722
0
    if (f)
723
0
        f(insert->payload, insert->name);
724
0
    insert->payload = userdata;
725
0
    return(0);
726
0
      }
727
0
  }
728
124k
    }
729
730
348k
    if (insert == NULL) {
731
226k
  entry =  &(table->table[key]);
732
226k
    } else {
733
121k
  entry = xmlMalloc(sizeof(xmlHashEntry));
734
121k
  if (entry == NULL)
735
0
       return(-1);
736
121k
    }
737
738
348k
    if (table->dict != NULL) {
739
348k
        entry->name = (xmlChar *) name;
740
348k
        entry->name2 = (xmlChar *) name2;
741
348k
        entry->name3 = (xmlChar *) name3;
742
348k
    } else {
743
0
  entry->name = xmlStrdup(name);
744
0
  entry->name2 = xmlStrdup(name2);
745
0
  entry->name3 = xmlStrdup(name3);
746
0
    }
747
348k
    entry->payload = userdata;
748
348k
    entry->next = NULL;
749
348k
    entry->valid = 1;
750
348k
    table->nbElems++;
751
752
753
348k
    if (insert != NULL) {
754
121k
  insert->next = entry;
755
121k
    }
756
348k
    return(0);
757
348k
}
758
759
/**
760
 * xmlHashLookup3:
761
 * @table: the hash table
762
 * @name: the name of the userdata
763
 * @name2: a second name of the userdata
764
 * @name3: a third name of the userdata
765
 *
766
 * Find the userdata specified by the (@name, @name2, @name3) tuple.
767
 *
768
 * Returns the a pointer to the userdata
769
 */
770
void *
771
xmlHashLookup3(xmlHashTablePtr table, const xmlChar *name,
772
806M
         const xmlChar *name2, const xmlChar *name3) {
773
806M
    unsigned long key;
774
806M
    xmlHashEntryPtr entry;
775
776
806M
    if (table == NULL)
777
2.74M
  return(NULL);
778
804M
    if (name == NULL)
779
51
  return(NULL);
780
804M
    key = xmlHashComputeKey(table, name, name2, name3);
781
804M
    if (table->table[key].valid == 0)
782
182M
  return(NULL);
783
621M
    if (table->dict) {
784
509M
  for (entry = &(table->table[key]); entry != NULL; entry = entry->next) {
785
362M
      if ((entry->name == name) &&
786
362M
    (entry->name2 == name2) &&
787
362M
    (entry->name3 == name3))
788
186M
    return(entry->payload);
789
362M
  }
790
333M
    }
791
483M
    for (entry = &(table->table[key]); entry != NULL; entry = entry->next) {
792
462M
  if ((xmlStrEqual(entry->name, name)) &&
793
462M
      (xmlStrEqual(entry->name2, name2)) &&
794
462M
      (xmlStrEqual(entry->name3, name3)))
795
414M
      return(entry->payload);
796
462M
    }
797
20.5M
    return(NULL);
798
435M
}
799
800
/**
801
 * xmlHashQLookup3:
802
 * @table: the hash table
803
 * @prefix: the prefix of the userdata
804
 * @name: the name of the userdata
805
 * @prefix2: the second prefix of the userdata
806
 * @name2: a second name of the userdata
807
 * @prefix3: the third prefix of the userdata
808
 * @name3: a third name of the userdata
809
 *
810
 * Find the userdata specified by the (@name, @name2, @name3) tuple.
811
 *
812
 * Returns the a pointer to the userdata
813
 */
814
void *
815
xmlHashQLookup3(xmlHashTablePtr table,
816
                const xmlChar *prefix, const xmlChar *name,
817
    const xmlChar *prefix2, const xmlChar *name2,
818
7.96M
    const xmlChar *prefix3, const xmlChar *name3) {
819
7.96M
    unsigned long key;
820
7.96M
    xmlHashEntryPtr entry;
821
822
7.96M
    if (table == NULL)
823
0
  return(NULL);
824
7.96M
    if (name == NULL)
825
0
  return(NULL);
826
7.96M
    key = xmlHashComputeQKey(table, prefix, name, prefix2,
827
7.96M
                             name2, prefix3, name3);
828
7.96M
    if (table->table[key].valid == 0)
829
624k
  return(NULL);
830
22.1M
    for (entry = &(table->table[key]); entry != NULL; entry = entry->next) {
831
19.2M
  if ((xmlStrQEqual(prefix, name, entry->name)) &&
832
19.2M
      (xmlStrQEqual(prefix2, name2, entry->name2)) &&
833
19.2M
      (xmlStrQEqual(prefix3, name3, entry->name3)))
834
4.42M
      return(entry->payload);
835
19.2M
    }
836
2.91M
    return(NULL);
837
7.34M
}
838
839
typedef struct {
840
    xmlHashScanner hashscanner;
841
    void *data;
842
} stubData;
843
844
static void
845
stubHashScannerFull (void *payload, void *data, const xmlChar *name,
846
                     const xmlChar *name2 ATTRIBUTE_UNUSED,
847
7.02M
         const xmlChar *name3 ATTRIBUTE_UNUSED) {
848
7.02M
    stubData *stubdata = (stubData *) data;
849
7.02M
    stubdata->hashscanner (payload, stubdata->data, (xmlChar *) name);
850
7.02M
}
851
852
/**
853
 * xmlHashScan:
854
 * @table: the hash table
855
 * @f:  the scanner function for items in the hash
856
 * @data:  extra data passed to f
857
 *
858
 * Scan the hash @table and applied @f to each value.
859
 */
860
void
861
216k
xmlHashScan(xmlHashTablePtr table, xmlHashScanner f, void *data) {
862
216k
    stubData stubdata;
863
216k
    stubdata.data = data;
864
216k
    stubdata.hashscanner = f;
865
216k
    xmlHashScanFull (table, stubHashScannerFull, &stubdata);
866
216k
}
867
868
/**
869
 * xmlHashScanFull:
870
 * @table: the hash table
871
 * @f:  the scanner function for items in the hash
872
 * @data:  extra data passed to f
873
 *
874
 * Scan the hash @table and applied @f to each value.
875
 */
876
void
877
303k
xmlHashScanFull(xmlHashTablePtr table, xmlHashScannerFull f, void *data) {
878
303k
    int i, nb;
879
303k
    xmlHashEntryPtr iter;
880
303k
    xmlHashEntryPtr next;
881
882
303k
    if (table == NULL)
883
16.7k
  return;
884
286k
    if (f == NULL)
885
0
  return;
886
887
286k
    if (table->table) {
888
56.3M
  for(i = 0; i < table->size; i++) {
889
56.0M
      if (table->table[i].valid == 0)
890
48.0M
    continue;
891
8.04M
      iter = &(table->table[i]);
892
22.0M
      while (iter) {
893
13.9M
    next = iter->next;
894
13.9M
                nb = table->nbElems;
895
13.9M
    if ((f != NULL) && (iter->payload != NULL))
896
13.9M
        f(iter->payload, data, iter->name,
897
13.9M
          iter->name2, iter->name3);
898
13.9M
                if (nb != table->nbElems) {
899
                    /* table was modified by the callback, be careful */
900
2.20M
                    if (iter == &(table->table[i])) {
901
1.31M
                        if (table->table[i].valid == 0)
902
743k
                            iter = NULL;
903
1.31M
                        if (table->table[i].next != next)
904
574k
          iter = &(table->table[i]);
905
1.31M
                    } else
906
885k
            iter = next;
907
2.20M
                } else
908
11.7M
        iter = next;
909
13.9M
      }
910
8.04M
  }
911
286k
    }
912
286k
}
913
914
/**
915
 * xmlHashScan3:
916
 * @table: the hash table
917
 * @name: the name of the userdata or NULL
918
 * @name2: a second name of the userdata or NULL
919
 * @name3: a third name of the userdata or NULL
920
 * @f:  the scanner function for items in the hash
921
 * @data:  extra data passed to f
922
 *
923
 * Scan the hash @table and applied @f to each value matching
924
 * (@name, @name2, @name3) tuple. If one of the names is null,
925
 * the comparison is considered to match.
926
 */
927
void
928
xmlHashScan3(xmlHashTablePtr table, const xmlChar *name,
929
       const xmlChar *name2, const xmlChar *name3,
930
1.49M
       xmlHashScanner f, void *data) {
931
1.49M
    stubData stubdata;
932
1.49M
    stubdata.data = data;
933
1.49M
    stubdata.hashscanner = f;
934
1.49M
    xmlHashScanFull3(table, name, name2, name3, stubHashScannerFull,
935
1.49M
                     &stubdata);
936
1.49M
}
937
938
/**
939
 * xmlHashScanFull3:
940
 * @table: the hash table
941
 * @name: the name of the userdata or NULL
942
 * @name2: a second name of the userdata or NULL
943
 * @name3: a third name of the userdata or NULL
944
 * @f:  the scanner function for items in the hash
945
 * @data:  extra data passed to f
946
 *
947
 * Scan the hash @table and applied @f to each value matching
948
 * (@name, @name2, @name3) tuple. If one of the names is null,
949
 * the comparison is considered to match.
950
 */
951
void
952
xmlHashScanFull3(xmlHashTablePtr table, const xmlChar *name,
953
     const xmlChar *name2, const xmlChar *name3,
954
1.49M
     xmlHashScannerFull f, void *data) {
955
1.49M
    int i;
956
1.49M
    xmlHashEntryPtr iter;
957
1.49M
    xmlHashEntryPtr next;
958
959
1.49M
    if (table == NULL)
960
1.34M
  return;
961
146k
    if (f == NULL)
962
0
  return;
963
964
146k
    if (table->table) {
965
40.4M
  for(i = 0; i < table->size; i++) {
966
40.2M
      if (table->table[i].valid == 0)
967
16.5M
    continue;
968
23.7M
      iter = &(table->table[i]);
969
73.3M
      while (iter) {
970
49.6M
    next = iter->next;
971
49.6M
    if (((name == NULL) || (xmlStrEqual(name, iter->name))) &&
972
49.6M
        ((name2 == NULL) || (xmlStrEqual(name2, iter->name2))) &&
973
49.6M
        ((name3 == NULL) || (xmlStrEqual(name3, iter->name3))) &&
974
49.6M
        (iter->payload != NULL)) {
975
335
        f(iter->payload, data, iter->name,
976
335
          iter->name2, iter->name3);
977
335
    }
978
49.6M
    iter = next;
979
49.6M
      }
980
23.7M
  }
981
146k
    }
982
146k
}
983
984
/**
985
 * xmlHashCopy:
986
 * @table: the hash table
987
 * @f:  the copier function for items in the hash
988
 *
989
 * Scan the hash @table and applied @f to each value.
990
 *
991
 * Returns the new table or NULL in case of error.
992
 */
993
xmlHashTablePtr
994
0
xmlHashCopy(xmlHashTablePtr table, xmlHashCopier f) {
995
0
    int i;
996
0
    xmlHashEntryPtr iter;
997
0
    xmlHashEntryPtr next;
998
0
    xmlHashTablePtr ret;
999
1000
0
    if (table == NULL)
1001
0
  return(NULL);
1002
0
    if (f == NULL)
1003
0
  return(NULL);
1004
1005
0
    ret = xmlHashCreate(table->size);
1006
0
    if (ret == NULL)
1007
0
        return(NULL);
1008
1009
0
    if (table->table) {
1010
0
  for(i = 0; i < table->size; i++) {
1011
0
      if (table->table[i].valid == 0)
1012
0
    continue;
1013
0
      iter = &(table->table[i]);
1014
0
      while (iter) {
1015
0
    next = iter->next;
1016
0
    xmlHashAddEntry3(ret, iter->name, iter->name2,
1017
0
               iter->name3, f(iter->payload, iter->name));
1018
0
    iter = next;
1019
0
      }
1020
0
  }
1021
0
    }
1022
0
    ret->nbElems = table->nbElems;
1023
0
    return(ret);
1024
0
}
1025
1026
/**
1027
 * xmlHashSize:
1028
 * @table: the hash table
1029
 *
1030
 * Query the number of elements installed in the hash @table.
1031
 *
1032
 * Returns the number of elements in the hash table or
1033
 * -1 in case of error
1034
 */
1035
int
1036
86.6k
xmlHashSize(xmlHashTablePtr table) {
1037
86.6k
    if (table == NULL)
1038
0
  return(-1);
1039
86.6k
    return(table->nbElems);
1040
86.6k
}
1041
1042
/**
1043
 * xmlHashRemoveEntry:
1044
 * @table: the hash table
1045
 * @name: the name of the userdata
1046
 * @f: the deallocator function for removed item (if any)
1047
 *
1048
 * Find the userdata specified by the @name and remove
1049
 * it from the hash @table. Existing userdata for this tuple will be removed
1050
 * and freed with @f.
1051
 *
1052
 * Returns 0 if the removal succeeded and -1 in case of error or not found.
1053
 */
1054
int xmlHashRemoveEntry(xmlHashTablePtr table, const xmlChar *name,
1055
642
           xmlHashDeallocator f) {
1056
642
    return(xmlHashRemoveEntry3(table, name, NULL, NULL, f));
1057
642
}
1058
1059
/**
1060
 * xmlHashRemoveEntry2:
1061
 * @table: the hash table
1062
 * @name: the name of the userdata
1063
 * @name2: a second name of the userdata
1064
 * @f: the deallocator function for removed item (if any)
1065
 *
1066
 * Find the userdata specified by the (@name, @name2) tuple and remove
1067
 * it from the hash @table. Existing userdata for this tuple will be removed
1068
 * and freed with @f.
1069
 *
1070
 * Returns 0 if the removal succeeded and -1 in case of error or not found.
1071
 */
1072
int
1073
xmlHashRemoveEntry2(xmlHashTablePtr table, const xmlChar *name,
1074
2.20M
      const xmlChar *name2, xmlHashDeallocator f) {
1075
2.20M
    return(xmlHashRemoveEntry3(table, name, name2, NULL, f));
1076
2.20M
}
1077
1078
/**
1079
 * xmlHashRemoveEntry3:
1080
 * @table: the hash table
1081
 * @name: the name of the userdata
1082
 * @name2: a second name of the userdata
1083
 * @name3: a third name of the userdata
1084
 * @f: the deallocator function for removed item (if any)
1085
 *
1086
 * Find the userdata specified by the (@name, @name2, @name3) tuple and remove
1087
 * it from the hash @table. Existing userdata for this tuple will be removed
1088
 * and freed with @f.
1089
 *
1090
 * Returns 0 if the removal succeeded and -1 in case of error or not found.
1091
 */
1092
int
1093
xmlHashRemoveEntry3(xmlHashTablePtr table, const xmlChar *name,
1094
2.20M
    const xmlChar *name2, const xmlChar *name3, xmlHashDeallocator f) {
1095
2.20M
    unsigned long key;
1096
2.20M
    xmlHashEntryPtr entry;
1097
2.20M
    xmlHashEntryPtr prev = NULL;
1098
1099
2.20M
    if (table == NULL || name == NULL)
1100
0
        return(-1);
1101
1102
2.20M
    key = xmlHashComputeKey(table, name, name2, name3);
1103
2.20M
    if (table->table[key].valid == 0) {
1104
0
        return(-1);
1105
2.20M
    } else {
1106
3.64M
        for (entry = &(table->table[key]); entry != NULL; entry = entry->next) {
1107
3.64M
            if (xmlStrEqual(entry->name, name) &&
1108
3.64M
                    xmlStrEqual(entry->name2, name2) &&
1109
3.64M
                    xmlStrEqual(entry->name3, name3)) {
1110
2.20M
                if ((f != NULL) && (entry->payload != NULL))
1111
642
                    f(entry->payload, entry->name);
1112
2.20M
                entry->payload = NULL;
1113
2.20M
    if (table->dict == NULL) {
1114
1.40k
        if(entry->name)
1115
1.40k
      xmlFree(entry->name);
1116
1.40k
        if(entry->name2)
1117
246
      xmlFree(entry->name2);
1118
1.40k
        if(entry->name3)
1119
0
      xmlFree(entry->name3);
1120
1.40k
    }
1121
2.20M
                if(prev) {
1122
885k
                    prev->next = entry->next;
1123
885k
        xmlFree(entry);
1124
1.32M
    } else {
1125
1.32M
        if (entry->next == NULL) {
1126
746k
      entry->valid = 0;
1127
746k
        } else {
1128
574k
      entry = entry->next;
1129
574k
      memcpy(&(table->table[key]), entry, sizeof(xmlHashEntry));
1130
574k
      xmlFree(entry);
1131
574k
        }
1132
1.32M
    }
1133
2.20M
                table->nbElems--;
1134
2.20M
                return(0);
1135
2.20M
            }
1136
1.43M
            prev = entry;
1137
1.43M
        }
1138
0
        return(-1);
1139
2.20M
    }
1140
2.20M
}
1141