Coverage Report

Created: 2026-01-19 06:47

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libxml2/xpath.c
Line
Count
Source
1
/*
2
 * xpath.c: XML Path Language implementation
3
 *          XPath is a language for addressing parts of an XML document,
4
 *          designed to be used by both XSLT and XPointer
5
 *
6
 * Reference: W3C Recommendation 16 November 1999
7
 *     http://www.w3.org/TR/1999/REC-xpath-19991116
8
 * Public reference:
9
 *     http://www.w3.org/TR/xpath
10
 *
11
 * See Copyright for the status of this software
12
 *
13
 * Author: Daniel Veillard
14
 */
15
16
/* To avoid EBCDIC trouble when parsing on zOS */
17
#if defined(__MVS__)
18
#pragma convert("ISO8859-1")
19
#endif
20
21
#define IN_LIBXML
22
#include "libxml.h"
23
24
#include <limits.h>
25
#include <string.h>
26
#include <stddef.h>
27
#include <math.h>
28
#include <float.h>
29
#include <ctype.h>
30
31
#include <libxml/xmlmemory.h>
32
#include <libxml/tree.h>
33
#include <libxml/xpath.h>
34
#include <libxml/xpathInternals.h>
35
#include <libxml/parserInternals.h>
36
#include <libxml/hash.h>
37
#ifdef LIBXML_DEBUG_ENABLED
38
#include <libxml/debugXML.h>
39
#endif
40
#include <libxml/xmlerror.h>
41
#include <libxml/threads.h>
42
#ifdef LIBXML_PATTERN_ENABLED
43
#include <libxml/pattern.h>
44
#endif
45
46
#include "private/buf.h"
47
#include "private/error.h"
48
#include "private/memory.h"
49
#include "private/parser.h"
50
#include "private/xpath.h"
51
52
/* Disabled for now */
53
#if 0
54
#ifdef LIBXML_PATTERN_ENABLED
55
#define XPATH_STREAMING
56
#endif
57
#endif
58
59
/**
60
 * Use the Timsort algorithm provided in timsort.h to sort
61
 * nodeset as this is a great improvement over the old Shell sort
62
 * used in #xmlXPathNodeSetSort
63
 */
64
#define WITH_TIM_SORT
65
66
/*
67
* If defined, this will use xmlXPathCmpNodesExt() instead of
68
* xmlXPathCmpNodes(). The new function is optimized comparison of
69
* non-element nodes; actually it will speed up comparison only if
70
* xmlXPathOrderDocElems() was called in order to index the elements of
71
* a tree in document order; Libxslt does such an indexing, thus it will
72
* benefit from this optimization.
73
*/
74
#define XP_OPTIMIZED_NON_ELEM_COMPARISON
75
76
/*
77
* If defined, this will optimize expressions like "key('foo', 'val')[b][1]"
78
* in a way, that it stop evaluation at the first node.
79
*/
80
#define XP_OPTIMIZED_FILTER_FIRST
81
82
/*
83
 * when compiling an XPath expression we arbitrary limit the maximum
84
 * number of step operation in the compiled expression. 1000000 is
85
 * an insanely large value which should never be reached under normal
86
 * circumstances
87
 */
88
0
#define XPATH_MAX_STEPS 1000000
89
90
/*
91
 * when evaluating an XPath expression we arbitrary limit the maximum
92
 * number of object allowed to be pushed on the stack. 1000000 is
93
 * an insanely large value which should never be reached under normal
94
 * circumstances
95
 */
96
0
#define XPATH_MAX_STACK_DEPTH 1000000
97
98
/*
99
 * when evaluating an XPath expression nodesets are created and we
100
 * arbitrary limit the maximum length of those node set. 10000000 is
101
 * an insanely large value which should never be reached under normal
102
 * circumstances, one would first need to construct an in memory tree
103
 * with more than 10 millions nodes.
104
 */
105
0
#define XPATH_MAX_NODESET_LENGTH 10000000
106
107
/*
108
 * Maximum amount of nested functions calls when parsing or evaluating
109
 * expressions
110
 */
111
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
112
0
#define XPATH_MAX_RECURSION_DEPTH 500
113
#elif defined(_WIN32)
114
/* Windows typically limits stack size to 1MB. */
115
#define XPATH_MAX_RECURSION_DEPTH 1000
116
#else
117
#define XPATH_MAX_RECURSION_DEPTH 5000
118
#endif
119
120
/*
121
 * TODO:
122
 * There are a few spots where some tests are done which depend upon ascii
123
 * data.  These should be enhanced for full UTF8 support (see particularly
124
 * any use of the macros IS_ASCII_CHARACTER and IS_ASCII_DIGIT)
125
 */
126
127
#if defined(LIBXML_XPATH_ENABLED)
128
129
static void
130
xmlXPathNameFunction(xmlXPathParserContextPtr ctxt, int nargs);
131
132
static const struct {
133
    const char *name;
134
    xmlXPathFunction func;
135
} xmlXPathStandardFunctions[] = {
136
    { "boolean", xmlXPathBooleanFunction },
137
    { "ceiling", xmlXPathCeilingFunction },
138
    { "count", xmlXPathCountFunction },
139
    { "concat", xmlXPathConcatFunction },
140
    { "contains", xmlXPathContainsFunction },
141
    { "id", xmlXPathIdFunction },
142
    { "false", xmlXPathFalseFunction },
143
    { "floor", xmlXPathFloorFunction },
144
    { "last", xmlXPathLastFunction },
145
    { "lang", xmlXPathLangFunction },
146
    { "local-name", xmlXPathLocalNameFunction },
147
    { "not", xmlXPathNotFunction },
148
    { "name", xmlXPathNameFunction },
149
    { "namespace-uri", xmlXPathNamespaceURIFunction },
150
    { "normalize-space", xmlXPathNormalizeFunction },
151
    { "number", xmlXPathNumberFunction },
152
    { "position", xmlXPathPositionFunction },
153
    { "round", xmlXPathRoundFunction },
154
    { "string", xmlXPathStringFunction },
155
    { "string-length", xmlXPathStringLengthFunction },
156
    { "starts-with", xmlXPathStartsWithFunction },
157
    { "substring", xmlXPathSubstringFunction },
158
    { "substring-before", xmlXPathSubstringBeforeFunction },
159
    { "substring-after", xmlXPathSubstringAfterFunction },
160
    { "sum", xmlXPathSumFunction },
161
    { "true", xmlXPathTrueFunction },
162
    { "translate", xmlXPathTranslateFunction }
163
};
164
165
#define NUM_STANDARD_FUNCTIONS \
166
28
    (sizeof(xmlXPathStandardFunctions) / sizeof(xmlXPathStandardFunctions[0]))
167
168
99
#define SF_HASH_SIZE 64
169
170
static unsigned char xmlXPathSFHash[SF_HASH_SIZE];
171
172
double xmlXPathNAN = 0.0;
173
double xmlXPathPINF = 0.0;
174
double xmlXPathNINF = 0.0;
175
176
/**
177
 * @deprecated Alias for #xmlInitParser.
178
 */
179
void
180
0
xmlXPathInit(void) {
181
0
    xmlInitParser();
182
0
}
183
184
ATTRIBUTE_NO_SANITIZE_INTEGER
185
static unsigned
186
27
xmlXPathSFComputeHash(const xmlChar *name) {
187
27
    unsigned hashValue = 5381;
188
27
    const xmlChar *ptr;
189
190
230
    for (ptr = name; *ptr; ptr++)
191
203
        hashValue = hashValue * 33 + *ptr;
192
193
27
    return(hashValue);
194
27
}
195
196
/**
197
 * Initialize the XPath environment
198
 */
199
ATTRIBUTE_NO_SANITIZE("float-divide-by-zero")
200
void
201
1
xmlInitXPathInternal(void) {
202
1
    size_t i;
203
204
1
#if defined(NAN) && defined(INFINITY)
205
1
    xmlXPathNAN = NAN;
206
1
    xmlXPathPINF = INFINITY;
207
1
    xmlXPathNINF = -INFINITY;
208
#else
209
    /* MSVC doesn't allow division by zero in constant expressions. */
210
    double zero = 0.0;
211
    xmlXPathNAN = 0.0 / zero;
212
    xmlXPathPINF = 1.0 / zero;
213
    xmlXPathNINF = -xmlXPathPINF;
214
#endif
215
216
    /*
217
     * Initialize hash table for standard functions
218
     */
219
220
65
    for (i = 0; i < SF_HASH_SIZE; i++)
221
64
        xmlXPathSFHash[i] = UCHAR_MAX;
222
223
28
    for (i = 0; i < NUM_STANDARD_FUNCTIONS; i++) {
224
27
        const char *name = xmlXPathStandardFunctions[i].name;
225
27
        int bucketIndex = xmlXPathSFComputeHash(BAD_CAST name) % SF_HASH_SIZE;
226
227
34
        while (xmlXPathSFHash[bucketIndex] != UCHAR_MAX) {
228
7
            bucketIndex += 1;
229
7
            if (bucketIndex >= SF_HASH_SIZE)
230
0
                bucketIndex = 0;
231
7
        }
232
233
27
        xmlXPathSFHash[bucketIndex] = i;
234
27
    }
235
1
}
236
237
/************************************************************************
238
 *                  *
239
 *      Floating point stuff        *
240
 *                  *
241
 ************************************************************************/
242
243
/**
244
 * Checks whether a double is a NaN.
245
 *
246
 * @param val  a double value
247
 * @returns 1 if the value is a NaN, 0 otherwise
248
 */
249
int
250
0
xmlXPathIsNaN(double val) {
251
0
#ifdef isnan
252
0
    return isnan(val);
253
#else
254
    return !(val == val);
255
#endif
256
0
}
257
258
/**
259
 * Checks whether a double is an infinity.
260
 *
261
 * @param val  a double value
262
 * @returns 1 if the value is +Infinite, -1 if -Infinite, 0 otherwise
263
 */
264
int
265
0
xmlXPathIsInf(double val) {
266
0
#ifdef isinf
267
0
    return isinf(val) ? (val > 0 ? 1 : -1) : 0;
268
#else
269
    if (val >= xmlXPathPINF)
270
        return 1;
271
    if (val <= -xmlXPathPINF)
272
        return -1;
273
    return 0;
274
#endif
275
0
}
276
277
/*
278
 * TODO: when compatibility allows remove all "fake node libxslt" strings
279
 *       the test should just be name[0] = ' '
280
 */
281
282
static const xmlNs xmlXPathXMLNamespaceStruct = {
283
    NULL,
284
    XML_NAMESPACE_DECL,
285
    XML_XML_NAMESPACE,
286
    BAD_CAST "xml",
287
    NULL,
288
    NULL
289
};
290
static const xmlNs *const xmlXPathXMLNamespace = &xmlXPathXMLNamespaceStruct;
291
292
static void
293
xmlXPathNodeSetClear(xmlNodeSetPtr set, int hasNsNodes);
294
295
0
#define XML_NODE_SORT_VALUE(n) XML_PTR_TO_INT((n)->content)
296
297
#ifdef XP_OPTIMIZED_NON_ELEM_COMPARISON
298
299
/**
300
 * Compare two nodes w.r.t document order.
301
 * This one is optimized for handling of non-element nodes.
302
 *
303
 * @param node1  the first node
304
 * @param node2  the second node
305
 * @returns -2 in case of error 1 if first point < second point, 0 if
306
 *         it's the same node, -1 otherwise
307
 */
308
static int
309
0
xmlXPathCmpNodesExt(xmlNodePtr node1, xmlNodePtr node2) {
310
0
    int depth1, depth2;
311
0
    int misc = 0, precedence1 = 0, precedence2 = 0;
312
0
    xmlNodePtr miscNode1 = NULL, miscNode2 = NULL;
313
0
    xmlNodePtr cur, root;
314
0
    XML_INTPTR_T l1, l2;
315
316
0
    if ((node1 == NULL) || (node2 == NULL))
317
0
  return(-2);
318
319
0
    if (node1 == node2)
320
0
  return(0);
321
322
    /*
323
     * a couple of optimizations which will avoid computations in most cases
324
     */
325
0
    switch (node1->type) {
326
0
  case XML_ELEMENT_NODE:
327
0
      if (node2->type == XML_ELEMENT_NODE) {
328
0
    if ((0 > XML_NODE_SORT_VALUE(node1)) &&
329
0
        (0 > XML_NODE_SORT_VALUE(node2)) &&
330
0
        (node1->doc == node2->doc))
331
0
    {
332
0
        l1 = -XML_NODE_SORT_VALUE(node1);
333
0
        l2 = -XML_NODE_SORT_VALUE(node2);
334
0
        if (l1 < l2)
335
0
      return(1);
336
0
        if (l1 > l2)
337
0
      return(-1);
338
0
    } else
339
0
        goto turtle_comparison;
340
0
      }
341
0
      break;
342
0
  case XML_ATTRIBUTE_NODE:
343
0
      precedence1 = 1; /* element is owner */
344
0
      miscNode1 = node1;
345
0
      node1 = node1->parent;
346
0
      misc = 1;
347
0
      break;
348
0
  case XML_TEXT_NODE:
349
0
  case XML_CDATA_SECTION_NODE:
350
0
  case XML_COMMENT_NODE:
351
0
  case XML_PI_NODE: {
352
0
      miscNode1 = node1;
353
      /*
354
      * Find nearest element node.
355
      */
356
0
      if (node1->prev != NULL) {
357
0
    do {
358
0
        node1 = node1->prev;
359
0
        if (node1->type == XML_ELEMENT_NODE) {
360
0
      precedence1 = 3; /* element in prev-sibl axis */
361
0
      break;
362
0
        }
363
0
        if (node1->prev == NULL) {
364
0
      precedence1 = 2; /* element is parent */
365
      /*
366
      * URGENT TODO: Are there any cases, where the
367
      * parent of such a node is not an element node?
368
      */
369
0
      node1 = node1->parent;
370
0
      break;
371
0
        }
372
0
    } while (1);
373
0
      } else {
374
0
    precedence1 = 2; /* element is parent */
375
0
    node1 = node1->parent;
376
0
      }
377
0
      if ((node1 == NULL) || (node1->type != XML_ELEMENT_NODE) ||
378
0
    (0 <= XML_NODE_SORT_VALUE(node1))) {
379
    /*
380
    * Fallback for whatever case.
381
    */
382
0
    node1 = miscNode1;
383
0
    precedence1 = 0;
384
0
      } else
385
0
    misc = 1;
386
0
  }
387
0
      break;
388
0
  case XML_NAMESPACE_DECL:
389
      /*
390
      * TODO: why do we return 1 for namespace nodes?
391
      */
392
0
      return(1);
393
0
  default:
394
0
      break;
395
0
    }
396
0
    switch (node2->type) {
397
0
  case XML_ELEMENT_NODE:
398
0
      break;
399
0
  case XML_ATTRIBUTE_NODE:
400
0
      precedence2 = 1; /* element is owner */
401
0
      miscNode2 = node2;
402
0
      node2 = node2->parent;
403
0
      misc = 1;
404
0
      break;
405
0
  case XML_TEXT_NODE:
406
0
  case XML_CDATA_SECTION_NODE:
407
0
  case XML_COMMENT_NODE:
408
0
  case XML_PI_NODE: {
409
0
      miscNode2 = node2;
410
0
      if (node2->prev != NULL) {
411
0
    do {
412
0
        node2 = node2->prev;
413
0
        if (node2->type == XML_ELEMENT_NODE) {
414
0
      precedence2 = 3; /* element in prev-sibl axis */
415
0
      break;
416
0
        }
417
0
        if (node2->prev == NULL) {
418
0
      precedence2 = 2; /* element is parent */
419
0
      node2 = node2->parent;
420
0
      break;
421
0
        }
422
0
    } while (1);
423
0
      } else {
424
0
    precedence2 = 2; /* element is parent */
425
0
    node2 = node2->parent;
426
0
      }
427
0
      if ((node2 == NULL) || (node2->type != XML_ELEMENT_NODE) ||
428
0
    (0 <= XML_NODE_SORT_VALUE(node2)))
429
0
      {
430
0
    node2 = miscNode2;
431
0
    precedence2 = 0;
432
0
      } else
433
0
    misc = 1;
434
0
  }
435
0
      break;
436
0
  case XML_NAMESPACE_DECL:
437
0
      return(1);
438
0
  default:
439
0
      break;
440
0
    }
441
0
    if (misc) {
442
0
  if (node1 == node2) {
443
0
      if (precedence1 == precedence2) {
444
    /*
445
    * The ugly case; but normally there aren't many
446
    * adjacent non-element nodes around.
447
    */
448
0
    cur = miscNode2->prev;
449
0
    while (cur != NULL) {
450
0
        if (cur == miscNode1)
451
0
      return(1);
452
0
        if (cur->type == XML_ELEMENT_NODE)
453
0
      return(-1);
454
0
        cur = cur->prev;
455
0
    }
456
0
    return (-1);
457
0
      } else {
458
    /*
459
    * Evaluate based on higher precedence wrt to the element.
460
    * TODO: This assumes attributes are sorted before content.
461
    *   Is this 100% correct?
462
    */
463
0
    if (precedence1 < precedence2)
464
0
        return(1);
465
0
    else
466
0
        return(-1);
467
0
      }
468
0
  }
469
  /*
470
  * Special case: One of the helper-elements is contained by the other.
471
  * <foo>
472
  *   <node2>
473
  *     <node1>Text-1(precedence1 == 2)</node1>
474
  *   </node2>
475
  *   Text-6(precedence2 == 3)
476
  * </foo>
477
  */
478
0
  if ((precedence2 == 3) && (precedence1 > 1)) {
479
0
      cur = node1->parent;
480
0
      while (cur) {
481
0
    if (cur == node2)
482
0
        return(1);
483
0
    cur = cur->parent;
484
0
      }
485
0
  }
486
0
  if ((precedence1 == 3) && (precedence2 > 1)) {
487
0
      cur = node2->parent;
488
0
      while (cur) {
489
0
    if (cur == node1)
490
0
        return(-1);
491
0
    cur = cur->parent;
492
0
      }
493
0
  }
494
0
    }
495
496
    /*
497
     * Speedup using document order if available.
498
     */
499
0
    if ((node1->type == XML_ELEMENT_NODE) &&
500
0
  (node2->type == XML_ELEMENT_NODE) &&
501
0
  (0 > XML_NODE_SORT_VALUE(node1)) &&
502
0
  (0 > XML_NODE_SORT_VALUE(node2)) &&
503
0
  (node1->doc == node2->doc)) {
504
505
0
  l1 = -XML_NODE_SORT_VALUE(node1);
506
0
  l2 = -XML_NODE_SORT_VALUE(node2);
507
0
  if (l1 < l2)
508
0
      return(1);
509
0
  if (l1 > l2)
510
0
      return(-1);
511
0
    }
512
513
0
turtle_comparison:
514
515
0
    if (node1 == node2->prev)
516
0
  return(1);
517
0
    if (node1 == node2->next)
518
0
  return(-1);
519
    /*
520
     * compute depth to root
521
     */
522
0
    for (depth2 = 0, cur = node2; cur->parent != NULL; cur = cur->parent) {
523
0
  if (cur->parent == node1)
524
0
      return(1);
525
0
  depth2++;
526
0
    }
527
0
    root = cur;
528
0
    for (depth1 = 0, cur = node1; cur->parent != NULL; cur = cur->parent) {
529
0
  if (cur->parent == node2)
530
0
      return(-1);
531
0
  depth1++;
532
0
    }
533
    /*
534
     * Distinct document (or distinct entities :-( ) case.
535
     */
536
0
    if (root != cur) {
537
0
  return(-2);
538
0
    }
539
    /*
540
     * get the nearest common ancestor.
541
     */
542
0
    while (depth1 > depth2) {
543
0
  depth1--;
544
0
  node1 = node1->parent;
545
0
    }
546
0
    while (depth2 > depth1) {
547
0
  depth2--;
548
0
  node2 = node2->parent;
549
0
    }
550
0
    while (node1->parent != node2->parent) {
551
0
  node1 = node1->parent;
552
0
  node2 = node2->parent;
553
  /* should not happen but just in case ... */
554
0
  if ((node1 == NULL) || (node2 == NULL))
555
0
      return(-2);
556
0
    }
557
    /*
558
     * Find who's first.
559
     */
560
0
    if (node1 == node2->prev)
561
0
  return(1);
562
0
    if (node1 == node2->next)
563
0
  return(-1);
564
    /*
565
     * Speedup using document order if available.
566
     */
567
0
    if ((node1->type == XML_ELEMENT_NODE) &&
568
0
  (node2->type == XML_ELEMENT_NODE) &&
569
0
  (0 > XML_NODE_SORT_VALUE(node1)) &&
570
0
  (0 > XML_NODE_SORT_VALUE(node2)) &&
571
0
  (node1->doc == node2->doc)) {
572
573
0
  l1 = -XML_NODE_SORT_VALUE(node1);
574
0
  l2 = -XML_NODE_SORT_VALUE(node2);
575
0
  if (l1 < l2)
576
0
      return(1);
577
0
  if (l1 > l2)
578
0
      return(-1);
579
0
    }
580
581
0
    for (cur = node1->next;cur != NULL;cur = cur->next)
582
0
  if (cur == node2)
583
0
      return(1);
584
0
    return(-1); /* assume there is no sibling list corruption */
585
0
}
586
#endif /* XP_OPTIMIZED_NON_ELEM_COMPARISON */
587
588
/*
589
 * Wrapper for the Timsort algorithm from timsort.h
590
 */
591
#ifdef WITH_TIM_SORT
592
#define SORT_NAME libxml_domnode
593
0
#define SORT_TYPE xmlNodePtr
594
/**
595
 * Comparison function for the Timsort implementation
596
 *
597
 * @param x  a node
598
 * @param y  another node
599
 * @returns -2 in case of error -1 if first point < second point, 0 if
600
 *         it's the same node, +1 otherwise
601
 */
602
static
603
int wrap_cmp( xmlNodePtr x, xmlNodePtr y );
604
#ifdef XP_OPTIMIZED_NON_ELEM_COMPARISON
605
    static int wrap_cmp( xmlNodePtr x, xmlNodePtr y )
606
0
    {
607
0
        int res = xmlXPathCmpNodesExt(x, y);
608
0
        return res == -2 ? res : -res;
609
0
    }
610
#else
611
    static int wrap_cmp( xmlNodePtr x, xmlNodePtr y )
612
    {
613
        int res = xmlXPathCmpNodes(x, y);
614
        return res == -2 ? res : -res;
615
    }
616
#endif
617
0
#define SORT_CMP(x, y)  (wrap_cmp(x, y))
618
#include "timsort.h"
619
#endif /* WITH_TIM_SORT */
620
621
/************************************************************************
622
 *                  *
623
 *      Error handling routines       *
624
 *                  *
625
 ************************************************************************/
626
627
/**
628
 * Macro to raise an XPath error and return NULL.
629
 *
630
 * @param X  the error code
631
 */
632
#define XP_ERRORNULL(X)             \
633
0
    { xmlXPathErr(ctxt, X); return(NULL); }
634
635
/*
636
 * The array xmlXPathErrorMessages corresponds to the enum xmlXPathError
637
 */
638
static const char* const xmlXPathErrorMessages[] = {
639
    "Ok",
640
    "Number encoding",
641
    "Unfinished literal",
642
    "Start of literal",
643
    "Expected $ for variable reference",
644
    "Undefined variable",
645
    "Invalid predicate",
646
    "Invalid expression",
647
    "Missing closing curly brace",
648
    "Unregistered function",
649
    "Invalid operand",
650
    "Invalid type",
651
    "Invalid number of arguments",
652
    "Invalid context size",
653
    "Invalid context position",
654
    "Memory allocation error",
655
    "Syntax error",
656
    "Resource error",
657
    "Sub resource error",
658
    "Undefined namespace prefix",
659
    "Encoding error",
660
    "Char out of XML range",
661
    "Invalid or incomplete context",
662
    "Stack usage error",
663
    "Forbidden variable",
664
    "Operation limit exceeded",
665
    "Recursion limit exceeded",
666
    "?? Unknown error ??" /* Must be last in the list! */
667
};
668
0
#define MAXERRNO ((int)(sizeof(xmlXPathErrorMessages) /  \
669
0
       sizeof(xmlXPathErrorMessages[0])) - 1)
670
/**
671
 * Handle a memory allocation failure.
672
 *
673
 * @param ctxt  an XPath context
674
 */
675
void
676
xmlXPathErrMemory(xmlXPathContext *ctxt)
677
0
{
678
0
    if (ctxt == NULL)
679
0
        return;
680
0
    xmlRaiseMemoryError(ctxt->error, NULL, ctxt->userData, XML_FROM_XPATH,
681
0
                        &ctxt->lastError);
682
0
}
683
684
/**
685
 * Handle a memory allocation failure.
686
 *
687
 * @param ctxt  an XPath parser context
688
 */
689
void
690
xmlXPathPErrMemory(xmlXPathParserContext *ctxt)
691
0
{
692
0
    if (ctxt == NULL)
693
0
        return;
694
0
    ctxt->error = XPATH_MEMORY_ERROR;
695
0
    xmlXPathErrMemory(ctxt->context);
696
0
}
697
698
/**
699
 * Handle an XPath error
700
 *
701
 * @param ctxt  a XPath parser context
702
 * @param code  the error code
703
 * @param fmt  format string for error message
704
 * @param ...  extra args
705
 */
706
static void
707
0
xmlXPathErrFmt(xmlXPathParserContext *ctxt, int code, const char *fmt, ...) {
708
0
    va_list ap;
709
0
    xmlStructuredErrorFunc schannel = NULL;
710
0
    xmlGenericErrorFunc channel = NULL;
711
0
    void *data = NULL;
712
0
    xmlNodePtr node = NULL;
713
0
    int res;
714
715
0
    if (ctxt == NULL)
716
0
        return;
717
0
    if ((code < 0) || (code > MAXERRNO))
718
0
  code = MAXERRNO;
719
    /* Only report the first error */
720
0
    if (ctxt->error != 0)
721
0
        return;
722
723
0
    ctxt->error = code;
724
725
0
    if (ctxt->context != NULL) {
726
0
        xmlErrorPtr err = &ctxt->context->lastError;
727
728
        /* Don't overwrite memory error. */
729
0
        if (err->code == XML_ERR_NO_MEMORY)
730
0
            return;
731
732
        /* cleanup current last error */
733
0
        xmlResetError(err);
734
735
0
        err->domain = XML_FROM_XPATH;
736
0
        err->code = code + XML_XPATH_EXPRESSION_OK - XPATH_EXPRESSION_OK;
737
0
        err->level = XML_ERR_ERROR;
738
0
        if (ctxt->base != NULL) {
739
0
            err->str1 = (char *) xmlStrdup(ctxt->base);
740
0
            if (err->str1 == NULL) {
741
0
                xmlXPathPErrMemory(ctxt);
742
0
                return;
743
0
            }
744
0
        }
745
0
        err->int1 = ctxt->cur - ctxt->base;
746
0
        err->node = ctxt->context->debugNode;
747
748
0
        schannel = ctxt->context->error;
749
0
        data = ctxt->context->userData;
750
0
        node = ctxt->context->debugNode;
751
0
    }
752
753
0
    if (schannel == NULL) {
754
0
        channel = xmlGenericError;
755
0
        data = xmlGenericErrorContext;
756
0
    }
757
758
0
    va_start(ap, fmt);
759
0
    res = xmlVRaiseError(schannel, channel, data, NULL, node, XML_FROM_XPATH,
760
0
                         code + XML_XPATH_EXPRESSION_OK - XPATH_EXPRESSION_OK,
761
0
                         XML_ERR_ERROR, NULL, 0,
762
0
                         (const char *) ctxt->base, NULL, NULL,
763
0
                         ctxt->cur - ctxt->base, 0,
764
0
                         fmt, ap);
765
0
    va_end(ap);
766
0
    if (res < 0)
767
0
        xmlXPathPErrMemory(ctxt);
768
0
}
769
770
/**
771
 * Handle an XPath error
772
 *
773
 * @param ctxt  a XPath parser context
774
 * @param code  the error code
775
 */
776
void
777
0
xmlXPathErr(xmlXPathParserContext *ctxt, int code) {
778
0
    xmlXPathErrFmt(ctxt, code, "%s\n", xmlXPathErrorMessages[code]);
779
0
}
780
781
/**
782
 * Formats an error message.
783
 *
784
 * @param ctxt  the XPath Parser context
785
 * @param file  the file name
786
 * @param line  the line number
787
 * @param no  the error number
788
 */
789
void
790
xmlXPatherror(xmlXPathParserContext *ctxt, const char *file ATTRIBUTE_UNUSED,
791
0
              int line ATTRIBUTE_UNUSED, int no) {
792
0
    xmlXPathErr(ctxt, no);
793
0
}
794
795
/**
796
 * Adds opCount to the running total of operations and returns -1 if the
797
 * operation limit is exceeded. Returns 0 otherwise.
798
 *
799
 * @param ctxt  the XPath Parser context
800
 * @param opCount  the number of operations to be added
801
 */
802
static int
803
0
xmlXPathCheckOpLimit(xmlXPathParserContextPtr ctxt, unsigned long opCount) {
804
0
    xmlXPathContextPtr xpctxt = ctxt->context;
805
806
0
    if ((opCount > xpctxt->opLimit) ||
807
0
        (xpctxt->opCount > xpctxt->opLimit - opCount)) {
808
0
        xpctxt->opCount = xpctxt->opLimit;
809
0
        xmlXPathErr(ctxt, XPATH_OP_LIMIT_EXCEEDED);
810
0
        return(-1);
811
0
    }
812
813
0
    xpctxt->opCount += opCount;
814
0
    return(0);
815
0
}
816
817
#define OP_LIMIT_EXCEEDED(ctxt, n) \
818
0
    ((ctxt->context->opLimit != 0) && (xmlXPathCheckOpLimit(ctxt, n) < 0))
819
820
/************************************************************************
821
 *                  *
822
 *      Parser Types          *
823
 *                  *
824
 ************************************************************************/
825
826
/*
827
 * Types are private:
828
 */
829
830
typedef enum {
831
    XPATH_OP_END=0,
832
    XPATH_OP_AND,
833
    XPATH_OP_OR,
834
    XPATH_OP_EQUAL,
835
    XPATH_OP_CMP,
836
    XPATH_OP_PLUS,
837
    XPATH_OP_MULT,
838
    XPATH_OP_UNION,
839
    XPATH_OP_ROOT,
840
    XPATH_OP_NODE,
841
    XPATH_OP_COLLECT,
842
    XPATH_OP_VALUE, /* 11 */
843
    XPATH_OP_VARIABLE,
844
    XPATH_OP_FUNCTION,
845
    XPATH_OP_ARG,
846
    XPATH_OP_PREDICATE,
847
    XPATH_OP_FILTER, /* 16 */
848
    XPATH_OP_SORT /* 17 */
849
} xmlXPathOp;
850
851
typedef enum {
852
    AXIS_ANCESTOR = 1,
853
    AXIS_ANCESTOR_OR_SELF,
854
    AXIS_ATTRIBUTE,
855
    AXIS_CHILD,
856
    AXIS_DESCENDANT,
857
    AXIS_DESCENDANT_OR_SELF,
858
    AXIS_FOLLOWING,
859
    AXIS_FOLLOWING_SIBLING,
860
    AXIS_NAMESPACE,
861
    AXIS_PARENT,
862
    AXIS_PRECEDING,
863
    AXIS_PRECEDING_SIBLING,
864
    AXIS_SELF
865
} xmlXPathAxisVal;
866
867
typedef enum {
868
    NODE_TEST_NONE = 0,
869
    NODE_TEST_TYPE = 1,
870
    NODE_TEST_PI = 2,
871
    NODE_TEST_ALL = 3,
872
    NODE_TEST_NS = 4,
873
    NODE_TEST_NAME = 5
874
} xmlXPathTestVal;
875
876
typedef enum {
877
    NODE_TYPE_NODE = 0,
878
    NODE_TYPE_COMMENT = XML_COMMENT_NODE,
879
    NODE_TYPE_TEXT = XML_TEXT_NODE,
880
    NODE_TYPE_PI = XML_PI_NODE
881
} xmlXPathTypeVal;
882
883
typedef struct _xmlXPathStepOp xmlXPathStepOp;
884
typedef xmlXPathStepOp *xmlXPathStepOpPtr;
885
struct _xmlXPathStepOp {
886
    xmlXPathOp op;    /* The identifier of the operation */
887
    int ch1;      /* First child */
888
    int ch2;      /* Second child */
889
    int value;
890
    int value2;
891
    int value3;
892
    void *value4;
893
    void *value5;
894
    xmlXPathFunction cache;
895
    void *cacheURI;
896
};
897
898
struct _xmlXPathCompExpr {
899
    int nbStep;     /* Number of steps in this expression */
900
    int maxStep;    /* Maximum number of steps allocated */
901
    xmlXPathStepOp *steps;  /* ops for computation of this expression */
902
    int last;     /* index of last step in expression */
903
    xmlChar *expr;    /* the expression being computed */
904
    xmlDictPtr dict;    /* the dictionary to use if any */
905
#ifdef XPATH_STREAMING
906
    xmlPatternPtr stream;
907
#endif
908
};
909
910
/************************************************************************
911
 *                  *
912
 *      Forward declarations        *
913
 *                  *
914
 ************************************************************************/
915
916
static void
917
xmlXPathReleaseObject(xmlXPathContextPtr ctxt, xmlXPathObjectPtr obj);
918
static int
919
xmlXPathCompOpEvalFirst(xmlXPathParserContextPtr ctxt,
920
                        xmlXPathStepOpPtr op, xmlNodePtr *first);
921
static int
922
xmlXPathCompOpEvalToBoolean(xmlXPathParserContextPtr ctxt,
923
          xmlXPathStepOpPtr op,
924
          int isPredicate);
925
static void
926
xmlXPathFreeObjectEntry(void *obj, const xmlChar *name);
927
928
/************************************************************************
929
 *                  *
930
 *      Parser Type functions       *
931
 *                  *
932
 ************************************************************************/
933
934
/**
935
 * Create a new Xpath component
936
 *
937
 * @returns the newly allocated xmlXPathCompExpr or NULL in case of error
938
 */
939
static xmlXPathCompExprPtr
940
0
xmlXPathNewCompExpr(void) {
941
0
    xmlXPathCompExprPtr cur;
942
943
0
    cur = (xmlXPathCompExprPtr) xmlMalloc(sizeof(xmlXPathCompExpr));
944
0
    if (cur == NULL)
945
0
  return(NULL);
946
0
    memset(cur, 0, sizeof(xmlXPathCompExpr));
947
0
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
948
0
    cur->maxStep = 1;
949
#else
950
    cur->maxStep = 10;
951
#endif
952
0
    cur->nbStep = 0;
953
0
    cur->steps = (xmlXPathStepOp *) xmlMalloc(cur->maxStep *
954
0
                                     sizeof(xmlXPathStepOp));
955
0
    if (cur->steps == NULL) {
956
0
  xmlFree(cur);
957
0
  return(NULL);
958
0
    }
959
0
    memset(cur->steps, 0, cur->maxStep * sizeof(xmlXPathStepOp));
960
0
    cur->last = -1;
961
0
    return(cur);
962
0
}
963
964
/**
965
 * Free up the memory allocated by `comp`
966
 *
967
 * @param comp  an XPATH comp
968
 */
969
void
970
xmlXPathFreeCompExpr(xmlXPathCompExpr *comp)
971
0
{
972
0
    xmlXPathStepOpPtr op;
973
0
    int i;
974
975
0
    if (comp == NULL)
976
0
        return;
977
0
    if (comp->dict == NULL) {
978
0
  for (i = 0; i < comp->nbStep; i++) {
979
0
      op = &comp->steps[i];
980
0
      if (op->value4 != NULL) {
981
0
    if (op->op == XPATH_OP_VALUE)
982
0
        xmlXPathFreeObject(op->value4);
983
0
    else
984
0
        xmlFree(op->value4);
985
0
      }
986
0
      if (op->value5 != NULL)
987
0
    xmlFree(op->value5);
988
0
  }
989
0
    } else {
990
0
  for (i = 0; i < comp->nbStep; i++) {
991
0
      op = &comp->steps[i];
992
0
      if (op->value4 != NULL) {
993
0
    if (op->op == XPATH_OP_VALUE)
994
0
        xmlXPathFreeObject(op->value4);
995
0
      }
996
0
  }
997
0
        xmlDictFree(comp->dict);
998
0
    }
999
0
    if (comp->steps != NULL) {
1000
0
        xmlFree(comp->steps);
1001
0
    }
1002
#ifdef XPATH_STREAMING
1003
    if (comp->stream != NULL) {
1004
        xmlFreePatternList(comp->stream);
1005
    }
1006
#endif
1007
0
    if (comp->expr != NULL) {
1008
0
        xmlFree(comp->expr);
1009
0
    }
1010
1011
0
    xmlFree(comp);
1012
0
}
1013
1014
/**
1015
 * Add a step to an XPath Compiled Expression
1016
 *
1017
 * @param ctxt  XPath parser context
1018
 * @param ch1  first child index
1019
 * @param ch2  second child index
1020
 * @param op  an op
1021
 * @param value  the first int value
1022
 * @param value2  the second int value
1023
 * @param value3  the third int value
1024
 * @param value4  the first string value
1025
 * @param value5  the second string value
1026
 * @returns -1 in case of failure, the index otherwise
1027
 */
1028
static int
1029
xmlXPathCompExprAdd(xmlXPathParserContextPtr ctxt, int ch1, int ch2,
1030
   xmlXPathOp op, int value,
1031
0
   int value2, int value3, void *value4, void *value5) {
1032
0
    xmlXPathCompExprPtr comp = ctxt->comp;
1033
0
    if (comp->nbStep >= comp->maxStep) {
1034
0
  xmlXPathStepOp *real;
1035
0
        int newSize;
1036
1037
0
        newSize = xmlGrowCapacity(comp->maxStep, sizeof(real[0]),
1038
0
                                  10, XPATH_MAX_STEPS);
1039
0
        if (newSize < 0) {
1040
0
      xmlXPathPErrMemory(ctxt);
1041
0
      return(-1);
1042
0
        }
1043
0
  real = xmlRealloc(comp->steps, newSize * sizeof(real[0]));
1044
0
  if (real == NULL) {
1045
0
      xmlXPathPErrMemory(ctxt);
1046
0
      return(-1);
1047
0
  }
1048
0
  comp->steps = real;
1049
0
  comp->maxStep = newSize;
1050
0
    }
1051
0
    comp->last = comp->nbStep;
1052
0
    comp->steps[comp->nbStep].ch1 = ch1;
1053
0
    comp->steps[comp->nbStep].ch2 = ch2;
1054
0
    comp->steps[comp->nbStep].op = op;
1055
0
    comp->steps[comp->nbStep].value = value;
1056
0
    comp->steps[comp->nbStep].value2 = value2;
1057
0
    comp->steps[comp->nbStep].value3 = value3;
1058
0
    if ((comp->dict != NULL) &&
1059
0
        ((op == XPATH_OP_FUNCTION) || (op == XPATH_OP_VARIABLE) ||
1060
0
   (op == XPATH_OP_COLLECT))) {
1061
0
        if (value4 != NULL) {
1062
0
      comp->steps[comp->nbStep].value4 = (xmlChar *)
1063
0
          (void *)xmlDictLookup(comp->dict, value4, -1);
1064
0
      xmlFree(value4);
1065
0
  } else
1066
0
      comp->steps[comp->nbStep].value4 = NULL;
1067
0
        if (value5 != NULL) {
1068
0
      comp->steps[comp->nbStep].value5 = (xmlChar *)
1069
0
          (void *)xmlDictLookup(comp->dict, value5, -1);
1070
0
      xmlFree(value5);
1071
0
  } else
1072
0
      comp->steps[comp->nbStep].value5 = NULL;
1073
0
    } else {
1074
0
  comp->steps[comp->nbStep].value4 = value4;
1075
0
  comp->steps[comp->nbStep].value5 = value5;
1076
0
    }
1077
0
    comp->steps[comp->nbStep].cache = NULL;
1078
0
    return(comp->nbStep++);
1079
0
}
1080
1081
#define PUSH_FULL_EXPR(op, op1, op2, val, val2, val3, val4, val5) \
1082
0
    xmlXPathCompExprAdd(ctxt, (op1), (op2),     \
1083
0
                  (op), (val), (val2), (val3), (val4), (val5))
1084
#define PUSH_LONG_EXPR(op, val, val2, val3, val4, val5)     \
1085
0
    xmlXPathCompExprAdd(ctxt, ctxt->comp->last, -1,   \
1086
0
                  (op), (val), (val2), (val3), (val4), (val5))
1087
1088
0
#define PUSH_LEAVE_EXPR(op, val, val2)          \
1089
0
xmlXPathCompExprAdd(ctxt, -1, -1, (op), (val), (val2), 0 ,NULL ,NULL)
1090
1091
0
#define PUSH_UNARY_EXPR(op, ch, val, val2)        \
1092
0
xmlXPathCompExprAdd(ctxt, (ch), -1, (op), (val), (val2), 0 ,NULL ,NULL)
1093
1094
0
#define PUSH_BINARY_EXPR(op, ch1, ch2, val, val2)     \
1095
0
xmlXPathCompExprAdd(ctxt, (ch1), (ch2), (op),     \
1096
0
      (val), (val2), 0 ,NULL ,NULL)
1097
1098
/************************************************************************
1099
 *                  *
1100
 *    XPath object cache structures       *
1101
 *                  *
1102
 ************************************************************************/
1103
1104
/* #define XP_DEFAULT_CACHE_ON */
1105
1106
typedef struct _xmlXPathContextCache xmlXPathContextCache;
1107
typedef xmlXPathContextCache *xmlXPathContextCachePtr;
1108
struct _xmlXPathContextCache {
1109
    xmlXPathObjectPtr nodesetObjs;  /* stringval points to next */
1110
    xmlXPathObjectPtr miscObjs;     /* stringval points to next */
1111
    int numNodeset;
1112
    int maxNodeset;
1113
    int numMisc;
1114
    int maxMisc;
1115
};
1116
1117
/************************************************************************
1118
 *                  *
1119
 *    Debugging related functions       *
1120
 *                  *
1121
 ************************************************************************/
1122
1123
#ifdef LIBXML_DEBUG_ENABLED
1124
static void
1125
xmlXPathDebugDumpNode(FILE *output, xmlNodePtr cur, int depth) {
1126
    int i;
1127
    char shift[100];
1128
1129
    for (i = 0;((i < depth) && (i < 25));i++)
1130
        shift[2 * i] = shift[2 * i + 1] = ' ';
1131
    shift[2 * i] = shift[2 * i + 1] = 0;
1132
    if (cur == NULL) {
1133
  fprintf(output, "%s", shift);
1134
  fprintf(output, "Node is NULL !\n");
1135
  return;
1136
1137
    }
1138
1139
    if ((cur->type == XML_DOCUMENT_NODE) ||
1140
       (cur->type == XML_HTML_DOCUMENT_NODE)) {
1141
  fprintf(output, "%s", shift);
1142
  fprintf(output, " /\n");
1143
    } else if (cur->type == XML_ATTRIBUTE_NODE)
1144
  xmlDebugDumpAttr(output, (xmlAttrPtr)cur, depth);
1145
    else
1146
  xmlDebugDumpOneNode(output, cur, depth);
1147
}
1148
static void
1149
xmlXPathDebugDumpNodeList(FILE *output, xmlNodePtr cur, int depth) {
1150
    xmlNodePtr tmp;
1151
    int i;
1152
    char shift[100];
1153
1154
    for (i = 0;((i < depth) && (i < 25));i++)
1155
        shift[2 * i] = shift[2 * i + 1] = ' ';
1156
    shift[2 * i] = shift[2 * i + 1] = 0;
1157
    if (cur == NULL) {
1158
  fprintf(output, "%s", shift);
1159
  fprintf(output, "Node is NULL !\n");
1160
  return;
1161
1162
    }
1163
1164
    while (cur != NULL) {
1165
  tmp = cur;
1166
  cur = cur->next;
1167
  xmlDebugDumpOneNode(output, tmp, depth);
1168
    }
1169
}
1170
1171
static void
1172
xmlXPathDebugDumpNodeSet(FILE *output, xmlNodeSetPtr cur, int depth) {
1173
    int i;
1174
    char shift[100];
1175
1176
    for (i = 0;((i < depth) && (i < 25));i++)
1177
        shift[2 * i] = shift[2 * i + 1] = ' ';
1178
    shift[2 * i] = shift[2 * i + 1] = 0;
1179
1180
    if (cur == NULL) {
1181
  fprintf(output, "%s", shift);
1182
  fprintf(output, "NodeSet is NULL !\n");
1183
  return;
1184
1185
    }
1186
1187
    if (cur != NULL) {
1188
  fprintf(output, "Set contains %d nodes:\n", cur->nodeNr);
1189
  for (i = 0;i < cur->nodeNr;i++) {
1190
      fprintf(output, "%s", shift);
1191
      fprintf(output, "%d", i + 1);
1192
      xmlXPathDebugDumpNode(output, cur->nodeTab[i], depth + 1);
1193
  }
1194
    }
1195
}
1196
1197
static void
1198
xmlXPathDebugDumpValueTree(FILE *output, xmlNodeSetPtr cur, int depth) {
1199
    int i;
1200
    char shift[100];
1201
1202
    for (i = 0;((i < depth) && (i < 25));i++)
1203
        shift[2 * i] = shift[2 * i + 1] = ' ';
1204
    shift[2 * i] = shift[2 * i + 1] = 0;
1205
1206
    if ((cur == NULL) || (cur->nodeNr == 0) || (cur->nodeTab[0] == NULL)) {
1207
  fprintf(output, "%s", shift);
1208
  fprintf(output, "Value Tree is NULL !\n");
1209
  return;
1210
1211
    }
1212
1213
    fprintf(output, "%s", shift);
1214
    fprintf(output, "%d", i + 1);
1215
    xmlXPathDebugDumpNodeList(output, cur->nodeTab[0]->children, depth + 1);
1216
}
1217
1218
/**
1219
 * Dump the content of the object for debugging purposes
1220
 *
1221
 * @param output  the FILE * to dump the output
1222
 * @param cur  the object to inspect
1223
 * @param depth  indentation level
1224
 */
1225
void
1226
xmlXPathDebugDumpObject(FILE *output, xmlXPathObject *cur, int depth) {
1227
    int i;
1228
    char shift[100];
1229
1230
    if (output == NULL) return;
1231
1232
    for (i = 0;((i < depth) && (i < 25));i++)
1233
        shift[2 * i] = shift[2 * i + 1] = ' ';
1234
    shift[2 * i] = shift[2 * i + 1] = 0;
1235
1236
1237
    fprintf(output, "%s", shift);
1238
1239
    if (cur == NULL) {
1240
        fprintf(output, "Object is empty (NULL)\n");
1241
  return;
1242
    }
1243
    switch(cur->type) {
1244
        case XPATH_UNDEFINED:
1245
      fprintf(output, "Object is uninitialized\n");
1246
      break;
1247
        case XPATH_NODESET:
1248
      fprintf(output, "Object is a Node Set :\n");
1249
      xmlXPathDebugDumpNodeSet(output, cur->nodesetval, depth);
1250
      break;
1251
  case XPATH_XSLT_TREE:
1252
      fprintf(output, "Object is an XSLT value tree :\n");
1253
      xmlXPathDebugDumpValueTree(output, cur->nodesetval, depth);
1254
      break;
1255
        case XPATH_BOOLEAN:
1256
      fprintf(output, "Object is a Boolean : ");
1257
      if (cur->boolval) fprintf(output, "true\n");
1258
      else fprintf(output, "false\n");
1259
      break;
1260
        case XPATH_NUMBER:
1261
      switch (xmlXPathIsInf(cur->floatval)) {
1262
      case 1:
1263
    fprintf(output, "Object is a number : Infinity\n");
1264
    break;
1265
      case -1:
1266
    fprintf(output, "Object is a number : -Infinity\n");
1267
    break;
1268
      default:
1269
    if (xmlXPathIsNaN(cur->floatval)) {
1270
        fprintf(output, "Object is a number : NaN\n");
1271
    } else if (cur->floatval == 0) {
1272
                    /* Omit sign for negative zero. */
1273
        fprintf(output, "Object is a number : 0\n");
1274
    } else {
1275
        fprintf(output, "Object is a number : %0g\n", cur->floatval);
1276
    }
1277
      }
1278
      break;
1279
        case XPATH_STRING:
1280
      fprintf(output, "Object is a string : ");
1281
      xmlDebugDumpString(output, cur->stringval);
1282
      fprintf(output, "\n");
1283
      break;
1284
  case XPATH_USERS:
1285
      fprintf(output, "Object is user defined\n");
1286
      break;
1287
    }
1288
}
1289
1290
static void
1291
xmlXPathDebugDumpStepOp(FILE *output, xmlXPathCompExprPtr comp,
1292
                       xmlXPathStepOpPtr op, int depth) {
1293
    int i;
1294
    char shift[100];
1295
1296
    for (i = 0;((i < depth) && (i < 25));i++)
1297
        shift[2 * i] = shift[2 * i + 1] = ' ';
1298
    shift[2 * i] = shift[2 * i + 1] = 0;
1299
1300
    fprintf(output, "%s", shift);
1301
    if (op == NULL) {
1302
  fprintf(output, "Step is NULL\n");
1303
  return;
1304
    }
1305
    switch (op->op) {
1306
        case XPATH_OP_END:
1307
      fprintf(output, "END"); break;
1308
        case XPATH_OP_AND:
1309
      fprintf(output, "AND"); break;
1310
        case XPATH_OP_OR:
1311
      fprintf(output, "OR"); break;
1312
        case XPATH_OP_EQUAL:
1313
       if (op->value)
1314
     fprintf(output, "EQUAL =");
1315
       else
1316
     fprintf(output, "EQUAL !=");
1317
       break;
1318
        case XPATH_OP_CMP:
1319
       if (op->value)
1320
     fprintf(output, "CMP <");
1321
       else
1322
     fprintf(output, "CMP >");
1323
       if (!op->value2)
1324
     fprintf(output, "=");
1325
       break;
1326
        case XPATH_OP_PLUS:
1327
       if (op->value == 0)
1328
     fprintf(output, "PLUS -");
1329
       else if (op->value == 1)
1330
     fprintf(output, "PLUS +");
1331
       else if (op->value == 2)
1332
     fprintf(output, "PLUS unary -");
1333
       else if (op->value == 3)
1334
     fprintf(output, "PLUS unary - -");
1335
       break;
1336
        case XPATH_OP_MULT:
1337
       if (op->value == 0)
1338
     fprintf(output, "MULT *");
1339
       else if (op->value == 1)
1340
     fprintf(output, "MULT div");
1341
       else
1342
     fprintf(output, "MULT mod");
1343
       break;
1344
        case XPATH_OP_UNION:
1345
       fprintf(output, "UNION"); break;
1346
        case XPATH_OP_ROOT:
1347
       fprintf(output, "ROOT"); break;
1348
        case XPATH_OP_NODE:
1349
       fprintf(output, "NODE"); break;
1350
        case XPATH_OP_SORT:
1351
       fprintf(output, "SORT"); break;
1352
        case XPATH_OP_COLLECT: {
1353
      xmlXPathAxisVal axis = (xmlXPathAxisVal)op->value;
1354
      xmlXPathTestVal test = (xmlXPathTestVal)op->value2;
1355
      xmlXPathTypeVal type = (xmlXPathTypeVal)op->value3;
1356
      const xmlChar *prefix = op->value4;
1357
      const xmlChar *name = op->value5;
1358
1359
      fprintf(output, "COLLECT ");
1360
      switch (axis) {
1361
    case AXIS_ANCESTOR:
1362
        fprintf(output, " 'ancestors' "); break;
1363
    case AXIS_ANCESTOR_OR_SELF:
1364
        fprintf(output, " 'ancestors-or-self' "); break;
1365
    case AXIS_ATTRIBUTE:
1366
        fprintf(output, " 'attributes' "); break;
1367
    case AXIS_CHILD:
1368
        fprintf(output, " 'child' "); break;
1369
    case AXIS_DESCENDANT:
1370
        fprintf(output, " 'descendant' "); break;
1371
    case AXIS_DESCENDANT_OR_SELF:
1372
        fprintf(output, " 'descendant-or-self' "); break;
1373
    case AXIS_FOLLOWING:
1374
        fprintf(output, " 'following' "); break;
1375
    case AXIS_FOLLOWING_SIBLING:
1376
        fprintf(output, " 'following-siblings' "); break;
1377
    case AXIS_NAMESPACE:
1378
        fprintf(output, " 'namespace' "); break;
1379
    case AXIS_PARENT:
1380
        fprintf(output, " 'parent' "); break;
1381
    case AXIS_PRECEDING:
1382
        fprintf(output, " 'preceding' "); break;
1383
    case AXIS_PRECEDING_SIBLING:
1384
        fprintf(output, " 'preceding-sibling' "); break;
1385
    case AXIS_SELF:
1386
        fprintf(output, " 'self' "); break;
1387
      }
1388
      switch (test) {
1389
                case NODE_TEST_NONE:
1390
        fprintf(output, "'none' "); break;
1391
                case NODE_TEST_TYPE:
1392
        fprintf(output, "'type' "); break;
1393
                case NODE_TEST_PI:
1394
        fprintf(output, "'PI' "); break;
1395
                case NODE_TEST_ALL:
1396
        fprintf(output, "'all' "); break;
1397
                case NODE_TEST_NS:
1398
        fprintf(output, "'namespace' "); break;
1399
                case NODE_TEST_NAME:
1400
        fprintf(output, "'name' "); break;
1401
      }
1402
      switch (type) {
1403
                case NODE_TYPE_NODE:
1404
        fprintf(output, "'node' "); break;
1405
                case NODE_TYPE_COMMENT:
1406
        fprintf(output, "'comment' "); break;
1407
                case NODE_TYPE_TEXT:
1408
        fprintf(output, "'text' "); break;
1409
                case NODE_TYPE_PI:
1410
        fprintf(output, "'PI' "); break;
1411
      }
1412
      if (prefix != NULL)
1413
    fprintf(output, "%s:", prefix);
1414
      if (name != NULL)
1415
    fprintf(output, "%s", (const char *) name);
1416
      break;
1417
1418
        }
1419
  case XPATH_OP_VALUE: {
1420
      xmlXPathObjectPtr object = (xmlXPathObjectPtr) op->value4;
1421
1422
      fprintf(output, "ELEM ");
1423
      xmlXPathDebugDumpObject(output, object, 0);
1424
      goto finish;
1425
  }
1426
  case XPATH_OP_VARIABLE: {
1427
      const xmlChar *prefix = op->value5;
1428
      const xmlChar *name = op->value4;
1429
1430
      if (prefix != NULL)
1431
    fprintf(output, "VARIABLE %s:%s", prefix, name);
1432
      else
1433
    fprintf(output, "VARIABLE %s", name);
1434
      break;
1435
  }
1436
  case XPATH_OP_FUNCTION: {
1437
      int nbargs = op->value;
1438
      const xmlChar *prefix = op->value5;
1439
      const xmlChar *name = op->value4;
1440
1441
      if (prefix != NULL)
1442
    fprintf(output, "FUNCTION %s:%s(%d args)",
1443
      prefix, name, nbargs);
1444
      else
1445
    fprintf(output, "FUNCTION %s(%d args)", name, nbargs);
1446
      break;
1447
  }
1448
        case XPATH_OP_ARG: fprintf(output, "ARG"); break;
1449
        case XPATH_OP_PREDICATE: fprintf(output, "PREDICATE"); break;
1450
        case XPATH_OP_FILTER: fprintf(output, "FILTER"); break;
1451
  default:
1452
        fprintf(output, "UNKNOWN %d\n", op->op); return;
1453
    }
1454
    fprintf(output, "\n");
1455
finish:
1456
    /* OP_VALUE has invalid ch1. */
1457
    if (op->op == XPATH_OP_VALUE)
1458
        return;
1459
1460
    if (op->ch1 >= 0)
1461
  xmlXPathDebugDumpStepOp(output, comp, &comp->steps[op->ch1], depth + 1);
1462
    if (op->ch2 >= 0)
1463
  xmlXPathDebugDumpStepOp(output, comp, &comp->steps[op->ch2], depth + 1);
1464
}
1465
1466
/**
1467
 * Dumps the tree of the compiled XPath expression.
1468
 *
1469
 * @param output  the FILE * for the output
1470
 * @param comp  the precompiled XPath expression
1471
 * @param depth  the indentation level.
1472
 */
1473
void
1474
xmlXPathDebugDumpCompExpr(FILE *output, xmlXPathCompExpr *comp,
1475
                    int depth) {
1476
    int i;
1477
    char shift[100];
1478
1479
    if ((output == NULL) || (comp == NULL)) return;
1480
1481
    for (i = 0;((i < depth) && (i < 25));i++)
1482
        shift[2 * i] = shift[2 * i + 1] = ' ';
1483
    shift[2 * i] = shift[2 * i + 1] = 0;
1484
1485
    fprintf(output, "%s", shift);
1486
1487
#ifdef XPATH_STREAMING
1488
    if (comp->stream) {
1489
        fprintf(output, "Streaming Expression\n");
1490
    } else
1491
#endif
1492
    {
1493
        fprintf(output, "Compiled Expression : %d elements\n",
1494
                comp->nbStep);
1495
        i = comp->last;
1496
        xmlXPathDebugDumpStepOp(output, comp, &comp->steps[i], depth + 1);
1497
    }
1498
}
1499
1500
#endif /* LIBXML_DEBUG_ENABLED */
1501
1502
/************************************************************************
1503
 *                  *
1504
 *      XPath object caching        *
1505
 *                  *
1506
 ************************************************************************/
1507
1508
/**
1509
 * Create a new object cache
1510
 *
1511
 * @returns the xmlXPathCache just allocated.
1512
 */
1513
static xmlXPathContextCachePtr
1514
xmlXPathNewCache(void)
1515
0
{
1516
0
    xmlXPathContextCachePtr ret;
1517
1518
0
    ret = (xmlXPathContextCachePtr) xmlMalloc(sizeof(xmlXPathContextCache));
1519
0
    if (ret == NULL)
1520
0
  return(NULL);
1521
0
    memset(ret, 0 , sizeof(xmlXPathContextCache));
1522
0
    ret->maxNodeset = 100;
1523
0
    ret->maxMisc = 100;
1524
0
    return(ret);
1525
0
}
1526
1527
static void
1528
xmlXPathCacheFreeObjectList(xmlXPathObjectPtr list)
1529
0
{
1530
0
    while (list != NULL) {
1531
0
        xmlXPathObjectPtr next;
1532
1533
0
        next = (void *) list->stringval;
1534
1535
0
  if (list->nodesetval != NULL) {
1536
0
      if (list->nodesetval->nodeTab != NULL)
1537
0
    xmlFree(list->nodesetval->nodeTab);
1538
0
      xmlFree(list->nodesetval);
1539
0
  }
1540
0
  xmlFree(list);
1541
1542
0
        list = next;
1543
0
    }
1544
0
}
1545
1546
static void
1547
xmlXPathFreeCache(xmlXPathContextCachePtr cache)
1548
0
{
1549
0
    if (cache == NULL)
1550
0
  return;
1551
0
    if (cache->nodesetObjs)
1552
0
  xmlXPathCacheFreeObjectList(cache->nodesetObjs);
1553
0
    if (cache->miscObjs)
1554
0
  xmlXPathCacheFreeObjectList(cache->miscObjs);
1555
0
    xmlFree(cache);
1556
0
}
1557
1558
/**
1559
 * Creates/frees an object cache on the XPath context.
1560
 * If activates XPath objects (xmlXPathObject) will be cached internally
1561
 * to be reused.
1562
 *
1563
 * `options` must be set to 0 to enable XPath object caching.
1564
 * Other values for `options` have currently no effect.
1565
 *
1566
 * `value` sets the maximum number of XPath objects to be cached per slot.
1567
 * There are two slots for node-set and misc objects.
1568
 * Use <0 for the default number (100).
1569
 *
1570
 * @param ctxt  the XPath context
1571
 * @param active  enables/disables (creates/frees) the cache
1572
 * @param value  a value with semantics dependent on `options`
1573
 * @param options  options (currently only the value 0 is used)
1574
 * @returns 0 if the setting succeeded, and -1 on API or internal errors.
1575
 */
1576
int
1577
xmlXPathContextSetCache(xmlXPathContext *ctxt,
1578
      int active,
1579
      int value,
1580
      int options)
1581
0
{
1582
0
    if (ctxt == NULL)
1583
0
  return(-1);
1584
0
    if (active) {
1585
0
  xmlXPathContextCachePtr cache;
1586
1587
0
  if (ctxt->cache == NULL) {
1588
0
      ctxt->cache = xmlXPathNewCache();
1589
0
      if (ctxt->cache == NULL) {
1590
0
                xmlXPathErrMemory(ctxt);
1591
0
    return(-1);
1592
0
            }
1593
0
  }
1594
0
  cache = (xmlXPathContextCachePtr) ctxt->cache;
1595
0
  if (options == 0) {
1596
0
      if (value < 0)
1597
0
    value = 100;
1598
0
      cache->maxNodeset = value;
1599
0
      cache->maxMisc = value;
1600
0
  }
1601
0
    } else if (ctxt->cache != NULL) {
1602
0
  xmlXPathFreeCache((xmlXPathContextCachePtr) ctxt->cache);
1603
0
  ctxt->cache = NULL;
1604
0
    }
1605
0
    return(0);
1606
0
}
1607
1608
/**
1609
 * This is the cached version of #xmlXPathWrapNodeSet.
1610
 * Wrap the Nodeset `val` in a new xmlXPathObject
1611
 *
1612
 * In case of error the node set is destroyed and NULL is returned.
1613
 *
1614
 * @param pctxt  the XPath context
1615
 * @param val  the NodePtr value
1616
 * @returns the created or reused object.
1617
 */
1618
static xmlXPathObjectPtr
1619
xmlXPathCacheWrapNodeSet(xmlXPathParserContextPtr pctxt, xmlNodeSetPtr val)
1620
0
{
1621
0
    xmlXPathObjectPtr ret;
1622
0
    xmlXPathContextPtr ctxt = pctxt->context;
1623
1624
0
    if ((ctxt != NULL) && (ctxt->cache != NULL)) {
1625
0
  xmlXPathContextCachePtr cache =
1626
0
      (xmlXPathContextCachePtr) ctxt->cache;
1627
1628
0
  if (cache->miscObjs != NULL) {
1629
0
      ret = cache->miscObjs;
1630
0
            cache->miscObjs = (void *) ret->stringval;
1631
0
            cache->numMisc -= 1;
1632
0
            ret->stringval = NULL;
1633
0
      ret->type = XPATH_NODESET;
1634
0
      ret->nodesetval = val;
1635
0
      return(ret);
1636
0
  }
1637
0
    }
1638
1639
0
    ret = xmlXPathWrapNodeSet(val);
1640
0
    if (ret == NULL)
1641
0
        xmlXPathPErrMemory(pctxt);
1642
0
    return(ret);
1643
0
}
1644
1645
/**
1646
 * This is the cached version of #xmlXPathWrapString.
1647
 * Wraps the `val` string into an XPath object.
1648
 *
1649
 * @param pctxt  the XPath context
1650
 * @param val  the xmlChar * value
1651
 * @returns the created or reused object.
1652
 */
1653
static xmlXPathObjectPtr
1654
xmlXPathCacheWrapString(xmlXPathParserContextPtr pctxt, xmlChar *val)
1655
0
{
1656
0
    xmlXPathObjectPtr ret;
1657
0
    xmlXPathContextPtr ctxt = pctxt->context;
1658
1659
0
    if ((ctxt != NULL) && (ctxt->cache != NULL)) {
1660
0
  xmlXPathContextCachePtr cache = (xmlXPathContextCachePtr) ctxt->cache;
1661
1662
0
  if (cache->miscObjs != NULL) {
1663
0
      ret = cache->miscObjs;
1664
0
            cache->miscObjs = (void *) ret->stringval;
1665
0
            cache->numMisc -= 1;
1666
0
      ret->type = XPATH_STRING;
1667
0
      ret->stringval = val;
1668
0
      return(ret);
1669
0
  }
1670
0
    }
1671
1672
0
    ret = xmlXPathWrapString(val);
1673
0
    if (ret == NULL)
1674
0
        xmlXPathPErrMemory(pctxt);
1675
0
    return(ret);
1676
0
}
1677
1678
/**
1679
 * This is the cached version of #xmlXPathNewNodeSet.
1680
 * Acquire an xmlXPathObject of type NodeSet and initialize
1681
 * it with the single Node `val`
1682
 *
1683
 * @param pctxt  the XPath context
1684
 * @param val  the NodePtr value
1685
 * @returns the created or reused object.
1686
 */
1687
static xmlXPathObjectPtr
1688
xmlXPathCacheNewNodeSet(xmlXPathParserContextPtr pctxt, xmlNodePtr val)
1689
0
{
1690
0
    xmlXPathObjectPtr ret;
1691
0
    xmlXPathContextPtr ctxt = pctxt->context;
1692
1693
0
    if ((ctxt != NULL) && (ctxt->cache != NULL)) {
1694
0
  xmlXPathContextCachePtr cache = (xmlXPathContextCachePtr) ctxt->cache;
1695
1696
0
  if (cache->nodesetObjs != NULL) {
1697
      /*
1698
      * Use the nodeset-cache.
1699
      */
1700
0
      ret = cache->nodesetObjs;
1701
0
            cache->nodesetObjs = (void *) ret->stringval;
1702
0
            cache->numNodeset -= 1;
1703
0
            ret->stringval = NULL;
1704
0
      ret->type = XPATH_NODESET;
1705
0
      ret->boolval = 0;
1706
0
      if (val) {
1707
0
    if ((ret->nodesetval->nodeMax == 0) ||
1708
0
        (val->type == XML_NAMESPACE_DECL))
1709
0
    {
1710
0
        if (xmlXPathNodeSetAddUnique(ret->nodesetval, val) < 0)
1711
0
                        xmlXPathPErrMemory(pctxt);
1712
0
    } else {
1713
0
        ret->nodesetval->nodeTab[0] = val;
1714
0
        ret->nodesetval->nodeNr = 1;
1715
0
    }
1716
0
      }
1717
0
      return(ret);
1718
0
  } else if (cache->miscObjs != NULL) {
1719
0
            xmlNodeSetPtr set;
1720
      /*
1721
      * Fallback to misc-cache.
1722
      */
1723
1724
0
      set = xmlXPathNodeSetCreate(val);
1725
0
      if (set == NULL) {
1726
0
                xmlXPathPErrMemory(pctxt);
1727
0
    return(NULL);
1728
0
      }
1729
1730
0
      ret = cache->miscObjs;
1731
0
            cache->miscObjs = (void *) ret->stringval;
1732
0
            cache->numMisc -= 1;
1733
0
            ret->stringval = NULL;
1734
0
      ret->type = XPATH_NODESET;
1735
0
      ret->boolval = 0;
1736
0
      ret->nodesetval = set;
1737
0
      return(ret);
1738
0
  }
1739
0
    }
1740
0
    ret = xmlXPathNewNodeSet(val);
1741
0
    if (ret == NULL)
1742
0
        xmlXPathPErrMemory(pctxt);
1743
0
    return(ret);
1744
0
}
1745
1746
/**
1747
 * This is the cached version of #xmlXPathNewString.
1748
 * Acquire an xmlXPathObject of type string and of value `val`
1749
 *
1750
 * @param pctxt  the XPath context
1751
 * @param val  the xmlChar * value
1752
 * @returns the created or reused object.
1753
 */
1754
static xmlXPathObjectPtr
1755
xmlXPathCacheNewString(xmlXPathParserContextPtr pctxt, const xmlChar *val)
1756
0
{
1757
0
    xmlXPathObjectPtr ret;
1758
0
    xmlXPathContextPtr ctxt = pctxt->context;
1759
1760
0
    if ((ctxt != NULL) && (ctxt->cache != NULL)) {
1761
0
  xmlXPathContextCachePtr cache = (xmlXPathContextCachePtr) ctxt->cache;
1762
1763
0
  if (cache->miscObjs != NULL) {
1764
0
            xmlChar *copy;
1765
1766
0
            if (val == NULL)
1767
0
                val = BAD_CAST "";
1768
0
            copy = xmlStrdup(val);
1769
0
            if (copy == NULL) {
1770
0
                xmlXPathPErrMemory(pctxt);
1771
0
                return(NULL);
1772
0
            }
1773
1774
0
      ret = cache->miscObjs;
1775
0
            cache->miscObjs = (void *) ret->stringval;
1776
0
            cache->numMisc -= 1;
1777
0
      ret->type = XPATH_STRING;
1778
0
            ret->stringval = copy;
1779
0
      return(ret);
1780
0
  }
1781
0
    }
1782
1783
0
    ret = xmlXPathNewString(val);
1784
0
    if (ret == NULL)
1785
0
        xmlXPathPErrMemory(pctxt);
1786
0
    return(ret);
1787
0
}
1788
1789
/**
1790
 * This is the cached version of #xmlXPathNewCString.
1791
 * Acquire an xmlXPathObject of type string and of value `val`
1792
 *
1793
 * @param pctxt  the XPath context
1794
 * @param val  the char * value
1795
 * @returns the created or reused object.
1796
 */
1797
static xmlXPathObjectPtr
1798
xmlXPathCacheNewCString(xmlXPathParserContextPtr pctxt, const char *val)
1799
0
{
1800
0
    return xmlXPathCacheNewString(pctxt, BAD_CAST val);
1801
0
}
1802
1803
/**
1804
 * This is the cached version of #xmlXPathNewBoolean.
1805
 * Acquires an xmlXPathObject of type boolean and of value `val`
1806
 *
1807
 * @param pctxt  the XPath context
1808
 * @param val  the boolean value
1809
 * @returns the created or reused object.
1810
 */
1811
static xmlXPathObjectPtr
1812
xmlXPathCacheNewBoolean(xmlXPathParserContextPtr pctxt, int val)
1813
0
{
1814
0
    xmlXPathObjectPtr ret;
1815
0
    xmlXPathContextPtr ctxt = pctxt->context;
1816
1817
0
    if ((ctxt != NULL) && (ctxt->cache != NULL)) {
1818
0
  xmlXPathContextCachePtr cache = (xmlXPathContextCachePtr) ctxt->cache;
1819
1820
0
  if (cache->miscObjs != NULL) {
1821
0
      ret = cache->miscObjs;
1822
0
            cache->miscObjs = (void *) ret->stringval;
1823
0
            cache->numMisc -= 1;
1824
0
            ret->stringval = NULL;
1825
0
      ret->type = XPATH_BOOLEAN;
1826
0
      ret->boolval = (val != 0);
1827
0
      return(ret);
1828
0
  }
1829
0
    }
1830
1831
0
    ret = xmlXPathNewBoolean(val);
1832
0
    if (ret == NULL)
1833
0
        xmlXPathPErrMemory(pctxt);
1834
0
    return(ret);
1835
0
}
1836
1837
/**
1838
 * This is the cached version of #xmlXPathNewFloat.
1839
 * Acquires an xmlXPathObject of type double and of value `val`
1840
 *
1841
 * @param pctxt  the XPath context
1842
 * @param val  the double value
1843
 * @returns the created or reused object.
1844
 */
1845
static xmlXPathObjectPtr
1846
xmlXPathCacheNewFloat(xmlXPathParserContextPtr pctxt, double val)
1847
0
{
1848
0
    xmlXPathObjectPtr ret;
1849
0
    xmlXPathContextPtr ctxt = pctxt->context;
1850
1851
0
    if ((ctxt != NULL) && (ctxt->cache != NULL)) {
1852
0
  xmlXPathContextCachePtr cache = (xmlXPathContextCachePtr) ctxt->cache;
1853
1854
0
  if (cache->miscObjs != NULL) {
1855
0
      ret = cache->miscObjs;
1856
0
            cache->miscObjs = (void *) ret->stringval;
1857
0
            cache->numMisc -= 1;
1858
0
            ret->stringval = NULL;
1859
0
      ret->type = XPATH_NUMBER;
1860
0
      ret->floatval = val;
1861
0
      return(ret);
1862
0
  }
1863
0
    }
1864
1865
0
    ret = xmlXPathNewFloat(val);
1866
0
    if (ret == NULL)
1867
0
        xmlXPathPErrMemory(pctxt);
1868
0
    return(ret);
1869
0
}
1870
1871
/**
1872
 * This is the cached version of #xmlXPathObjectCopy.
1873
 * Acquire a copy of a given object
1874
 *
1875
 * @param pctxt  the XPath context
1876
 * @param val  the original object
1877
 * @returns a created or reused created object.
1878
 */
1879
static xmlXPathObjectPtr
1880
xmlXPathCacheObjectCopy(xmlXPathParserContextPtr pctxt, xmlXPathObjectPtr val)
1881
0
{
1882
0
    xmlXPathObjectPtr ret;
1883
0
    xmlXPathContextPtr ctxt = pctxt->context;
1884
1885
0
    if (val == NULL)
1886
0
  return(NULL);
1887
1888
0
    if ((ctxt != NULL) && (ctxt->cache != NULL)) {
1889
0
  switch (val->type) {
1890
0
            case XPATH_NODESET: {
1891
0
                xmlNodeSetPtr set;
1892
1893
0
                set = xmlXPathNodeSetMerge(NULL, val->nodesetval);
1894
0
                if (set == NULL) {
1895
0
                    xmlXPathPErrMemory(pctxt);
1896
0
                    return(NULL);
1897
0
                }
1898
0
                return(xmlXPathCacheWrapNodeSet(pctxt, set));
1899
0
            }
1900
0
      case XPATH_STRING:
1901
0
    return(xmlXPathCacheNewString(pctxt, val->stringval));
1902
0
      case XPATH_BOOLEAN:
1903
0
    return(xmlXPathCacheNewBoolean(pctxt, val->boolval));
1904
0
      case XPATH_NUMBER:
1905
0
    return(xmlXPathCacheNewFloat(pctxt, val->floatval));
1906
0
      default:
1907
0
    break;
1908
0
  }
1909
0
    }
1910
0
    ret = xmlXPathObjectCopy(val);
1911
0
    if (ret == NULL)
1912
0
        xmlXPathPErrMemory(pctxt);
1913
0
    return(ret);
1914
0
}
1915
1916
/************************************************************************
1917
 *                  *
1918
 *    Parser stacks related functions and macros    *
1919
 *                  *
1920
 ************************************************************************/
1921
1922
/**
1923
 * Converts an XPath object to its number value
1924
 *
1925
 * @param ctxt  parser context
1926
 * @param val  an XPath object
1927
 * @returns the number value
1928
 */
1929
static double
1930
xmlXPathCastToNumberInternal(xmlXPathParserContextPtr ctxt,
1931
0
                             xmlXPathObjectPtr val) {
1932
0
    double ret = 0.0;
1933
1934
0
    if (val == NULL)
1935
0
  return(xmlXPathNAN);
1936
0
    switch (val->type) {
1937
0
    case XPATH_UNDEFINED:
1938
0
  ret = xmlXPathNAN;
1939
0
  break;
1940
0
    case XPATH_NODESET:
1941
0
    case XPATH_XSLT_TREE: {
1942
0
        xmlChar *str;
1943
1944
0
  str = xmlXPathCastNodeSetToString(val->nodesetval);
1945
0
        if (str == NULL) {
1946
0
            xmlXPathPErrMemory(ctxt);
1947
0
            ret = xmlXPathNAN;
1948
0
        } else {
1949
0
      ret = xmlXPathCastStringToNumber(str);
1950
0
            xmlFree(str);
1951
0
        }
1952
0
  break;
1953
0
    }
1954
0
    case XPATH_STRING:
1955
0
  ret = xmlXPathCastStringToNumber(val->stringval);
1956
0
  break;
1957
0
    case XPATH_NUMBER:
1958
0
  ret = val->floatval;
1959
0
  break;
1960
0
    case XPATH_BOOLEAN:
1961
0
  ret = xmlXPathCastBooleanToNumber(val->boolval);
1962
0
  break;
1963
0
    case XPATH_USERS:
1964
  /* TODO */
1965
0
  ret = xmlXPathNAN;
1966
0
  break;
1967
0
    }
1968
0
    return(ret);
1969
0
}
1970
1971
/**
1972
 * Pops the top XPath object from the value stack
1973
 *
1974
 * @param ctxt  an XPath evaluation context
1975
 * @returns the XPath object just removed
1976
 */
1977
xmlXPathObject *
1978
xmlXPathValuePop(xmlXPathParserContext *ctxt)
1979
0
{
1980
0
    xmlXPathObjectPtr ret;
1981
1982
0
    if ((ctxt == NULL) || (ctxt->valueNr <= 0))
1983
0
        return (NULL);
1984
1985
0
    ctxt->valueNr--;
1986
0
    if (ctxt->valueNr > 0)
1987
0
        ctxt->value = ctxt->valueTab[ctxt->valueNr - 1];
1988
0
    else
1989
0
        ctxt->value = NULL;
1990
0
    ret = ctxt->valueTab[ctxt->valueNr];
1991
0
    ctxt->valueTab[ctxt->valueNr] = NULL;
1992
0
    return (ret);
1993
0
}
1994
1995
/**
1996
 * Pushes a new XPath object on top of the value stack. If value is NULL,
1997
 * a memory error is recorded in the parser context.
1998
 *
1999
 * The object is destroyed in case of error.
2000
 *
2001
 * @param ctxt  an XPath evaluation context
2002
 * @param value  the XPath object
2003
 * @returns the number of items on the value stack, or -1 in case of error.
2004
 */
2005
int
2006
xmlXPathValuePush(xmlXPathParserContext *ctxt, xmlXPathObject *value)
2007
0
{
2008
0
    if (ctxt == NULL) return(-1);
2009
0
    if (value == NULL) {
2010
        /*
2011
         * A NULL value typically indicates that a memory allocation failed.
2012
         */
2013
0
        xmlXPathPErrMemory(ctxt);
2014
0
        return(-1);
2015
0
    }
2016
0
    if (ctxt->valueNr >= ctxt->valueMax) {
2017
0
        xmlXPathObjectPtr *tmp;
2018
0
        int newSize;
2019
2020
0
        newSize = xmlGrowCapacity(ctxt->valueMax, sizeof(tmp[0]),
2021
0
                                  10, XPATH_MAX_STACK_DEPTH);
2022
0
        if (newSize < 0) {
2023
0
            xmlXPathPErrMemory(ctxt);
2024
0
            xmlXPathFreeObject(value);
2025
0
            return (-1);
2026
0
        }
2027
0
        tmp = xmlRealloc(ctxt->valueTab, newSize * sizeof(tmp[0]));
2028
0
        if (tmp == NULL) {
2029
0
            xmlXPathPErrMemory(ctxt);
2030
0
            xmlXPathFreeObject(value);
2031
0
            return (-1);
2032
0
        }
2033
0
  ctxt->valueTab = tmp;
2034
0
        ctxt->valueMax = newSize;
2035
0
    }
2036
0
    ctxt->valueTab[ctxt->valueNr] = value;
2037
0
    ctxt->value = value;
2038
0
    return (ctxt->valueNr++);
2039
0
}
2040
2041
/**
2042
 * Pops a boolean from the stack, handling conversion if needed.
2043
 * Check error with xmlXPathCheckError.
2044
 *
2045
 * @param ctxt  an XPath parser context
2046
 * @returns the boolean
2047
 */
2048
int
2049
0
xmlXPathPopBoolean (xmlXPathParserContext *ctxt) {
2050
0
    xmlXPathObjectPtr obj;
2051
0
    int ret;
2052
2053
0
    obj = xmlXPathValuePop(ctxt);
2054
0
    if (obj == NULL) {
2055
0
  xmlXPathSetError(ctxt, XPATH_INVALID_OPERAND);
2056
0
  return(0);
2057
0
    }
2058
0
    if (obj->type != XPATH_BOOLEAN)
2059
0
  ret = xmlXPathCastToBoolean(obj);
2060
0
    else
2061
0
        ret = obj->boolval;
2062
0
    xmlXPathReleaseObject(ctxt->context, obj);
2063
0
    return(ret);
2064
0
}
2065
2066
/**
2067
 * Pops a number from the stack, handling conversion if needed.
2068
 * Check error with xmlXPathCheckError.
2069
 *
2070
 * @param ctxt  an XPath parser context
2071
 * @returns the number
2072
 */
2073
double
2074
0
xmlXPathPopNumber (xmlXPathParserContext *ctxt) {
2075
0
    xmlXPathObjectPtr obj;
2076
0
    double ret;
2077
2078
0
    obj = xmlXPathValuePop(ctxt);
2079
0
    if (obj == NULL) {
2080
0
  xmlXPathSetError(ctxt, XPATH_INVALID_OPERAND);
2081
0
  return(0);
2082
0
    }
2083
0
    if (obj->type != XPATH_NUMBER)
2084
0
  ret = xmlXPathCastToNumberInternal(ctxt, obj);
2085
0
    else
2086
0
        ret = obj->floatval;
2087
0
    xmlXPathReleaseObject(ctxt->context, obj);
2088
0
    return(ret);
2089
0
}
2090
2091
/**
2092
 * Pops a string from the stack, handling conversion if needed.
2093
 * Check error with xmlXPathCheckError.
2094
 *
2095
 * @param ctxt  an XPath parser context
2096
 * @returns the string
2097
 */
2098
xmlChar *
2099
0
xmlXPathPopString (xmlXPathParserContext *ctxt) {
2100
0
    xmlXPathObjectPtr obj;
2101
0
    xmlChar * ret;
2102
2103
0
    obj = xmlXPathValuePop(ctxt);
2104
0
    if (obj == NULL) {
2105
0
  xmlXPathSetError(ctxt, XPATH_INVALID_OPERAND);
2106
0
  return(NULL);
2107
0
    }
2108
0
    ret = xmlXPathCastToString(obj);
2109
0
    if (ret == NULL)
2110
0
        xmlXPathPErrMemory(ctxt);
2111
0
    xmlXPathReleaseObject(ctxt->context, obj);
2112
0
    return(ret);
2113
0
}
2114
2115
/**
2116
 * Pops a node-set from the stack, handling conversion if needed.
2117
 * Check error with xmlXPathCheckError.
2118
 *
2119
 * @param ctxt  an XPath parser context
2120
 * @returns the node-set
2121
 */
2122
xmlNodeSet *
2123
0
xmlXPathPopNodeSet (xmlXPathParserContext *ctxt) {
2124
0
    xmlXPathObjectPtr obj;
2125
0
    xmlNodeSetPtr ret;
2126
2127
0
    if (ctxt == NULL) return(NULL);
2128
0
    if (ctxt->value == NULL) {
2129
0
  xmlXPathSetError(ctxt, XPATH_INVALID_OPERAND);
2130
0
  return(NULL);
2131
0
    }
2132
0
    if (!xmlXPathStackIsNodeSet(ctxt)) {
2133
0
  xmlXPathSetTypeError(ctxt);
2134
0
  return(NULL);
2135
0
    }
2136
0
    obj = xmlXPathValuePop(ctxt);
2137
0
    ret = obj->nodesetval;
2138
0
    obj->nodesetval = NULL;
2139
0
    xmlXPathReleaseObject(ctxt->context, obj);
2140
0
    return(ret);
2141
0
}
2142
2143
/**
2144
 * Pops an external object from the stack, handling conversion if needed.
2145
 * Check error with xmlXPathCheckError.
2146
 *
2147
 * @param ctxt  an XPath parser context
2148
 * @returns the object
2149
 */
2150
void *
2151
0
xmlXPathPopExternal (xmlXPathParserContext *ctxt) {
2152
0
    xmlXPathObjectPtr obj;
2153
0
    void * ret;
2154
2155
0
    if ((ctxt == NULL) || (ctxt->value == NULL)) {
2156
0
  xmlXPathSetError(ctxt, XPATH_INVALID_OPERAND);
2157
0
  return(NULL);
2158
0
    }
2159
0
    if (ctxt->value->type != XPATH_USERS) {
2160
0
  xmlXPathSetTypeError(ctxt);
2161
0
  return(NULL);
2162
0
    }
2163
0
    obj = xmlXPathValuePop(ctxt);
2164
0
    ret = obj->user;
2165
0
    obj->user = NULL;
2166
0
    xmlXPathReleaseObject(ctxt->context, obj);
2167
0
    return(ret);
2168
0
}
2169
2170
/*
2171
 * Macros for accessing the content. Those should be used only by the parser,
2172
 * and not exported.
2173
 *
2174
 * Dirty macros, i.e. one need to make assumption on the context to use them
2175
 *
2176
 *   CUR_PTR return the current pointer to the xmlChar to be parsed.
2177
 *   CUR     returns the current xmlChar value, i.e. a 8 bit value
2178
 *           in ISO-Latin or UTF-8.
2179
 *           This should be used internally by the parser
2180
 *           only to compare to ASCII values otherwise it would break when
2181
 *           running with UTF-8 encoding.
2182
 *   NXT(n)  returns the n'th next xmlChar. Same as CUR is should be used only
2183
 *           to compare on ASCII based substring.
2184
 *   SKIP(n) Skip n xmlChar, and must also be used only to skip ASCII defined
2185
 *           strings within the parser.
2186
 *   CURRENT Returns the current char value, with the full decoding of
2187
 *           UTF-8 if we are using this mode. It returns an int.
2188
 *   NEXT    Skip to the next character, this does the proper decoding
2189
 *           in UTF-8 mode. It also pop-up unfinished entities on the fly.
2190
 *           It returns the pointer to the current xmlChar.
2191
 */
2192
2193
0
#define CUR (*ctxt->cur)
2194
0
#define SKIP(val) ctxt->cur += (val)
2195
0
#define NXT(val) ctxt->cur[(val)]
2196
0
#define CUR_PTR ctxt->cur
2197
2198
#define SKIP_BLANKS             \
2199
0
    while (IS_BLANK_CH(*(ctxt->cur))) NEXT
2200
2201
#define CURRENT (*ctxt->cur)
2202
0
#define NEXT ((*ctxt->cur) ?  ctxt->cur++: ctxt->cur)
2203
2204
2205
#ifndef DBL_DIG
2206
#define DBL_DIG 16
2207
#endif
2208
#ifndef DBL_EPSILON
2209
#define DBL_EPSILON 1E-9
2210
#endif
2211
2212
0
#define UPPER_DOUBLE 1E9
2213
0
#define LOWER_DOUBLE 1E-5
2214
#define LOWER_DOUBLE_EXP 5
2215
2216
#define INTEGER_DIGITS DBL_DIG
2217
#define FRACTION_DIGITS (DBL_DIG + 1 + (LOWER_DOUBLE_EXP))
2218
0
#define EXPONENT_DIGITS (3 + 2)
2219
2220
/**
2221
 * Convert the number into a string representation.
2222
 *
2223
 * @param number  number to format
2224
 * @param buffer  output buffer
2225
 * @param buffersize  size of output buffer
2226
 */
2227
static void
2228
xmlXPathFormatNumber(double number, char buffer[], int buffersize)
2229
0
{
2230
0
    switch (xmlXPathIsInf(number)) {
2231
0
    case 1:
2232
0
  if (buffersize > (int)sizeof("Infinity"))
2233
0
      snprintf(buffer, buffersize, "Infinity");
2234
0
  break;
2235
0
    case -1:
2236
0
  if (buffersize > (int)sizeof("-Infinity"))
2237
0
      snprintf(buffer, buffersize, "-Infinity");
2238
0
  break;
2239
0
    default:
2240
0
  if (xmlXPathIsNaN(number)) {
2241
0
      if (buffersize > (int)sizeof("NaN"))
2242
0
    snprintf(buffer, buffersize, "NaN");
2243
0
  } else if (number == 0) {
2244
            /* Omit sign for negative zero. */
2245
0
      snprintf(buffer, buffersize, "0");
2246
0
  } else if ((number > INT_MIN) && (number < INT_MAX) &&
2247
0
                   (number == (int) number)) {
2248
0
      char work[30];
2249
0
      char *ptr, *cur;
2250
0
      int value = (int) number;
2251
2252
0
            ptr = &buffer[0];
2253
0
      if (value == 0) {
2254
0
    *ptr++ = '0';
2255
0
      } else {
2256
0
    snprintf(work, 29, "%d", value);
2257
0
    cur = &work[0];
2258
0
    while ((*cur) && (ptr - buffer < buffersize)) {
2259
0
        *ptr++ = *cur++;
2260
0
    }
2261
0
      }
2262
0
      if (ptr - buffer < buffersize) {
2263
0
    *ptr = 0;
2264
0
      } else if (buffersize > 0) {
2265
0
    ptr--;
2266
0
    *ptr = 0;
2267
0
      }
2268
0
  } else {
2269
      /*
2270
        For the dimension of work,
2271
            DBL_DIG is number of significant digits
2272
      EXPONENT is only needed for "scientific notation"
2273
            3 is sign, decimal point, and terminating zero
2274
      LOWER_DOUBLE_EXP is max number of leading zeroes in fraction
2275
        Note that this dimension is slightly (a few characters)
2276
        larger than actually necessary.
2277
      */
2278
0
      char work[DBL_DIG + EXPONENT_DIGITS + 3 + LOWER_DOUBLE_EXP];
2279
0
      int integer_place, fraction_place;
2280
0
      char *ptr;
2281
0
      char *after_fraction;
2282
0
      double absolute_value;
2283
0
      int size;
2284
2285
0
      absolute_value = fabs(number);
2286
2287
      /*
2288
       * First choose format - scientific or regular floating point.
2289
       * In either case, result is in work, and after_fraction points
2290
       * just past the fractional part.
2291
      */
2292
0
      if ( ((absolute_value > UPPER_DOUBLE) ||
2293
0
      (absolute_value < LOWER_DOUBLE)) &&
2294
0
     (absolute_value != 0.0) ) {
2295
    /* Use scientific notation */
2296
0
    integer_place = DBL_DIG + EXPONENT_DIGITS + 1;
2297
0
    fraction_place = DBL_DIG - 1;
2298
0
    size = snprintf(work, sizeof(work),"%*.*e",
2299
0
       integer_place, fraction_place, number);
2300
0
    while ((size > 0) && (work[size] != 'e')) size--;
2301
2302
0
      }
2303
0
      else {
2304
    /* Use regular notation */
2305
0
    if (absolute_value > 0.0) {
2306
0
        integer_place = (int)log10(absolute_value);
2307
0
        if (integer_place > 0)
2308
0
            fraction_place = DBL_DIG - integer_place - 1;
2309
0
        else
2310
0
            fraction_place = DBL_DIG - integer_place;
2311
0
    } else {
2312
0
        fraction_place = 1;
2313
0
    }
2314
0
    size = snprintf(work, sizeof(work), "%0.*f",
2315
0
        fraction_place, number);
2316
0
      }
2317
2318
      /* Remove leading spaces sometimes inserted by snprintf */
2319
0
      while (work[0] == ' ') {
2320
0
          for (ptr = &work[0];(ptr[0] = ptr[1]);ptr++);
2321
0
    size--;
2322
0
      }
2323
2324
      /* Remove fractional trailing zeroes */
2325
0
      after_fraction = work + size;
2326
0
      ptr = after_fraction;
2327
0
      while (*(--ptr) == '0')
2328
0
    ;
2329
0
      if (*ptr != '.')
2330
0
          ptr++;
2331
0
      while ((*ptr++ = *after_fraction++) != 0);
2332
2333
      /* Finally copy result back to caller */
2334
0
      size = strlen(work) + 1;
2335
0
      if (size > buffersize) {
2336
0
    work[buffersize - 1] = 0;
2337
0
    size = buffersize;
2338
0
      }
2339
0
      memmove(buffer, work, size);
2340
0
  }
2341
0
  break;
2342
0
    }
2343
0
}
2344
2345
2346
/************************************************************************
2347
 *                  *
2348
 *      Routines to handle NodeSets     *
2349
 *                  *
2350
 ************************************************************************/
2351
2352
/**
2353
 * Call this routine to speed up XPath computation on static documents.
2354
 * This stamps all the element nodes with the document order
2355
 * Like for line information, the order is kept in the element->content
2356
 * field, the value stored is actually - the node number (starting at -1)
2357
 * to be able to differentiate from line numbers.
2358
 *
2359
 * @param doc  an input document
2360
 * @returns the number of elements found in the document or -1 in case
2361
 *    of error.
2362
 */
2363
long
2364
0
xmlXPathOrderDocElems(xmlDoc *doc) {
2365
0
    XML_INTPTR_T count = 0;
2366
0
    xmlNodePtr cur;
2367
2368
0
    if (doc == NULL)
2369
0
  return(-1);
2370
0
    cur = doc->children;
2371
0
    while (cur != NULL) {
2372
0
  if (cur->type == XML_ELEMENT_NODE) {
2373
0
            count += 1;
2374
0
            cur->content = XML_INT_TO_PTR(-count);
2375
0
      if (cur->children != NULL) {
2376
0
    cur = cur->children;
2377
0
    continue;
2378
0
      }
2379
0
  }
2380
0
  if (cur->next != NULL) {
2381
0
      cur = cur->next;
2382
0
      continue;
2383
0
  }
2384
0
  do {
2385
0
      cur = cur->parent;
2386
0
      if (cur == NULL)
2387
0
    break;
2388
0
      if (cur == (xmlNodePtr) doc) {
2389
0
    cur = NULL;
2390
0
    break;
2391
0
      }
2392
0
      if (cur->next != NULL) {
2393
0
    cur = cur->next;
2394
0
    break;
2395
0
      }
2396
0
  } while (cur != NULL);
2397
0
    }
2398
0
    return(count);
2399
0
}
2400
2401
/**
2402
 * Compare two nodes w.r.t document order
2403
 *
2404
 * @param node1  the first node
2405
 * @param node2  the second node
2406
 * @returns -2 in case of error 1 if first point < second point, 0 if
2407
 *         it's the same node, -1 otherwise
2408
 */
2409
int
2410
0
xmlXPathCmpNodes(xmlNode *node1, xmlNode *node2) {
2411
0
    int depth1, depth2;
2412
0
    int attr1 = 0, attr2 = 0;
2413
0
    xmlNodePtr attrNode1 = NULL, attrNode2 = NULL;
2414
0
    xmlNodePtr cur, root;
2415
2416
0
    if ((node1 == NULL) || (node2 == NULL))
2417
0
  return(-2);
2418
    /*
2419
     * a couple of optimizations which will avoid computations in most cases
2420
     */
2421
0
    if (node1 == node2)   /* trivial case */
2422
0
  return(0);
2423
0
    if (node1->type == XML_ATTRIBUTE_NODE) {
2424
0
  attr1 = 1;
2425
0
  attrNode1 = node1;
2426
0
  node1 = node1->parent;
2427
0
    }
2428
0
    if (node2->type == XML_ATTRIBUTE_NODE) {
2429
0
  attr2 = 1;
2430
0
  attrNode2 = node2;
2431
0
  node2 = node2->parent;
2432
0
    }
2433
0
    if (node1 == node2) {
2434
0
  if (attr1 == attr2) {
2435
      /* not required, but we keep attributes in order */
2436
0
      if (attr1 != 0) {
2437
0
          cur = attrNode2->prev;
2438
0
    while (cur != NULL) {
2439
0
        if (cur == attrNode1)
2440
0
            return (1);
2441
0
        cur = cur->prev;
2442
0
    }
2443
0
    return (-1);
2444
0
      }
2445
0
      return(0);
2446
0
  }
2447
0
  if (attr2 == 1)
2448
0
      return(1);
2449
0
  return(-1);
2450
0
    }
2451
0
    if ((node1->type == XML_NAMESPACE_DECL) ||
2452
0
        (node2->type == XML_NAMESPACE_DECL))
2453
0
  return(1);
2454
0
    if (node1 == node2->prev)
2455
0
  return(1);
2456
0
    if (node1 == node2->next)
2457
0
  return(-1);
2458
2459
    /*
2460
     * Speedup using document order if available.
2461
     */
2462
0
    if ((node1->type == XML_ELEMENT_NODE) &&
2463
0
  (node2->type == XML_ELEMENT_NODE) &&
2464
0
  (0 > XML_NODE_SORT_VALUE(node1)) &&
2465
0
  (0 > XML_NODE_SORT_VALUE(node2)) &&
2466
0
  (node1->doc == node2->doc)) {
2467
0
  XML_INTPTR_T l1, l2;
2468
2469
0
  l1 = -XML_NODE_SORT_VALUE(node1);
2470
0
  l2 = -XML_NODE_SORT_VALUE(node2);
2471
0
  if (l1 < l2)
2472
0
      return(1);
2473
0
  if (l1 > l2)
2474
0
      return(-1);
2475
0
    }
2476
2477
    /*
2478
     * compute depth to root
2479
     */
2480
0
    for (depth2 = 0, cur = node2;cur->parent != NULL;cur = cur->parent) {
2481
0
  if (cur->parent == node1)
2482
0
      return(1);
2483
0
  depth2++;
2484
0
    }
2485
0
    root = cur;
2486
0
    for (depth1 = 0, cur = node1;cur->parent != NULL;cur = cur->parent) {
2487
0
  if (cur->parent == node2)
2488
0
      return(-1);
2489
0
  depth1++;
2490
0
    }
2491
    /*
2492
     * Distinct document (or distinct entities :-( ) case.
2493
     */
2494
0
    if (root != cur) {
2495
0
  return(-2);
2496
0
    }
2497
    /*
2498
     * get the nearest common ancestor.
2499
     */
2500
0
    while (depth1 > depth2) {
2501
0
  depth1--;
2502
0
  node1 = node1->parent;
2503
0
    }
2504
0
    while (depth2 > depth1) {
2505
0
  depth2--;
2506
0
  node2 = node2->parent;
2507
0
    }
2508
0
    while (node1->parent != node2->parent) {
2509
0
  node1 = node1->parent;
2510
0
  node2 = node2->parent;
2511
  /* should not happen but just in case ... */
2512
0
  if ((node1 == NULL) || (node2 == NULL))
2513
0
      return(-2);
2514
0
    }
2515
    /*
2516
     * Find who's first.
2517
     */
2518
0
    if (node1 == node2->prev)
2519
0
  return(1);
2520
0
    if (node1 == node2->next)
2521
0
  return(-1);
2522
    /*
2523
     * Speedup using document order if available.
2524
     */
2525
0
    if ((node1->type == XML_ELEMENT_NODE) &&
2526
0
  (node2->type == XML_ELEMENT_NODE) &&
2527
0
  (0 > XML_NODE_SORT_VALUE(node1)) &&
2528
0
  (0 > XML_NODE_SORT_VALUE(node2)) &&
2529
0
  (node1->doc == node2->doc)) {
2530
0
  XML_INTPTR_T l1, l2;
2531
2532
0
  l1 = -XML_NODE_SORT_VALUE(node1);
2533
0
  l2 = -XML_NODE_SORT_VALUE(node2);
2534
0
  if (l1 < l2)
2535
0
      return(1);
2536
0
  if (l1 > l2)
2537
0
      return(-1);
2538
0
    }
2539
2540
0
    for (cur = node1->next;cur != NULL;cur = cur->next)
2541
0
  if (cur == node2)
2542
0
      return(1);
2543
0
    return(-1); /* assume there is no sibling list corruption */
2544
0
}
2545
2546
/**
2547
 * Sort the node set in document order
2548
 *
2549
 * @param set  the node set
2550
 */
2551
void
2552
0
xmlXPathNodeSetSort(xmlNodeSet *set) {
2553
#ifndef WITH_TIM_SORT
2554
    int i, j, incr, len;
2555
    xmlNodePtr tmp;
2556
#endif
2557
2558
0
    if (set == NULL)
2559
0
  return;
2560
2561
#ifndef WITH_TIM_SORT
2562
    /*
2563
     * Use the old Shell's sort implementation to sort the node-set
2564
     * Timsort ought to be quite faster
2565
     */
2566
    len = set->nodeNr;
2567
    for (incr = len / 2; incr > 0; incr /= 2) {
2568
  for (i = incr; i < len; i++) {
2569
      j = i - incr;
2570
      while (j >= 0) {
2571
#ifdef XP_OPTIMIZED_NON_ELEM_COMPARISON
2572
    if (xmlXPathCmpNodesExt(set->nodeTab[j],
2573
      set->nodeTab[j + incr]) == -1)
2574
#else
2575
    if (xmlXPathCmpNodes(set->nodeTab[j],
2576
      set->nodeTab[j + incr]) == -1)
2577
#endif
2578
    {
2579
        tmp = set->nodeTab[j];
2580
        set->nodeTab[j] = set->nodeTab[j + incr];
2581
        set->nodeTab[j + incr] = tmp;
2582
        j -= incr;
2583
    } else
2584
        break;
2585
      }
2586
  }
2587
    }
2588
#else /* WITH_TIM_SORT */
2589
0
    libxml_domnode_tim_sort(set->nodeTab, set->nodeNr);
2590
0
#endif /* WITH_TIM_SORT */
2591
0
}
2592
2593
0
#define XML_NODESET_DEFAULT 10
2594
/**
2595
 * Namespace node in libxml don't match the XPath semantic. In a node set
2596
 * the namespace nodes are duplicated and the next pointer is set to the
2597
 * parent node in the XPath semantic.
2598
 *
2599
 * @param node  the parent node of the namespace XPath node
2600
 * @param ns  the libxml namespace declaration node.
2601
 * @returns the newly created object.
2602
 */
2603
static xmlNodePtr
2604
0
xmlXPathNodeSetDupNs(xmlNodePtr node, xmlNsPtr ns) {
2605
0
    xmlNsPtr cur;
2606
2607
0
    if ((ns == NULL) || (ns->type != XML_NAMESPACE_DECL))
2608
0
  return(NULL);
2609
0
    if ((node == NULL) || (node->type == XML_NAMESPACE_DECL))
2610
0
  return((xmlNodePtr) ns);
2611
2612
    /*
2613
     * Allocate a new Namespace and fill the fields.
2614
     */
2615
0
    cur = (xmlNsPtr) xmlMalloc(sizeof(xmlNs));
2616
0
    if (cur == NULL)
2617
0
  return(NULL);
2618
0
    memset(cur, 0, sizeof(xmlNs));
2619
0
    cur->type = XML_NAMESPACE_DECL;
2620
0
    if (ns->href != NULL) {
2621
0
  cur->href = xmlStrdup(ns->href);
2622
0
        if (cur->href == NULL) {
2623
0
            xmlFree(cur);
2624
0
            return(NULL);
2625
0
        }
2626
0
    }
2627
0
    if (ns->prefix != NULL) {
2628
0
  cur->prefix = xmlStrdup(ns->prefix);
2629
0
        if (cur->prefix == NULL) {
2630
0
            xmlFree((xmlChar *) cur->href);
2631
0
            xmlFree(cur);
2632
0
            return(NULL);
2633
0
        }
2634
0
    }
2635
0
    cur->next = (xmlNsPtr) node;
2636
0
    return((xmlNodePtr) cur);
2637
0
}
2638
2639
/**
2640
 * Namespace nodes in libxml don't match the XPath semantic. In a node set
2641
 * the namespace nodes are duplicated and the next pointer is set to the
2642
 * parent node in the XPath semantic. Check if such a node needs to be freed
2643
 *
2644
 * @param ns  the XPath namespace node found in a nodeset.
2645
 */
2646
void
2647
0
xmlXPathNodeSetFreeNs(xmlNs *ns) {
2648
0
    if ((ns == NULL) || (ns->type != XML_NAMESPACE_DECL))
2649
0
  return;
2650
2651
0
    if ((ns->next != NULL) && (ns->next->type != XML_NAMESPACE_DECL)) {
2652
0
  if (ns->href != NULL)
2653
0
      xmlFree((xmlChar *)ns->href);
2654
0
  if (ns->prefix != NULL)
2655
0
      xmlFree((xmlChar *)ns->prefix);
2656
0
  xmlFree(ns);
2657
0
    }
2658
0
}
2659
2660
/**
2661
 * Create a new xmlNodeSet of type double and of value `val`
2662
 *
2663
 * @param val  an initial xmlNode, or NULL
2664
 * @returns the newly created object.
2665
 */
2666
xmlNodeSet *
2667
0
xmlXPathNodeSetCreate(xmlNode *val) {
2668
0
    xmlNodeSetPtr ret;
2669
2670
0
    ret = (xmlNodeSetPtr) xmlMalloc(sizeof(xmlNodeSet));
2671
0
    if (ret == NULL)
2672
0
  return(NULL);
2673
0
    memset(ret, 0 , sizeof(xmlNodeSet));
2674
0
    if (val != NULL) {
2675
0
        ret->nodeTab = (xmlNodePtr *) xmlMalloc(XML_NODESET_DEFAULT *
2676
0
               sizeof(xmlNodePtr));
2677
0
  if (ret->nodeTab == NULL) {
2678
0
      xmlFree(ret);
2679
0
      return(NULL);
2680
0
  }
2681
0
  memset(ret->nodeTab, 0 ,
2682
0
         XML_NODESET_DEFAULT * sizeof(xmlNodePtr));
2683
0
        ret->nodeMax = XML_NODESET_DEFAULT;
2684
0
  if (val->type == XML_NAMESPACE_DECL) {
2685
0
      xmlNsPtr ns = (xmlNsPtr) val;
2686
0
            xmlNodePtr nsNode = xmlXPathNodeSetDupNs((xmlNodePtr) ns->next, ns);
2687
2688
0
            if (nsNode == NULL) {
2689
0
                xmlXPathFreeNodeSet(ret);
2690
0
                return(NULL);
2691
0
            }
2692
0
      ret->nodeTab[ret->nodeNr++] = nsNode;
2693
0
  } else
2694
0
      ret->nodeTab[ret->nodeNr++] = val;
2695
0
    }
2696
0
    return(ret);
2697
0
}
2698
2699
/**
2700
 * checks whether `cur` contains `val`
2701
 *
2702
 * @param cur  the node-set
2703
 * @param val  the node
2704
 * @returns true (1) if `cur` contains `val`, false (0) otherwise
2705
 */
2706
int
2707
0
xmlXPathNodeSetContains (xmlNodeSet *cur, xmlNode *val) {
2708
0
    int i;
2709
2710
0
    if ((cur == NULL) || (val == NULL)) return(0);
2711
0
    if (val->type == XML_NAMESPACE_DECL) {
2712
0
  for (i = 0; i < cur->nodeNr; i++) {
2713
0
      if (cur->nodeTab[i]->type == XML_NAMESPACE_DECL) {
2714
0
    xmlNsPtr ns1, ns2;
2715
2716
0
    ns1 = (xmlNsPtr) val;
2717
0
    ns2 = (xmlNsPtr) cur->nodeTab[i];
2718
0
    if (ns1 == ns2)
2719
0
        return(1);
2720
0
    if ((ns1->next != NULL) && (ns2->next == ns1->next) &&
2721
0
              (xmlStrEqual(ns1->prefix, ns2->prefix)))
2722
0
        return(1);
2723
0
      }
2724
0
  }
2725
0
    } else {
2726
0
  for (i = 0; i < cur->nodeNr; i++) {
2727
0
      if (cur->nodeTab[i] == val)
2728
0
    return(1);
2729
0
  }
2730
0
    }
2731
0
    return(0);
2732
0
}
2733
2734
static int
2735
0
xmlXPathNodeSetGrow(xmlNodeSetPtr cur) {
2736
0
    xmlNodePtr *temp;
2737
0
    int newSize;
2738
2739
0
    newSize = xmlGrowCapacity(cur->nodeMax, sizeof(temp[0]),
2740
0
                              XML_NODESET_DEFAULT, XPATH_MAX_NODESET_LENGTH);
2741
0
    if (newSize < 0)
2742
0
        return(-1);
2743
0
    temp = xmlRealloc(cur->nodeTab, newSize * sizeof(temp[0]));
2744
0
    if (temp == NULL)
2745
0
        return(-1);
2746
0
    cur->nodeMax = newSize;
2747
0
    cur->nodeTab = temp;
2748
2749
0
    return(0);
2750
0
}
2751
2752
/**
2753
 * add a new namespace node to an existing NodeSet
2754
 *
2755
 * @param cur  the initial node set
2756
 * @param node  the hosting node
2757
 * @param ns  a the namespace node
2758
 * @returns 0 in case of success and -1 in case of error
2759
 */
2760
int
2761
0
xmlXPathNodeSetAddNs(xmlNodeSet *cur, xmlNode *node, xmlNs *ns) {
2762
0
    int i;
2763
0
    xmlNodePtr nsNode;
2764
2765
0
    if ((cur == NULL) || (ns == NULL) || (node == NULL) ||
2766
0
        (ns->type != XML_NAMESPACE_DECL) ||
2767
0
  (node->type != XML_ELEMENT_NODE))
2768
0
  return(-1);
2769
2770
    /* @@ with_ns to check whether namespace nodes should be looked at @@ */
2771
    /*
2772
     * prevent duplicates
2773
     */
2774
0
    for (i = 0;i < cur->nodeNr;i++) {
2775
0
        if ((cur->nodeTab[i] != NULL) &&
2776
0
      (cur->nodeTab[i]->type == XML_NAMESPACE_DECL) &&
2777
0
      (((xmlNsPtr)cur->nodeTab[i])->next == (xmlNsPtr) node) &&
2778
0
      (xmlStrEqual(ns->prefix, ((xmlNsPtr)cur->nodeTab[i])->prefix)))
2779
0
      return(0);
2780
0
    }
2781
2782
    /*
2783
     * grow the nodeTab if needed
2784
     */
2785
0
    if (cur->nodeNr >= cur->nodeMax) {
2786
0
        if (xmlXPathNodeSetGrow(cur) < 0)
2787
0
            return(-1);
2788
0
    }
2789
0
    nsNode = xmlXPathNodeSetDupNs(node, ns);
2790
0
    if(nsNode == NULL)
2791
0
        return(-1);
2792
0
    cur->nodeTab[cur->nodeNr++] = nsNode;
2793
0
    return(0);
2794
0
}
2795
2796
/**
2797
 * add a new xmlNode to an existing NodeSet
2798
 *
2799
 * @param cur  the initial node set
2800
 * @param val  a new xmlNode
2801
 * @returns 0 in case of success, and -1 in case of error
2802
 */
2803
int
2804
0
xmlXPathNodeSetAdd(xmlNodeSet *cur, xmlNode *val) {
2805
0
    int i;
2806
2807
0
    if ((cur == NULL) || (val == NULL)) return(-1);
2808
2809
    /* @@ with_ns to check whether namespace nodes should be looked at @@ */
2810
    /*
2811
     * prevent duplicates
2812
     */
2813
0
    for (i = 0;i < cur->nodeNr;i++)
2814
0
        if (cur->nodeTab[i] == val) return(0);
2815
2816
    /*
2817
     * grow the nodeTab if needed
2818
     */
2819
0
    if (cur->nodeNr >= cur->nodeMax) {
2820
0
        if (xmlXPathNodeSetGrow(cur) < 0)
2821
0
            return(-1);
2822
0
    }
2823
2824
0
    if (val->type == XML_NAMESPACE_DECL) {
2825
0
  xmlNsPtr ns = (xmlNsPtr) val;
2826
0
        xmlNodePtr nsNode = xmlXPathNodeSetDupNs((xmlNodePtr) ns->next, ns);
2827
2828
0
        if (nsNode == NULL)
2829
0
            return(-1);
2830
0
  cur->nodeTab[cur->nodeNr++] = nsNode;
2831
0
    } else
2832
0
  cur->nodeTab[cur->nodeNr++] = val;
2833
0
    return(0);
2834
0
}
2835
2836
/**
2837
 * add a new xmlNode to an existing NodeSet, optimized version
2838
 * when we are sure the node is not already in the set.
2839
 *
2840
 * @param cur  the initial node set
2841
 * @param val  a new xmlNode
2842
 * @returns 0 in case of success and -1 in case of failure
2843
 */
2844
int
2845
0
xmlXPathNodeSetAddUnique(xmlNodeSet *cur, xmlNode *val) {
2846
0
    if ((cur == NULL) || (val == NULL)) return(-1);
2847
2848
    /* @@ with_ns to check whether namespace nodes should be looked at @@ */
2849
    /*
2850
     * grow the nodeTab if needed
2851
     */
2852
0
    if (cur->nodeNr >= cur->nodeMax) {
2853
0
        if (xmlXPathNodeSetGrow(cur) < 0)
2854
0
            return(-1);
2855
0
    }
2856
2857
0
    if (val->type == XML_NAMESPACE_DECL) {
2858
0
  xmlNsPtr ns = (xmlNsPtr) val;
2859
0
        xmlNodePtr nsNode = xmlXPathNodeSetDupNs((xmlNodePtr) ns->next, ns);
2860
2861
0
        if (nsNode == NULL)
2862
0
            return(-1);
2863
0
  cur->nodeTab[cur->nodeNr++] = nsNode;
2864
0
    } else
2865
0
  cur->nodeTab[cur->nodeNr++] = val;
2866
0
    return(0);
2867
0
}
2868
2869
/**
2870
 * Merges two nodesets, all nodes from `val2` are added to `val1`
2871
 * if `val1` is NULL, a new set is created and copied from `val2`
2872
 *
2873
 * Frees `val1` in case of error.
2874
 *
2875
 * @param val1  the first NodeSet or NULL
2876
 * @param val2  the second NodeSet
2877
 * @returns `val1` once extended or NULL in case of error.
2878
 */
2879
xmlNodeSet *
2880
0
xmlXPathNodeSetMerge(xmlNodeSet *val1, xmlNodeSet *val2) {
2881
0
    int i, j, initNr, skip;
2882
0
    xmlNodePtr n1, n2;
2883
2884
0
    if (val1 == NULL) {
2885
0
  val1 = xmlXPathNodeSetCreate(NULL);
2886
0
        if (val1 == NULL)
2887
0
            return (NULL);
2888
0
    }
2889
0
    if (val2 == NULL)
2890
0
        return(val1);
2891
2892
    /* @@ with_ns to check whether namespace nodes should be looked at @@ */
2893
0
    initNr = val1->nodeNr;
2894
2895
0
    for (i = 0;i < val2->nodeNr;i++) {
2896
0
  n2 = val2->nodeTab[i];
2897
  /*
2898
   * check against duplicates
2899
   */
2900
0
  skip = 0;
2901
0
  for (j = 0; j < initNr; j++) {
2902
0
      n1 = val1->nodeTab[j];
2903
0
      if (n1 == n2) {
2904
0
    skip = 1;
2905
0
    break;
2906
0
      } else if ((n1->type == XML_NAMESPACE_DECL) &&
2907
0
           (n2->type == XML_NAMESPACE_DECL)) {
2908
0
    if ((((xmlNsPtr) n1)->next == ((xmlNsPtr) n2)->next) &&
2909
0
        (xmlStrEqual(((xmlNsPtr) n1)->prefix,
2910
0
      ((xmlNsPtr) n2)->prefix)))
2911
0
    {
2912
0
        skip = 1;
2913
0
        break;
2914
0
    }
2915
0
      }
2916
0
  }
2917
0
  if (skip)
2918
0
      continue;
2919
2920
  /*
2921
   * grow the nodeTab if needed
2922
   */
2923
0
        if (val1->nodeNr >= val1->nodeMax) {
2924
0
            if (xmlXPathNodeSetGrow(val1) < 0)
2925
0
                goto error;
2926
0
        }
2927
0
  if (n2->type == XML_NAMESPACE_DECL) {
2928
0
      xmlNsPtr ns = (xmlNsPtr) n2;
2929
0
            xmlNodePtr nsNode = xmlXPathNodeSetDupNs((xmlNodePtr) ns->next, ns);
2930
2931
0
            if (nsNode == NULL)
2932
0
                goto error;
2933
0
      val1->nodeTab[val1->nodeNr++] = nsNode;
2934
0
  } else
2935
0
      val1->nodeTab[val1->nodeNr++] = n2;
2936
0
    }
2937
2938
0
    return(val1);
2939
2940
0
error:
2941
0
    xmlXPathFreeNodeSet(val1);
2942
0
    return(NULL);
2943
0
}
2944
2945
2946
/**
2947
 * Merges two nodesets, all nodes from `set2` are added to `set1`.
2948
 * Checks for duplicate nodes. Clears set2.
2949
 *
2950
 * Frees `set1` in case of error.
2951
 *
2952
 * @param set1  the first NodeSet or NULL
2953
 * @param set2  the second NodeSet
2954
 * @returns `set1` once extended or NULL in case of error.
2955
 */
2956
static xmlNodeSetPtr
2957
xmlXPathNodeSetMergeAndClear(xmlNodeSetPtr set1, xmlNodeSetPtr set2)
2958
0
{
2959
0
    {
2960
0
  int i, j, initNbSet1;
2961
0
  xmlNodePtr n1, n2;
2962
2963
0
  initNbSet1 = set1->nodeNr;
2964
0
  for (i = 0;i < set2->nodeNr;i++) {
2965
0
      n2 = set2->nodeTab[i];
2966
      /*
2967
      * Skip duplicates.
2968
      */
2969
0
      for (j = 0; j < initNbSet1; j++) {
2970
0
    n1 = set1->nodeTab[j];
2971
0
    if (n1 == n2) {
2972
0
        goto skip_node;
2973
0
    } else if ((n1->type == XML_NAMESPACE_DECL) &&
2974
0
        (n2->type == XML_NAMESPACE_DECL))
2975
0
    {
2976
0
        if ((((xmlNsPtr) n1)->next == ((xmlNsPtr) n2)->next) &&
2977
0
      (xmlStrEqual(((xmlNsPtr) n1)->prefix,
2978
0
      ((xmlNsPtr) n2)->prefix)))
2979
0
        {
2980
      /*
2981
      * Free the namespace node.
2982
      */
2983
0
      xmlXPathNodeSetFreeNs((xmlNsPtr) n2);
2984
0
      goto skip_node;
2985
0
        }
2986
0
    }
2987
0
      }
2988
      /*
2989
      * grow the nodeTab if needed
2990
      */
2991
0
            if (set1->nodeNr >= set1->nodeMax) {
2992
0
                if (xmlXPathNodeSetGrow(set1) < 0)
2993
0
                    goto error;
2994
0
            }
2995
0
      set1->nodeTab[set1->nodeNr++] = n2;
2996
0
skip_node:
2997
0
            set2->nodeTab[i] = NULL;
2998
0
  }
2999
0
    }
3000
0
    set2->nodeNr = 0;
3001
0
    return(set1);
3002
3003
0
error:
3004
0
    xmlXPathFreeNodeSet(set1);
3005
0
    xmlXPathNodeSetClear(set2, 1);
3006
0
    return(NULL);
3007
0
}
3008
3009
/**
3010
 * Merges two nodesets, all nodes from `set2` are added to `set1`.
3011
 * Doesn't check for duplicate nodes. Clears set2.
3012
 *
3013
 * Frees `set1` in case of error.
3014
 *
3015
 * @param set1  the first NodeSet or NULL
3016
 * @param set2  the second NodeSet
3017
 * @returns `set1` once extended or NULL in case of error.
3018
 */
3019
static xmlNodeSetPtr
3020
xmlXPathNodeSetMergeAndClearNoDupls(xmlNodeSetPtr set1, xmlNodeSetPtr set2)
3021
0
{
3022
0
    {
3023
0
  int i;
3024
0
  xmlNodePtr n2;
3025
3026
0
  for (i = 0;i < set2->nodeNr;i++) {
3027
0
      n2 = set2->nodeTab[i];
3028
0
            if (set1->nodeNr >= set1->nodeMax) {
3029
0
                if (xmlXPathNodeSetGrow(set1) < 0)
3030
0
                    goto error;
3031
0
            }
3032
0
      set1->nodeTab[set1->nodeNr++] = n2;
3033
0
            set2->nodeTab[i] = NULL;
3034
0
  }
3035
0
    }
3036
0
    set2->nodeNr = 0;
3037
0
    return(set1);
3038
3039
0
error:
3040
0
    xmlXPathFreeNodeSet(set1);
3041
0
    xmlXPathNodeSetClear(set2, 1);
3042
0
    return(NULL);
3043
0
}
3044
3045
/**
3046
 * Removes an xmlNode from an existing NodeSet
3047
 *
3048
 * @param cur  the initial node set
3049
 * @param val  an xmlNode
3050
 */
3051
void
3052
0
xmlXPathNodeSetDel(xmlNodeSet *cur, xmlNode *val) {
3053
0
    int i;
3054
3055
0
    if (cur == NULL) return;
3056
0
    if (val == NULL) return;
3057
3058
    /*
3059
     * find node in nodeTab
3060
     */
3061
0
    for (i = 0;i < cur->nodeNr;i++)
3062
0
        if (cur->nodeTab[i] == val) break;
3063
3064
0
    if (i >= cur->nodeNr) { /* not found */
3065
0
        return;
3066
0
    }
3067
0
    if ((cur->nodeTab[i] != NULL) &&
3068
0
  (cur->nodeTab[i]->type == XML_NAMESPACE_DECL))
3069
0
  xmlXPathNodeSetFreeNs((xmlNsPtr) cur->nodeTab[i]);
3070
0
    cur->nodeNr--;
3071
0
    for (;i < cur->nodeNr;i++)
3072
0
        cur->nodeTab[i] = cur->nodeTab[i + 1];
3073
0
    cur->nodeTab[cur->nodeNr] = NULL;
3074
0
}
3075
3076
/**
3077
 * Removes an entry from an existing NodeSet list.
3078
 *
3079
 * @param cur  the initial node set
3080
 * @param val  the index to remove
3081
 */
3082
void
3083
0
xmlXPathNodeSetRemove(xmlNodeSet *cur, int val) {
3084
0
    if (cur == NULL) return;
3085
0
    if (val >= cur->nodeNr) return;
3086
0
    if ((cur->nodeTab[val] != NULL) &&
3087
0
  (cur->nodeTab[val]->type == XML_NAMESPACE_DECL))
3088
0
  xmlXPathNodeSetFreeNs((xmlNsPtr) cur->nodeTab[val]);
3089
0
    cur->nodeNr--;
3090
0
    for (;val < cur->nodeNr;val++)
3091
0
        cur->nodeTab[val] = cur->nodeTab[val + 1];
3092
0
    cur->nodeTab[cur->nodeNr] = NULL;
3093
0
}
3094
3095
/**
3096
 * Free the NodeSet compound (not the actual nodes !).
3097
 *
3098
 * @param obj  the xmlNodeSet to free
3099
 */
3100
void
3101
0
xmlXPathFreeNodeSet(xmlNodeSet *obj) {
3102
0
    if (obj == NULL) return;
3103
0
    if (obj->nodeTab != NULL) {
3104
0
  int i;
3105
3106
  /* @@ with_ns to check whether namespace nodes should be looked at @@ */
3107
0
  for (i = 0;i < obj->nodeNr;i++)
3108
0
      if ((obj->nodeTab[i] != NULL) &&
3109
0
    (obj->nodeTab[i]->type == XML_NAMESPACE_DECL))
3110
0
    xmlXPathNodeSetFreeNs((xmlNsPtr) obj->nodeTab[i]);
3111
0
  xmlFree(obj->nodeTab);
3112
0
    }
3113
0
    xmlFree(obj);
3114
0
}
3115
3116
/**
3117
 * Clears the list from temporary XPath objects (e.g. namespace nodes
3118
 * are feed) starting with the entry at `pos`, but does *not* free the list
3119
 * itself. Sets the length of the list to `pos`.
3120
 *
3121
 * @param set  the node set to be cleared
3122
 * @param pos  the start position to clear from
3123
 * @param hasNsNodes  the node set might contain namespace nodes
3124
 */
3125
static void
3126
xmlXPathNodeSetClearFromPos(xmlNodeSetPtr set, int pos, int hasNsNodes)
3127
0
{
3128
0
    if ((set == NULL) || (pos >= set->nodeNr))
3129
0
  return;
3130
0
    else if ((hasNsNodes)) {
3131
0
  int i;
3132
0
  xmlNodePtr node;
3133
3134
0
  for (i = pos; i < set->nodeNr; i++) {
3135
0
      node = set->nodeTab[i];
3136
0
      if ((node != NULL) &&
3137
0
    (node->type == XML_NAMESPACE_DECL))
3138
0
    xmlXPathNodeSetFreeNs((xmlNsPtr) node);
3139
0
  }
3140
0
    }
3141
0
    set->nodeNr = pos;
3142
0
}
3143
3144
/**
3145
 * Clears the list from all temporary XPath objects (e.g. namespace nodes
3146
 * are feed), but does *not* free the list itself. Sets the length of the
3147
 * list to 0.
3148
 *
3149
 * @param set  the node set to clear
3150
 * @param hasNsNodes  the node set might contain namespace nodes
3151
 */
3152
static void
3153
xmlXPathNodeSetClear(xmlNodeSetPtr set, int hasNsNodes)
3154
0
{
3155
0
    xmlXPathNodeSetClearFromPos(set, 0, hasNsNodes);
3156
0
}
3157
3158
/**
3159
 * Move the last node to the first position and clear temporary XPath objects
3160
 * (e.g. namespace nodes) from all other nodes. Sets the length of the list
3161
 * to 1.
3162
 *
3163
 * @param set  the node set to be cleared
3164
 */
3165
static void
3166
xmlXPathNodeSetKeepLast(xmlNodeSetPtr set)
3167
0
{
3168
0
    int i;
3169
0
    xmlNodePtr node;
3170
3171
0
    if ((set == NULL) || (set->nodeNr <= 1))
3172
0
  return;
3173
0
    for (i = 0; i < set->nodeNr - 1; i++) {
3174
0
        node = set->nodeTab[i];
3175
0
        if ((node != NULL) &&
3176
0
            (node->type == XML_NAMESPACE_DECL))
3177
0
            xmlXPathNodeSetFreeNs((xmlNsPtr) node);
3178
0
    }
3179
0
    set->nodeTab[0] = set->nodeTab[set->nodeNr-1];
3180
0
    set->nodeNr = 1;
3181
0
}
3182
3183
/**
3184
 * Create a new xmlXPathObject of type NodeSet and initialize
3185
 * it with the single Node `val`
3186
 *
3187
 * @param val  the NodePtr value
3188
 * @returns the newly created object.
3189
 */
3190
xmlXPathObject *
3191
0
xmlXPathNewNodeSet(xmlNode *val) {
3192
0
    xmlXPathObjectPtr ret;
3193
3194
0
    ret = (xmlXPathObjectPtr) xmlMalloc(sizeof(xmlXPathObject));
3195
0
    if (ret == NULL)
3196
0
  return(NULL);
3197
0
    memset(ret, 0 , sizeof(xmlXPathObject));
3198
0
    ret->type = XPATH_NODESET;
3199
0
    ret->boolval = 0;
3200
0
    ret->nodesetval = xmlXPathNodeSetCreate(val);
3201
0
    if (ret->nodesetval == NULL) {
3202
0
        xmlFree(ret);
3203
0
        return(NULL);
3204
0
    }
3205
    /* @@ with_ns to check whether namespace nodes should be looked at @@ */
3206
0
    return(ret);
3207
0
}
3208
3209
/**
3210
 * Create a new xmlXPathObject of type Value Tree (XSLT) and initialize
3211
 * it with the tree root `val`
3212
 *
3213
 * @param val  the NodePtr value
3214
 * @returns the newly created object.
3215
 */
3216
xmlXPathObject *
3217
0
xmlXPathNewValueTree(xmlNode *val) {
3218
0
    xmlXPathObjectPtr ret;
3219
3220
0
    ret = xmlXPathNewNodeSet(val);
3221
0
    if (ret == NULL)
3222
0
  return(NULL);
3223
0
    ret->type = XPATH_XSLT_TREE;
3224
3225
0
    return(ret);
3226
0
}
3227
3228
/**
3229
 * Create a new xmlXPathObject of type NodeSet and initialize
3230
 * it with the Nodeset `val`
3231
 *
3232
 * @param val  an existing NodeSet
3233
 * @returns the newly created object.
3234
 */
3235
xmlXPathObject *
3236
xmlXPathNewNodeSetList(xmlNodeSet *val)
3237
0
{
3238
0
    xmlXPathObjectPtr ret;
3239
3240
0
    if (val == NULL)
3241
0
        ret = NULL;
3242
0
    else if (val->nodeTab == NULL)
3243
0
        ret = xmlXPathNewNodeSet(NULL);
3244
0
    else {
3245
0
        ret = xmlXPathNewNodeSet(val->nodeTab[0]);
3246
0
        if (ret) {
3247
0
            ret->nodesetval = xmlXPathNodeSetMerge(NULL, val);
3248
0
            if (ret->nodesetval == NULL) {
3249
0
                xmlFree(ret);
3250
0
                return(NULL);
3251
0
            }
3252
0
        }
3253
0
    }
3254
3255
0
    return (ret);
3256
0
}
3257
3258
/**
3259
 * Wrap the Nodeset `val` in a new xmlXPathObject
3260
 *
3261
 * In case of error the node set is destroyed and NULL is returned.
3262
 *
3263
 * @param val  the NodePtr value
3264
 * @returns the newly created object.
3265
 */
3266
xmlXPathObject *
3267
0
xmlXPathWrapNodeSet(xmlNodeSet *val) {
3268
0
    xmlXPathObjectPtr ret;
3269
3270
0
    ret = (xmlXPathObjectPtr) xmlMalloc(sizeof(xmlXPathObject));
3271
0
    if (ret == NULL) {
3272
0
        xmlXPathFreeNodeSet(val);
3273
0
  return(NULL);
3274
0
    }
3275
0
    memset(ret, 0 , sizeof(xmlXPathObject));
3276
0
    ret->type = XPATH_NODESET;
3277
0
    ret->nodesetval = val;
3278
0
    return(ret);
3279
0
}
3280
3281
/**
3282
 * Free up the xmlXPathObject `obj` but don't deallocate the objects in
3283
 * the list contrary to #xmlXPathFreeObject.
3284
 *
3285
 * @param obj  an existing NodeSetList object
3286
 */
3287
void
3288
0
xmlXPathFreeNodeSetList(xmlXPathObject *obj) {
3289
0
    if (obj == NULL) return;
3290
0
    xmlFree(obj);
3291
0
}
3292
3293
/**
3294
 * Implements the EXSLT - Sets difference() function:
3295
 *    node-set set:difference (node-set, node-set)
3296
 *
3297
 * @param nodes1  a node-set
3298
 * @param nodes2  a node-set
3299
 * @returns the difference between the two node sets, or nodes1 if
3300
 *         nodes2 is empty
3301
 */
3302
xmlNodeSet *
3303
0
xmlXPathDifference (xmlNodeSet *nodes1, xmlNodeSet *nodes2) {
3304
0
    xmlNodeSetPtr ret;
3305
0
    int i, l1;
3306
0
    xmlNodePtr cur;
3307
3308
0
    if (xmlXPathNodeSetIsEmpty(nodes2))
3309
0
  return(nodes1);
3310
3311
0
    ret = xmlXPathNodeSetCreate(NULL);
3312
0
    if (ret == NULL)
3313
0
        return(NULL);
3314
0
    if (xmlXPathNodeSetIsEmpty(nodes1))
3315
0
  return(ret);
3316
3317
0
    l1 = xmlXPathNodeSetGetLength(nodes1);
3318
3319
0
    for (i = 0; i < l1; i++) {
3320
0
  cur = xmlXPathNodeSetItem(nodes1, i);
3321
0
  if (!xmlXPathNodeSetContains(nodes2, cur)) {
3322
0
      if (xmlXPathNodeSetAddUnique(ret, cur) < 0) {
3323
0
                xmlXPathFreeNodeSet(ret);
3324
0
          return(NULL);
3325
0
            }
3326
0
  }
3327
0
    }
3328
0
    return(ret);
3329
0
}
3330
3331
/**
3332
 * Implements the EXSLT - Sets intersection() function:
3333
 *    node-set set:intersection (node-set, node-set)
3334
 *
3335
 * @param nodes1  a node-set
3336
 * @param nodes2  a node-set
3337
 * @returns a node set comprising the nodes that are within both the
3338
 *         node sets passed as arguments
3339
 */
3340
xmlNodeSet *
3341
0
xmlXPathIntersection (xmlNodeSet *nodes1, xmlNodeSet *nodes2) {
3342
0
    xmlNodeSetPtr ret = xmlXPathNodeSetCreate(NULL);
3343
0
    int i, l1;
3344
0
    xmlNodePtr cur;
3345
3346
0
    if (ret == NULL)
3347
0
        return(ret);
3348
0
    if (xmlXPathNodeSetIsEmpty(nodes1))
3349
0
  return(ret);
3350
0
    if (xmlXPathNodeSetIsEmpty(nodes2))
3351
0
  return(ret);
3352
3353
0
    l1 = xmlXPathNodeSetGetLength(nodes1);
3354
3355
0
    for (i = 0; i < l1; i++) {
3356
0
  cur = xmlXPathNodeSetItem(nodes1, i);
3357
0
  if (xmlXPathNodeSetContains(nodes2, cur)) {
3358
0
      if (xmlXPathNodeSetAddUnique(ret, cur) < 0) {
3359
0
                xmlXPathFreeNodeSet(ret);
3360
0
          return(NULL);
3361
0
            }
3362
0
  }
3363
0
    }
3364
0
    return(ret);
3365
0
}
3366
3367
/**
3368
 * Implements the EXSLT - Sets distinct() function:
3369
 *    node-set set:distinct (node-set)
3370
 *
3371
 * @param nodes  a node-set, sorted by document order
3372
 * @returns a subset of the nodes contained in `nodes`, or `nodes` if
3373
 *         it is empty
3374
 */
3375
xmlNodeSet *
3376
0
xmlXPathDistinctSorted (xmlNodeSet *nodes) {
3377
0
    xmlNodeSetPtr ret;
3378
0
    xmlHashTablePtr hash;
3379
0
    int i, l;
3380
0
    xmlChar * strval;
3381
0
    xmlNodePtr cur;
3382
3383
0
    if (xmlXPathNodeSetIsEmpty(nodes))
3384
0
  return(nodes);
3385
3386
0
    ret = xmlXPathNodeSetCreate(NULL);
3387
0
    if (ret == NULL)
3388
0
        return(ret);
3389
0
    l = xmlXPathNodeSetGetLength(nodes);
3390
0
    hash = xmlHashCreate (l);
3391
0
    for (i = 0; i < l; i++) {
3392
0
  cur = xmlXPathNodeSetItem(nodes, i);
3393
0
  strval = xmlXPathCastNodeToString(cur);
3394
0
  if (xmlHashLookup(hash, strval) == NULL) {
3395
0
      if (xmlHashAddEntry(hash, strval, strval) < 0) {
3396
0
                xmlFree(strval);
3397
0
                goto error;
3398
0
            }
3399
0
      if (xmlXPathNodeSetAddUnique(ret, cur) < 0)
3400
0
          goto error;
3401
0
  } else {
3402
0
      xmlFree(strval);
3403
0
  }
3404
0
    }
3405
0
    xmlHashFree(hash, xmlHashDefaultDeallocator);
3406
0
    return(ret);
3407
3408
0
error:
3409
0
    xmlHashFree(hash, xmlHashDefaultDeallocator);
3410
0
    xmlXPathFreeNodeSet(ret);
3411
0
    return(NULL);
3412
0
}
3413
3414
/**
3415
 * Implements the EXSLT - Sets distinct() function:
3416
 *    node-set set:distinct (node-set)
3417
 * `nodes` is sorted by document order, then exslSetsDistinctSorted
3418
 * is called with the sorted node-set
3419
 *
3420
 * @param nodes  a node-set
3421
 * @returns a subset of the nodes contained in `nodes`, or `nodes` if
3422
 *         it is empty
3423
 */
3424
xmlNodeSet *
3425
0
xmlXPathDistinct (xmlNodeSet *nodes) {
3426
0
    if (xmlXPathNodeSetIsEmpty(nodes))
3427
0
  return(nodes);
3428
3429
0
    xmlXPathNodeSetSort(nodes);
3430
0
    return(xmlXPathDistinctSorted(nodes));
3431
0
}
3432
3433
/**
3434
 * Implements the EXSLT - Sets has-same-nodes function:
3435
 *    boolean set:has-same-node(node-set, node-set)
3436
 *
3437
 * @param nodes1  a node-set
3438
 * @param nodes2  a node-set
3439
 * @returns true (1) if `nodes1` shares any node with `nodes2`, false (0)
3440
 *         otherwise
3441
 */
3442
int
3443
0
xmlXPathHasSameNodes (xmlNodeSet *nodes1, xmlNodeSet *nodes2) {
3444
0
    int i, l;
3445
0
    xmlNodePtr cur;
3446
3447
0
    if (xmlXPathNodeSetIsEmpty(nodes1) ||
3448
0
  xmlXPathNodeSetIsEmpty(nodes2))
3449
0
  return(0);
3450
3451
0
    l = xmlXPathNodeSetGetLength(nodes1);
3452
0
    for (i = 0; i < l; i++) {
3453
0
  cur = xmlXPathNodeSetItem(nodes1, i);
3454
0
  if (xmlXPathNodeSetContains(nodes2, cur))
3455
0
      return(1);
3456
0
    }
3457
0
    return(0);
3458
0
}
3459
3460
/**
3461
 * Implements the EXSLT - Sets leading() function:
3462
 *    node-set set:leading (node-set, node-set)
3463
 *
3464
 * @param nodes  a node-set, sorted by document order
3465
 * @param node  a node
3466
 * @returns the nodes in `nodes` that precede `node` in document order,
3467
 *         `nodes` if `node` is NULL or an empty node-set if `nodes`
3468
 *         doesn't contain `node`
3469
 */
3470
xmlNodeSet *
3471
0
xmlXPathNodeLeadingSorted (xmlNodeSet *nodes, xmlNode *node) {
3472
0
    int i, l;
3473
0
    xmlNodePtr cur;
3474
0
    xmlNodeSetPtr ret;
3475
3476
0
    if (node == NULL)
3477
0
  return(nodes);
3478
3479
0
    ret = xmlXPathNodeSetCreate(NULL);
3480
0
    if (ret == NULL)
3481
0
        return(ret);
3482
0
    if (xmlXPathNodeSetIsEmpty(nodes) ||
3483
0
  (!xmlXPathNodeSetContains(nodes, node)))
3484
0
  return(ret);
3485
3486
0
    l = xmlXPathNodeSetGetLength(nodes);
3487
0
    for (i = 0; i < l; i++) {
3488
0
  cur = xmlXPathNodeSetItem(nodes, i);
3489
0
  if (cur == node)
3490
0
      break;
3491
0
  if (xmlXPathNodeSetAddUnique(ret, cur) < 0) {
3492
0
            xmlXPathFreeNodeSet(ret);
3493
0
      return(NULL);
3494
0
        }
3495
0
    }
3496
0
    return(ret);
3497
0
}
3498
3499
/**
3500
 * Implements the EXSLT - Sets leading() function:
3501
 *    node-set set:leading (node-set, node-set)
3502
 * `nodes` is sorted by document order, then exslSetsNodeLeadingSorted
3503
 * is called.
3504
 *
3505
 * @param nodes  a node-set
3506
 * @param node  a node
3507
 * @returns the nodes in `nodes` that precede `node` in document order,
3508
 *         `nodes` if `node` is NULL or an empty node-set if `nodes`
3509
 *         doesn't contain `node`
3510
 */
3511
xmlNodeSet *
3512
0
xmlXPathNodeLeading (xmlNodeSet *nodes, xmlNode *node) {
3513
0
    xmlXPathNodeSetSort(nodes);
3514
0
    return(xmlXPathNodeLeadingSorted(nodes, node));
3515
0
}
3516
3517
/**
3518
 * Implements the EXSLT - Sets leading() function:
3519
 *    node-set set:leading (node-set, node-set)
3520
 *
3521
 * @param nodes1  a node-set, sorted by document order
3522
 * @param nodes2  a node-set, sorted by document order
3523
 * @returns the nodes in `nodes1` that precede the first node in `nodes2`
3524
 *         in document order, `nodes1` if `nodes2` is NULL or empty or
3525
 *         an empty node-set if `nodes1` doesn't contain `nodes2`
3526
 */
3527
xmlNodeSet *
3528
0
xmlXPathLeadingSorted (xmlNodeSet *nodes1, xmlNodeSet *nodes2) {
3529
0
    if (xmlXPathNodeSetIsEmpty(nodes2))
3530
0
  return(nodes1);
3531
0
    return(xmlXPathNodeLeadingSorted(nodes1,
3532
0
             xmlXPathNodeSetItem(nodes2, 1)));
3533
0
}
3534
3535
/**
3536
 * Implements the EXSLT - Sets leading() function:
3537
 *    node-set set:leading (node-set, node-set)
3538
 * `nodes1` and `nodes2` are sorted by document order, then
3539
 * exslSetsLeadingSorted is called.
3540
 *
3541
 * @param nodes1  a node-set
3542
 * @param nodes2  a node-set
3543
 * @returns the nodes in `nodes1` that precede the first node in `nodes2`
3544
 *         in document order, `nodes1` if `nodes2` is NULL or empty or
3545
 *         an empty node-set if `nodes1` doesn't contain `nodes2`
3546
 */
3547
xmlNodeSet *
3548
0
xmlXPathLeading (xmlNodeSet *nodes1, xmlNodeSet *nodes2) {
3549
0
    if (xmlXPathNodeSetIsEmpty(nodes2))
3550
0
  return(nodes1);
3551
0
    if (xmlXPathNodeSetIsEmpty(nodes1))
3552
0
  return(xmlXPathNodeSetCreate(NULL));
3553
0
    xmlXPathNodeSetSort(nodes1);
3554
0
    xmlXPathNodeSetSort(nodes2);
3555
0
    return(xmlXPathNodeLeadingSorted(nodes1,
3556
0
             xmlXPathNodeSetItem(nodes2, 1)));
3557
0
}
3558
3559
/**
3560
 * Implements the EXSLT - Sets trailing() function:
3561
 *    node-set set:trailing (node-set, node-set)
3562
 *
3563
 * @param nodes  a node-set, sorted by document order
3564
 * @param node  a node
3565
 * @returns the nodes in `nodes` that follow `node` in document order,
3566
 *         `nodes` if `node` is NULL or an empty node-set if `nodes`
3567
 *         doesn't contain `node`
3568
 */
3569
xmlNodeSet *
3570
0
xmlXPathNodeTrailingSorted (xmlNodeSet *nodes, xmlNode *node) {
3571
0
    int i, l;
3572
0
    xmlNodePtr cur;
3573
0
    xmlNodeSetPtr ret;
3574
3575
0
    if (node == NULL)
3576
0
  return(nodes);
3577
3578
0
    ret = xmlXPathNodeSetCreate(NULL);
3579
0
    if (ret == NULL)
3580
0
        return(ret);
3581
0
    if (xmlXPathNodeSetIsEmpty(nodes) ||
3582
0
  (!xmlXPathNodeSetContains(nodes, node)))
3583
0
  return(ret);
3584
3585
0
    l = xmlXPathNodeSetGetLength(nodes);
3586
0
    for (i = l - 1; i >= 0; i--) {
3587
0
  cur = xmlXPathNodeSetItem(nodes, i);
3588
0
  if (cur == node)
3589
0
      break;
3590
0
  if (xmlXPathNodeSetAddUnique(ret, cur) < 0) {
3591
0
            xmlXPathFreeNodeSet(ret);
3592
0
      return(NULL);
3593
0
        }
3594
0
    }
3595
0
    xmlXPathNodeSetSort(ret); /* bug 413451 */
3596
0
    return(ret);
3597
0
}
3598
3599
/**
3600
 * Implements the EXSLT - Sets trailing() function:
3601
 *    node-set set:trailing (node-set, node-set)
3602
 * `nodes` is sorted by document order, then #xmlXPathNodeTrailingSorted
3603
 * is called.
3604
 *
3605
 * @param nodes  a node-set
3606
 * @param node  a node
3607
 * @returns the nodes in `nodes` that follow `node` in document order,
3608
 *         `nodes` if `node` is NULL or an empty node-set if `nodes`
3609
 *         doesn't contain `node`
3610
 */
3611
xmlNodeSet *
3612
0
xmlXPathNodeTrailing (xmlNodeSet *nodes, xmlNode *node) {
3613
0
    xmlXPathNodeSetSort(nodes);
3614
0
    return(xmlXPathNodeTrailingSorted(nodes, node));
3615
0
}
3616
3617
/**
3618
 * Implements the EXSLT - Sets trailing() function:
3619
 *    node-set set:trailing (node-set, node-set)
3620
 *
3621
 * @param nodes1  a node-set, sorted by document order
3622
 * @param nodes2  a node-set, sorted by document order
3623
 * @returns the nodes in `nodes1` that follow the first node in `nodes2`
3624
 *         in document order, `nodes1` if `nodes2` is NULL or empty or
3625
 *         an empty node-set if `nodes1` doesn't contain `nodes2`
3626
 */
3627
xmlNodeSet *
3628
0
xmlXPathTrailingSorted (xmlNodeSet *nodes1, xmlNodeSet *nodes2) {
3629
0
    if (xmlXPathNodeSetIsEmpty(nodes2))
3630
0
  return(nodes1);
3631
0
    return(xmlXPathNodeTrailingSorted(nodes1,
3632
0
              xmlXPathNodeSetItem(nodes2, 0)));
3633
0
}
3634
3635
/**
3636
 * Implements the EXSLT - Sets trailing() function:
3637
 *    node-set set:trailing (node-set, node-set)
3638
 * `nodes1` and `nodes2` are sorted by document order, then
3639
 * #xmlXPathTrailingSorted is called.
3640
 *
3641
 * @param nodes1  a node-set
3642
 * @param nodes2  a node-set
3643
 * @returns the nodes in `nodes1` that follow the first node in `nodes2`
3644
 *         in document order, `nodes1` if `nodes2` is NULL or empty or
3645
 *         an empty node-set if `nodes1` doesn't contain `nodes2`
3646
 */
3647
xmlNodeSet *
3648
0
xmlXPathTrailing (xmlNodeSet *nodes1, xmlNodeSet *nodes2) {
3649
0
    if (xmlXPathNodeSetIsEmpty(nodes2))
3650
0
  return(nodes1);
3651
0
    if (xmlXPathNodeSetIsEmpty(nodes1))
3652
0
  return(xmlXPathNodeSetCreate(NULL));
3653
0
    xmlXPathNodeSetSort(nodes1);
3654
0
    xmlXPathNodeSetSort(nodes2);
3655
0
    return(xmlXPathNodeTrailingSorted(nodes1,
3656
0
              xmlXPathNodeSetItem(nodes2, 0)));
3657
0
}
3658
3659
/************************************************************************
3660
 *                  *
3661
 *    Routines to handle extra functions      *
3662
 *                  *
3663
 ************************************************************************/
3664
3665
/**
3666
 * Register a new function. If `f` is NULL it unregisters the function
3667
 *
3668
 * @param ctxt  the XPath context
3669
 * @param name  the function name
3670
 * @param f  the function implementation or NULL
3671
 * @returns 0 in case of success, -1 in case of error
3672
 */
3673
int
3674
xmlXPathRegisterFunc(xmlXPathContext *ctxt, const xmlChar *name,
3675
0
         xmlXPathFunction f) {
3676
0
    return(xmlXPathRegisterFuncNS(ctxt, name, NULL, f));
3677
0
}
3678
3679
/**
3680
 * Register a new function. If `f` is NULL it unregisters the function
3681
 *
3682
 * @param ctxt  the XPath context
3683
 * @param name  the function name
3684
 * @param ns_uri  the function namespace URI
3685
 * @param f  the function implementation or NULL
3686
 * @returns 0 in case of success, -1 in case of error
3687
 */
3688
int
3689
xmlXPathRegisterFuncNS(xmlXPathContext *ctxt, const xmlChar *name,
3690
0
           const xmlChar *ns_uri, xmlXPathFunction f) {
3691
0
    int ret;
3692
0
    void *payload;
3693
3694
0
    if (ctxt == NULL)
3695
0
  return(-1);
3696
0
    if (name == NULL)
3697
0
  return(-1);
3698
3699
0
    if (ctxt->funcHash == NULL)
3700
0
  ctxt->funcHash = xmlHashCreate(0);
3701
0
    if (ctxt->funcHash == NULL) {
3702
0
        xmlXPathErrMemory(ctxt);
3703
0
  return(-1);
3704
0
    }
3705
0
    if (f == NULL)
3706
0
        return(xmlHashRemoveEntry2(ctxt->funcHash, name, ns_uri, NULL));
3707
0
    memcpy(&payload, &f, sizeof(f));
3708
0
    ret = xmlHashAddEntry2(ctxt->funcHash, name, ns_uri, payload);
3709
0
    if (ret < 0) {
3710
0
        xmlXPathErrMemory(ctxt);
3711
0
        return(-1);
3712
0
    }
3713
3714
0
    return(0);
3715
0
}
3716
3717
/**
3718
 * Registers an external mechanism to do function lookup.
3719
 *
3720
 * @param ctxt  the XPath context
3721
 * @param f  the lookup function
3722
 * @param funcCtxt  the lookup data
3723
 */
3724
void
3725
xmlXPathRegisterFuncLookup (xmlXPathContext *ctxt,
3726
          xmlXPathFuncLookupFunc f,
3727
0
          void *funcCtxt) {
3728
0
    if (ctxt == NULL)
3729
0
  return;
3730
0
    ctxt->funcLookupFunc = f;
3731
0
    ctxt->funcLookupData = funcCtxt;
3732
0
}
3733
3734
/**
3735
 * Search in the Function array of the context for the given
3736
 * function.
3737
 *
3738
 * @param ctxt  the XPath context
3739
 * @param name  the function name
3740
 * @returns the xmlXPathFunction or NULL if not found
3741
 */
3742
xmlXPathFunction
3743
0
xmlXPathFunctionLookup(xmlXPathContext *ctxt, const xmlChar *name) {
3744
0
    return(xmlXPathFunctionLookupNS(ctxt, name, NULL));
3745
0
}
3746
3747
/**
3748
 * Search in the Function array of the context for the given
3749
 * function.
3750
 *
3751
 * @param ctxt  the XPath context
3752
 * @param name  the function name
3753
 * @param ns_uri  the function namespace URI
3754
 * @returns the xmlXPathFunction or NULL if not found
3755
 */
3756
xmlXPathFunction
3757
xmlXPathFunctionLookupNS(xmlXPathContext *ctxt, const xmlChar *name,
3758
0
       const xmlChar *ns_uri) {
3759
0
    xmlXPathFunction ret;
3760
0
    void *payload;
3761
3762
0
    if (ctxt == NULL)
3763
0
  return(NULL);
3764
0
    if (name == NULL)
3765
0
  return(NULL);
3766
3767
0
    if (ns_uri == NULL) {
3768
0
        int bucketIndex = xmlXPathSFComputeHash(name) % SF_HASH_SIZE;
3769
3770
0
        while (xmlXPathSFHash[bucketIndex] != UCHAR_MAX) {
3771
0
            int funcIndex = xmlXPathSFHash[bucketIndex];
3772
3773
0
            if (strcmp(xmlXPathStandardFunctions[funcIndex].name,
3774
0
                       (char *) name) == 0)
3775
0
                return(xmlXPathStandardFunctions[funcIndex].func);
3776
3777
0
            bucketIndex += 1;
3778
0
            if (bucketIndex >= SF_HASH_SIZE)
3779
0
                bucketIndex = 0;
3780
0
        }
3781
0
    }
3782
3783
0
    if (ctxt->funcLookupFunc != NULL) {
3784
0
  xmlXPathFuncLookupFunc f;
3785
3786
0
  f = ctxt->funcLookupFunc;
3787
0
  ret = f(ctxt->funcLookupData, name, ns_uri);
3788
0
  if (ret != NULL)
3789
0
      return(ret);
3790
0
    }
3791
3792
0
    if (ctxt->funcHash == NULL)
3793
0
  return(NULL);
3794
3795
0
    payload = xmlHashLookup2(ctxt->funcHash, name, ns_uri);
3796
0
    memcpy(&ret, &payload, sizeof(payload));
3797
3798
0
    return(ret);
3799
0
}
3800
3801
/**
3802
 * Cleanup the XPath context data associated to registered functions
3803
 *
3804
 * @param ctxt  the XPath context
3805
 */
3806
void
3807
0
xmlXPathRegisteredFuncsCleanup(xmlXPathContext *ctxt) {
3808
0
    if (ctxt == NULL)
3809
0
  return;
3810
3811
0
    xmlHashFree(ctxt->funcHash, NULL);
3812
0
    ctxt->funcHash = NULL;
3813
0
}
3814
3815
/************************************************************************
3816
 *                  *
3817
 *      Routines to handle Variables      *
3818
 *                  *
3819
 ************************************************************************/
3820
3821
/**
3822
 * Register a new variable value. If `value` is NULL it unregisters
3823
 * the variable
3824
 *
3825
 * @param ctxt  the XPath context
3826
 * @param name  the variable name
3827
 * @param value  the variable value or NULL
3828
 * @returns 0 in case of success, -1 in case of error
3829
 */
3830
int
3831
xmlXPathRegisterVariable(xmlXPathContext *ctxt, const xmlChar *name,
3832
0
       xmlXPathObject *value) {
3833
0
    return(xmlXPathRegisterVariableNS(ctxt, name, NULL, value));
3834
0
}
3835
3836
/**
3837
 * Register a new variable value. If `value` is NULL it unregisters
3838
 * the variable
3839
 *
3840
 * @param ctxt  the XPath context
3841
 * @param name  the variable name
3842
 * @param ns_uri  the variable namespace URI
3843
 * @param value  the variable value or NULL
3844
 * @returns 0 in case of success, -1 in case of error
3845
 */
3846
int
3847
xmlXPathRegisterVariableNS(xmlXPathContext *ctxt, const xmlChar *name,
3848
         const xmlChar *ns_uri,
3849
0
         xmlXPathObject *value) {
3850
0
    if (ctxt == NULL)
3851
0
  return(-1);
3852
0
    if (name == NULL)
3853
0
  return(-1);
3854
3855
0
    if (ctxt->varHash == NULL)
3856
0
  ctxt->varHash = xmlHashCreate(0);
3857
0
    if (ctxt->varHash == NULL)
3858
0
  return(-1);
3859
0
    if (value == NULL)
3860
0
        return(xmlHashRemoveEntry2(ctxt->varHash, name, ns_uri,
3861
0
                             xmlXPathFreeObjectEntry));
3862
0
    return(xmlHashUpdateEntry2(ctxt->varHash, name, ns_uri,
3863
0
             (void *) value, xmlXPathFreeObjectEntry));
3864
0
}
3865
3866
/**
3867
 * register an external mechanism to do variable lookup
3868
 *
3869
 * @param ctxt  the XPath context
3870
 * @param f  the lookup function
3871
 * @param data  the lookup data
3872
 */
3873
void
3874
xmlXPathRegisterVariableLookup(xmlXPathContext *ctxt,
3875
0
   xmlXPathVariableLookupFunc f, void *data) {
3876
0
    if (ctxt == NULL)
3877
0
  return;
3878
0
    ctxt->varLookupFunc = f;
3879
0
    ctxt->varLookupData = data;
3880
0
}
3881
3882
/**
3883
 * Search in the Variable array of the context for the given
3884
 * variable value.
3885
 *
3886
 * @param ctxt  the XPath context
3887
 * @param name  the variable name
3888
 * @returns a copy of the value or NULL if not found
3889
 */
3890
xmlXPathObject *
3891
0
xmlXPathVariableLookup(xmlXPathContext *ctxt, const xmlChar *name) {
3892
0
    if (ctxt == NULL)
3893
0
  return(NULL);
3894
3895
0
    if (ctxt->varLookupFunc != NULL) {
3896
0
  xmlXPathObjectPtr ret;
3897
3898
0
  ret = ((xmlXPathVariableLookupFunc)ctxt->varLookupFunc)
3899
0
          (ctxt->varLookupData, name, NULL);
3900
0
  return(ret);
3901
0
    }
3902
0
    return(xmlXPathVariableLookupNS(ctxt, name, NULL));
3903
0
}
3904
3905
/**
3906
 * Search in the Variable array of the context for the given
3907
 * variable value.
3908
 *
3909
 * @param ctxt  the XPath context
3910
 * @param name  the variable name
3911
 * @param ns_uri  the variable namespace URI
3912
 * @returns the a copy of the value or NULL if not found
3913
 */
3914
xmlXPathObject *
3915
xmlXPathVariableLookupNS(xmlXPathContext *ctxt, const xmlChar *name,
3916
0
       const xmlChar *ns_uri) {
3917
0
    if (ctxt == NULL)
3918
0
  return(NULL);
3919
3920
0
    if (ctxt->varLookupFunc != NULL) {
3921
0
  xmlXPathObjectPtr ret;
3922
3923
0
  ret = ((xmlXPathVariableLookupFunc)ctxt->varLookupFunc)
3924
0
          (ctxt->varLookupData, name, ns_uri);
3925
0
  if (ret != NULL) return(ret);
3926
0
    }
3927
3928
0
    if (ctxt->varHash == NULL)
3929
0
  return(NULL);
3930
0
    if (name == NULL)
3931
0
  return(NULL);
3932
3933
0
    return(xmlXPathObjectCopy(xmlHashLookup2(ctxt->varHash, name, ns_uri)));
3934
0
}
3935
3936
/**
3937
 * Cleanup the XPath context data associated to registered variables
3938
 *
3939
 * @param ctxt  the XPath context
3940
 */
3941
void
3942
0
xmlXPathRegisteredVariablesCleanup(xmlXPathContext *ctxt) {
3943
0
    if (ctxt == NULL)
3944
0
  return;
3945
3946
0
    xmlHashFree(ctxt->varHash, xmlXPathFreeObjectEntry);
3947
0
    ctxt->varHash = NULL;
3948
0
}
3949
3950
/**
3951
 * Register a new namespace. If `ns_uri` is NULL it unregisters
3952
 * the namespace
3953
 *
3954
 * @param ctxt  the XPath context
3955
 * @param prefix  the namespace prefix cannot be NULL or empty string
3956
 * @param ns_uri  the namespace name
3957
 * @returns 0 in case of success, -1 in case of error
3958
 */
3959
int
3960
xmlXPathRegisterNs(xmlXPathContext *ctxt, const xmlChar *prefix,
3961
0
         const xmlChar *ns_uri) {
3962
0
    xmlChar *copy;
3963
3964
0
    if (ctxt == NULL)
3965
0
  return(-1);
3966
0
    if (prefix == NULL)
3967
0
  return(-1);
3968
0
    if (prefix[0] == 0)
3969
0
  return(-1);
3970
3971
0
    if (ctxt->nsHash == NULL)
3972
0
  ctxt->nsHash = xmlHashCreate(10);
3973
0
    if (ctxt->nsHash == NULL) {
3974
0
        xmlXPathErrMemory(ctxt);
3975
0
  return(-1);
3976
0
    }
3977
0
    if (ns_uri == NULL)
3978
0
        return(xmlHashRemoveEntry(ctxt->nsHash, prefix,
3979
0
                            xmlHashDefaultDeallocator));
3980
3981
0
    copy = xmlStrdup(ns_uri);
3982
0
    if (copy == NULL) {
3983
0
        xmlXPathErrMemory(ctxt);
3984
0
        return(-1);
3985
0
    }
3986
0
    if (xmlHashUpdateEntry(ctxt->nsHash, prefix, copy,
3987
0
                           xmlHashDefaultDeallocator) < 0) {
3988
0
        xmlXPathErrMemory(ctxt);
3989
0
        xmlFree(copy);
3990
0
        return(-1);
3991
0
    }
3992
3993
0
    return(0);
3994
0
}
3995
3996
/**
3997
 * Search in the namespace declaration array of the context for the given
3998
 * namespace name associated to the given prefix
3999
 *
4000
 * @param ctxt  the XPath context
4001
 * @param prefix  the namespace prefix value
4002
 * @returns the value or NULL if not found
4003
 */
4004
const xmlChar *
4005
0
xmlXPathNsLookup(xmlXPathContext *ctxt, const xmlChar *prefix) {
4006
0
    if (ctxt == NULL)
4007
0
  return(NULL);
4008
0
    if (prefix == NULL)
4009
0
  return(NULL);
4010
4011
0
    if (xmlStrEqual(prefix, (const xmlChar *) "xml"))
4012
0
  return(XML_XML_NAMESPACE);
4013
4014
0
    if (ctxt->namespaces != NULL) {
4015
0
  int i;
4016
4017
0
  for (i = 0;i < ctxt->nsNr;i++) {
4018
0
      if ((ctxt->namespaces[i] != NULL) &&
4019
0
    (xmlStrEqual(ctxt->namespaces[i]->prefix, prefix)))
4020
0
    return(ctxt->namespaces[i]->href);
4021
0
  }
4022
0
    }
4023
4024
0
    return((const xmlChar *) xmlHashLookup(ctxt->nsHash, prefix));
4025
0
}
4026
4027
/**
4028
 * Cleanup the XPath context data associated to registered variables
4029
 *
4030
 * @param ctxt  the XPath context
4031
 */
4032
void
4033
0
xmlXPathRegisteredNsCleanup(xmlXPathContext *ctxt) {
4034
0
    if (ctxt == NULL)
4035
0
  return;
4036
4037
0
    xmlHashFree(ctxt->nsHash, xmlHashDefaultDeallocator);
4038
0
    ctxt->nsHash = NULL;
4039
0
}
4040
4041
/************************************************************************
4042
 *                  *
4043
 *      Routines to handle Values     *
4044
 *                  *
4045
 ************************************************************************/
4046
4047
/* Allocations are terrible, one needs to optimize all this !!! */
4048
4049
/**
4050
 * Create a new xmlXPathObject of type double and of value `val`
4051
 *
4052
 * @param val  the double value
4053
 * @returns the newly created object.
4054
 */
4055
xmlXPathObject *
4056
0
xmlXPathNewFloat(double val) {
4057
0
    xmlXPathObjectPtr ret;
4058
4059
0
    ret = (xmlXPathObjectPtr) xmlMalloc(sizeof(xmlXPathObject));
4060
0
    if (ret == NULL)
4061
0
  return(NULL);
4062
0
    memset(ret, 0 , sizeof(xmlXPathObject));
4063
0
    ret->type = XPATH_NUMBER;
4064
0
    ret->floatval = val;
4065
0
    return(ret);
4066
0
}
4067
4068
/**
4069
 * Create a new xmlXPathObject of type boolean and of value `val`
4070
 *
4071
 * @param val  the boolean value
4072
 * @returns the newly created object.
4073
 */
4074
xmlXPathObject *
4075
0
xmlXPathNewBoolean(int val) {
4076
0
    xmlXPathObjectPtr ret;
4077
4078
0
    ret = (xmlXPathObjectPtr) xmlMalloc(sizeof(xmlXPathObject));
4079
0
    if (ret == NULL)
4080
0
  return(NULL);
4081
0
    memset(ret, 0 , sizeof(xmlXPathObject));
4082
0
    ret->type = XPATH_BOOLEAN;
4083
0
    ret->boolval = (val != 0);
4084
0
    return(ret);
4085
0
}
4086
4087
/**
4088
 * Create a new xmlXPathObject of type string and of value `val`
4089
 *
4090
 * @param val  the xmlChar * value
4091
 * @returns the newly created object.
4092
 */
4093
xmlXPathObject *
4094
0
xmlXPathNewString(const xmlChar *val) {
4095
0
    xmlXPathObjectPtr ret;
4096
4097
0
    ret = (xmlXPathObjectPtr) xmlMalloc(sizeof(xmlXPathObject));
4098
0
    if (ret == NULL)
4099
0
  return(NULL);
4100
0
    memset(ret, 0 , sizeof(xmlXPathObject));
4101
0
    ret->type = XPATH_STRING;
4102
0
    if (val == NULL)
4103
0
        val = BAD_CAST "";
4104
0
    ret->stringval = xmlStrdup(val);
4105
0
    if (ret->stringval == NULL) {
4106
0
        xmlFree(ret);
4107
0
        return(NULL);
4108
0
    }
4109
0
    return(ret);
4110
0
}
4111
4112
/**
4113
 * Wraps the `val` string into an XPath object.
4114
 *
4115
 * Frees `val` in case of error.
4116
 *
4117
 * @param val  the xmlChar * value
4118
 * @returns the newly created object.
4119
 */
4120
xmlXPathObject *
4121
0
xmlXPathWrapString (xmlChar *val) {
4122
0
    xmlXPathObjectPtr ret;
4123
4124
0
    ret = (xmlXPathObjectPtr) xmlMalloc(sizeof(xmlXPathObject));
4125
0
    if (ret == NULL) {
4126
0
        xmlFree(val);
4127
0
  return(NULL);
4128
0
    }
4129
0
    memset(ret, 0 , sizeof(xmlXPathObject));
4130
0
    ret->type = XPATH_STRING;
4131
0
    ret->stringval = val;
4132
0
    return(ret);
4133
0
}
4134
4135
/**
4136
 * Create a new xmlXPathObject of type string and of value `val`
4137
 *
4138
 * @param val  the char * value
4139
 * @returns the newly created object.
4140
 */
4141
xmlXPathObject *
4142
0
xmlXPathNewCString(const char *val) {
4143
0
    return(xmlXPathNewString(BAD_CAST val));
4144
0
}
4145
4146
/**
4147
 * Wraps a string into an XPath object.
4148
 *
4149
 * @param val  the char * value
4150
 * @returns the newly created object.
4151
 */
4152
xmlXPathObject *
4153
0
xmlXPathWrapCString (char * val) {
4154
0
    return(xmlXPathWrapString((xmlChar *)(val)));
4155
0
}
4156
4157
/**
4158
 * Wraps the `val` data into an XPath object.
4159
 *
4160
 * @param val  the user data
4161
 * @returns the newly created object.
4162
 */
4163
xmlXPathObject *
4164
0
xmlXPathWrapExternal (void *val) {
4165
0
    xmlXPathObjectPtr ret;
4166
4167
0
    ret = (xmlXPathObjectPtr) xmlMalloc(sizeof(xmlXPathObject));
4168
0
    if (ret == NULL)
4169
0
  return(NULL);
4170
0
    memset(ret, 0 , sizeof(xmlXPathObject));
4171
0
    ret->type = XPATH_USERS;
4172
0
    ret->user = val;
4173
0
    return(ret);
4174
0
}
4175
4176
/**
4177
 * allocate a new copy of a given object
4178
 *
4179
 * @param val  the original object
4180
 * @returns the newly created object.
4181
 */
4182
xmlXPathObject *
4183
0
xmlXPathObjectCopy(xmlXPathObject *val) {
4184
0
    xmlXPathObjectPtr ret;
4185
4186
0
    if (val == NULL)
4187
0
  return(NULL);
4188
4189
0
    ret = (xmlXPathObjectPtr) xmlMalloc(sizeof(xmlXPathObject));
4190
0
    if (ret == NULL)
4191
0
  return(NULL);
4192
0
    memcpy(ret, val , sizeof(xmlXPathObject));
4193
0
    switch (val->type) {
4194
0
  case XPATH_BOOLEAN:
4195
0
  case XPATH_NUMBER:
4196
0
      break;
4197
0
  case XPATH_STRING:
4198
0
      ret->stringval = xmlStrdup(val->stringval);
4199
0
            if (ret->stringval == NULL) {
4200
0
                xmlFree(ret);
4201
0
                return(NULL);
4202
0
            }
4203
0
      break;
4204
0
  case XPATH_XSLT_TREE:
4205
0
  case XPATH_NODESET:
4206
0
      ret->nodesetval = xmlXPathNodeSetMerge(NULL, val->nodesetval);
4207
0
            if (ret->nodesetval == NULL) {
4208
0
                xmlFree(ret);
4209
0
                return(NULL);
4210
0
            }
4211
      /* Do not deallocate the copied tree value */
4212
0
      ret->boolval = 0;
4213
0
      break;
4214
0
        case XPATH_USERS:
4215
0
      ret->user = val->user;
4216
0
      break;
4217
0
        default:
4218
0
            xmlFree(ret);
4219
0
            ret = NULL;
4220
0
      break;
4221
0
    }
4222
0
    return(ret);
4223
0
}
4224
4225
/**
4226
 * Free up an xmlXPathObject object.
4227
 *
4228
 * @param obj  the object to free
4229
 */
4230
void
4231
0
xmlXPathFreeObject(xmlXPathObject *obj) {
4232
0
    if (obj == NULL) return;
4233
0
    if ((obj->type == XPATH_NODESET) || (obj->type == XPATH_XSLT_TREE)) {
4234
0
        if (obj->nodesetval != NULL)
4235
0
            xmlXPathFreeNodeSet(obj->nodesetval);
4236
0
    } else if (obj->type == XPATH_STRING) {
4237
0
  if (obj->stringval != NULL)
4238
0
      xmlFree(obj->stringval);
4239
0
    }
4240
0
    xmlFree(obj);
4241
0
}
4242
4243
static void
4244
0
xmlXPathFreeObjectEntry(void *obj, const xmlChar *name ATTRIBUTE_UNUSED) {
4245
0
    xmlXPathFreeObject((xmlXPathObjectPtr) obj);
4246
0
}
4247
4248
/**
4249
 * Depending on the state of the cache this frees the given
4250
 * XPath object or stores it in the cache.
4251
 *
4252
 * @param ctxt  XPath context
4253
 * @param obj  the xmlXPathObject to free or to cache
4254
 */
4255
static void
4256
xmlXPathReleaseObject(xmlXPathContextPtr ctxt, xmlXPathObjectPtr obj)
4257
0
{
4258
0
    if (obj == NULL)
4259
0
  return;
4260
0
    if ((ctxt == NULL) || (ctxt->cache == NULL)) {
4261
0
   xmlXPathFreeObject(obj);
4262
0
    } else {
4263
0
  xmlXPathContextCachePtr cache =
4264
0
      (xmlXPathContextCachePtr) ctxt->cache;
4265
4266
0
  switch (obj->type) {
4267
0
      case XPATH_NODESET:
4268
0
      case XPATH_XSLT_TREE:
4269
0
    if (obj->nodesetval != NULL) {
4270
0
        if ((obj->nodesetval->nodeMax <= 40) &&
4271
0
      (cache->numNodeset < cache->maxNodeset)) {
4272
0
                        obj->stringval = (void *) cache->nodesetObjs;
4273
0
                        cache->nodesetObjs = obj;
4274
0
                        cache->numNodeset += 1;
4275
0
      goto obj_cached;
4276
0
        } else {
4277
0
      xmlXPathFreeNodeSet(obj->nodesetval);
4278
0
      obj->nodesetval = NULL;
4279
0
        }
4280
0
    }
4281
0
    break;
4282
0
      case XPATH_STRING:
4283
0
    if (obj->stringval != NULL)
4284
0
        xmlFree(obj->stringval);
4285
0
                obj->stringval = NULL;
4286
0
    break;
4287
0
      case XPATH_BOOLEAN:
4288
0
      case XPATH_NUMBER:
4289
0
    break;
4290
0
      default:
4291
0
    goto free_obj;
4292
0
  }
4293
4294
  /*
4295
  * Fallback to adding to the misc-objects slot.
4296
  */
4297
0
        if (cache->numMisc >= cache->maxMisc)
4298
0
      goto free_obj;
4299
0
        obj->stringval = (void *) cache->miscObjs;
4300
0
        cache->miscObjs = obj;
4301
0
        cache->numMisc += 1;
4302
4303
0
obj_cached:
4304
0
        obj->boolval = 0;
4305
0
  if (obj->nodesetval != NULL) {
4306
0
      xmlNodeSetPtr tmpset = obj->nodesetval;
4307
4308
      /*
4309
      * Due to those nasty ns-nodes, we need to traverse
4310
      * the list and free the ns-nodes.
4311
      */
4312
0
      if (tmpset->nodeNr > 0) {
4313
0
    int i;
4314
0
    xmlNodePtr node;
4315
4316
0
    for (i = 0; i < tmpset->nodeNr; i++) {
4317
0
        node = tmpset->nodeTab[i];
4318
0
        if ((node != NULL) &&
4319
0
      (node->type == XML_NAMESPACE_DECL))
4320
0
        {
4321
0
      xmlXPathNodeSetFreeNs((xmlNsPtr) node);
4322
0
        }
4323
0
    }
4324
0
      }
4325
0
      tmpset->nodeNr = 0;
4326
0
        }
4327
4328
0
  return;
4329
4330
0
free_obj:
4331
  /*
4332
  * Cache is full; free the object.
4333
  */
4334
0
  if (obj->nodesetval != NULL)
4335
0
      xmlXPathFreeNodeSet(obj->nodesetval);
4336
0
  xmlFree(obj);
4337
0
    }
4338
0
}
4339
4340
4341
/************************************************************************
4342
 *                  *
4343
 *      Type Casting Routines       *
4344
 *                  *
4345
 ************************************************************************/
4346
4347
/**
4348
 * Converts a boolean to its string value.
4349
 *
4350
 * @param val  a boolean
4351
 * @returns a newly allocated string.
4352
 */
4353
xmlChar *
4354
0
xmlXPathCastBooleanToString (int val) {
4355
0
    xmlChar *ret;
4356
0
    if (val)
4357
0
  ret = xmlStrdup((const xmlChar *) "true");
4358
0
    else
4359
0
  ret = xmlStrdup((const xmlChar *) "false");
4360
0
    return(ret);
4361
0
}
4362
4363
/**
4364
 * Converts a number to its string value.
4365
 *
4366
 * @param val  a number
4367
 * @returns a newly allocated string.
4368
 */
4369
xmlChar *
4370
0
xmlXPathCastNumberToString (double val) {
4371
0
    xmlChar *ret;
4372
0
    switch (xmlXPathIsInf(val)) {
4373
0
    case 1:
4374
0
  ret = xmlStrdup((const xmlChar *) "Infinity");
4375
0
  break;
4376
0
    case -1:
4377
0
  ret = xmlStrdup((const xmlChar *) "-Infinity");
4378
0
  break;
4379
0
    default:
4380
0
  if (xmlXPathIsNaN(val)) {
4381
0
      ret = xmlStrdup((const xmlChar *) "NaN");
4382
0
  } else if (val == 0) {
4383
            /* Omit sign for negative zero. */
4384
0
      ret = xmlStrdup((const xmlChar *) "0");
4385
0
  } else {
4386
      /* could be improved */
4387
0
      char buf[100];
4388
0
      xmlXPathFormatNumber(val, buf, 99);
4389
0
      buf[99] = 0;
4390
0
      ret = xmlStrdup((const xmlChar *) buf);
4391
0
  }
4392
0
    }
4393
0
    return(ret);
4394
0
}
4395
4396
/**
4397
 * Converts a node to its string value.
4398
 *
4399
 * @param node  a node
4400
 * @returns a newly allocated string.
4401
 */
4402
xmlChar *
4403
0
xmlXPathCastNodeToString (xmlNode *node) {
4404
0
    return(xmlNodeGetContent(node));
4405
0
}
4406
4407
/**
4408
 * Converts a node-set to its string value.
4409
 *
4410
 * @param ns  a node-set
4411
 * @returns a newly allocated string.
4412
 */
4413
xmlChar *
4414
0
xmlXPathCastNodeSetToString (xmlNodeSet *ns) {
4415
0
    if ((ns == NULL) || (ns->nodeNr == 0) || (ns->nodeTab == NULL))
4416
0
  return(xmlStrdup((const xmlChar *) ""));
4417
4418
0
    if (ns->nodeNr > 1)
4419
0
  xmlXPathNodeSetSort(ns);
4420
0
    return(xmlXPathCastNodeToString(ns->nodeTab[0]));
4421
0
}
4422
4423
/**
4424
 * Converts an existing object to its string() equivalent
4425
 *
4426
 * @param val  an XPath object
4427
 * @returns the allocated string value of the object, NULL in case of error.
4428
 *         It's up to the caller to free the string memory with #xmlFree.
4429
 */
4430
xmlChar *
4431
0
xmlXPathCastToString(xmlXPathObject *val) {
4432
0
    xmlChar *ret = NULL;
4433
4434
0
    if (val == NULL)
4435
0
  return(xmlStrdup((const xmlChar *) ""));
4436
0
    switch (val->type) {
4437
0
  case XPATH_UNDEFINED:
4438
0
      ret = xmlStrdup((const xmlChar *) "");
4439
0
      break;
4440
0
        case XPATH_NODESET:
4441
0
        case XPATH_XSLT_TREE:
4442
0
      ret = xmlXPathCastNodeSetToString(val->nodesetval);
4443
0
      break;
4444
0
  case XPATH_STRING:
4445
0
      return(xmlStrdup(val->stringval));
4446
0
        case XPATH_BOOLEAN:
4447
0
      ret = xmlXPathCastBooleanToString(val->boolval);
4448
0
      break;
4449
0
  case XPATH_NUMBER: {
4450
0
      ret = xmlXPathCastNumberToString(val->floatval);
4451
0
      break;
4452
0
  }
4453
0
  case XPATH_USERS:
4454
      /* TODO */
4455
0
      ret = xmlStrdup((const xmlChar *) "");
4456
0
      break;
4457
0
    }
4458
0
    return(ret);
4459
0
}
4460
4461
/**
4462
 * Converts an existing object to its string() equivalent
4463
 *
4464
 * @param val  an XPath object
4465
 * @returns the new object, the old one is freed (or the operation
4466
 *         is done directly on `val`)
4467
 */
4468
xmlXPathObject *
4469
0
xmlXPathConvertString(xmlXPathObject *val) {
4470
0
    xmlChar *res = NULL;
4471
4472
0
    if (val == NULL)
4473
0
  return(xmlXPathNewCString(""));
4474
4475
0
    switch (val->type) {
4476
0
    case XPATH_UNDEFINED:
4477
0
  break;
4478
0
    case XPATH_NODESET:
4479
0
    case XPATH_XSLT_TREE:
4480
0
  res = xmlXPathCastNodeSetToString(val->nodesetval);
4481
0
  break;
4482
0
    case XPATH_STRING:
4483
0
  return(val);
4484
0
    case XPATH_BOOLEAN:
4485
0
  res = xmlXPathCastBooleanToString(val->boolval);
4486
0
  break;
4487
0
    case XPATH_NUMBER:
4488
0
  res = xmlXPathCastNumberToString(val->floatval);
4489
0
  break;
4490
0
    case XPATH_USERS:
4491
  /* TODO */
4492
0
  break;
4493
0
    }
4494
0
    xmlXPathFreeObject(val);
4495
0
    if (res == NULL)
4496
0
  return(xmlXPathNewCString(""));
4497
0
    return(xmlXPathWrapString(res));
4498
0
}
4499
4500
/**
4501
 * Converts a boolean to its number value
4502
 *
4503
 * @param val  a boolean
4504
 * @returns the number value
4505
 */
4506
double
4507
0
xmlXPathCastBooleanToNumber(int val) {
4508
0
    if (val)
4509
0
  return(1.0);
4510
0
    return(0.0);
4511
0
}
4512
4513
/**
4514
 * Converts a string to its number value
4515
 *
4516
 * @param val  a string
4517
 * @returns the number value
4518
 */
4519
double
4520
0
xmlXPathCastStringToNumber(const xmlChar * val) {
4521
0
    return(xmlXPathStringEvalNumber(val));
4522
0
}
4523
4524
/**
4525
 * Converts a node to its number value
4526
 *
4527
 * @param ctxt  XPath parser context
4528
 * @param node  a node
4529
 * @returns the number value
4530
 */
4531
static double
4532
0
xmlXPathNodeToNumberInternal(xmlXPathParserContextPtr ctxt, xmlNodePtr node) {
4533
0
    xmlChar *strval;
4534
0
    double ret;
4535
4536
0
    if (node == NULL)
4537
0
  return(xmlXPathNAN);
4538
0
    strval = xmlXPathCastNodeToString(node);
4539
0
    if (strval == NULL) {
4540
0
        xmlXPathPErrMemory(ctxt);
4541
0
  return(xmlXPathNAN);
4542
0
    }
4543
0
    ret = xmlXPathCastStringToNumber(strval);
4544
0
    xmlFree(strval);
4545
4546
0
    return(ret);
4547
0
}
4548
4549
/**
4550
 * Converts a node to its number value
4551
 *
4552
 * @param node  a node
4553
 * @returns the number value
4554
 */
4555
double
4556
0
xmlXPathCastNodeToNumber (xmlNode *node) {
4557
0
    return(xmlXPathNodeToNumberInternal(NULL, node));
4558
0
}
4559
4560
/**
4561
 * Converts a node-set to its number value
4562
 *
4563
 * @param ns  a node-set
4564
 * @returns the number value
4565
 */
4566
double
4567
0
xmlXPathCastNodeSetToNumber (xmlNodeSet *ns) {
4568
0
    xmlChar *str;
4569
0
    double ret;
4570
4571
0
    if (ns == NULL)
4572
0
  return(xmlXPathNAN);
4573
0
    str = xmlXPathCastNodeSetToString(ns);
4574
0
    ret = xmlXPathCastStringToNumber(str);
4575
0
    xmlFree(str);
4576
0
    return(ret);
4577
0
}
4578
4579
/**
4580
 * Converts an XPath object to its number value
4581
 *
4582
 * @param val  an XPath object
4583
 * @returns the number value
4584
 */
4585
double
4586
0
xmlXPathCastToNumber(xmlXPathObject *val) {
4587
0
    return(xmlXPathCastToNumberInternal(NULL, val));
4588
0
}
4589
4590
/**
4591
 * Converts an existing object to its number() equivalent
4592
 *
4593
 * @param val  an XPath object
4594
 * @returns the new object, the old one is freed (or the operation
4595
 *         is done directly on `val`)
4596
 */
4597
xmlXPathObject *
4598
0
xmlXPathConvertNumber(xmlXPathObject *val) {
4599
0
    xmlXPathObjectPtr ret;
4600
4601
0
    if (val == NULL)
4602
0
  return(xmlXPathNewFloat(0.0));
4603
0
    if (val->type == XPATH_NUMBER)
4604
0
  return(val);
4605
0
    ret = xmlXPathNewFloat(xmlXPathCastToNumber(val));
4606
0
    xmlXPathFreeObject(val);
4607
0
    return(ret);
4608
0
}
4609
4610
/**
4611
 * Converts a number to its boolean value
4612
 *
4613
 * @param val  a number
4614
 * @returns the boolean value
4615
 */
4616
int
4617
0
xmlXPathCastNumberToBoolean (double val) {
4618
0
     if (xmlXPathIsNaN(val) || (val == 0.0))
4619
0
   return(0);
4620
0
     return(1);
4621
0
}
4622
4623
/**
4624
 * Converts a string to its boolean value
4625
 *
4626
 * @param val  a string
4627
 * @returns the boolean value
4628
 */
4629
int
4630
0
xmlXPathCastStringToBoolean (const xmlChar *val) {
4631
0
    if ((val == NULL) || (xmlStrlen(val) == 0))
4632
0
  return(0);
4633
0
    return(1);
4634
0
}
4635
4636
/**
4637
 * Converts a node-set to its boolean value
4638
 *
4639
 * @param ns  a node-set
4640
 * @returns the boolean value
4641
 */
4642
int
4643
0
xmlXPathCastNodeSetToBoolean (xmlNodeSet *ns) {
4644
0
    if ((ns == NULL) || (ns->nodeNr == 0))
4645
0
  return(0);
4646
0
    return(1);
4647
0
}
4648
4649
/**
4650
 * Converts an XPath object to its boolean value
4651
 *
4652
 * @param val  an XPath object
4653
 * @returns the boolean value
4654
 */
4655
int
4656
0
xmlXPathCastToBoolean (xmlXPathObject *val) {
4657
0
    int ret = 0;
4658
4659
0
    if (val == NULL)
4660
0
  return(0);
4661
0
    switch (val->type) {
4662
0
    case XPATH_UNDEFINED:
4663
0
  ret = 0;
4664
0
  break;
4665
0
    case XPATH_NODESET:
4666
0
    case XPATH_XSLT_TREE:
4667
0
  ret = xmlXPathCastNodeSetToBoolean(val->nodesetval);
4668
0
  break;
4669
0
    case XPATH_STRING:
4670
0
  ret = xmlXPathCastStringToBoolean(val->stringval);
4671
0
  break;
4672
0
    case XPATH_NUMBER:
4673
0
  ret = xmlXPathCastNumberToBoolean(val->floatval);
4674
0
  break;
4675
0
    case XPATH_BOOLEAN:
4676
0
  ret = val->boolval;
4677
0
  break;
4678
0
    case XPATH_USERS:
4679
  /* TODO */
4680
0
  ret = 0;
4681
0
  break;
4682
0
    }
4683
0
    return(ret);
4684
0
}
4685
4686
4687
/**
4688
 * Converts an existing object to its boolean() equivalent
4689
 *
4690
 * @param val  an XPath object
4691
 * @returns the new object, the old one is freed (or the operation
4692
 *         is done directly on `val`)
4693
 */
4694
xmlXPathObject *
4695
0
xmlXPathConvertBoolean(xmlXPathObject *val) {
4696
0
    xmlXPathObjectPtr ret;
4697
4698
0
    if (val == NULL)
4699
0
  return(xmlXPathNewBoolean(0));
4700
0
    if (val->type == XPATH_BOOLEAN)
4701
0
  return(val);
4702
0
    ret = xmlXPathNewBoolean(xmlXPathCastToBoolean(val));
4703
0
    xmlXPathFreeObject(val);
4704
0
    return(ret);
4705
0
}
4706
4707
/************************************************************************
4708
 *                  *
4709
 *    Routines to handle XPath contexts     *
4710
 *                  *
4711
 ************************************************************************/
4712
4713
/**
4714
 * Create a new xmlXPathContext
4715
 *
4716
 * @param doc  the XML document
4717
 * @returns the xmlXPathContext just allocated. The caller will need to free it.
4718
 */
4719
xmlXPathContext *
4720
0
xmlXPathNewContext(xmlDoc *doc) {
4721
0
    xmlXPathContextPtr ret;
4722
4723
0
    ret = (xmlXPathContextPtr) xmlMalloc(sizeof(xmlXPathContext));
4724
0
    if (ret == NULL)
4725
0
  return(NULL);
4726
0
    memset(ret, 0 , sizeof(xmlXPathContext));
4727
0
    ret->doc = doc;
4728
0
    ret->node = NULL;
4729
4730
0
    ret->varHash = NULL;
4731
4732
0
    ret->nb_types = 0;
4733
0
    ret->max_types = 0;
4734
0
    ret->types = NULL;
4735
4736
0
    ret->nb_axis = 0;
4737
0
    ret->max_axis = 0;
4738
0
    ret->axis = NULL;
4739
4740
0
    ret->nsHash = NULL;
4741
0
    ret->user = NULL;
4742
4743
0
    ret->contextSize = -1;
4744
0
    ret->proximityPosition = -1;
4745
4746
#ifdef XP_DEFAULT_CACHE_ON
4747
    if (xmlXPathContextSetCache(ret, 1, -1, 0) == -1) {
4748
  xmlXPathFreeContext(ret);
4749
  return(NULL);
4750
    }
4751
#endif
4752
4753
0
    return(ret);
4754
0
}
4755
4756
/**
4757
 * Free up an xmlXPathContext
4758
 *
4759
 * @param ctxt  the context to free
4760
 */
4761
void
4762
0
xmlXPathFreeContext(xmlXPathContext *ctxt) {
4763
0
    if (ctxt == NULL) return;
4764
4765
0
    if (ctxt->cache != NULL)
4766
0
  xmlXPathFreeCache((xmlXPathContextCachePtr) ctxt->cache);
4767
0
    xmlXPathRegisteredNsCleanup(ctxt);
4768
0
    xmlXPathRegisteredFuncsCleanup(ctxt);
4769
0
    xmlXPathRegisteredVariablesCleanup(ctxt);
4770
0
    xmlResetError(&ctxt->lastError);
4771
0
    xmlFree(ctxt);
4772
0
}
4773
4774
/**
4775
 * Register a callback function that will be called on errors and
4776
 * warnings. If handler is NULL, the error handler will be deactivated.
4777
 *
4778
 * @since 2.13.0
4779
 * @param ctxt  the XPath context
4780
 * @param handler  error handler
4781
 * @param data  user data which will be passed to the handler
4782
 */
4783
void
4784
xmlXPathSetErrorHandler(xmlXPathContext *ctxt,
4785
0
                        xmlStructuredErrorFunc handler, void *data) {
4786
0
    if (ctxt == NULL)
4787
0
        return;
4788
4789
0
    ctxt->error = handler;
4790
0
    ctxt->userData = data;
4791
0
}
4792
4793
/************************************************************************
4794
 *                  *
4795
 *    Routines to handle XPath parser contexts    *
4796
 *                  *
4797
 ************************************************************************/
4798
4799
/**
4800
 * Create a new xmlXPathParserContext
4801
 *
4802
 * @param str  the XPath expression
4803
 * @param ctxt  the XPath context
4804
 * @returns the xmlXPathParserContext just allocated.
4805
 */
4806
xmlXPathParserContext *
4807
0
xmlXPathNewParserContext(const xmlChar *str, xmlXPathContext *ctxt) {
4808
0
    xmlXPathParserContextPtr ret;
4809
4810
0
    ret = (xmlXPathParserContextPtr) xmlMalloc(sizeof(xmlXPathParserContext));
4811
0
    if (ret == NULL) {
4812
0
        xmlXPathErrMemory(ctxt);
4813
0
  return(NULL);
4814
0
    }
4815
0
    memset(ret, 0 , sizeof(xmlXPathParserContext));
4816
0
    ret->cur = ret->base = str;
4817
0
    ret->context = ctxt;
4818
4819
0
    ret->comp = xmlXPathNewCompExpr();
4820
0
    if (ret->comp == NULL) {
4821
0
        xmlXPathErrMemory(ctxt);
4822
0
  xmlFree(ret->valueTab);
4823
0
  xmlFree(ret);
4824
0
  return(NULL);
4825
0
    }
4826
0
    if ((ctxt != NULL) && (ctxt->dict != NULL)) {
4827
0
        ret->comp->dict = ctxt->dict;
4828
0
  xmlDictReference(ret->comp->dict);
4829
0
    }
4830
4831
0
    return(ret);
4832
0
}
4833
4834
/**
4835
 * Create a new xmlXPathParserContext when processing a compiled expression
4836
 *
4837
 * @param comp  the XPath compiled expression
4838
 * @param ctxt  the XPath context
4839
 * @returns the xmlXPathParserContext just allocated.
4840
 */
4841
static xmlXPathParserContextPtr
4842
0
xmlXPathCompParserContext(xmlXPathCompExprPtr comp, xmlXPathContextPtr ctxt) {
4843
0
    xmlXPathParserContextPtr ret;
4844
4845
0
    ret = (xmlXPathParserContextPtr) xmlMalloc(sizeof(xmlXPathParserContext));
4846
0
    if (ret == NULL) {
4847
0
        xmlXPathErrMemory(ctxt);
4848
0
  return(NULL);
4849
0
    }
4850
0
    memset(ret, 0 , sizeof(xmlXPathParserContext));
4851
4852
    /* Allocate the value stack */
4853
0
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
4854
0
    ret->valueMax = 1;
4855
#else
4856
    ret->valueMax = 10;
4857
#endif
4858
0
    ret->valueTab = xmlMalloc(ret->valueMax * sizeof(xmlXPathObjectPtr));
4859
0
    if (ret->valueTab == NULL) {
4860
0
  xmlFree(ret);
4861
0
  xmlXPathErrMemory(ctxt);
4862
0
  return(NULL);
4863
0
    }
4864
0
    ret->valueNr = 0;
4865
0
    ret->value = NULL;
4866
4867
0
    ret->context = ctxt;
4868
0
    ret->comp = comp;
4869
4870
0
    return(ret);
4871
0
}
4872
4873
/**
4874
 * Free up an xmlXPathParserContext
4875
 *
4876
 * @param ctxt  the context to free
4877
 */
4878
void
4879
0
xmlXPathFreeParserContext(xmlXPathParserContext *ctxt) {
4880
0
    int i;
4881
4882
0
    if (ctxt == NULL)
4883
0
        return;
4884
4885
0
    if (ctxt->valueTab != NULL) {
4886
0
        for (i = 0; i < ctxt->valueNr; i++) {
4887
0
            if (ctxt->context)
4888
0
                xmlXPathReleaseObject(ctxt->context, ctxt->valueTab[i]);
4889
0
            else
4890
0
                xmlXPathFreeObject(ctxt->valueTab[i]);
4891
0
        }
4892
0
        xmlFree(ctxt->valueTab);
4893
0
    }
4894
0
    if (ctxt->comp != NULL) {
4895
#ifdef XPATH_STREAMING
4896
  if (ctxt->comp->stream != NULL) {
4897
      xmlFreePatternList(ctxt->comp->stream);
4898
      ctxt->comp->stream = NULL;
4899
  }
4900
#endif
4901
0
  xmlXPathFreeCompExpr(ctxt->comp);
4902
0
    }
4903
0
    xmlFree(ctxt);
4904
0
}
4905
4906
/************************************************************************
4907
 *                  *
4908
 *    The implicit core function library      *
4909
 *                  *
4910
 ************************************************************************/
4911
4912
/**
4913
 * Function computing the beginning of the string value of the node,
4914
 * used to speed up comparisons
4915
 *
4916
 * @param node  a node pointer
4917
 * @returns an int usable as a hash
4918
 */
4919
static unsigned int
4920
0
xmlXPathNodeValHash(xmlNodePtr node) {
4921
0
    int len = 2;
4922
0
    const xmlChar * string = NULL;
4923
0
    xmlNodePtr tmp = NULL;
4924
0
    unsigned int ret = 0;
4925
4926
0
    if (node == NULL)
4927
0
  return(0);
4928
4929
0
    if (node->type == XML_DOCUMENT_NODE) {
4930
0
  tmp = xmlDocGetRootElement((xmlDocPtr) node);
4931
0
  if (tmp == NULL)
4932
0
      node = node->children;
4933
0
  else
4934
0
      node = tmp;
4935
4936
0
  if (node == NULL)
4937
0
      return(0);
4938
0
    }
4939
4940
0
    switch (node->type) {
4941
0
  case XML_COMMENT_NODE:
4942
0
  case XML_PI_NODE:
4943
0
  case XML_CDATA_SECTION_NODE:
4944
0
  case XML_TEXT_NODE:
4945
0
      string = node->content;
4946
0
      if (string == NULL)
4947
0
    return(0);
4948
0
      if (string[0] == 0)
4949
0
    return(0);
4950
0
      return(string[0] + (string[1] << 8));
4951
0
  case XML_NAMESPACE_DECL:
4952
0
      string = ((xmlNsPtr)node)->href;
4953
0
      if (string == NULL)
4954
0
    return(0);
4955
0
      if (string[0] == 0)
4956
0
    return(0);
4957
0
      return(string[0] + (string[1] << 8));
4958
0
  case XML_ATTRIBUTE_NODE:
4959
0
      tmp = ((xmlAttrPtr) node)->children;
4960
0
      break;
4961
0
  case XML_ELEMENT_NODE:
4962
0
      tmp = node->children;
4963
0
      break;
4964
0
  default:
4965
0
      return(0);
4966
0
    }
4967
0
    while (tmp != NULL) {
4968
0
  switch (tmp->type) {
4969
0
      case XML_CDATA_SECTION_NODE:
4970
0
      case XML_TEXT_NODE:
4971
0
    string = tmp->content;
4972
0
    break;
4973
0
      default:
4974
0
                string = NULL;
4975
0
    break;
4976
0
  }
4977
0
  if ((string != NULL) && (string[0] != 0)) {
4978
0
      if (len == 1) {
4979
0
    return(ret + (string[0] << 8));
4980
0
      }
4981
0
      if (string[1] == 0) {
4982
0
    len = 1;
4983
0
    ret = string[0];
4984
0
      } else {
4985
0
    return(string[0] + (string[1] << 8));
4986
0
      }
4987
0
  }
4988
  /*
4989
   * Skip to next node
4990
   */
4991
0
        if ((tmp->children != NULL) &&
4992
0
            (tmp->type != XML_DTD_NODE) &&
4993
0
            (tmp->type != XML_ENTITY_REF_NODE) &&
4994
0
            (tmp->children->type != XML_ENTITY_DECL)) {
4995
0
            tmp = tmp->children;
4996
0
            continue;
4997
0
  }
4998
0
  if (tmp == node)
4999
0
      break;
5000
5001
0
  if (tmp->next != NULL) {
5002
0
      tmp = tmp->next;
5003
0
      continue;
5004
0
  }
5005
5006
0
  do {
5007
0
      tmp = tmp->parent;
5008
0
      if (tmp == NULL)
5009
0
    break;
5010
0
      if (tmp == node) {
5011
0
    tmp = NULL;
5012
0
    break;
5013
0
      }
5014
0
      if (tmp->next != NULL) {
5015
0
    tmp = tmp->next;
5016
0
    break;
5017
0
      }
5018
0
  } while (tmp != NULL);
5019
0
    }
5020
0
    return(ret);
5021
0
}
5022
5023
/**
5024
 * Function computing the beginning of the string value of the node,
5025
 * used to speed up comparisons
5026
 *
5027
 * @param string  a string
5028
 * @returns an int usable as a hash
5029
 */
5030
static unsigned int
5031
0
xmlXPathStringHash(const xmlChar * string) {
5032
0
    if (string == NULL)
5033
0
  return(0);
5034
0
    if (string[0] == 0)
5035
0
  return(0);
5036
0
    return(string[0] + (string[1] << 8));
5037
0
}
5038
5039
/**
5040
 * Implement the compare operation between a nodeset and a number
5041
 *     `ns` < `val`    (1, 1, ...
5042
 *     `ns` <= `val`   (1, 0, ...
5043
 *     `ns` > `val`    (0, 1, ...
5044
 *     `ns` >= `val`   (0, 0, ...
5045
 *
5046
 * If one object to be compared is a node-set and the other is a number,
5047
 * then the comparison will be true if and only if there is a node in the
5048
 * node-set such that the result of performing the comparison on the number
5049
 * to be compared and on the result of converting the string-value of that
5050
 * node to a number using the number function is true.
5051
 *
5052
 * @param ctxt  the XPath Parser context
5053
 * @param inf  less than (1) or greater than (0)
5054
 * @param strict  is the comparison strict
5055
 * @param arg  the node set
5056
 * @param f  the value
5057
 * @returns 0 or 1 depending on the results of the test.
5058
 */
5059
static int
5060
xmlXPathCompareNodeSetFloat(xmlXPathParserContextPtr ctxt, int inf, int strict,
5061
0
                      xmlXPathObjectPtr arg, xmlXPathObjectPtr f) {
5062
0
    int i, ret = 0;
5063
0
    xmlNodeSetPtr ns;
5064
0
    xmlChar *str2;
5065
5066
0
    if ((f == NULL) || (arg == NULL) ||
5067
0
  ((arg->type != XPATH_NODESET) && (arg->type != XPATH_XSLT_TREE))) {
5068
0
  xmlXPathReleaseObject(ctxt->context, arg);
5069
0
  xmlXPathReleaseObject(ctxt->context, f);
5070
0
        return(0);
5071
0
    }
5072
0
    ns = arg->nodesetval;
5073
0
    if (ns != NULL) {
5074
0
  for (i = 0;i < ns->nodeNr;i++) {
5075
0
       str2 = xmlXPathCastNodeToString(ns->nodeTab[i]);
5076
0
       if (str2 != NULL) {
5077
0
     xmlXPathValuePush(ctxt, xmlXPathCacheNewString(ctxt, str2));
5078
0
     xmlFree(str2);
5079
0
     xmlXPathNumberFunction(ctxt, 1);
5080
0
     xmlXPathValuePush(ctxt, xmlXPathCacheObjectCopy(ctxt, f));
5081
0
     ret = xmlXPathCompareValues(ctxt, inf, strict);
5082
0
     if (ret)
5083
0
         break;
5084
0
       } else {
5085
0
                 xmlXPathPErrMemory(ctxt);
5086
0
             }
5087
0
  }
5088
0
    }
5089
0
    xmlXPathReleaseObject(ctxt->context, arg);
5090
0
    xmlXPathReleaseObject(ctxt->context, f);
5091
0
    return(ret);
5092
0
}
5093
5094
/**
5095
 * Implement the compare operation between a nodeset and a string
5096
 *     `ns` < `val`    (1, 1, ...
5097
 *     `ns` <= `val`   (1, 0, ...
5098
 *     `ns` > `val`    (0, 1, ...
5099
 *     `ns` >= `val`   (0, 0, ...
5100
 *
5101
 * If one object to be compared is a node-set and the other is a string,
5102
 * then the comparison will be true if and only if there is a node in
5103
 * the node-set such that the result of performing the comparison on the
5104
 * string-value of the node and the other string is true.
5105
 *
5106
 * @param ctxt  the XPath Parser context
5107
 * @param inf  less than (1) or greater than (0)
5108
 * @param strict  is the comparison strict
5109
 * @param arg  the node set
5110
 * @param s  the value
5111
 * @returns 0 or 1 depending on the results of the test.
5112
 */
5113
static int
5114
xmlXPathCompareNodeSetString(xmlXPathParserContextPtr ctxt, int inf, int strict,
5115
0
                      xmlXPathObjectPtr arg, xmlXPathObjectPtr s) {
5116
0
    int i, ret = 0;
5117
0
    xmlNodeSetPtr ns;
5118
0
    xmlChar *str2;
5119
5120
0
    if ((s == NULL) || (arg == NULL) ||
5121
0
  ((arg->type != XPATH_NODESET) && (arg->type != XPATH_XSLT_TREE))) {
5122
0
  xmlXPathReleaseObject(ctxt->context, arg);
5123
0
  xmlXPathReleaseObject(ctxt->context, s);
5124
0
        return(0);
5125
0
    }
5126
0
    ns = arg->nodesetval;
5127
0
    if (ns != NULL) {
5128
0
  for (i = 0;i < ns->nodeNr;i++) {
5129
0
       str2 = xmlXPathCastNodeToString(ns->nodeTab[i]);
5130
0
       if (str2 != NULL) {
5131
0
     xmlXPathValuePush(ctxt,
5132
0
         xmlXPathCacheNewString(ctxt, str2));
5133
0
     xmlFree(str2);
5134
0
     xmlXPathValuePush(ctxt, xmlXPathCacheObjectCopy(ctxt, s));
5135
0
     ret = xmlXPathCompareValues(ctxt, inf, strict);
5136
0
     if (ret)
5137
0
         break;
5138
0
       } else {
5139
0
                 xmlXPathPErrMemory(ctxt);
5140
0
             }
5141
0
  }
5142
0
    }
5143
0
    xmlXPathReleaseObject(ctxt->context, arg);
5144
0
    xmlXPathReleaseObject(ctxt->context, s);
5145
0
    return(ret);
5146
0
}
5147
5148
/**
5149
 * Implement the compare operation on nodesets:
5150
 *
5151
 * If both objects to be compared are node-sets, then the comparison
5152
 * will be true if and only if there is a node in the first node-set
5153
 * and a node in the second node-set such that the result of performing
5154
 * the comparison on the string-values of the two nodes is true.
5155
 * ....
5156
 * When neither object to be compared is a node-set and the operator
5157
 * is <=, <, >= or >, then the objects are compared by converting both
5158
 * objects to numbers and comparing the numbers according to IEEE 754.
5159
 * ....
5160
 * The number function converts its argument to a number as follows:
5161
 *  - a string that consists of optional whitespace followed by an
5162
 *    optional minus sign followed by a Number followed by whitespace
5163
 *    is converted to the IEEE 754 number that is nearest (according
5164
 *    to the IEEE 754 round-to-nearest rule) to the mathematical value
5165
 *    represented by the string; any other string is converted to NaN
5166
 *
5167
 * Conclusion all nodes need to be converted first to their string value
5168
 * and then the comparison must be done when possible
5169
 *
5170
 * @param ctxt  XPath parser context
5171
 * @param inf  less than (1) or greater than (0)
5172
 * @param strict  is the comparison strict
5173
 * @param arg1  the first node set object
5174
 * @param arg2  the second node set object
5175
 */
5176
static int
5177
xmlXPathCompareNodeSets(xmlXPathParserContextPtr ctxt, int inf, int strict,
5178
0
                  xmlXPathObjectPtr arg1, xmlXPathObjectPtr arg2) {
5179
0
    int i, j, init = 0;
5180
0
    double val1;
5181
0
    double *values2;
5182
0
    int ret = 0;
5183
0
    xmlNodeSetPtr ns1;
5184
0
    xmlNodeSetPtr ns2;
5185
5186
0
    if ((arg1 == NULL) ||
5187
0
  ((arg1->type != XPATH_NODESET) && (arg1->type != XPATH_XSLT_TREE))) {
5188
0
  xmlXPathFreeObject(arg2);
5189
0
        return(0);
5190
0
    }
5191
0
    if ((arg2 == NULL) ||
5192
0
  ((arg2->type != XPATH_NODESET) && (arg2->type != XPATH_XSLT_TREE))) {
5193
0
  xmlXPathFreeObject(arg1);
5194
0
  xmlXPathFreeObject(arg2);
5195
0
        return(0);
5196
0
    }
5197
5198
0
    ns1 = arg1->nodesetval;
5199
0
    ns2 = arg2->nodesetval;
5200
5201
0
    if ((ns1 == NULL) || (ns1->nodeNr <= 0)) {
5202
0
  xmlXPathFreeObject(arg1);
5203
0
  xmlXPathFreeObject(arg2);
5204
0
  return(0);
5205
0
    }
5206
0
    if ((ns2 == NULL) || (ns2->nodeNr <= 0)) {
5207
0
  xmlXPathFreeObject(arg1);
5208
0
  xmlXPathFreeObject(arg2);
5209
0
  return(0);
5210
0
    }
5211
5212
0
    values2 = (double *) xmlMalloc(ns2->nodeNr * sizeof(double));
5213
0
    if (values2 == NULL) {
5214
0
        xmlXPathPErrMemory(ctxt);
5215
0
  xmlXPathFreeObject(arg1);
5216
0
  xmlXPathFreeObject(arg2);
5217
0
  return(0);
5218
0
    }
5219
0
    for (i = 0;i < ns1->nodeNr;i++) {
5220
0
  val1 = xmlXPathNodeToNumberInternal(ctxt, ns1->nodeTab[i]);
5221
0
  if (xmlXPathIsNaN(val1))
5222
0
      continue;
5223
0
  for (j = 0;j < ns2->nodeNr;j++) {
5224
0
      if (init == 0) {
5225
0
    values2[j] = xmlXPathNodeToNumberInternal(ctxt,
5226
0
                                                          ns2->nodeTab[j]);
5227
0
      }
5228
0
      if (xmlXPathIsNaN(values2[j]))
5229
0
    continue;
5230
0
      if (inf && strict)
5231
0
    ret = (val1 < values2[j]);
5232
0
      else if (inf && !strict)
5233
0
    ret = (val1 <= values2[j]);
5234
0
      else if (!inf && strict)
5235
0
    ret = (val1 > values2[j]);
5236
0
      else if (!inf && !strict)
5237
0
    ret = (val1 >= values2[j]);
5238
0
      if (ret)
5239
0
    break;
5240
0
  }
5241
0
  if (ret)
5242
0
      break;
5243
0
  init = 1;
5244
0
    }
5245
0
    xmlFree(values2);
5246
0
    xmlXPathFreeObject(arg1);
5247
0
    xmlXPathFreeObject(arg2);
5248
0
    return(ret);
5249
0
}
5250
5251
/**
5252
 * Implement the compare operation between a nodeset and a value
5253
 *     `ns` < `val`    (1, 1, ...
5254
 *     `ns` <= `val`   (1, 0, ...
5255
 *     `ns` > `val`    (0, 1, ...
5256
 *     `ns` >= `val`   (0, 0, ...
5257
 *
5258
 * If one object to be compared is a node-set and the other is a boolean,
5259
 * then the comparison will be true if and only if the result of performing
5260
 * the comparison on the boolean and on the result of converting
5261
 * the node-set to a boolean using the boolean function is true.
5262
 *
5263
 * @param ctxt  the XPath Parser context
5264
 * @param inf  less than (1) or greater than (0)
5265
 * @param strict  is the comparison strict
5266
 * @param arg  the node set
5267
 * @param val  the value
5268
 * @returns 0 or 1 depending on the results of the test.
5269
 */
5270
static int
5271
xmlXPathCompareNodeSetValue(xmlXPathParserContextPtr ctxt, int inf, int strict,
5272
0
                      xmlXPathObjectPtr arg, xmlXPathObjectPtr val) {
5273
0
    if ((val == NULL) || (arg == NULL) ||
5274
0
  ((arg->type != XPATH_NODESET) && (arg->type != XPATH_XSLT_TREE)))
5275
0
        return(0);
5276
5277
0
    switch(val->type) {
5278
0
        case XPATH_NUMBER:
5279
0
      return(xmlXPathCompareNodeSetFloat(ctxt, inf, strict, arg, val));
5280
0
        case XPATH_NODESET:
5281
0
        case XPATH_XSLT_TREE:
5282
0
      return(xmlXPathCompareNodeSets(ctxt, inf, strict, arg, val));
5283
0
        case XPATH_STRING:
5284
0
      return(xmlXPathCompareNodeSetString(ctxt, inf, strict, arg, val));
5285
0
        case XPATH_BOOLEAN:
5286
0
      xmlXPathValuePush(ctxt, arg);
5287
0
      xmlXPathBooleanFunction(ctxt, 1);
5288
0
      xmlXPathValuePush(ctxt, val);
5289
0
      return(xmlXPathCompareValues(ctxt, inf, strict));
5290
0
  default:
5291
0
            xmlXPathReleaseObject(ctxt->context, arg);
5292
0
            xmlXPathReleaseObject(ctxt->context, val);
5293
0
            XP_ERROR0(XPATH_INVALID_TYPE);
5294
0
    }
5295
0
    return(0);
5296
0
}
5297
5298
/**
5299
 * Implement the equal operation on XPath objects content: `arg1` == `arg2`
5300
 * If one object to be compared is a node-set and the other is a string,
5301
 * then the comparison will be true if and only if there is a node in
5302
 * the node-set such that the result of performing the comparison on the
5303
 * string-value of the node and the other string is true.
5304
 *
5305
 * @param ctxt  XPath parser context
5306
 * @param arg  the nodeset object argument
5307
 * @param str  the string to compare to.
5308
 * @param neq  flag to show whether for '=' (0) or '!=' (1)
5309
 * @returns 0 or 1 depending on the results of the test.
5310
 */
5311
static int
5312
xmlXPathEqualNodeSetString(xmlXPathParserContextPtr ctxt,
5313
                           xmlXPathObjectPtr arg, const xmlChar * str, int neq)
5314
0
{
5315
0
    int i;
5316
0
    xmlNodeSetPtr ns;
5317
0
    xmlChar *str2;
5318
0
    unsigned int hash;
5319
5320
0
    if ((str == NULL) || (arg == NULL) ||
5321
0
        ((arg->type != XPATH_NODESET) && (arg->type != XPATH_XSLT_TREE)))
5322
0
        return (0);
5323
0
    ns = arg->nodesetval;
5324
    /*
5325
     * A NULL nodeset compared with a string is always false
5326
     * (since there is no node equal, and no node not equal)
5327
     */
5328
0
    if ((ns == NULL) || (ns->nodeNr <= 0) )
5329
0
        return (0);
5330
0
    hash = xmlXPathStringHash(str);
5331
0
    for (i = 0; i < ns->nodeNr; i++) {
5332
0
        if (xmlXPathNodeValHash(ns->nodeTab[i]) == hash) {
5333
0
            str2 = xmlNodeGetContent(ns->nodeTab[i]);
5334
0
            if (str2 == NULL) {
5335
0
                xmlXPathPErrMemory(ctxt);
5336
0
                return(0);
5337
0
            }
5338
0
            if (xmlStrEqual(str, str2)) {
5339
0
                xmlFree(str2);
5340
0
    if (neq)
5341
0
        continue;
5342
0
                return (1);
5343
0
            } else if (neq) {
5344
0
    xmlFree(str2);
5345
0
    return (1);
5346
0
      }
5347
0
            xmlFree(str2);
5348
0
        } else if (neq)
5349
0
      return (1);
5350
0
    }
5351
0
    return (0);
5352
0
}
5353
5354
/**
5355
 * Implement the equal operation on XPath objects content: `arg1` == `arg2`
5356
 * If one object to be compared is a node-set and the other is a number,
5357
 * then the comparison will be true if and only if there is a node in
5358
 * the node-set such that the result of performing the comparison on the
5359
 * number to be compared and on the result of converting the string-value
5360
 * of that node to a number using the number function is true.
5361
 *
5362
 * @param ctxt  XPath parser context
5363
 * @param arg  the nodeset object argument
5364
 * @param f  the float to compare to
5365
 * @param neq  flag to show whether to compare '=' (0) or '!=' (1)
5366
 * @returns 0 or 1 depending on the results of the test.
5367
 */
5368
static int
5369
xmlXPathEqualNodeSetFloat(xmlXPathParserContextPtr ctxt,
5370
0
    xmlXPathObjectPtr arg, double f, int neq) {
5371
0
  int i, ret=0;
5372
0
  xmlNodeSetPtr ns;
5373
0
  xmlChar *str2;
5374
0
  xmlXPathObjectPtr val;
5375
0
  double v;
5376
5377
0
    if ((arg == NULL) ||
5378
0
  ((arg->type != XPATH_NODESET) && (arg->type != XPATH_XSLT_TREE)))
5379
0
        return(0);
5380
5381
0
    ns = arg->nodesetval;
5382
0
    if (ns != NULL) {
5383
0
  for (i=0;i<ns->nodeNr;i++) {
5384
0
      str2 = xmlXPathCastNodeToString(ns->nodeTab[i]);
5385
0
      if (str2 != NULL) {
5386
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewString(ctxt, str2));
5387
0
    xmlFree(str2);
5388
0
    xmlXPathNumberFunction(ctxt, 1);
5389
0
                CHECK_ERROR0;
5390
0
    val = xmlXPathValuePop(ctxt);
5391
0
    v = val->floatval;
5392
0
    xmlXPathReleaseObject(ctxt->context, val);
5393
0
    if (!xmlXPathIsNaN(v)) {
5394
0
        if ((!neq) && (v==f)) {
5395
0
      ret = 1;
5396
0
      break;
5397
0
        } else if ((neq) && (v!=f)) {
5398
0
      ret = 1;
5399
0
      break;
5400
0
        }
5401
0
    } else { /* NaN is unequal to any value */
5402
0
        if (neq)
5403
0
      ret = 1;
5404
0
    }
5405
0
      } else {
5406
0
                xmlXPathPErrMemory(ctxt);
5407
0
            }
5408
0
  }
5409
0
    }
5410
5411
0
    return(ret);
5412
0
}
5413
5414
5415
/**
5416
 * Implement the equal / not equal operation on XPath nodesets:
5417
 * `arg1` == `arg2`  or  `arg1` != `arg2`
5418
 * If both objects to be compared are node-sets, then the comparison
5419
 * will be true if and only if there is a node in the first node-set and
5420
 * a node in the second node-set such that the result of performing the
5421
 * comparison on the string-values of the two nodes is true.
5422
 *
5423
 * (needless to say, this is a costly operation)
5424
 *
5425
 * @param ctxt  XPath parser context
5426
 * @param arg1  first nodeset object argument
5427
 * @param arg2  second nodeset object argument
5428
 * @param neq  flag to show whether to test '=' (0) or '!=' (1)
5429
 * @returns 0 or 1 depending on the results of the test.
5430
 */
5431
static int
5432
xmlXPathEqualNodeSets(xmlXPathParserContextPtr ctxt, xmlXPathObjectPtr arg1,
5433
0
                      xmlXPathObjectPtr arg2, int neq) {
5434
0
    int i, j;
5435
0
    unsigned int *hashs1;
5436
0
    unsigned int *hashs2;
5437
0
    xmlChar **values1;
5438
0
    xmlChar **values2;
5439
0
    int ret = 0;
5440
0
    xmlNodeSetPtr ns1;
5441
0
    xmlNodeSetPtr ns2;
5442
5443
0
    if ((arg1 == NULL) ||
5444
0
  ((arg1->type != XPATH_NODESET) && (arg1->type != XPATH_XSLT_TREE)))
5445
0
        return(0);
5446
0
    if ((arg2 == NULL) ||
5447
0
  ((arg2->type != XPATH_NODESET) && (arg2->type != XPATH_XSLT_TREE)))
5448
0
        return(0);
5449
5450
0
    ns1 = arg1->nodesetval;
5451
0
    ns2 = arg2->nodesetval;
5452
5453
0
    if ((ns1 == NULL) || (ns1->nodeNr <= 0))
5454
0
  return(0);
5455
0
    if ((ns2 == NULL) || (ns2->nodeNr <= 0))
5456
0
  return(0);
5457
5458
    /*
5459
     * for equal, check if there is a node pertaining to both sets
5460
     */
5461
0
    if (neq == 0)
5462
0
  for (i = 0;i < ns1->nodeNr;i++)
5463
0
      for (j = 0;j < ns2->nodeNr;j++)
5464
0
    if (ns1->nodeTab[i] == ns2->nodeTab[j])
5465
0
        return(1);
5466
5467
0
    values1 = (xmlChar **) xmlMalloc(ns1->nodeNr * sizeof(xmlChar *));
5468
0
    if (values1 == NULL) {
5469
0
        xmlXPathPErrMemory(ctxt);
5470
0
  return(0);
5471
0
    }
5472
0
    hashs1 = (unsigned int *) xmlMalloc(ns1->nodeNr * sizeof(unsigned int));
5473
0
    if (hashs1 == NULL) {
5474
0
        xmlXPathPErrMemory(ctxt);
5475
0
  xmlFree(values1);
5476
0
  return(0);
5477
0
    }
5478
0
    memset(values1, 0, ns1->nodeNr * sizeof(xmlChar *));
5479
0
    values2 = (xmlChar **) xmlMalloc(ns2->nodeNr * sizeof(xmlChar *));
5480
0
    if (values2 == NULL) {
5481
0
        xmlXPathPErrMemory(ctxt);
5482
0
  xmlFree(hashs1);
5483
0
  xmlFree(values1);
5484
0
  return(0);
5485
0
    }
5486
0
    hashs2 = (unsigned int *) xmlMalloc(ns2->nodeNr * sizeof(unsigned int));
5487
0
    if (hashs2 == NULL) {
5488
0
        xmlXPathPErrMemory(ctxt);
5489
0
  xmlFree(hashs1);
5490
0
  xmlFree(values1);
5491
0
  xmlFree(values2);
5492
0
  return(0);
5493
0
    }
5494
0
    memset(values2, 0, ns2->nodeNr * sizeof(xmlChar *));
5495
0
    for (i = 0;i < ns1->nodeNr;i++) {
5496
0
  hashs1[i] = xmlXPathNodeValHash(ns1->nodeTab[i]);
5497
0
  for (j = 0;j < ns2->nodeNr;j++) {
5498
0
      if (i == 0)
5499
0
    hashs2[j] = xmlXPathNodeValHash(ns2->nodeTab[j]);
5500
0
      if (hashs1[i] != hashs2[j]) {
5501
0
    if (neq) {
5502
0
        ret = 1;
5503
0
        break;
5504
0
    }
5505
0
      }
5506
0
      else {
5507
0
    if (values1[i] == NULL) {
5508
0
        values1[i] = xmlNodeGetContent(ns1->nodeTab[i]);
5509
0
                    if (values1[i] == NULL)
5510
0
                        xmlXPathPErrMemory(ctxt);
5511
0
                }
5512
0
    if (values2[j] == NULL) {
5513
0
        values2[j] = xmlNodeGetContent(ns2->nodeTab[j]);
5514
0
                    if (values2[j] == NULL)
5515
0
                        xmlXPathPErrMemory(ctxt);
5516
0
                }
5517
0
    ret = xmlStrEqual(values1[i], values2[j]) ^ neq;
5518
0
    if (ret)
5519
0
        break;
5520
0
      }
5521
0
  }
5522
0
  if (ret)
5523
0
      break;
5524
0
    }
5525
0
    for (i = 0;i < ns1->nodeNr;i++)
5526
0
  if (values1[i] != NULL)
5527
0
      xmlFree(values1[i]);
5528
0
    for (j = 0;j < ns2->nodeNr;j++)
5529
0
  if (values2[j] != NULL)
5530
0
      xmlFree(values2[j]);
5531
0
    xmlFree(values1);
5532
0
    xmlFree(values2);
5533
0
    xmlFree(hashs1);
5534
0
    xmlFree(hashs2);
5535
0
    return(ret);
5536
0
}
5537
5538
static int
5539
xmlXPathEqualValuesCommon(xmlXPathParserContextPtr ctxt,
5540
0
  xmlXPathObjectPtr arg1, xmlXPathObjectPtr arg2) {
5541
0
    int ret = 0;
5542
    /*
5543
     *At this point we are assured neither arg1 nor arg2
5544
     *is a nodeset, so we can just pick the appropriate routine.
5545
     */
5546
0
    switch (arg1->type) {
5547
0
        case XPATH_UNDEFINED:
5548
0
      break;
5549
0
        case XPATH_BOOLEAN:
5550
0
      switch (arg2->type) {
5551
0
          case XPATH_UNDEFINED:
5552
0
        break;
5553
0
    case XPATH_BOOLEAN:
5554
0
        ret = (arg1->boolval == arg2->boolval);
5555
0
        break;
5556
0
    case XPATH_NUMBER:
5557
0
        ret = (arg1->boolval ==
5558
0
         xmlXPathCastNumberToBoolean(arg2->floatval));
5559
0
        break;
5560
0
    case XPATH_STRING:
5561
0
        if ((arg2->stringval == NULL) ||
5562
0
      (arg2->stringval[0] == 0)) ret = 0;
5563
0
        else
5564
0
      ret = 1;
5565
0
        ret = (arg1->boolval == ret);
5566
0
        break;
5567
0
    case XPATH_USERS:
5568
        /* TODO */
5569
0
        break;
5570
0
    case XPATH_NODESET:
5571
0
    case XPATH_XSLT_TREE:
5572
0
        break;
5573
0
      }
5574
0
      break;
5575
0
        case XPATH_NUMBER:
5576
0
      switch (arg2->type) {
5577
0
          case XPATH_UNDEFINED:
5578
0
        break;
5579
0
    case XPATH_BOOLEAN:
5580
0
        ret = (arg2->boolval==
5581
0
         xmlXPathCastNumberToBoolean(arg1->floatval));
5582
0
        break;
5583
0
    case XPATH_STRING:
5584
0
        xmlXPathValuePush(ctxt, arg2);
5585
0
        xmlXPathNumberFunction(ctxt, 1);
5586
0
        arg2 = xmlXPathValuePop(ctxt);
5587
0
                    if (ctxt->error)
5588
0
                        break;
5589
                    /* Falls through. */
5590
0
    case XPATH_NUMBER:
5591
        /* Hand check NaN and Infinity equalities */
5592
0
        if (xmlXPathIsNaN(arg1->floatval) ||
5593
0
          xmlXPathIsNaN(arg2->floatval)) {
5594
0
            ret = 0;
5595
0
        } else if (xmlXPathIsInf(arg1->floatval) == 1) {
5596
0
            if (xmlXPathIsInf(arg2->floatval) == 1)
5597
0
          ret = 1;
5598
0
      else
5599
0
          ret = 0;
5600
0
        } else if (xmlXPathIsInf(arg1->floatval) == -1) {
5601
0
      if (xmlXPathIsInf(arg2->floatval) == -1)
5602
0
          ret = 1;
5603
0
      else
5604
0
          ret = 0;
5605
0
        } else if (xmlXPathIsInf(arg2->floatval) == 1) {
5606
0
      if (xmlXPathIsInf(arg1->floatval) == 1)
5607
0
          ret = 1;
5608
0
      else
5609
0
          ret = 0;
5610
0
        } else if (xmlXPathIsInf(arg2->floatval) == -1) {
5611
0
      if (xmlXPathIsInf(arg1->floatval) == -1)
5612
0
          ret = 1;
5613
0
      else
5614
0
          ret = 0;
5615
0
        } else {
5616
0
            ret = (arg1->floatval == arg2->floatval);
5617
0
        }
5618
0
        break;
5619
0
    case XPATH_USERS:
5620
        /* TODO */
5621
0
        break;
5622
0
    case XPATH_NODESET:
5623
0
    case XPATH_XSLT_TREE:
5624
0
        break;
5625
0
      }
5626
0
      break;
5627
0
        case XPATH_STRING:
5628
0
      switch (arg2->type) {
5629
0
          case XPATH_UNDEFINED:
5630
0
        break;
5631
0
    case XPATH_BOOLEAN:
5632
0
        if ((arg1->stringval == NULL) ||
5633
0
      (arg1->stringval[0] == 0)) ret = 0;
5634
0
        else
5635
0
      ret = 1;
5636
0
        ret = (arg2->boolval == ret);
5637
0
        break;
5638
0
    case XPATH_STRING:
5639
0
        ret = xmlStrEqual(arg1->stringval, arg2->stringval);
5640
0
        break;
5641
0
    case XPATH_NUMBER:
5642
0
        xmlXPathValuePush(ctxt, arg1);
5643
0
        xmlXPathNumberFunction(ctxt, 1);
5644
0
        arg1 = xmlXPathValuePop(ctxt);
5645
0
                    if (ctxt->error)
5646
0
                        break;
5647
        /* Hand check NaN and Infinity equalities */
5648
0
        if (xmlXPathIsNaN(arg1->floatval) ||
5649
0
          xmlXPathIsNaN(arg2->floatval)) {
5650
0
            ret = 0;
5651
0
        } else if (xmlXPathIsInf(arg1->floatval) == 1) {
5652
0
      if (xmlXPathIsInf(arg2->floatval) == 1)
5653
0
          ret = 1;
5654
0
      else
5655
0
          ret = 0;
5656
0
        } else if (xmlXPathIsInf(arg1->floatval) == -1) {
5657
0
      if (xmlXPathIsInf(arg2->floatval) == -1)
5658
0
          ret = 1;
5659
0
      else
5660
0
          ret = 0;
5661
0
        } else if (xmlXPathIsInf(arg2->floatval) == 1) {
5662
0
      if (xmlXPathIsInf(arg1->floatval) == 1)
5663
0
          ret = 1;
5664
0
      else
5665
0
          ret = 0;
5666
0
        } else if (xmlXPathIsInf(arg2->floatval) == -1) {
5667
0
      if (xmlXPathIsInf(arg1->floatval) == -1)
5668
0
          ret = 1;
5669
0
      else
5670
0
          ret = 0;
5671
0
        } else {
5672
0
            ret = (arg1->floatval == arg2->floatval);
5673
0
        }
5674
0
        break;
5675
0
    case XPATH_USERS:
5676
        /* TODO */
5677
0
        break;
5678
0
    case XPATH_NODESET:
5679
0
    case XPATH_XSLT_TREE:
5680
0
        break;
5681
0
      }
5682
0
      break;
5683
0
        case XPATH_USERS:
5684
      /* TODO */
5685
0
      break;
5686
0
  case XPATH_NODESET:
5687
0
  case XPATH_XSLT_TREE:
5688
0
      break;
5689
0
    }
5690
0
    xmlXPathReleaseObject(ctxt->context, arg1);
5691
0
    xmlXPathReleaseObject(ctxt->context, arg2);
5692
0
    return(ret);
5693
0
}
5694
5695
/**
5696
 * Implement the equal operation on XPath objects content: `arg1` == `arg2`
5697
 *
5698
 * @param ctxt  the XPath Parser context
5699
 * @returns 0 or 1 depending on the results of the test.
5700
 */
5701
int
5702
0
xmlXPathEqualValues(xmlXPathParserContext *ctxt) {
5703
0
    xmlXPathObjectPtr arg1, arg2, argtmp;
5704
0
    int ret = 0;
5705
5706
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(0);
5707
0
    arg2 = xmlXPathValuePop(ctxt);
5708
0
    arg1 = xmlXPathValuePop(ctxt);
5709
0
    if ((arg1 == NULL) || (arg2 == NULL)) {
5710
0
  if (arg1 != NULL)
5711
0
      xmlXPathReleaseObject(ctxt->context, arg1);
5712
0
  else
5713
0
      xmlXPathReleaseObject(ctxt->context, arg2);
5714
0
  XP_ERROR0(XPATH_INVALID_OPERAND);
5715
0
    }
5716
5717
0
    if (arg1 == arg2) {
5718
0
  xmlXPathFreeObject(arg1);
5719
0
        return(1);
5720
0
    }
5721
5722
    /*
5723
     *If either argument is a nodeset, it's a 'special case'
5724
     */
5725
0
    if ((arg2->type == XPATH_NODESET) || (arg2->type == XPATH_XSLT_TREE) ||
5726
0
      (arg1->type == XPATH_NODESET) || (arg1->type == XPATH_XSLT_TREE)) {
5727
  /*
5728
   *Hack it to assure arg1 is the nodeset
5729
   */
5730
0
  if ((arg1->type != XPATH_NODESET) && (arg1->type != XPATH_XSLT_TREE)) {
5731
0
    argtmp = arg2;
5732
0
    arg2 = arg1;
5733
0
    arg1 = argtmp;
5734
0
  }
5735
0
  switch (arg2->type) {
5736
0
      case XPATH_UNDEFINED:
5737
0
    break;
5738
0
      case XPATH_NODESET:
5739
0
      case XPATH_XSLT_TREE:
5740
0
    ret = xmlXPathEqualNodeSets(ctxt, arg1, arg2, 0);
5741
0
    break;
5742
0
      case XPATH_BOOLEAN:
5743
0
    if ((arg1->nodesetval == NULL) ||
5744
0
      (arg1->nodesetval->nodeNr == 0)) ret = 0;
5745
0
    else
5746
0
        ret = 1;
5747
0
    ret = (ret == arg2->boolval);
5748
0
    break;
5749
0
      case XPATH_NUMBER:
5750
0
    ret = xmlXPathEqualNodeSetFloat(ctxt, arg1, arg2->floatval, 0);
5751
0
    break;
5752
0
      case XPATH_STRING:
5753
0
    ret = xmlXPathEqualNodeSetString(ctxt, arg1,
5754
0
                                                 arg2->stringval, 0);
5755
0
    break;
5756
0
      case XPATH_USERS:
5757
    /* TODO */
5758
0
    break;
5759
0
  }
5760
0
  xmlXPathReleaseObject(ctxt->context, arg1);
5761
0
  xmlXPathReleaseObject(ctxt->context, arg2);
5762
0
  return(ret);
5763
0
    }
5764
5765
0
    return (xmlXPathEqualValuesCommon(ctxt, arg1, arg2));
5766
0
}
5767
5768
/**
5769
 * Implement the equal operation on XPath objects content: `arg1` == `arg2`
5770
 *
5771
 * @param ctxt  the XPath Parser context
5772
 * @returns 0 or 1 depending on the results of the test.
5773
 */
5774
int
5775
0
xmlXPathNotEqualValues(xmlXPathParserContext *ctxt) {
5776
0
    xmlXPathObjectPtr arg1, arg2, argtmp;
5777
0
    int ret = 0;
5778
5779
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(0);
5780
0
    arg2 = xmlXPathValuePop(ctxt);
5781
0
    arg1 = xmlXPathValuePop(ctxt);
5782
0
    if ((arg1 == NULL) || (arg2 == NULL)) {
5783
0
  if (arg1 != NULL)
5784
0
      xmlXPathReleaseObject(ctxt->context, arg1);
5785
0
  else
5786
0
      xmlXPathReleaseObject(ctxt->context, arg2);
5787
0
  XP_ERROR0(XPATH_INVALID_OPERAND);
5788
0
    }
5789
5790
0
    if (arg1 == arg2) {
5791
0
  xmlXPathReleaseObject(ctxt->context, arg1);
5792
0
        return(0);
5793
0
    }
5794
5795
    /*
5796
     *If either argument is a nodeset, it's a 'special case'
5797
     */
5798
0
    if ((arg2->type == XPATH_NODESET) || (arg2->type == XPATH_XSLT_TREE) ||
5799
0
      (arg1->type == XPATH_NODESET) || (arg1->type == XPATH_XSLT_TREE)) {
5800
  /*
5801
   *Hack it to assure arg1 is the nodeset
5802
   */
5803
0
  if ((arg1->type != XPATH_NODESET) && (arg1->type != XPATH_XSLT_TREE)) {
5804
0
    argtmp = arg2;
5805
0
    arg2 = arg1;
5806
0
    arg1 = argtmp;
5807
0
  }
5808
0
  switch (arg2->type) {
5809
0
      case XPATH_UNDEFINED:
5810
0
    break;
5811
0
      case XPATH_NODESET:
5812
0
      case XPATH_XSLT_TREE:
5813
0
    ret = xmlXPathEqualNodeSets(ctxt, arg1, arg2, 1);
5814
0
    break;
5815
0
      case XPATH_BOOLEAN:
5816
0
    if ((arg1->nodesetval == NULL) ||
5817
0
      (arg1->nodesetval->nodeNr == 0)) ret = 0;
5818
0
    else
5819
0
        ret = 1;
5820
0
    ret = (ret != arg2->boolval);
5821
0
    break;
5822
0
      case XPATH_NUMBER:
5823
0
    ret = xmlXPathEqualNodeSetFloat(ctxt, arg1, arg2->floatval, 1);
5824
0
    break;
5825
0
      case XPATH_STRING:
5826
0
    ret = xmlXPathEqualNodeSetString(ctxt, arg1,
5827
0
                                                 arg2->stringval, 1);
5828
0
    break;
5829
0
      case XPATH_USERS:
5830
    /* TODO */
5831
0
    break;
5832
0
  }
5833
0
  xmlXPathReleaseObject(ctxt->context, arg1);
5834
0
  xmlXPathReleaseObject(ctxt->context, arg2);
5835
0
  return(ret);
5836
0
    }
5837
5838
0
    return (!xmlXPathEqualValuesCommon(ctxt, arg1, arg2));
5839
0
}
5840
5841
/**
5842
 * Implement the compare operation on XPath objects:
5843
 *     `arg1` < `arg2`    (1, 1, ...
5844
 *     `arg1` <= `arg2`   (1, 0, ...
5845
 *     `arg1` > `arg2`    (0, 1, ...
5846
 *     `arg1` >= `arg2`   (0, 0, ...
5847
 *
5848
 * When neither object to be compared is a node-set and the operator is
5849
 * <=, <, >=, >, then the objects are compared by converted both objects
5850
 * to numbers and comparing the numbers according to IEEE 754. The <
5851
 * comparison will be true if and only if the first number is less than the
5852
 * second number. The <= comparison will be true if and only if the first
5853
 * number is less than or equal to the second number. The > comparison
5854
 * will be true if and only if the first number is greater than the second
5855
 * number. The >= comparison will be true if and only if the first number
5856
 * is greater than or equal to the second number.
5857
 *
5858
 * @param ctxt  the XPath Parser context
5859
 * @param inf  less than (1) or greater than (0)
5860
 * @param strict  is the comparison strict
5861
 * @returns 1 if the comparison succeeded, 0 if it failed
5862
 */
5863
int
5864
0
xmlXPathCompareValues(xmlXPathParserContext *ctxt, int inf, int strict) {
5865
0
    int ret = 0, arg1i = 0, arg2i = 0;
5866
0
    xmlXPathObjectPtr arg1, arg2;
5867
5868
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(0);
5869
0
    arg2 = xmlXPathValuePop(ctxt);
5870
0
    arg1 = xmlXPathValuePop(ctxt);
5871
0
    if ((arg1 == NULL) || (arg2 == NULL)) {
5872
0
  if (arg1 != NULL)
5873
0
      xmlXPathReleaseObject(ctxt->context, arg1);
5874
0
  else
5875
0
      xmlXPathReleaseObject(ctxt->context, arg2);
5876
0
  XP_ERROR0(XPATH_INVALID_OPERAND);
5877
0
    }
5878
5879
0
    if ((arg2->type == XPATH_NODESET) || (arg2->type == XPATH_XSLT_TREE) ||
5880
0
      (arg1->type == XPATH_NODESET) || (arg1->type == XPATH_XSLT_TREE)) {
5881
  /*
5882
   * If either argument is a XPATH_NODESET or XPATH_XSLT_TREE the two arguments
5883
   * are not freed from within this routine; they will be freed from the
5884
   * called routine, e.g. xmlXPathCompareNodeSets or xmlXPathCompareNodeSetValue
5885
   */
5886
0
  if (((arg2->type == XPATH_NODESET) || (arg2->type == XPATH_XSLT_TREE)) &&
5887
0
    ((arg1->type == XPATH_NODESET) || (arg1->type == XPATH_XSLT_TREE))){
5888
0
      ret = xmlXPathCompareNodeSets(ctxt, inf, strict, arg1, arg2);
5889
0
  } else {
5890
0
      if ((arg1->type == XPATH_NODESET) || (arg1->type == XPATH_XSLT_TREE)) {
5891
0
    ret = xmlXPathCompareNodeSetValue(ctxt, inf, strict,
5892
0
                                arg1, arg2);
5893
0
      } else {
5894
0
    ret = xmlXPathCompareNodeSetValue(ctxt, !inf, strict,
5895
0
                                arg2, arg1);
5896
0
      }
5897
0
  }
5898
0
  return(ret);
5899
0
    }
5900
5901
0
    if (arg1->type != XPATH_NUMBER) {
5902
0
  xmlXPathValuePush(ctxt, arg1);
5903
0
  xmlXPathNumberFunction(ctxt, 1);
5904
0
  arg1 = xmlXPathValuePop(ctxt);
5905
0
    }
5906
0
    if (arg2->type != XPATH_NUMBER) {
5907
0
  xmlXPathValuePush(ctxt, arg2);
5908
0
  xmlXPathNumberFunction(ctxt, 1);
5909
0
  arg2 = xmlXPathValuePop(ctxt);
5910
0
    }
5911
0
    if (ctxt->error)
5912
0
        goto error;
5913
    /*
5914
     * Add tests for infinity and nan
5915
     * => feedback on 3.4 for Inf and NaN
5916
     */
5917
    /* Hand check NaN and Infinity comparisons */
5918
0
    if (xmlXPathIsNaN(arg1->floatval) || xmlXPathIsNaN(arg2->floatval)) {
5919
0
  ret=0;
5920
0
    } else {
5921
0
  arg1i=xmlXPathIsInf(arg1->floatval);
5922
0
  arg2i=xmlXPathIsInf(arg2->floatval);
5923
0
  if (inf && strict) {
5924
0
      if ((arg1i == -1 && arg2i != -1) ||
5925
0
    (arg2i == 1 && arg1i != 1)) {
5926
0
    ret = 1;
5927
0
      } else if (arg1i == 0 && arg2i == 0) {
5928
0
    ret = (arg1->floatval < arg2->floatval);
5929
0
      } else {
5930
0
    ret = 0;
5931
0
      }
5932
0
  }
5933
0
  else if (inf && !strict) {
5934
0
      if (arg1i == -1 || arg2i == 1) {
5935
0
    ret = 1;
5936
0
      } else if (arg1i == 0 && arg2i == 0) {
5937
0
    ret = (arg1->floatval <= arg2->floatval);
5938
0
      } else {
5939
0
    ret = 0;
5940
0
      }
5941
0
  }
5942
0
  else if (!inf && strict) {
5943
0
      if ((arg1i == 1 && arg2i != 1) ||
5944
0
    (arg2i == -1 && arg1i != -1)) {
5945
0
    ret = 1;
5946
0
      } else if (arg1i == 0 && arg2i == 0) {
5947
0
    ret = (arg1->floatval > arg2->floatval);
5948
0
      } else {
5949
0
    ret = 0;
5950
0
      }
5951
0
  }
5952
0
  else if (!inf && !strict) {
5953
0
      if (arg1i == 1 || arg2i == -1) {
5954
0
    ret = 1;
5955
0
      } else if (arg1i == 0 && arg2i == 0) {
5956
0
    ret = (arg1->floatval >= arg2->floatval);
5957
0
      } else {
5958
0
    ret = 0;
5959
0
      }
5960
0
  }
5961
0
    }
5962
0
error:
5963
0
    xmlXPathReleaseObject(ctxt->context, arg1);
5964
0
    xmlXPathReleaseObject(ctxt->context, arg2);
5965
0
    return(ret);
5966
0
}
5967
5968
/**
5969
 * Implement the unary - operation on an XPath object
5970
 * The numeric operators convert their operands to numbers as if
5971
 * by calling the number function.
5972
 *
5973
 * @param ctxt  the XPath Parser context
5974
 */
5975
void
5976
0
xmlXPathValueFlipSign(xmlXPathParserContext *ctxt) {
5977
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return;
5978
0
    CAST_TO_NUMBER;
5979
0
    CHECK_TYPE(XPATH_NUMBER);
5980
0
    ctxt->value->floatval = -ctxt->value->floatval;
5981
0
}
5982
5983
/**
5984
 * Implement the add operation on XPath objects:
5985
 * The numeric operators convert their operands to numbers as if
5986
 * by calling the number function.
5987
 *
5988
 * @param ctxt  the XPath Parser context
5989
 */
5990
void
5991
0
xmlXPathAddValues(xmlXPathParserContext *ctxt) {
5992
0
    xmlXPathObjectPtr arg;
5993
0
    double val;
5994
5995
0
    arg = xmlXPathValuePop(ctxt);
5996
0
    if (arg == NULL)
5997
0
  XP_ERROR(XPATH_INVALID_OPERAND);
5998
0
    val = xmlXPathCastToNumberInternal(ctxt, arg);
5999
0
    xmlXPathReleaseObject(ctxt->context, arg);
6000
0
    CAST_TO_NUMBER;
6001
0
    CHECK_TYPE(XPATH_NUMBER);
6002
0
    ctxt->value->floatval += val;
6003
0
}
6004
6005
/**
6006
 * Implement the subtraction operation on XPath objects:
6007
 * The numeric operators convert their operands to numbers as if
6008
 * by calling the number function.
6009
 *
6010
 * @param ctxt  the XPath Parser context
6011
 */
6012
void
6013
0
xmlXPathSubValues(xmlXPathParserContext *ctxt) {
6014
0
    xmlXPathObjectPtr arg;
6015
0
    double val;
6016
6017
0
    arg = xmlXPathValuePop(ctxt);
6018
0
    if (arg == NULL)
6019
0
  XP_ERROR(XPATH_INVALID_OPERAND);
6020
0
    val = xmlXPathCastToNumberInternal(ctxt, arg);
6021
0
    xmlXPathReleaseObject(ctxt->context, arg);
6022
0
    CAST_TO_NUMBER;
6023
0
    CHECK_TYPE(XPATH_NUMBER);
6024
0
    ctxt->value->floatval -= val;
6025
0
}
6026
6027
/**
6028
 * Implement the multiply operation on XPath objects:
6029
 * The numeric operators convert their operands to numbers as if
6030
 * by calling the number function.
6031
 *
6032
 * @param ctxt  the XPath Parser context
6033
 */
6034
void
6035
0
xmlXPathMultValues(xmlXPathParserContext *ctxt) {
6036
0
    xmlXPathObjectPtr arg;
6037
0
    double val;
6038
6039
0
    arg = xmlXPathValuePop(ctxt);
6040
0
    if (arg == NULL)
6041
0
  XP_ERROR(XPATH_INVALID_OPERAND);
6042
0
    val = xmlXPathCastToNumberInternal(ctxt, arg);
6043
0
    xmlXPathReleaseObject(ctxt->context, arg);
6044
0
    CAST_TO_NUMBER;
6045
0
    CHECK_TYPE(XPATH_NUMBER);
6046
0
    ctxt->value->floatval *= val;
6047
0
}
6048
6049
/**
6050
 * Implement the div operation on XPath objects `arg1` / `arg2`.
6051
 * The numeric operators convert their operands to numbers as if
6052
 * by calling the number function.
6053
 *
6054
 * @param ctxt  the XPath Parser context
6055
 */
6056
ATTRIBUTE_NO_SANITIZE("float-divide-by-zero")
6057
void
6058
0
xmlXPathDivValues(xmlXPathParserContext *ctxt) {
6059
0
    xmlXPathObjectPtr arg;
6060
0
    double val;
6061
6062
0
    arg = xmlXPathValuePop(ctxt);
6063
0
    if (arg == NULL)
6064
0
  XP_ERROR(XPATH_INVALID_OPERAND);
6065
0
    val = xmlXPathCastToNumberInternal(ctxt, arg);
6066
0
    xmlXPathReleaseObject(ctxt->context, arg);
6067
0
    CAST_TO_NUMBER;
6068
0
    CHECK_TYPE(XPATH_NUMBER);
6069
0
    ctxt->value->floatval /= val;
6070
0
}
6071
6072
/**
6073
 * Implement the mod operation on XPath objects: `arg1` / `arg2`
6074
 * The numeric operators convert their operands to numbers as if
6075
 * by calling the number function.
6076
 *
6077
 * @param ctxt  the XPath Parser context
6078
 */
6079
void
6080
0
xmlXPathModValues(xmlXPathParserContext *ctxt) {
6081
0
    xmlXPathObjectPtr arg;
6082
0
    double arg1, arg2;
6083
6084
0
    arg = xmlXPathValuePop(ctxt);
6085
0
    if (arg == NULL)
6086
0
  XP_ERROR(XPATH_INVALID_OPERAND);
6087
0
    arg2 = xmlXPathCastToNumberInternal(ctxt, arg);
6088
0
    xmlXPathReleaseObject(ctxt->context, arg);
6089
0
    CAST_TO_NUMBER;
6090
0
    CHECK_TYPE(XPATH_NUMBER);
6091
0
    arg1 = ctxt->value->floatval;
6092
0
    if (arg2 == 0)
6093
0
  ctxt->value->floatval = xmlXPathNAN;
6094
0
    else {
6095
0
  ctxt->value->floatval = fmod(arg1, arg2);
6096
0
    }
6097
0
}
6098
6099
/************************************************************************
6100
 *                  *
6101
 *    The traversal functions         *
6102
 *                  *
6103
 ************************************************************************/
6104
6105
/*
6106
 * A traversal function enumerates nodes along an axis.
6107
 * Initially it must be called with NULL, and it indicates
6108
 * termination on the axis by returning NULL.
6109
 */
6110
typedef xmlNode *(*xmlXPathTraversalFunction)
6111
                    (xmlXPathParserContext *ctxt, xmlNode *cur);
6112
6113
/*
6114
 * A traversal function enumerates nodes along an axis.
6115
 * Initially it must be called with NULL, and it indicates
6116
 * termination on the axis by returning NULL.
6117
 * The context node of the traversal is specified via `contextNode`.
6118
 */
6119
typedef xmlNode *(*xmlXPathTraversalFunctionExt)
6120
                    (xmlNode *cur, xmlNode *contextNode);
6121
6122
/*
6123
 * Used for merging node sets in #xmlXPathCollectAndTest.
6124
 */
6125
typedef xmlNodeSet *(*xmlXPathNodeSetMergeFunction)
6126
        (xmlNodeSet *, xmlNodeSet *);
6127
6128
6129
/**
6130
 * Traversal function for the "self" direction
6131
 * The self axis contains just the context node itself
6132
 *
6133
 * @param ctxt  the XPath Parser context
6134
 * @param cur  the current node in the traversal
6135
 * @returns the next element following that axis
6136
 */
6137
xmlNode *
6138
0
xmlXPathNextSelf(xmlXPathParserContext *ctxt, xmlNode *cur) {
6139
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6140
0
    if (cur == NULL)
6141
0
        return(ctxt->context->node);
6142
0
    return(NULL);
6143
0
}
6144
6145
/**
6146
 * Traversal function for the "child" direction
6147
 * The child axis contains the children of the context node in document order.
6148
 *
6149
 * @param ctxt  the XPath Parser context
6150
 * @param cur  the current node in the traversal
6151
 * @returns the next element following that axis
6152
 */
6153
xmlNode *
6154
0
xmlXPathNextChild(xmlXPathParserContext *ctxt, xmlNode *cur) {
6155
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6156
0
    if (cur == NULL) {
6157
0
  if (ctxt->context->node == NULL) return(NULL);
6158
0
  switch (ctxt->context->node->type) {
6159
0
            case XML_ELEMENT_NODE:
6160
0
            case XML_TEXT_NODE:
6161
0
            case XML_CDATA_SECTION_NODE:
6162
0
            case XML_ENTITY_REF_NODE:
6163
0
            case XML_ENTITY_NODE:
6164
0
            case XML_PI_NODE:
6165
0
            case XML_COMMENT_NODE:
6166
0
            case XML_NOTATION_NODE:
6167
0
            case XML_DTD_NODE:
6168
0
    return(ctxt->context->node->children);
6169
0
            case XML_DOCUMENT_NODE:
6170
0
            case XML_DOCUMENT_TYPE_NODE:
6171
0
            case XML_DOCUMENT_FRAG_NODE:
6172
0
            case XML_HTML_DOCUMENT_NODE:
6173
0
    return(((xmlDocPtr) ctxt->context->node)->children);
6174
0
      case XML_ELEMENT_DECL:
6175
0
      case XML_ATTRIBUTE_DECL:
6176
0
      case XML_ENTITY_DECL:
6177
0
            case XML_ATTRIBUTE_NODE:
6178
0
      case XML_NAMESPACE_DECL:
6179
0
      case XML_XINCLUDE_START:
6180
0
      case XML_XINCLUDE_END:
6181
0
    return(NULL);
6182
0
  }
6183
0
  return(NULL);
6184
0
    }
6185
0
    if ((cur->type == XML_DOCUMENT_NODE) ||
6186
0
        (cur->type == XML_HTML_DOCUMENT_NODE))
6187
0
  return(NULL);
6188
0
    return(cur->next);
6189
0
}
6190
6191
/**
6192
 * Traversal function for the "child" direction and nodes of type element.
6193
 * The child axis contains the children of the context node in document order.
6194
 *
6195
 * @param ctxt  the XPath Parser context
6196
 * @param cur  the current node in the traversal
6197
 * @returns the next element following that axis
6198
 */
6199
static xmlNodePtr
6200
0
xmlXPathNextChildElement(xmlXPathParserContextPtr ctxt, xmlNodePtr cur) {
6201
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6202
0
    if (cur == NULL) {
6203
0
  cur = ctxt->context->node;
6204
0
  if (cur == NULL) return(NULL);
6205
  /*
6206
  * Get the first element child.
6207
  */
6208
0
  switch (cur->type) {
6209
0
            case XML_ELEMENT_NODE:
6210
0
      case XML_DOCUMENT_FRAG_NODE:
6211
0
      case XML_ENTITY_REF_NODE: /* URGENT TODO: entify-refs as well? */
6212
0
            case XML_ENTITY_NODE:
6213
0
    cur = cur->children;
6214
0
    if (cur != NULL) {
6215
0
        if (cur->type == XML_ELEMENT_NODE)
6216
0
      return(cur);
6217
0
        do {
6218
0
      cur = cur->next;
6219
0
        } while ((cur != NULL) &&
6220
0
      (cur->type != XML_ELEMENT_NODE));
6221
0
        return(cur);
6222
0
    }
6223
0
    return(NULL);
6224
0
            case XML_DOCUMENT_NODE:
6225
0
            case XML_HTML_DOCUMENT_NODE:
6226
0
    return(xmlDocGetRootElement((xmlDocPtr) cur));
6227
0
      default:
6228
0
    return(NULL);
6229
0
  }
6230
0
  return(NULL);
6231
0
    }
6232
    /*
6233
    * Get the next sibling element node.
6234
    */
6235
0
    switch (cur->type) {
6236
0
  case XML_ELEMENT_NODE:
6237
0
  case XML_TEXT_NODE:
6238
0
  case XML_ENTITY_REF_NODE:
6239
0
  case XML_ENTITY_NODE:
6240
0
  case XML_CDATA_SECTION_NODE:
6241
0
  case XML_PI_NODE:
6242
0
  case XML_COMMENT_NODE:
6243
0
  case XML_XINCLUDE_END:
6244
0
      break;
6245
  /* case XML_DTD_NODE: */ /* URGENT TODO: DTD-node as well? */
6246
0
  default:
6247
0
      return(NULL);
6248
0
    }
6249
0
    if (cur->next != NULL) {
6250
0
  if (cur->next->type == XML_ELEMENT_NODE)
6251
0
      return(cur->next);
6252
0
  cur = cur->next;
6253
0
  do {
6254
0
      cur = cur->next;
6255
0
  } while ((cur != NULL) && (cur->type != XML_ELEMENT_NODE));
6256
0
  return(cur);
6257
0
    }
6258
0
    return(NULL);
6259
0
}
6260
6261
/**
6262
 * Traversal function for the "descendant" direction
6263
 * the descendant axis contains the descendants of the context node in document
6264
 * order; a descendant is a child or a child of a child and so on.
6265
 *
6266
 * @param ctxt  the XPath Parser context
6267
 * @param cur  the current node in the traversal
6268
 * @returns the next element following that axis
6269
 */
6270
xmlNode *
6271
0
xmlXPathNextDescendant(xmlXPathParserContext *ctxt, xmlNode *cur) {
6272
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6273
0
    if (cur == NULL) {
6274
0
  if (ctxt->context->node == NULL)
6275
0
      return(NULL);
6276
0
  if ((ctxt->context->node->type == XML_ATTRIBUTE_NODE) ||
6277
0
      (ctxt->context->node->type == XML_NAMESPACE_DECL))
6278
0
      return(NULL);
6279
6280
0
        if (ctxt->context->node == (xmlNodePtr) ctxt->context->doc)
6281
0
      return(ctxt->context->doc->children);
6282
0
        return(ctxt->context->node->children);
6283
0
    }
6284
6285
0
    if (cur->type == XML_NAMESPACE_DECL)
6286
0
        return(NULL);
6287
0
    if (cur->children != NULL) {
6288
  /*
6289
   * Do not descend on entities declarations
6290
   */
6291
0
  if (cur->children->type != XML_ENTITY_DECL) {
6292
0
      cur = cur->children;
6293
      /*
6294
       * Skip DTDs
6295
       */
6296
0
      if (cur->type != XML_DTD_NODE)
6297
0
    return(cur);
6298
0
  }
6299
0
    }
6300
6301
0
    if (cur == ctxt->context->node) return(NULL);
6302
6303
0
    while (cur->next != NULL) {
6304
0
  cur = cur->next;
6305
0
  if ((cur->type != XML_ENTITY_DECL) &&
6306
0
      (cur->type != XML_DTD_NODE))
6307
0
      return(cur);
6308
0
    }
6309
6310
0
    do {
6311
0
        cur = cur->parent;
6312
0
  if (cur == NULL) break;
6313
0
  if (cur == ctxt->context->node) return(NULL);
6314
0
  if (cur->next != NULL) {
6315
0
      cur = cur->next;
6316
0
      return(cur);
6317
0
  }
6318
0
    } while (cur != NULL);
6319
0
    return(cur);
6320
0
}
6321
6322
/**
6323
 * Traversal function for the "descendant-or-self" direction
6324
 * the descendant-or-self axis contains the context node and the descendants
6325
 * of the context node in document order; thus the context node is the first
6326
 * node on the axis, and the first child of the context node is the second node
6327
 * on the axis
6328
 *
6329
 * @param ctxt  the XPath Parser context
6330
 * @param cur  the current node in the traversal
6331
 * @returns the next element following that axis
6332
 */
6333
xmlNode *
6334
0
xmlXPathNextDescendantOrSelf(xmlXPathParserContext *ctxt, xmlNode *cur) {
6335
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6336
0
    if (cur == NULL)
6337
0
        return(ctxt->context->node);
6338
6339
0
    if (ctxt->context->node == NULL)
6340
0
        return(NULL);
6341
0
    if ((ctxt->context->node->type == XML_ATTRIBUTE_NODE) ||
6342
0
        (ctxt->context->node->type == XML_NAMESPACE_DECL))
6343
0
        return(NULL);
6344
6345
0
    return(xmlXPathNextDescendant(ctxt, cur));
6346
0
}
6347
6348
/**
6349
 * Traversal function for the "parent" direction
6350
 * The parent axis contains the parent of the context node, if there is one.
6351
 *
6352
 * @param ctxt  the XPath Parser context
6353
 * @param cur  the current node in the traversal
6354
 * @returns the next element following that axis
6355
 */
6356
xmlNode *
6357
0
xmlXPathNextParent(xmlXPathParserContext *ctxt, xmlNode *cur) {
6358
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6359
    /*
6360
     * the parent of an attribute or namespace node is the element
6361
     * to which the attribute or namespace node is attached
6362
     * Namespace handling !!!
6363
     */
6364
0
    if (cur == NULL) {
6365
0
  if (ctxt->context->node == NULL) return(NULL);
6366
0
  switch (ctxt->context->node->type) {
6367
0
            case XML_ELEMENT_NODE:
6368
0
            case XML_TEXT_NODE:
6369
0
            case XML_CDATA_SECTION_NODE:
6370
0
            case XML_ENTITY_REF_NODE:
6371
0
            case XML_ENTITY_NODE:
6372
0
            case XML_PI_NODE:
6373
0
            case XML_COMMENT_NODE:
6374
0
            case XML_NOTATION_NODE:
6375
0
            case XML_DTD_NODE:
6376
0
      case XML_ELEMENT_DECL:
6377
0
      case XML_ATTRIBUTE_DECL:
6378
0
      case XML_XINCLUDE_START:
6379
0
      case XML_XINCLUDE_END:
6380
0
      case XML_ENTITY_DECL:
6381
0
    if (ctxt->context->node->parent == NULL)
6382
0
        return((xmlNodePtr) ctxt->context->doc);
6383
0
    if ((ctxt->context->node->parent->type == XML_ELEMENT_NODE) &&
6384
0
        ((ctxt->context->node->parent->name[0] == ' ') ||
6385
0
         (xmlStrEqual(ctxt->context->node->parent->name,
6386
0
         BAD_CAST "fake node libxslt"))))
6387
0
        return(NULL);
6388
0
    return(ctxt->context->node->parent);
6389
0
            case XML_ATTRIBUTE_NODE: {
6390
0
    xmlAttrPtr att = (xmlAttrPtr) ctxt->context->node;
6391
6392
0
    return(att->parent);
6393
0
      }
6394
0
            case XML_DOCUMENT_NODE:
6395
0
            case XML_DOCUMENT_TYPE_NODE:
6396
0
            case XML_DOCUMENT_FRAG_NODE:
6397
0
            case XML_HTML_DOCUMENT_NODE:
6398
0
                return(NULL);
6399
0
      case XML_NAMESPACE_DECL: {
6400
0
    xmlNsPtr ns = (xmlNsPtr) ctxt->context->node;
6401
6402
0
    if ((ns->next != NULL) &&
6403
0
        (ns->next->type != XML_NAMESPACE_DECL))
6404
0
        return((xmlNodePtr) ns->next);
6405
0
                return(NULL);
6406
0
      }
6407
0
  }
6408
0
    }
6409
0
    return(NULL);
6410
0
}
6411
6412
/**
6413
 * Traversal function for the "ancestor" direction
6414
 * the ancestor axis contains the ancestors of the context node; the ancestors
6415
 * of the context node consist of the parent of context node and the parent's
6416
 * parent and so on; the nodes are ordered in reverse document order; thus the
6417
 * parent is the first node on the axis, and the parent's parent is the second
6418
 * node on the axis
6419
 *
6420
 * @param ctxt  the XPath Parser context
6421
 * @param cur  the current node in the traversal
6422
 * @returns the next element following that axis
6423
 */
6424
xmlNode *
6425
0
xmlXPathNextAncestor(xmlXPathParserContext *ctxt, xmlNode *cur) {
6426
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6427
    /*
6428
     * the parent of an attribute or namespace node is the element
6429
     * to which the attribute or namespace node is attached
6430
     * !!!!!!!!!!!!!
6431
     */
6432
0
    if (cur == NULL) {
6433
0
  if (ctxt->context->node == NULL) return(NULL);
6434
0
  switch (ctxt->context->node->type) {
6435
0
            case XML_ELEMENT_NODE:
6436
0
            case XML_TEXT_NODE:
6437
0
            case XML_CDATA_SECTION_NODE:
6438
0
            case XML_ENTITY_REF_NODE:
6439
0
            case XML_ENTITY_NODE:
6440
0
            case XML_PI_NODE:
6441
0
            case XML_COMMENT_NODE:
6442
0
      case XML_DTD_NODE:
6443
0
      case XML_ELEMENT_DECL:
6444
0
      case XML_ATTRIBUTE_DECL:
6445
0
      case XML_ENTITY_DECL:
6446
0
            case XML_NOTATION_NODE:
6447
0
      case XML_XINCLUDE_START:
6448
0
      case XML_XINCLUDE_END:
6449
0
    if (ctxt->context->node->parent == NULL)
6450
0
        return((xmlNodePtr) ctxt->context->doc);
6451
0
    if ((ctxt->context->node->parent->type == XML_ELEMENT_NODE) &&
6452
0
        ((ctxt->context->node->parent->name[0] == ' ') ||
6453
0
         (xmlStrEqual(ctxt->context->node->parent->name,
6454
0
         BAD_CAST "fake node libxslt"))))
6455
0
        return(NULL);
6456
0
    return(ctxt->context->node->parent);
6457
0
            case XML_ATTRIBUTE_NODE: {
6458
0
    xmlAttrPtr tmp = (xmlAttrPtr) ctxt->context->node;
6459
6460
0
    return(tmp->parent);
6461
0
      }
6462
0
            case XML_DOCUMENT_NODE:
6463
0
            case XML_DOCUMENT_TYPE_NODE:
6464
0
            case XML_DOCUMENT_FRAG_NODE:
6465
0
            case XML_HTML_DOCUMENT_NODE:
6466
0
                return(NULL);
6467
0
      case XML_NAMESPACE_DECL: {
6468
0
    xmlNsPtr ns = (xmlNsPtr) ctxt->context->node;
6469
6470
0
    if ((ns->next != NULL) &&
6471
0
        (ns->next->type != XML_NAMESPACE_DECL))
6472
0
        return((xmlNodePtr) ns->next);
6473
    /* Bad, how did that namespace end up here ? */
6474
0
                return(NULL);
6475
0
      }
6476
0
  }
6477
0
  return(NULL);
6478
0
    }
6479
0
    if (cur == ctxt->context->doc->children)
6480
0
  return((xmlNodePtr) ctxt->context->doc);
6481
0
    if (cur == (xmlNodePtr) ctxt->context->doc)
6482
0
  return(NULL);
6483
0
    switch (cur->type) {
6484
0
  case XML_ELEMENT_NODE:
6485
0
  case XML_TEXT_NODE:
6486
0
  case XML_CDATA_SECTION_NODE:
6487
0
  case XML_ENTITY_REF_NODE:
6488
0
  case XML_ENTITY_NODE:
6489
0
  case XML_PI_NODE:
6490
0
  case XML_COMMENT_NODE:
6491
0
  case XML_NOTATION_NODE:
6492
0
  case XML_DTD_NODE:
6493
0
        case XML_ELEMENT_DECL:
6494
0
        case XML_ATTRIBUTE_DECL:
6495
0
        case XML_ENTITY_DECL:
6496
0
  case XML_XINCLUDE_START:
6497
0
  case XML_XINCLUDE_END:
6498
0
      if (cur->parent == NULL)
6499
0
    return(NULL);
6500
0
      if ((cur->parent->type == XML_ELEMENT_NODE) &&
6501
0
    ((cur->parent->name[0] == ' ') ||
6502
0
     (xmlStrEqual(cur->parent->name,
6503
0
            BAD_CAST "fake node libxslt"))))
6504
0
    return(NULL);
6505
0
      return(cur->parent);
6506
0
  case XML_ATTRIBUTE_NODE: {
6507
0
      xmlAttrPtr att = (xmlAttrPtr) cur;
6508
6509
0
      return(att->parent);
6510
0
  }
6511
0
  case XML_NAMESPACE_DECL: {
6512
0
      xmlNsPtr ns = (xmlNsPtr) cur;
6513
6514
0
      if ((ns->next != NULL) &&
6515
0
          (ns->next->type != XML_NAMESPACE_DECL))
6516
0
          return((xmlNodePtr) ns->next);
6517
      /* Bad, how did that namespace end up here ? */
6518
0
            return(NULL);
6519
0
  }
6520
0
  case XML_DOCUMENT_NODE:
6521
0
  case XML_DOCUMENT_TYPE_NODE:
6522
0
  case XML_DOCUMENT_FRAG_NODE:
6523
0
  case XML_HTML_DOCUMENT_NODE:
6524
0
      return(NULL);
6525
0
    }
6526
0
    return(NULL);
6527
0
}
6528
6529
/**
6530
 * Traversal function for the "ancestor-or-self" direction
6531
 * he ancestor-or-self axis contains the context node and ancestors of
6532
 * the context node in reverse document order; thus the context node is
6533
 * the first node on the axis, and the context node's parent the second;
6534
 * parent here is defined the same as with the parent axis.
6535
 *
6536
 * @param ctxt  the XPath Parser context
6537
 * @param cur  the current node in the traversal
6538
 * @returns the next element following that axis
6539
 */
6540
xmlNode *
6541
0
xmlXPathNextAncestorOrSelf(xmlXPathParserContext *ctxt, xmlNode *cur) {
6542
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6543
0
    if (cur == NULL)
6544
0
        return(ctxt->context->node);
6545
0
    return(xmlXPathNextAncestor(ctxt, cur));
6546
0
}
6547
6548
/**
6549
 * Traversal function for the "following-sibling" direction
6550
 * The following-sibling axis contains the following siblings of the context
6551
 * node in document order.
6552
 *
6553
 * @param ctxt  the XPath Parser context
6554
 * @param cur  the current node in the traversal
6555
 * @returns the next element following that axis
6556
 */
6557
xmlNode *
6558
0
xmlXPathNextFollowingSibling(xmlXPathParserContext *ctxt, xmlNode *cur) {
6559
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6560
0
    if ((ctxt->context->node->type == XML_ATTRIBUTE_NODE) ||
6561
0
        (ctxt->context->node->type == XML_NAMESPACE_DECL))
6562
0
        return(NULL);
6563
6564
0
    if (cur == (xmlNodePtr) ctxt->context->doc)
6565
0
        return(NULL);
6566
6567
0
    if (cur == NULL)
6568
0
        cur = ctxt->context->node;
6569
6570
0
    if (cur->type == XML_DOCUMENT_NODE)
6571
0
        return(NULL);
6572
6573
0
    return(cur->next);
6574
0
}
6575
6576
/**
6577
 * Traversal function for the "preceding-sibling" direction
6578
 * The preceding-sibling axis contains the preceding siblings of the context
6579
 * node in reverse document order; the first preceding sibling is first on the
6580
 * axis; the sibling preceding that node is the second on the axis and so on.
6581
 *
6582
 * @param ctxt  the XPath Parser context
6583
 * @param cur  the current node in the traversal
6584
 * @returns the next element following that axis
6585
 */
6586
xmlNode *
6587
0
xmlXPathNextPrecedingSibling(xmlXPathParserContext *ctxt, xmlNode *cur) {
6588
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6589
0
    if ((ctxt->context->node->type == XML_ATTRIBUTE_NODE) ||
6590
0
        (ctxt->context->node->type == XML_NAMESPACE_DECL))
6591
0
        return(NULL);
6592
6593
0
    if (cur == (xmlNodePtr) ctxt->context->doc)
6594
0
        return(NULL);
6595
6596
0
    if (cur == NULL) {
6597
0
        cur = ctxt->context->node;
6598
0
    } else if ((cur->prev != NULL) && (cur->prev->type == XML_DTD_NODE)) {
6599
0
        cur = cur->prev;
6600
0
        if (cur == NULL)
6601
0
            cur = ctxt->context->node;
6602
0
    }
6603
6604
0
    if (cur->type == XML_DOCUMENT_NODE)
6605
0
        return(NULL);
6606
6607
0
    return(cur->prev);
6608
0
}
6609
6610
/**
6611
 * Traversal function for the "following" direction
6612
 * The following axis contains all nodes in the same document as the context
6613
 * node that are after the context node in document order, excluding any
6614
 * descendants and excluding attribute nodes and namespace nodes; the nodes
6615
 * are ordered in document order
6616
 *
6617
 * @param ctxt  the XPath Parser context
6618
 * @param cur  the current node in the traversal
6619
 * @returns the next element following that axis
6620
 */
6621
xmlNode *
6622
0
xmlXPathNextFollowing(xmlXPathParserContext *ctxt, xmlNode *cur) {
6623
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6624
0
    if ((cur != NULL) && (cur->type  != XML_ATTRIBUTE_NODE) &&
6625
0
        (cur->type != XML_NAMESPACE_DECL) && (cur->children != NULL))
6626
0
        return(cur->children);
6627
6628
0
    if (cur == NULL) {
6629
0
        cur = ctxt->context->node;
6630
0
        if (cur->type == XML_ATTRIBUTE_NODE) {
6631
0
            cur = cur->parent;
6632
0
        } else if (cur->type == XML_NAMESPACE_DECL) {
6633
0
            xmlNsPtr ns = (xmlNsPtr) cur;
6634
6635
0
            if ((ns->next == NULL) ||
6636
0
                (ns->next->type == XML_NAMESPACE_DECL))
6637
0
                return (NULL);
6638
0
            cur = (xmlNodePtr) ns->next;
6639
0
        }
6640
0
    }
6641
6642
    /* ERROR */
6643
0
    if (cur == NULL)
6644
0
        return(NULL);
6645
6646
0
    if (cur->type == XML_DOCUMENT_NODE)
6647
0
        return(NULL);
6648
6649
0
    if (cur->next != NULL)
6650
0
        return(cur->next);
6651
6652
0
    do {
6653
0
        cur = cur->parent;
6654
0
        if (cur == NULL)
6655
0
            break;
6656
0
        if (cur == (xmlNodePtr) ctxt->context->doc)
6657
0
            return(NULL);
6658
0
        if (cur->next != NULL && cur->type != XML_DOCUMENT_NODE)
6659
0
            return(cur->next);
6660
0
    } while (cur != NULL);
6661
6662
0
    return(cur);
6663
0
}
6664
6665
/*
6666
 * @param ancestor  the ancestor node
6667
 * @param node  the current node
6668
 *
6669
 * Check that `ancestor` is a `node`'s ancestor
6670
 *
6671
 * @returns 1 if `ancestor` is a `node`'s ancestor, 0 otherwise.
6672
 */
6673
static int
6674
0
xmlXPathIsAncestor(xmlNodePtr ancestor, xmlNodePtr node) {
6675
0
    if ((ancestor == NULL) || (node == NULL)) return(0);
6676
0
    if (node->type == XML_NAMESPACE_DECL)
6677
0
        return(0);
6678
0
    if (ancestor->type == XML_NAMESPACE_DECL)
6679
0
        return(0);
6680
    /* nodes need to be in the same document */
6681
0
    if (ancestor->doc != node->doc) return(0);
6682
    /* avoid searching if ancestor or node is the root node */
6683
0
    if (ancestor == (xmlNodePtr) node->doc) return(1);
6684
0
    if (node == (xmlNodePtr) ancestor->doc) return(0);
6685
0
    while (node->parent != NULL) {
6686
0
        if (node->parent == ancestor)
6687
0
            return(1);
6688
0
  node = node->parent;
6689
0
    }
6690
0
    return(0);
6691
0
}
6692
6693
/**
6694
 * Traversal function for the "preceding" direction
6695
 * the preceding axis contains all nodes in the same document as the context
6696
 * node that are before the context node in document order, excluding any
6697
 * ancestors and excluding attribute nodes and namespace nodes; the nodes are
6698
 * ordered in reverse document order
6699
 *
6700
 * @param ctxt  the XPath Parser context
6701
 * @param cur  the current node in the traversal
6702
 * @returns the next element following that axis
6703
 */
6704
xmlNode *
6705
xmlXPathNextPreceding(xmlXPathParserContext *ctxt, xmlNode *cur)
6706
0
{
6707
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6708
0
    if (cur == NULL) {
6709
0
        cur = ctxt->context->node;
6710
0
        if (cur->type == XML_ATTRIBUTE_NODE) {
6711
0
            cur = cur->parent;
6712
0
        } else if (cur->type == XML_NAMESPACE_DECL) {
6713
0
            xmlNsPtr ns = (xmlNsPtr) cur;
6714
6715
0
            if ((ns->next == NULL) ||
6716
0
                (ns->next->type == XML_NAMESPACE_DECL))
6717
0
                return (NULL);
6718
0
            cur = (xmlNodePtr) ns->next;
6719
0
        }
6720
0
    }
6721
0
    if ((cur == NULL) || (cur->type == XML_NAMESPACE_DECL))
6722
0
  return (NULL);
6723
0
    if ((cur->prev != NULL) && (cur->prev->type == XML_DTD_NODE))
6724
0
  cur = cur->prev;
6725
0
    do {
6726
0
        if (cur->prev != NULL) {
6727
0
            for (cur = cur->prev; cur->last != NULL; cur = cur->last) ;
6728
0
            return (cur);
6729
0
        }
6730
6731
0
        cur = cur->parent;
6732
0
        if (cur == NULL)
6733
0
            return (NULL);
6734
0
        if (cur == ctxt->context->doc->children)
6735
0
            return (NULL);
6736
0
    } while (xmlXPathIsAncestor(cur, ctxt->context->node));
6737
0
    return (cur);
6738
0
}
6739
6740
/**
6741
 * Traversal function for the "preceding" direction
6742
 * the preceding axis contains all nodes in the same document as the context
6743
 * node that are before the context node in document order, excluding any
6744
 * ancestors and excluding attribute nodes and namespace nodes; the nodes are
6745
 * ordered in reverse document order
6746
 * This is a faster implementation but internal only since it requires a
6747
 * state kept in the parser context: ctxt->ancestor.
6748
 *
6749
 * @param ctxt  the XPath Parser context
6750
 * @param cur  the current node in the traversal
6751
 * @returns the next element following that axis
6752
 */
6753
static xmlNodePtr
6754
xmlXPathNextPrecedingInternal(xmlXPathParserContextPtr ctxt,
6755
                              xmlNodePtr cur)
6756
0
{
6757
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6758
0
    if (cur == NULL) {
6759
0
        cur = ctxt->context->node;
6760
0
        if (cur == NULL)
6761
0
            return (NULL);
6762
0
        if (cur->type == XML_ATTRIBUTE_NODE) {
6763
0
            cur = cur->parent;
6764
0
        } else if (cur->type == XML_NAMESPACE_DECL) {
6765
0
            xmlNsPtr ns = (xmlNsPtr) cur;
6766
6767
0
            if ((ns->next == NULL) ||
6768
0
                (ns->next->type == XML_NAMESPACE_DECL))
6769
0
                return (NULL);
6770
0
            cur = (xmlNodePtr) ns->next;
6771
0
        }
6772
0
        ctxt->ancestor = cur->parent;
6773
0
    }
6774
6775
0
    if (cur->type == XML_NAMESPACE_DECL || cur->type == XML_DOCUMENT_NODE)
6776
0
        return(NULL);
6777
6778
0
    if ((cur->prev != NULL) && (cur->prev->type == XML_DTD_NODE))
6779
0
  cur = cur->prev;
6780
6781
0
    while (cur->prev == NULL) {
6782
0
        cur = cur->parent;
6783
0
        if (cur == NULL)
6784
0
            return (NULL);
6785
0
        if (cur == ctxt->context->doc->children)
6786
0
            return (NULL);
6787
0
        if (cur != ctxt->ancestor)
6788
0
            return (cur);
6789
0
        ctxt->ancestor = cur->parent;
6790
0
    }
6791
6792
0
    if (cur->type == XML_DOCUMENT_NODE)
6793
0
        return(NULL);
6794
6795
0
    cur = cur->prev;
6796
0
    while (cur->last != NULL)
6797
0
        cur = cur->last;
6798
0
    return (cur);
6799
0
}
6800
6801
/**
6802
 * Traversal function for the "namespace" direction
6803
 * the namespace axis contains the namespace nodes of the context node;
6804
 * the order of nodes on this axis is implementation-defined; the axis will
6805
 * be empty unless the context node is an element
6806
 *
6807
 * We keep the XML namespace node at the end of the list.
6808
 *
6809
 * @param ctxt  the XPath Parser context
6810
 * @param cur  the current attribute in the traversal
6811
 * @returns the next element following that axis
6812
 */
6813
xmlNode *
6814
0
xmlXPathNextNamespace(xmlXPathParserContext *ctxt, xmlNode *cur) {
6815
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6816
0
    if (ctxt->context->node->type != XML_ELEMENT_NODE) return(NULL);
6817
0
    if (cur == NULL) {
6818
0
        if (ctxt->context->tmpNsList != NULL)
6819
0
      xmlFree(ctxt->context->tmpNsList);
6820
0
  ctxt->context->tmpNsNr = 0;
6821
0
        if (xmlGetNsListSafe(ctxt->context->doc, ctxt->context->node,
6822
0
                             &ctxt->context->tmpNsList) < 0) {
6823
0
            xmlXPathPErrMemory(ctxt);
6824
0
            return(NULL);
6825
0
        }
6826
0
        if (ctxt->context->tmpNsList != NULL) {
6827
0
            while (ctxt->context->tmpNsList[ctxt->context->tmpNsNr] != NULL) {
6828
0
                ctxt->context->tmpNsNr++;
6829
0
            }
6830
0
        }
6831
0
  return((xmlNodePtr) xmlXPathXMLNamespace);
6832
0
    }
6833
0
    if (ctxt->context->tmpNsNr > 0) {
6834
0
  return (xmlNodePtr)ctxt->context->tmpNsList[--ctxt->context->tmpNsNr];
6835
0
    } else {
6836
0
  if (ctxt->context->tmpNsList != NULL)
6837
0
      xmlFree(ctxt->context->tmpNsList);
6838
0
  ctxt->context->tmpNsList = NULL;
6839
0
  return(NULL);
6840
0
    }
6841
0
}
6842
6843
/**
6844
 * Traversal function for the "attribute" direction
6845
 * TODO: support DTD inherited default attributes
6846
 *
6847
 * @param ctxt  the XPath Parser context
6848
 * @param cur  the current attribute in the traversal
6849
 * @returns the next element following that axis
6850
 */
6851
xmlNode *
6852
0
xmlXPathNextAttribute(xmlXPathParserContext *ctxt, xmlNode *cur) {
6853
0
    if ((ctxt == NULL) || (ctxt->context == NULL)) return(NULL);
6854
0
    if (ctxt->context->node == NULL)
6855
0
  return(NULL);
6856
0
    if (ctxt->context->node->type != XML_ELEMENT_NODE)
6857
0
  return(NULL);
6858
0
    if (cur == NULL) {
6859
0
        if (ctxt->context->node == (xmlNodePtr) ctxt->context->doc)
6860
0
      return(NULL);
6861
0
        return((xmlNodePtr)ctxt->context->node->properties);
6862
0
    }
6863
0
    return((xmlNodePtr)cur->next);
6864
0
}
6865
6866
/************************************************************************
6867
 *                  *
6868
 *    NodeTest Functions          *
6869
 *                  *
6870
 ************************************************************************/
6871
6872
#define IS_FUNCTION     200
6873
6874
6875
/************************************************************************
6876
 *                  *
6877
 *    Implicit tree core function library     *
6878
 *                  *
6879
 ************************************************************************/
6880
6881
/**
6882
 * Initialize the context to the root of the document
6883
 *
6884
 * @param ctxt  the XPath Parser context
6885
 */
6886
void
6887
0
xmlXPathRoot(xmlXPathParserContext *ctxt) {
6888
0
    if ((ctxt == NULL) || (ctxt->context == NULL))
6889
0
  return;
6890
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewNodeSet(ctxt,
6891
0
                                            (xmlNodePtr) ctxt->context->doc));
6892
0
}
6893
6894
/************************************************************************
6895
 *                  *
6896
 *    The explicit core function library      *
6897
 *http://www.w3.org/Style/XSL/Group/1999/07/xpath-19990705.html#corelib *
6898
 *                  *
6899
 ************************************************************************/
6900
6901
6902
/**
6903
 * Implement the last() XPath function
6904
 *    number last()
6905
 * The last function returns the number of nodes in the context node list.
6906
 *
6907
 * @param ctxt  the XPath Parser context
6908
 * @param nargs  the number of arguments
6909
 */
6910
void
6911
0
xmlXPathLastFunction(xmlXPathParserContext *ctxt, int nargs) {
6912
0
    CHECK_ARITY(0);
6913
0
    if (ctxt->context->contextSize >= 0) {
6914
0
  xmlXPathValuePush(ctxt,
6915
0
      xmlXPathCacheNewFloat(ctxt, (double) ctxt->context->contextSize));
6916
0
    } else {
6917
0
  XP_ERROR(XPATH_INVALID_CTXT_SIZE);
6918
0
    }
6919
0
}
6920
6921
/**
6922
 * Implement the position() XPath function
6923
 *    number position()
6924
 * The position function returns the position of the context node in the
6925
 * context node list. The first position is 1, and so the last position
6926
 * will be equal to last().
6927
 *
6928
 * @param ctxt  the XPath Parser context
6929
 * @param nargs  the number of arguments
6930
 */
6931
void
6932
0
xmlXPathPositionFunction(xmlXPathParserContext *ctxt, int nargs) {
6933
0
    CHECK_ARITY(0);
6934
0
    if (ctxt->context->proximityPosition >= 0) {
6935
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewFloat(ctxt,
6936
0
            (double) ctxt->context->proximityPosition));
6937
0
    } else {
6938
0
  XP_ERROR(XPATH_INVALID_CTXT_POSITION);
6939
0
    }
6940
0
}
6941
6942
/**
6943
 * Implement the count() XPath function
6944
 *    number count(node-set)
6945
 *
6946
 * @param ctxt  the XPath Parser context
6947
 * @param nargs  the number of arguments
6948
 */
6949
void
6950
0
xmlXPathCountFunction(xmlXPathParserContext *ctxt, int nargs) {
6951
0
    xmlXPathObjectPtr cur;
6952
6953
0
    CHECK_ARITY(1);
6954
0
    if ((ctxt->value == NULL) ||
6955
0
  ((ctxt->value->type != XPATH_NODESET) &&
6956
0
   (ctxt->value->type != XPATH_XSLT_TREE)))
6957
0
  XP_ERROR(XPATH_INVALID_TYPE);
6958
0
    cur = xmlXPathValuePop(ctxt);
6959
6960
0
    if ((cur == NULL) || (cur->nodesetval == NULL))
6961
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewFloat(ctxt, 0.0));
6962
0
    else
6963
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewFloat(ctxt,
6964
0
      (double) cur->nodesetval->nodeNr));
6965
0
    xmlXPathReleaseObject(ctxt->context, cur);
6966
0
}
6967
6968
/**
6969
 * Selects elements by their unique ID.
6970
 *
6971
 * @param doc  the document
6972
 * @param ids  a whitespace separated list of IDs
6973
 * @returns a node-set of selected elements.
6974
 */
6975
static xmlNodeSetPtr
6976
0
xmlXPathGetElementsByIds (xmlDocPtr doc, const xmlChar *ids) {
6977
0
    xmlNodeSetPtr ret;
6978
0
    const xmlChar *cur = ids;
6979
0
    xmlChar *ID;
6980
0
    xmlAttrPtr attr;
6981
0
    xmlNodePtr elem = NULL;
6982
6983
0
    if (ids == NULL) return(NULL);
6984
6985
0
    ret = xmlXPathNodeSetCreate(NULL);
6986
0
    if (ret == NULL)
6987
0
        return(ret);
6988
6989
0
    while (IS_BLANK_CH(*cur)) cur++;
6990
0
    while (*cur != 0) {
6991
0
  while ((!IS_BLANK_CH(*cur)) && (*cur != 0))
6992
0
      cur++;
6993
6994
0
        ID = xmlStrndup(ids, cur - ids);
6995
0
  if (ID == NULL) {
6996
0
            xmlXPathFreeNodeSet(ret);
6997
0
            return(NULL);
6998
0
        }
6999
        /*
7000
         * We used to check the fact that the value passed
7001
         * was an NCName, but this generated much troubles for
7002
         * me and Aleksey Sanin, people blatantly violated that
7003
         * constraint, like Visa3D spec.
7004
         * if (xmlValidateNCName(ID, 1) == 0)
7005
         */
7006
0
        attr = xmlGetID(doc, ID);
7007
0
        xmlFree(ID);
7008
0
        if (attr != NULL) {
7009
0
            if (attr->type == XML_ATTRIBUTE_NODE)
7010
0
                elem = attr->parent;
7011
0
            else if (attr->type == XML_ELEMENT_NODE)
7012
0
                elem = (xmlNodePtr) attr;
7013
0
            else
7014
0
                elem = NULL;
7015
0
            if (elem != NULL) {
7016
0
                if (xmlXPathNodeSetAdd(ret, elem) < 0) {
7017
0
                    xmlXPathFreeNodeSet(ret);
7018
0
                    return(NULL);
7019
0
                }
7020
0
            }
7021
0
        }
7022
7023
0
  while (IS_BLANK_CH(*cur)) cur++;
7024
0
  ids = cur;
7025
0
    }
7026
0
    return(ret);
7027
0
}
7028
7029
/**
7030
 * Implement the id() XPath function
7031
 *    node-set id(object)
7032
 * The id function selects elements by their unique ID
7033
 * (see [5.2.1 Unique IDs]). When the argument to id is of type node-set,
7034
 * then the result is the union of the result of applying id to the
7035
 * string value of each of the nodes in the argument node-set. When the
7036
 * argument to id is of any other type, the argument is converted to a
7037
 * string as if by a call to the string function; the string is split
7038
 * into a whitespace-separated list of tokens (whitespace is any sequence
7039
 * of characters matching the production S); the result is a node-set
7040
 * containing the elements in the same document as the context node that
7041
 * have a unique ID equal to any of the tokens in the list.
7042
 *
7043
 * @param ctxt  the XPath Parser context
7044
 * @param nargs  the number of arguments
7045
 */
7046
void
7047
0
xmlXPathIdFunction(xmlXPathParserContext *ctxt, int nargs) {
7048
0
    xmlChar *tokens;
7049
0
    xmlNodeSetPtr ret;
7050
0
    xmlXPathObjectPtr obj;
7051
7052
0
    CHECK_ARITY(1);
7053
0
    obj = xmlXPathValuePop(ctxt);
7054
0
    if (obj == NULL) XP_ERROR(XPATH_INVALID_OPERAND);
7055
0
    if ((obj->type == XPATH_NODESET) || (obj->type == XPATH_XSLT_TREE)) {
7056
0
  xmlNodeSetPtr ns;
7057
0
  int i;
7058
7059
0
  ret = xmlXPathNodeSetCreate(NULL);
7060
0
        if (ret == NULL)
7061
0
            xmlXPathPErrMemory(ctxt);
7062
7063
0
  if (obj->nodesetval != NULL) {
7064
0
      for (i = 0; i < obj->nodesetval->nodeNr; i++) {
7065
0
    tokens =
7066
0
        xmlXPathCastNodeToString(obj->nodesetval->nodeTab[i]);
7067
0
                if (tokens == NULL)
7068
0
                    xmlXPathPErrMemory(ctxt);
7069
0
    ns = xmlXPathGetElementsByIds(ctxt->context->doc, tokens);
7070
0
                if (ns == NULL)
7071
0
                    xmlXPathPErrMemory(ctxt);
7072
0
    ret = xmlXPathNodeSetMerge(ret, ns);
7073
0
                if (ret == NULL)
7074
0
                    xmlXPathPErrMemory(ctxt);
7075
0
    xmlXPathFreeNodeSet(ns);
7076
0
    if (tokens != NULL)
7077
0
        xmlFree(tokens);
7078
0
      }
7079
0
  }
7080
0
  xmlXPathReleaseObject(ctxt->context, obj);
7081
0
  xmlXPathValuePush(ctxt, xmlXPathCacheWrapNodeSet(ctxt, ret));
7082
0
  return;
7083
0
    }
7084
0
    tokens = xmlXPathCastToString(obj);
7085
0
    if (tokens == NULL)
7086
0
        xmlXPathPErrMemory(ctxt);
7087
0
    xmlXPathReleaseObject(ctxt->context, obj);
7088
0
    ret = xmlXPathGetElementsByIds(ctxt->context->doc, tokens);
7089
0
    if (ret == NULL)
7090
0
        xmlXPathPErrMemory(ctxt);
7091
0
    xmlFree(tokens);
7092
0
    xmlXPathValuePush(ctxt, xmlXPathCacheWrapNodeSet(ctxt, ret));
7093
0
}
7094
7095
/**
7096
 * Implement the local-name() XPath function
7097
 *    string local-name(node-set?)
7098
 * The local-name function returns a string containing the local part
7099
 * of the name of the node in the argument node-set that is first in
7100
 * document order. If the node-set is empty or the first node has no
7101
 * name, an empty string is returned. If the argument is omitted it
7102
 * defaults to the context node.
7103
 *
7104
 * @param ctxt  the XPath Parser context
7105
 * @param nargs  the number of arguments
7106
 */
7107
void
7108
0
xmlXPathLocalNameFunction(xmlXPathParserContext *ctxt, int nargs) {
7109
0
    xmlXPathObjectPtr cur;
7110
7111
0
    if (ctxt == NULL) return;
7112
7113
0
    if (nargs == 0) {
7114
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewNodeSet(ctxt, ctxt->context->node));
7115
0
  nargs = 1;
7116
0
    }
7117
7118
0
    CHECK_ARITY(1);
7119
0
    if ((ctxt->value == NULL) ||
7120
0
  ((ctxt->value->type != XPATH_NODESET) &&
7121
0
   (ctxt->value->type != XPATH_XSLT_TREE)))
7122
0
  XP_ERROR(XPATH_INVALID_TYPE);
7123
0
    cur = xmlXPathValuePop(ctxt);
7124
7125
0
    if ((cur->nodesetval == NULL) || (cur->nodesetval->nodeNr == 0)) {
7126
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewCString(ctxt, ""));
7127
0
    } else {
7128
0
  int i = 0; /* Should be first in document order !!!!! */
7129
0
  switch (cur->nodesetval->nodeTab[i]->type) {
7130
0
  case XML_ELEMENT_NODE:
7131
0
  case XML_ATTRIBUTE_NODE:
7132
0
  case XML_PI_NODE:
7133
0
      if (cur->nodesetval->nodeTab[i]->name[0] == ' ')
7134
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewCString(ctxt, ""));
7135
0
      else
7136
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewString(ctxt,
7137
0
      cur->nodesetval->nodeTab[i]->name));
7138
0
      break;
7139
0
  case XML_NAMESPACE_DECL:
7140
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewString(ctxt,
7141
0
      ((xmlNsPtr)cur->nodesetval->nodeTab[i])->prefix));
7142
0
      break;
7143
0
  default:
7144
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewCString(ctxt, ""));
7145
0
  }
7146
0
    }
7147
0
    xmlXPathReleaseObject(ctxt->context, cur);
7148
0
}
7149
7150
/**
7151
 * Implement the namespace-uri() XPath function
7152
 *    string namespace-uri(node-set?)
7153
 * The namespace-uri function returns a string containing the
7154
 * namespace URI of the expanded name of the node in the argument
7155
 * node-set that is first in document order. If the node-set is empty,
7156
 * the first node has no name, or the expanded name has no namespace
7157
 * URI, an empty string is returned. If the argument is omitted it
7158
 * defaults to the context node.
7159
 *
7160
 * @param ctxt  the XPath Parser context
7161
 * @param nargs  the number of arguments
7162
 */
7163
void
7164
0
xmlXPathNamespaceURIFunction(xmlXPathParserContext *ctxt, int nargs) {
7165
0
    xmlXPathObjectPtr cur;
7166
7167
0
    if (ctxt == NULL) return;
7168
7169
0
    if (nargs == 0) {
7170
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewNodeSet(ctxt, ctxt->context->node));
7171
0
  nargs = 1;
7172
0
    }
7173
0
    CHECK_ARITY(1);
7174
0
    if ((ctxt->value == NULL) ||
7175
0
  ((ctxt->value->type != XPATH_NODESET) &&
7176
0
   (ctxt->value->type != XPATH_XSLT_TREE)))
7177
0
  XP_ERROR(XPATH_INVALID_TYPE);
7178
0
    cur = xmlXPathValuePop(ctxt);
7179
7180
0
    if ((cur->nodesetval == NULL) || (cur->nodesetval->nodeNr == 0)) {
7181
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewCString(ctxt, ""));
7182
0
    } else {
7183
0
  int i = 0; /* Should be first in document order !!!!! */
7184
0
  switch (cur->nodesetval->nodeTab[i]->type) {
7185
0
  case XML_ELEMENT_NODE:
7186
0
  case XML_ATTRIBUTE_NODE:
7187
0
      if (cur->nodesetval->nodeTab[i]->ns == NULL)
7188
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewCString(ctxt, ""));
7189
0
      else
7190
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewString(ctxt,
7191
0
        cur->nodesetval->nodeTab[i]->ns->href));
7192
0
      break;
7193
0
  default:
7194
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewCString(ctxt, ""));
7195
0
  }
7196
0
    }
7197
0
    xmlXPathReleaseObject(ctxt->context, cur);
7198
0
}
7199
7200
/**
7201
 * Implement the name() XPath function
7202
 *    string name(node-set?)
7203
 * The name function returns a string containing a QName representing
7204
 * the name of the node in the argument node-set that is first in document
7205
 * order. The QName must represent the name with respect to the namespace
7206
 * declarations in effect on the node whose name is being represented.
7207
 * Typically, this will be the form in which the name occurred in the XML
7208
 * source. This need not be the case if there are namespace declarations
7209
 * in effect on the node that associate multiple prefixes with the same
7210
 * namespace. However, an implementation may include information about
7211
 * the original prefix in its representation of nodes; in this case, an
7212
 * implementation can ensure that the returned string is always the same
7213
 * as the QName used in the XML source. If the argument it omitted it
7214
 * defaults to the context node.
7215
 * Libxml keep the original prefix so the "real qualified name" used is
7216
 * returned.
7217
 *
7218
 * @param ctxt  the XPath Parser context
7219
 * @param nargs  the number of arguments
7220
 */
7221
static void
7222
xmlXPathNameFunction(xmlXPathParserContextPtr ctxt, int nargs)
7223
0
{
7224
0
    xmlXPathObjectPtr cur;
7225
7226
0
    if (nargs == 0) {
7227
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewNodeSet(ctxt, ctxt->context->node));
7228
0
        nargs = 1;
7229
0
    }
7230
7231
0
    CHECK_ARITY(1);
7232
0
    if ((ctxt->value == NULL) ||
7233
0
        ((ctxt->value->type != XPATH_NODESET) &&
7234
0
         (ctxt->value->type != XPATH_XSLT_TREE)))
7235
0
        XP_ERROR(XPATH_INVALID_TYPE);
7236
0
    cur = xmlXPathValuePop(ctxt);
7237
7238
0
    if ((cur->nodesetval == NULL) || (cur->nodesetval->nodeNr == 0)) {
7239
0
        xmlXPathValuePush(ctxt, xmlXPathCacheNewCString(ctxt, ""));
7240
0
    } else {
7241
0
        int i = 0;              /* Should be first in document order !!!!! */
7242
7243
0
        switch (cur->nodesetval->nodeTab[i]->type) {
7244
0
            case XML_ELEMENT_NODE:
7245
0
            case XML_ATTRIBUTE_NODE:
7246
0
    if (cur->nodesetval->nodeTab[i]->name[0] == ' ')
7247
0
        xmlXPathValuePush(ctxt,
7248
0
      xmlXPathCacheNewCString(ctxt, ""));
7249
0
    else if ((cur->nodesetval->nodeTab[i]->ns == NULL) ||
7250
0
                         (cur->nodesetval->nodeTab[i]->ns->prefix == NULL)) {
7251
0
        xmlXPathValuePush(ctxt, xmlXPathCacheNewString(ctxt,
7252
0
          cur->nodesetval->nodeTab[i]->name));
7253
0
    } else {
7254
0
        xmlChar *fullname;
7255
7256
0
        fullname = xmlBuildQName(cur->nodesetval->nodeTab[i]->name,
7257
0
             cur->nodesetval->nodeTab[i]->ns->prefix,
7258
0
             NULL, 0);
7259
0
        if (fullname == cur->nodesetval->nodeTab[i]->name)
7260
0
      fullname = xmlStrdup(cur->nodesetval->nodeTab[i]->name);
7261
0
        if (fullname == NULL)
7262
0
                        xmlXPathPErrMemory(ctxt);
7263
0
        xmlXPathValuePush(ctxt, xmlXPathCacheWrapString(ctxt, fullname));
7264
0
                }
7265
0
                break;
7266
0
            default:
7267
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewNodeSet(ctxt,
7268
0
        cur->nodesetval->nodeTab[i]));
7269
0
                xmlXPathLocalNameFunction(ctxt, 1);
7270
0
        }
7271
0
    }
7272
0
    xmlXPathReleaseObject(ctxt->context, cur);
7273
0
}
7274
7275
7276
/**
7277
 * Implement the string() XPath function
7278
 *    string string(object?)
7279
 * The string function converts an object to a string as follows:
7280
 *    - A node-set is converted to a string by returning the value of
7281
 *      the node in the node-set that is first in document order.
7282
 *      If the node-set is empty, an empty string is returned.
7283
 *    - A number is converted to a string as follows
7284
 *      + NaN is converted to the string NaN
7285
 *      + positive zero is converted to the string 0
7286
 *      + negative zero is converted to the string 0
7287
 *      + positive infinity is converted to the string Infinity
7288
 *      + negative infinity is converted to the string -Infinity
7289
 *      + if the number is an integer, the number is represented in
7290
 *        decimal form as a Number with no decimal point and no leading
7291
 *        zeros, preceded by a minus sign (-) if the number is negative
7292
 *      + otherwise, the number is represented in decimal form as a
7293
 *        Number including a decimal point with at least one digit
7294
 *        before the decimal point and at least one digit after the
7295
 *        decimal point, preceded by a minus sign (-) if the number
7296
 *        is negative; there must be no leading zeros before the decimal
7297
 *        point apart possibly from the one required digit immediately
7298
 *        before the decimal point; beyond the one required digit
7299
 *        after the decimal point there must be as many, but only as
7300
 *        many, more digits as are needed to uniquely distinguish the
7301
 *        number from all other IEEE 754 numeric values.
7302
 *    - The boolean false value is converted to the string false.
7303
 *      The boolean true value is converted to the string true.
7304
 *
7305
 * If the argument is omitted, it defaults to a node-set with the
7306
 * context node as its only member.
7307
 *
7308
 * @param ctxt  the XPath Parser context
7309
 * @param nargs  the number of arguments
7310
 */
7311
void
7312
0
xmlXPathStringFunction(xmlXPathParserContext *ctxt, int nargs) {
7313
0
    xmlXPathObjectPtr cur;
7314
0
    xmlChar *stringval;
7315
7316
0
    if (ctxt == NULL) return;
7317
0
    if (nargs == 0) {
7318
0
        stringval = xmlXPathCastNodeToString(ctxt->context->node);
7319
0
        if (stringval == NULL)
7320
0
            xmlXPathPErrMemory(ctxt);
7321
0
        xmlXPathValuePush(ctxt, xmlXPathCacheWrapString(ctxt, stringval));
7322
0
  return;
7323
0
    }
7324
7325
0
    CHECK_ARITY(1);
7326
0
    cur = xmlXPathValuePop(ctxt);
7327
0
    if (cur == NULL) XP_ERROR(XPATH_INVALID_OPERAND);
7328
0
    if (cur->type != XPATH_STRING) {
7329
0
        stringval = xmlXPathCastToString(cur);
7330
0
        if (stringval == NULL)
7331
0
            xmlXPathPErrMemory(ctxt);
7332
0
        xmlXPathReleaseObject(ctxt->context, cur);
7333
0
        cur = xmlXPathCacheWrapString(ctxt, stringval);
7334
0
    }
7335
0
    xmlXPathValuePush(ctxt, cur);
7336
0
}
7337
7338
/**
7339
 * Implement the string-length() XPath function
7340
 *    number string-length(string?)
7341
 * The string-length returns the number of characters in the string
7342
 * (see [3.6 Strings]). If the argument is omitted, it defaults to
7343
 * the context node converted to a string, in other words the value
7344
 * of the context node.
7345
 *
7346
 * @param ctxt  the XPath Parser context
7347
 * @param nargs  the number of arguments
7348
 */
7349
void
7350
0
xmlXPathStringLengthFunction(xmlXPathParserContext *ctxt, int nargs) {
7351
0
    xmlXPathObjectPtr cur;
7352
7353
0
    if (nargs == 0) {
7354
0
        if ((ctxt == NULL) || (ctxt->context == NULL))
7355
0
      return;
7356
0
  if (ctxt->context->node == NULL) {
7357
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewFloat(ctxt, 0));
7358
0
  } else {
7359
0
      xmlChar *content;
7360
7361
0
      content = xmlXPathCastNodeToString(ctxt->context->node);
7362
0
            if (content == NULL)
7363
0
                xmlXPathPErrMemory(ctxt);
7364
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewFloat(ctxt,
7365
0
    xmlUTF8Strlen(content)));
7366
0
      xmlFree(content);
7367
0
  }
7368
0
  return;
7369
0
    }
7370
0
    CHECK_ARITY(1);
7371
0
    CAST_TO_STRING;
7372
0
    CHECK_TYPE(XPATH_STRING);
7373
0
    cur = xmlXPathValuePop(ctxt);
7374
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewFloat(ctxt,
7375
0
  xmlUTF8Strlen(cur->stringval)));
7376
0
    xmlXPathReleaseObject(ctxt->context, cur);
7377
0
}
7378
7379
/**
7380
 * Implement the concat() XPath function
7381
 *    string concat(string, string, string*)
7382
 * The concat function returns the concatenation of its arguments.
7383
 *
7384
 * @param ctxt  the XPath Parser context
7385
 * @param nargs  the number of arguments
7386
 */
7387
void
7388
0
xmlXPathConcatFunction(xmlXPathParserContext *ctxt, int nargs) {
7389
0
    xmlXPathObjectPtr cur, newobj;
7390
0
    xmlChar *tmp;
7391
7392
0
    if (ctxt == NULL) return;
7393
0
    if (nargs < 2) {
7394
0
  CHECK_ARITY(2);
7395
0
    }
7396
7397
0
    CAST_TO_STRING;
7398
0
    cur = xmlXPathValuePop(ctxt);
7399
0
    if ((cur == NULL) || (cur->type != XPATH_STRING)) {
7400
0
  xmlXPathReleaseObject(ctxt->context, cur);
7401
0
  return;
7402
0
    }
7403
0
    nargs--;
7404
7405
0
    while (nargs > 0) {
7406
0
  CAST_TO_STRING;
7407
0
  newobj = xmlXPathValuePop(ctxt);
7408
0
  if ((newobj == NULL) || (newobj->type != XPATH_STRING)) {
7409
0
      xmlXPathReleaseObject(ctxt->context, newobj);
7410
0
      xmlXPathReleaseObject(ctxt->context, cur);
7411
0
      XP_ERROR(XPATH_INVALID_TYPE);
7412
0
  }
7413
0
  tmp = xmlStrcat(newobj->stringval, cur->stringval);
7414
0
        if (tmp == NULL)
7415
0
            xmlXPathPErrMemory(ctxt);
7416
0
  newobj->stringval = cur->stringval;
7417
0
  cur->stringval = tmp;
7418
0
  xmlXPathReleaseObject(ctxt->context, newobj);
7419
0
  nargs--;
7420
0
    }
7421
0
    xmlXPathValuePush(ctxt, cur);
7422
0
}
7423
7424
/**
7425
 * Implement the contains() XPath function
7426
 *    boolean contains(string, string)
7427
 * The contains function returns true if the first argument string
7428
 * contains the second argument string, and otherwise returns false.
7429
 *
7430
 * @param ctxt  the XPath Parser context
7431
 * @param nargs  the number of arguments
7432
 */
7433
void
7434
0
xmlXPathContainsFunction(xmlXPathParserContext *ctxt, int nargs) {
7435
0
    xmlXPathObjectPtr hay, needle;
7436
7437
0
    CHECK_ARITY(2);
7438
0
    CAST_TO_STRING;
7439
0
    CHECK_TYPE(XPATH_STRING);
7440
0
    needle = xmlXPathValuePop(ctxt);
7441
0
    CAST_TO_STRING;
7442
0
    hay = xmlXPathValuePop(ctxt);
7443
7444
0
    if ((hay == NULL) || (hay->type != XPATH_STRING)) {
7445
0
  xmlXPathReleaseObject(ctxt->context, hay);
7446
0
  xmlXPathReleaseObject(ctxt->context, needle);
7447
0
  XP_ERROR(XPATH_INVALID_TYPE);
7448
0
    }
7449
0
    if (xmlStrstr(hay->stringval, needle->stringval))
7450
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewBoolean(ctxt, 1));
7451
0
    else
7452
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewBoolean(ctxt, 0));
7453
0
    xmlXPathReleaseObject(ctxt->context, hay);
7454
0
    xmlXPathReleaseObject(ctxt->context, needle);
7455
0
}
7456
7457
/**
7458
 * Implement the starts-with() XPath function
7459
 *    boolean starts-with(string, string)
7460
 * The starts-with function returns true if the first argument string
7461
 * starts with the second argument string, and otherwise returns false.
7462
 *
7463
 * @param ctxt  the XPath Parser context
7464
 * @param nargs  the number of arguments
7465
 */
7466
void
7467
0
xmlXPathStartsWithFunction(xmlXPathParserContext *ctxt, int nargs) {
7468
0
    xmlXPathObjectPtr hay, needle;
7469
0
    int n;
7470
7471
0
    CHECK_ARITY(2);
7472
0
    CAST_TO_STRING;
7473
0
    CHECK_TYPE(XPATH_STRING);
7474
0
    needle = xmlXPathValuePop(ctxt);
7475
0
    CAST_TO_STRING;
7476
0
    hay = xmlXPathValuePop(ctxt);
7477
7478
0
    if ((hay == NULL) || (hay->type != XPATH_STRING)) {
7479
0
  xmlXPathReleaseObject(ctxt->context, hay);
7480
0
  xmlXPathReleaseObject(ctxt->context, needle);
7481
0
  XP_ERROR(XPATH_INVALID_TYPE);
7482
0
    }
7483
0
    n = xmlStrlen(needle->stringval);
7484
0
    if (xmlStrncmp(hay->stringval, needle->stringval, n))
7485
0
        xmlXPathValuePush(ctxt, xmlXPathCacheNewBoolean(ctxt, 0));
7486
0
    else
7487
0
        xmlXPathValuePush(ctxt, xmlXPathCacheNewBoolean(ctxt, 1));
7488
0
    xmlXPathReleaseObject(ctxt->context, hay);
7489
0
    xmlXPathReleaseObject(ctxt->context, needle);
7490
0
}
7491
7492
/**
7493
 * Implement the substring() XPath function
7494
 *    string substring(string, number, number?)
7495
 * The substring function returns the substring of the first argument
7496
 * starting at the position specified in the second argument with
7497
 * length specified in the third argument. For example,
7498
 * substring("12345",2,3) returns "234". If the third argument is not
7499
 * specified, it returns the substring starting at the position specified
7500
 * in the second argument and continuing to the end of the string. For
7501
 * example, substring("12345",2) returns "2345".  More precisely, each
7502
 * character in the string (see [3.6 Strings]) is considered to have a
7503
 * numeric position: the position of the first character is 1, the position
7504
 * of the second character is 2 and so on. The returned substring contains
7505
 * those characters for which the position of the character is greater than
7506
 * or equal to the second argument and, if the third argument is specified,
7507
 * less than the sum of the second and third arguments; the comparisons
7508
 * and addition used for the above follow the standard IEEE 754 rules. Thus:
7509
 *  - substring("12345", 1.5, 2.6) returns "234"
7510
 *  - substring("12345", 0, 3) returns "12"
7511
 *  - substring("12345", 0 div 0, 3) returns ""
7512
 *  - substring("12345", 1, 0 div 0) returns ""
7513
 *  - substring("12345", -42, 1 div 0) returns "12345"
7514
 *  - substring("12345", -1 div 0, 1 div 0) returns ""
7515
 *
7516
 * @param ctxt  the XPath Parser context
7517
 * @param nargs  the number of arguments
7518
 */
7519
void
7520
0
xmlXPathSubstringFunction(xmlXPathParserContext *ctxt, int nargs) {
7521
0
    xmlXPathObjectPtr str, start, len;
7522
0
    double le=0, in;
7523
0
    int i = 1, j = INT_MAX;
7524
7525
0
    if (nargs < 2) {
7526
0
  CHECK_ARITY(2);
7527
0
    }
7528
0
    if (nargs > 3) {
7529
0
  CHECK_ARITY(3);
7530
0
    }
7531
    /*
7532
     * take care of possible last (position) argument
7533
    */
7534
0
    if (nargs == 3) {
7535
0
  CAST_TO_NUMBER;
7536
0
  CHECK_TYPE(XPATH_NUMBER);
7537
0
  len = xmlXPathValuePop(ctxt);
7538
0
  le = len->floatval;
7539
0
  xmlXPathReleaseObject(ctxt->context, len);
7540
0
    }
7541
7542
0
    CAST_TO_NUMBER;
7543
0
    CHECK_TYPE(XPATH_NUMBER);
7544
0
    start = xmlXPathValuePop(ctxt);
7545
0
    in = start->floatval;
7546
0
    xmlXPathReleaseObject(ctxt->context, start);
7547
0
    CAST_TO_STRING;
7548
0
    CHECK_TYPE(XPATH_STRING);
7549
0
    str = xmlXPathValuePop(ctxt);
7550
7551
0
    if (!(in < INT_MAX)) { /* Logical NOT to handle NaNs */
7552
0
        i = INT_MAX;
7553
0
    } else if (in >= 1.0) {
7554
0
        i = (int)in;
7555
0
        if (in - floor(in) >= 0.5)
7556
0
            i += 1;
7557
0
    }
7558
7559
0
    if (nargs == 3) {
7560
0
        double rin, rle, end;
7561
7562
0
        rin = floor(in);
7563
0
        if (in - rin >= 0.5)
7564
0
            rin += 1.0;
7565
7566
0
        rle = floor(le);
7567
0
        if (le - rle >= 0.5)
7568
0
            rle += 1.0;
7569
7570
0
        end = rin + rle;
7571
0
        if (!(end >= 1.0)) { /* Logical NOT to handle NaNs */
7572
0
            j = 1;
7573
0
        } else if (end < INT_MAX) {
7574
0
            j = (int)end;
7575
0
        }
7576
0
    }
7577
7578
0
    i -= 1;
7579
0
    j -= 1;
7580
7581
0
    if ((i < j) && (i < xmlUTF8Strlen(str->stringval))) {
7582
0
        xmlChar *ret = xmlUTF8Strsub(str->stringval, i, j - i);
7583
0
        if (ret == NULL)
7584
0
            xmlXPathPErrMemory(ctxt);
7585
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewString(ctxt, ret));
7586
0
  xmlFree(ret);
7587
0
    } else {
7588
0
  xmlXPathValuePush(ctxt, xmlXPathCacheNewCString(ctxt, ""));
7589
0
    }
7590
7591
0
    xmlXPathReleaseObject(ctxt->context, str);
7592
0
}
7593
7594
/**
7595
 * Implement the substring-before() XPath function
7596
 *    string substring-before(string, string)
7597
 * The substring-before function returns the substring of the first
7598
 * argument string that precedes the first occurrence of the second
7599
 * argument string in the first argument string, or the empty string
7600
 * if the first argument string does not contain the second argument
7601
 * string. For example, substring-before("1999/04/01","/") returns 1999.
7602
 *
7603
 * @param ctxt  the XPath Parser context
7604
 * @param nargs  the number of arguments
7605
 */
7606
void
7607
0
xmlXPathSubstringBeforeFunction(xmlXPathParserContext *ctxt, int nargs) {
7608
0
    xmlXPathObjectPtr str = NULL;
7609
0
    xmlXPathObjectPtr find = NULL;
7610
0
    const xmlChar *point;
7611
0
    xmlChar *result;
7612
7613
0
    CHECK_ARITY(2);
7614
0
    CAST_TO_STRING;
7615
0
    find = xmlXPathValuePop(ctxt);
7616
0
    CAST_TO_STRING;
7617
0
    str = xmlXPathValuePop(ctxt);
7618
0
    if (ctxt->error != 0)
7619
0
        goto error;
7620
7621
0
    point = xmlStrstr(str->stringval, find->stringval);
7622
0
    if (point == NULL) {
7623
0
        result = xmlStrdup(BAD_CAST "");
7624
0
    } else {
7625
0
        result = xmlStrndup(str->stringval, point - str->stringval);
7626
0
    }
7627
0
    if (result == NULL) {
7628
0
        xmlXPathPErrMemory(ctxt);
7629
0
        goto error;
7630
0
    }
7631
0
    xmlXPathValuePush(ctxt, xmlXPathCacheWrapString(ctxt, result));
7632
7633
0
error:
7634
0
    xmlXPathReleaseObject(ctxt->context, str);
7635
0
    xmlXPathReleaseObject(ctxt->context, find);
7636
0
}
7637
7638
/**
7639
 * Implement the substring-after() XPath function
7640
 *    string substring-after(string, string)
7641
 * The substring-after function returns the substring of the first
7642
 * argument string that follows the first occurrence of the second
7643
 * argument string in the first argument string, or the empty string
7644
 * if the first argument string does not contain the second argument
7645
 * string. For example, substring-after("1999/04/01","/") returns 04/01,
7646
 * and substring-after("1999/04/01","19") returns 99/04/01.
7647
 *
7648
 * @param ctxt  the XPath Parser context
7649
 * @param nargs  the number of arguments
7650
 */
7651
void
7652
0
xmlXPathSubstringAfterFunction(xmlXPathParserContext *ctxt, int nargs) {
7653
0
    xmlXPathObjectPtr str = NULL;
7654
0
    xmlXPathObjectPtr find = NULL;
7655
0
    const xmlChar *point;
7656
0
    xmlChar *result;
7657
7658
0
    CHECK_ARITY(2);
7659
0
    CAST_TO_STRING;
7660
0
    find = xmlXPathValuePop(ctxt);
7661
0
    CAST_TO_STRING;
7662
0
    str = xmlXPathValuePop(ctxt);
7663
0
    if (ctxt->error != 0)
7664
0
        goto error;
7665
7666
0
    point = xmlStrstr(str->stringval, find->stringval);
7667
0
    if (point == NULL) {
7668
0
        result = xmlStrdup(BAD_CAST "");
7669
0
    } else {
7670
0
        result = xmlStrdup(point + xmlStrlen(find->stringval));
7671
0
    }
7672
0
    if (result == NULL) {
7673
0
        xmlXPathPErrMemory(ctxt);
7674
0
        goto error;
7675
0
    }
7676
0
    xmlXPathValuePush(ctxt, xmlXPathCacheWrapString(ctxt, result));
7677
7678
0
error:
7679
0
    xmlXPathReleaseObject(ctxt->context, str);
7680
0
    xmlXPathReleaseObject(ctxt->context, find);
7681
0
}
7682
7683
/**
7684
 * Implement the normalize-space() XPath function
7685
 *    string normalize-space(string?)
7686
 * The normalize-space function returns the argument string with white
7687
 * space normalized by stripping leading and trailing whitespace
7688
 * and replacing sequences of whitespace characters by a single
7689
 * space. Whitespace characters are the same allowed by the S production
7690
 * in XML. If the argument is omitted, it defaults to the context
7691
 * node converted to a string, in other words the value of the context node.
7692
 *
7693
 * @param ctxt  the XPath Parser context
7694
 * @param nargs  the number of arguments
7695
 */
7696
void
7697
0
xmlXPathNormalizeFunction(xmlXPathParserContext *ctxt, int nargs) {
7698
0
    xmlChar *source, *target;
7699
0
    int blank;
7700
7701
0
    if (ctxt == NULL) return;
7702
0
    if (nargs == 0) {
7703
        /* Use current context node */
7704
0
        source = xmlXPathCastNodeToString(ctxt->context->node);
7705
0
        if (source == NULL)
7706
0
            xmlXPathPErrMemory(ctxt);
7707
0
        xmlXPathValuePush(ctxt, xmlXPathCacheWrapString(ctxt, source));
7708
0
        nargs = 1;
7709
0
    }
7710
7711
0
    CHECK_ARITY(1);
7712
0
    CAST_TO_STRING;
7713
0
    CHECK_TYPE(XPATH_STRING);
7714
0
    source = ctxt->value->stringval;
7715
0
    if (source == NULL)
7716
0
        return;
7717
0
    target = source;
7718
7719
    /* Skip leading whitespaces */
7720
0
    while (IS_BLANK_CH(*source))
7721
0
        source++;
7722
7723
    /* Collapse intermediate whitespaces, and skip trailing whitespaces */
7724
0
    blank = 0;
7725
0
    while (*source) {
7726
0
        if (IS_BLANK_CH(*source)) {
7727
0
      blank = 1;
7728
0
        } else {
7729
0
            if (blank) {
7730
0
                *target++ = 0x20;
7731
0
                blank = 0;
7732
0
            }
7733
0
            *target++ = *source;
7734
0
        }
7735
0
        source++;
7736
0
    }
7737
0
    *target = 0;
7738
0
}
7739
7740
/**
7741
 * Implement the translate() XPath function
7742
 *    string translate(string, string, string)
7743
 * The translate function returns the first argument string with
7744
 * occurrences of characters in the second argument string replaced
7745
 * by the character at the corresponding position in the third argument
7746
 * string. For example, translate("bar","abc","ABC") returns the string
7747
 * BAr. If there is a character in the second argument string with no
7748
 * character at a corresponding position in the third argument string
7749
 * (because the second argument string is longer than the third argument
7750
 * string), then occurrences of that character in the first argument
7751
 * string are removed. For example,
7752
 * translate("--aaa--","abc-","ABC") returns "AAA".
7753
 * If a character occurs more than once in second
7754
 * argument string, then the first occurrence determines the replacement
7755
 * character. If the third argument string is longer than the second
7756
 * argument string, then excess characters are ignored.
7757
 *
7758
 * @param ctxt  the XPath Parser context
7759
 * @param nargs  the number of arguments
7760
 */
7761
void
7762
0
xmlXPathTranslateFunction(xmlXPathParserContext *ctxt, int nargs) {
7763
0
    xmlXPathObjectPtr str = NULL;
7764
0
    xmlXPathObjectPtr from = NULL;
7765
0
    xmlXPathObjectPtr to = NULL;
7766
0
    xmlBufPtr target;
7767
0
    int offset, max;
7768
0
    int ch;
7769
0
    const xmlChar *point;
7770
0
    xmlChar *cptr, *content;
7771
7772
0
    CHECK_ARITY(3);
7773
7774
0
    CAST_TO_STRING;
7775
0
    to = xmlXPathValuePop(ctxt);
7776
0
    CAST_TO_STRING;
7777
0
    from = xmlXPathValuePop(ctxt);
7778
0
    CAST_TO_STRING;
7779
0
    str = xmlXPathValuePop(ctxt);
7780
0
    if (ctxt->error != 0)
7781
0
        goto error;
7782
7783
    /*
7784
     * Account for quadratic runtime
7785
     */
7786
0
    if (ctxt->context->opLimit != 0) {
7787
0
        unsigned long f1 = xmlStrlen(from->stringval);
7788
0
        unsigned long f2 = xmlStrlen(str->stringval);
7789
7790
0
        if ((f1 > 0) && (f2 > 0)) {
7791
0
            unsigned long p;
7792
7793
0
            f1 = f1 / 10 + 1;
7794
0
            f2 = f2 / 10 + 1;
7795
0
            p = f1 > ULONG_MAX / f2 ? ULONG_MAX : f1 * f2;
7796
0
            if (xmlXPathCheckOpLimit(ctxt, p) < 0)
7797
0
                goto error;
7798
0
        }
7799
0
    }
7800
7801
0
    target = xmlBufCreate(50);
7802
0
    if (target == NULL) {
7803
0
        xmlXPathPErrMemory(ctxt);
7804
0
        goto error;
7805
0
    }
7806
7807
0
    max = xmlUTF8Strlen(to->stringval);
7808
0
    for (cptr = str->stringval; (ch=*cptr); ) {
7809
0
        offset = xmlUTF8Strloc(from->stringval, cptr);
7810
0
        if (offset >= 0) {
7811
0
            if (offset < max) {
7812
0
                point = xmlUTF8Strpos(to->stringval, offset);
7813
0
                if (point)
7814
0
                    xmlBufAdd(target, point, xmlUTF8Strsize(point, 1));
7815
0
            }
7816
0
        } else
7817
0
            xmlBufAdd(target, cptr, xmlUTF8Strsize(cptr, 1));
7818
7819
        /* Step to next character in input */
7820
0
        cptr++;
7821
0
        if ( ch & 0x80 ) {
7822
            /* if not simple ascii, verify proper format */
7823
0
            if ( (ch & 0xc0) != 0xc0 ) {
7824
0
                xmlXPathErr(ctxt, XPATH_INVALID_CHAR_ERROR);
7825
0
                break;
7826
0
            }
7827
            /* then skip over remaining bytes for this char */
7828
0
            while ( (ch <<= 1) & 0x80 )
7829
0
                if ( (*cptr++ & 0xc0) != 0x80 ) {
7830
0
                    xmlXPathErr(ctxt, XPATH_INVALID_CHAR_ERROR);
7831
0
                    break;
7832
0
                }
7833
0
            if (ch & 0x80) /* must have had error encountered */
7834
0
                break;
7835
0
        }
7836
0
    }
7837
7838
0
    content = xmlBufDetach(target);
7839
0
    if (content == NULL)
7840
0
        xmlXPathPErrMemory(ctxt);
7841
0
    else
7842
0
        xmlXPathValuePush(ctxt, xmlXPathCacheWrapString(ctxt, content));
7843
0
    xmlBufFree(target);
7844
0
error:
7845
0
    xmlXPathReleaseObject(ctxt->context, str);
7846
0
    xmlXPathReleaseObject(ctxt->context, from);
7847
0
    xmlXPathReleaseObject(ctxt->context, to);
7848
0
}
7849
7850
/**
7851
 * Implement the boolean() XPath function
7852
 *    boolean boolean(object)
7853
 * The boolean function converts its argument to a boolean as follows:
7854
 *    - a number is true if and only if it is neither positive or
7855
 *      negative zero nor NaN
7856
 *    - a node-set is true if and only if it is non-empty
7857
 *    - a string is true if and only if its length is non-zero
7858
 *
7859
 * @param ctxt  the XPath Parser context
7860
 * @param nargs  the number of arguments
7861
 */
7862
void
7863
0
xmlXPathBooleanFunction(xmlXPathParserContext *ctxt, int nargs) {
7864
0
    xmlXPathObjectPtr cur;
7865
7866
0
    CHECK_ARITY(1);
7867
0
    cur = xmlXPathValuePop(ctxt);
7868
0
    if (cur == NULL) XP_ERROR(XPATH_INVALID_OPERAND);
7869
0
    if (cur->type != XPATH_BOOLEAN) {
7870
0
        int boolval = xmlXPathCastToBoolean(cur);
7871
7872
0
        xmlXPathReleaseObject(ctxt->context, cur);
7873
0
        cur = xmlXPathCacheNewBoolean(ctxt, boolval);
7874
0
    }
7875
0
    xmlXPathValuePush(ctxt, cur);
7876
0
}
7877
7878
/**
7879
 * Implement the not() XPath function
7880
 *    boolean not(boolean)
7881
 * The not function returns true if its argument is false,
7882
 * and false otherwise.
7883
 *
7884
 * @param ctxt  the XPath Parser context
7885
 * @param nargs  the number of arguments
7886
 */
7887
void
7888
0
xmlXPathNotFunction(xmlXPathParserContext *ctxt, int nargs) {
7889
0
    CHECK_ARITY(1);
7890
0
    CAST_TO_BOOLEAN;
7891
0
    CHECK_TYPE(XPATH_BOOLEAN);
7892
0
    ctxt->value->boolval = ! ctxt->value->boolval;
7893
0
}
7894
7895
/**
7896
 * Implement the true() XPath function
7897
 *    boolean true()
7898
 *
7899
 * @param ctxt  the XPath Parser context
7900
 * @param nargs  the number of arguments
7901
 */
7902
void
7903
0
xmlXPathTrueFunction(xmlXPathParserContext *ctxt, int nargs) {
7904
0
    CHECK_ARITY(0);
7905
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewBoolean(ctxt, 1));
7906
0
}
7907
7908
/**
7909
 * Implement the false() XPath function
7910
 *    boolean false()
7911
 *
7912
 * @param ctxt  the XPath Parser context
7913
 * @param nargs  the number of arguments
7914
 */
7915
void
7916
0
xmlXPathFalseFunction(xmlXPathParserContext *ctxt, int nargs) {
7917
0
    CHECK_ARITY(0);
7918
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewBoolean(ctxt, 0));
7919
0
}
7920
7921
/**
7922
 * Implement the lang() XPath function
7923
 *    boolean lang(string)
7924
 * The lang function returns true or false depending on whether the
7925
 * language of the context node as specified by xml:lang attributes
7926
 * is the same as or is a sublanguage of the language specified by
7927
 * the argument string. The language of the context node is determined
7928
 * by the value of the xml:lang attribute on the context node, or, if
7929
 * the context node has no xml:lang attribute, by the value of the
7930
 * xml:lang attribute on the nearest ancestor of the context node that
7931
 * has an xml:lang attribute. If there is no such attribute, then
7932
 * lang returns false. If there is such an attribute, then lang returns
7933
 * true if the attribute value is equal to the argument ignoring case,
7934
 * or if there is some suffix starting with - such that the attribute
7935
 * value is equal to the argument ignoring that suffix of the attribute
7936
 * value and ignoring case.
7937
 *
7938
 * @param ctxt  the XPath Parser context
7939
 * @param nargs  the number of arguments
7940
 */
7941
void
7942
0
xmlXPathLangFunction(xmlXPathParserContext *ctxt, int nargs) {
7943
0
    xmlXPathObjectPtr val;
7944
0
    xmlNodePtr cur;
7945
0
    xmlChar *theLang = NULL;
7946
0
    const xmlChar *lang;
7947
0
    int ret = 0;
7948
0
    int i;
7949
7950
0
    CHECK_ARITY(1);
7951
0
    CAST_TO_STRING;
7952
0
    CHECK_TYPE(XPATH_STRING);
7953
0
    val = xmlXPathValuePop(ctxt);
7954
0
    lang = val->stringval;
7955
0
    cur = ctxt->context->node;
7956
0
    while (cur != NULL) {
7957
0
        if (xmlNodeGetAttrValue(cur, BAD_CAST "lang", XML_XML_NAMESPACE,
7958
0
                                &theLang) < 0)
7959
0
            xmlXPathPErrMemory(ctxt);
7960
0
        if (theLang != NULL)
7961
0
            break;
7962
0
        cur = cur->parent;
7963
0
    }
7964
0
    if ((theLang != NULL) && (lang != NULL)) {
7965
0
        for (i = 0;lang[i] != 0;i++)
7966
0
            if (toupper(lang[i]) != toupper(theLang[i]))
7967
0
                goto not_equal;
7968
0
        if ((theLang[i] == 0) || (theLang[i] == '-'))
7969
0
            ret = 1;
7970
0
    }
7971
0
not_equal:
7972
0
    if (theLang != NULL)
7973
0
  xmlFree((void *)theLang);
7974
7975
0
    xmlXPathReleaseObject(ctxt->context, val);
7976
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewBoolean(ctxt, ret));
7977
0
}
7978
7979
/**
7980
 * Implement the number() XPath function
7981
 *    number number(object?)
7982
 *
7983
 * @param ctxt  the XPath Parser context
7984
 * @param nargs  the number of arguments
7985
 */
7986
void
7987
0
xmlXPathNumberFunction(xmlXPathParserContext *ctxt, int nargs) {
7988
0
    xmlXPathObjectPtr cur;
7989
0
    double res;
7990
7991
0
    if (ctxt == NULL) return;
7992
0
    if (nargs == 0) {
7993
0
  if (ctxt->context->node == NULL) {
7994
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewFloat(ctxt, 0.0));
7995
0
  } else {
7996
0
      xmlChar* content = xmlNodeGetContent(ctxt->context->node);
7997
0
            if (content == NULL)
7998
0
                xmlXPathPErrMemory(ctxt);
7999
8000
0
      res = xmlXPathStringEvalNumber(content);
8001
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewFloat(ctxt, res));
8002
0
      xmlFree(content);
8003
0
  }
8004
0
  return;
8005
0
    }
8006
8007
0
    CHECK_ARITY(1);
8008
0
    cur = xmlXPathValuePop(ctxt);
8009
0
    if (cur->type != XPATH_NUMBER) {
8010
0
        double floatval;
8011
8012
0
        floatval = xmlXPathCastToNumberInternal(ctxt, cur);
8013
0
        xmlXPathReleaseObject(ctxt->context, cur);
8014
0
        cur = xmlXPathCacheNewFloat(ctxt, floatval);
8015
0
    }
8016
0
    xmlXPathValuePush(ctxt, cur);
8017
0
}
8018
8019
/**
8020
 * Implement the sum() XPath function
8021
 *    number sum(node-set)
8022
 * The sum function returns the sum of the values of the nodes in
8023
 * the argument node-set.
8024
 *
8025
 * @param ctxt  the XPath Parser context
8026
 * @param nargs  the number of arguments
8027
 */
8028
void
8029
0
xmlXPathSumFunction(xmlXPathParserContext *ctxt, int nargs) {
8030
0
    xmlXPathObjectPtr cur;
8031
0
    int i;
8032
0
    double res = 0.0;
8033
8034
0
    CHECK_ARITY(1);
8035
0
    if ((ctxt->value == NULL) ||
8036
0
  ((ctxt->value->type != XPATH_NODESET) &&
8037
0
   (ctxt->value->type != XPATH_XSLT_TREE)))
8038
0
  XP_ERROR(XPATH_INVALID_TYPE);
8039
0
    cur = xmlXPathValuePop(ctxt);
8040
8041
0
    if ((cur->nodesetval != NULL) && (cur->nodesetval->nodeNr != 0)) {
8042
0
  for (i = 0; i < cur->nodesetval->nodeNr; i++) {
8043
0
      res += xmlXPathNodeToNumberInternal(ctxt,
8044
0
                                                cur->nodesetval->nodeTab[i]);
8045
0
  }
8046
0
    }
8047
0
    xmlXPathValuePush(ctxt, xmlXPathCacheNewFloat(ctxt, res));
8048
0
    xmlXPathReleaseObject(ctxt->context, cur);
8049
0
}
8050
8051
/**
8052
 * Implement the floor() XPath function
8053
 *    number floor(number)
8054
 * The floor function returns the largest (closest to positive infinity)
8055
 * number that is not greater than the argument and that is an integer.
8056
 *
8057
 * @param ctxt  the XPath Parser context
8058
 * @param nargs  the number of arguments
8059
 */
8060
void
8061
0
xmlXPathFloorFunction(xmlXPathParserContext *ctxt, int nargs) {
8062
0
    CHECK_ARITY(1);
8063
0
    CAST_TO_NUMBER;
8064
0
    CHECK_TYPE(XPATH_NUMBER);
8065
8066
0
    ctxt->value->floatval = floor(ctxt->value->floatval);
8067
0
}
8068
8069
/**
8070
 * Implement the ceiling() XPath function
8071
 *    number ceiling(number)
8072
 * The ceiling function returns the smallest (closest to negative infinity)
8073
 * number that is not less than the argument and that is an integer.
8074
 *
8075
 * @param ctxt  the XPath Parser context
8076
 * @param nargs  the number of arguments
8077
 */
8078
void
8079
0
xmlXPathCeilingFunction(xmlXPathParserContext *ctxt, int nargs) {
8080
0
    CHECK_ARITY(1);
8081
0
    CAST_TO_NUMBER;
8082
0
    CHECK_TYPE(XPATH_NUMBER);
8083
8084
#ifdef _AIX
8085
    /* Work around buggy ceil() function on AIX */
8086
    ctxt->value->floatval = copysign(ceil(ctxt->value->floatval), ctxt->value->floatval);
8087
#else
8088
0
    ctxt->value->floatval = ceil(ctxt->value->floatval);
8089
0
#endif
8090
0
}
8091
8092
/**
8093
 * Implement the round() XPath function
8094
 *    number round(number)
8095
 * The round function returns the number that is closest to the
8096
 * argument and that is an integer. If there are two such numbers,
8097
 * then the one that is closest to positive infinity is returned.
8098
 *
8099
 * @param ctxt  the XPath Parser context
8100
 * @param nargs  the number of arguments
8101
 */
8102
void
8103
0
xmlXPathRoundFunction(xmlXPathParserContext *ctxt, int nargs) {
8104
0
    double f;
8105
8106
0
    CHECK_ARITY(1);
8107
0
    CAST_TO_NUMBER;
8108
0
    CHECK_TYPE(XPATH_NUMBER);
8109
8110
0
    f = ctxt->value->floatval;
8111
8112
0
    if ((f >= -0.5) && (f < 0.5)) {
8113
        /* Handles negative zero. */
8114
0
        ctxt->value->floatval *= 0.0;
8115
0
    }
8116
0
    else {
8117
0
        double rounded = floor(f);
8118
0
        if (f - rounded >= 0.5)
8119
0
            rounded += 1.0;
8120
0
        ctxt->value->floatval = rounded;
8121
0
    }
8122
0
}
8123
8124
/************************************************************************
8125
 *                  *
8126
 *      The Parser          *
8127
 *                  *
8128
 ************************************************************************/
8129
8130
/*
8131
 * a few forward declarations since we use a recursive call based
8132
 * implementation.
8133
 */
8134
static void xmlXPathCompileExpr(xmlXPathParserContextPtr ctxt, int sort);
8135
static void xmlXPathCompPredicate(xmlXPathParserContextPtr ctxt, int filter);
8136
static void xmlXPathCompLocationPath(xmlXPathParserContextPtr ctxt);
8137
static void xmlXPathCompRelativeLocationPath(xmlXPathParserContextPtr ctxt);
8138
8139
/**
8140
 * Parse an XML non-colonized name.
8141
 *
8142
 * @param ctxt  the XPath Parser context
8143
 * @returns the nc name or NULL
8144
 */
8145
8146
xmlChar *
8147
0
xmlXPathParseNCName(xmlXPathParserContext *ctxt) {
8148
0
    const xmlChar *end;
8149
0
    xmlChar *ret;
8150
8151
0
    if ((ctxt == NULL) || (ctxt->cur == NULL)) return(NULL);
8152
8153
0
    end = xmlScanName(ctxt->cur, XML_MAX_NAME_LENGTH, XML_SCAN_NC);
8154
0
    if (end == NULL) {
8155
0
        XP_ERRORNULL(XPATH_EXPR_ERROR);
8156
0
    }
8157
0
    if (end == ctxt->cur)
8158
0
        return(NULL);
8159
8160
0
    ret = xmlStrndup(ctxt->cur, end - ctxt->cur);
8161
0
    if (ret == NULL)
8162
0
        xmlXPathPErrMemory(ctxt);
8163
0
    ctxt->cur = end;
8164
0
    return(ret);
8165
0
}
8166
8167
8168
/**
8169
 * Parse an XML qualified name
8170
 *
8171
 * @param ctxt  the XPath Parser context
8172
 * @param prefix  a xmlChar **
8173
 * @returns the function returns the local part, and prefix is updated
8174
 *   to get the Prefix if any.
8175
 */
8176
8177
static xmlChar *
8178
0
xmlXPathParseQName(xmlXPathParserContextPtr ctxt, xmlChar **prefix) {
8179
0
    xmlChar *ret = NULL;
8180
8181
0
    *prefix = NULL;
8182
0
    ret = xmlXPathParseNCName(ctxt);
8183
0
    if (ret && CUR == ':') {
8184
0
        *prefix = ret;
8185
0
  NEXT;
8186
0
  ret = xmlXPathParseNCName(ctxt);
8187
0
    }
8188
0
    return(ret);
8189
0
}
8190
8191
/**
8192
 * parse an XML name
8193
 *
8194
 * @param ctxt  the XPath Parser context
8195
 * @returns the name or NULL
8196
 */
8197
8198
xmlChar *
8199
0
xmlXPathParseName(xmlXPathParserContext *ctxt) {
8200
0
    const xmlChar *end;
8201
0
    xmlChar *ret;
8202
8203
0
    if ((ctxt == NULL) || (ctxt->cur == NULL)) return(NULL);
8204
8205
0
    end = xmlScanName(ctxt->cur, XML_MAX_NAME_LENGTH, 0);
8206
0
    if (end == NULL) {
8207
0
        XP_ERRORNULL(XPATH_EXPR_ERROR);
8208
0
    }
8209
0
    if (end == ctxt->cur)
8210
0
        return(NULL);
8211
8212
0
    ret = xmlStrndup(ctxt->cur, end - ctxt->cur);
8213
0
    if (ret == NULL)
8214
0
        xmlXPathPErrMemory(ctxt);
8215
0
    ctxt->cur = end;
8216
0
    return(ret);
8217
0
}
8218
8219
0
#define MAX_FRAC 20
8220
8221
/**
8222
 *  [30a]  Float  ::= Number ('e' Digits?)?
8223
 *
8224
 *  [30]   Number ::=   Digits ('.' Digits?)?
8225
 *                    | '.' Digits
8226
 *  [31]   Digits ::=   [0-9]+
8227
 *
8228
 * Compile a Number in the string
8229
 * In complement of the Number expression, this function also handles
8230
 * negative values : '-' Number.
8231
 *
8232
 * @param str  A string to scan
8233
 * @returns the double value.
8234
 */
8235
double
8236
0
xmlXPathStringEvalNumber(const xmlChar *str) {
8237
0
    const xmlChar *cur = str;
8238
0
    double ret;
8239
0
    int ok = 0;
8240
0
    int isneg = 0;
8241
0
    int exponent = 0;
8242
0
    int is_exponent_negative = 0;
8243
0
#ifdef __GNUC__
8244
0
    unsigned long tmp = 0;
8245
0
    double temp;
8246
0
#endif
8247
0
    if (cur == NULL) return(0);
8248
0
    while (IS_BLANK_CH(*cur)) cur++;
8249
0
    if (*cur == '-') {
8250
0
  isneg = 1;
8251
0
  cur++;
8252
0
    }
8253
0
    if ((*cur != '.') && ((*cur < '0') || (*cur > '9'))) {
8254
0
        return(xmlXPathNAN);
8255
0
    }
8256
8257
0
#ifdef __GNUC__
8258
    /*
8259
     * tmp/temp is a workaround against a gcc compiler bug
8260
     * http://veillard.com/gcc.bug
8261
     */
8262
0
    ret = 0;
8263
0
    while ((*cur >= '0') && (*cur <= '9')) {
8264
0
  ret = ret * 10;
8265
0
  tmp = (*cur - '0');
8266
0
  ok = 1;
8267
0
  cur++;
8268
0
  temp = (double) tmp;
8269
0
  ret = ret + temp;
8270
0
    }
8271
#else
8272
    ret = 0;
8273
    while ((*cur >= '0') && (*cur <= '9')) {
8274
  ret = ret * 10 + (*cur - '0');
8275
  ok = 1;
8276
  cur++;
8277
    }
8278
#endif
8279
8280
0
    if (*cur == '.') {
8281
0
  int v, frac = 0, max;
8282
0
  double fraction = 0;
8283
8284
0
        cur++;
8285
0
  if (((*cur < '0') || (*cur > '9')) && (!ok)) {
8286
0
      return(xmlXPathNAN);
8287
0
  }
8288
0
        while (*cur == '0') {
8289
0
      frac = frac + 1;
8290
0
      cur++;
8291
0
        }
8292
0
        max = frac + MAX_FRAC;
8293
0
  while (((*cur >= '0') && (*cur <= '9')) && (frac < max)) {
8294
0
      v = (*cur - '0');
8295
0
      fraction = fraction * 10 + v;
8296
0
      frac = frac + 1;
8297
0
      cur++;
8298
0
  }
8299
0
  fraction /= pow(10.0, frac);
8300
0
  ret = ret + fraction;
8301
0
  while ((*cur >= '0') && (*cur <= '9'))
8302
0
      cur++;
8303
0
    }
8304
0
    if ((*cur == 'e') || (*cur == 'E')) {
8305
0
      cur++;
8306
0
      if (*cur == '-') {
8307
0
  is_exponent_negative = 1;
8308
0
  cur++;
8309
0
      } else if (*cur == '+') {
8310
0
        cur++;
8311
0
      }
8312
0
      while ((*cur >= '0') && (*cur <= '9')) {
8313
0
        if (exponent < 1000000)
8314
0
    exponent = exponent * 10 + (*cur - '0');
8315
0
  cur++;
8316
0
      }
8317
0
    }
8318
0
    while (IS_BLANK_CH(*cur)) cur++;
8319
0
    if (*cur != 0) return(xmlXPathNAN);
8320
0
    if (isneg) ret = -ret;
8321
0
    if (is_exponent_negative) exponent = -exponent;
8322
0
    ret *= pow(10.0, (double)exponent);
8323
0
    return(ret);
8324
0
}
8325
8326
/**
8327
 *  [30]   Number ::=   Digits ('.' Digits?)?
8328
 *                    | '.' Digits
8329
 *  [31]   Digits ::=   [0-9]+
8330
 *
8331
 * Compile a Number, then push it on the stack
8332
 *
8333
 * @param ctxt  the XPath Parser context
8334
 */
8335
static void
8336
xmlXPathCompNumber(xmlXPathParserContextPtr ctxt)
8337
0
{
8338
0
    double ret = 0.0;
8339
0
    int ok = 0;
8340
0
    int exponent = 0;
8341
0
    int is_exponent_negative = 0;
8342
0
    xmlXPathObjectPtr num;
8343
0
#ifdef __GNUC__
8344
0
    unsigned long tmp = 0;
8345
0
    double temp;
8346
0
#endif
8347
8348
0
    CHECK_ERROR;
8349
0
    if ((CUR != '.') && ((CUR < '0') || (CUR > '9'))) {
8350
0
        XP_ERROR(XPATH_NUMBER_ERROR);
8351
0
    }
8352
0
#ifdef __GNUC__
8353
    /*
8354
     * tmp/temp is a workaround against a gcc compiler bug
8355
     * http://veillard.com/gcc.bug
8356
     */
8357
0
    ret = 0;
8358
0
    while ((CUR >= '0') && (CUR <= '9')) {
8359
0
  ret = ret * 10;
8360
0
  tmp = (CUR - '0');
8361
0
        ok = 1;
8362
0
        NEXT;
8363
0
  temp = (double) tmp;
8364
0
  ret = ret + temp;
8365
0
    }
8366
#else
8367
    ret = 0;
8368
    while ((CUR >= '0') && (CUR <= '9')) {
8369
  ret = ret * 10 + (CUR - '0');
8370
  ok = 1;
8371
  NEXT;
8372
    }
8373
#endif
8374
0
    if (CUR == '.') {
8375
0
  int v, frac = 0, max;
8376
0
  double fraction = 0;
8377
8378
0
        NEXT;
8379
0
        if (((CUR < '0') || (CUR > '9')) && (!ok)) {
8380
0
            XP_ERROR(XPATH_NUMBER_ERROR);
8381
0
        }
8382
0
        while (CUR == '0') {
8383
0
            frac = frac + 1;
8384
0
            NEXT;
8385
0
        }
8386
0
        max = frac + MAX_FRAC;
8387
0
        while ((CUR >= '0') && (CUR <= '9') && (frac < max)) {
8388
0
      v = (CUR - '0');
8389
0
      fraction = fraction * 10 + v;
8390
0
      frac = frac + 1;
8391
0
            NEXT;
8392
0
        }
8393
0
        fraction /= pow(10.0, frac);
8394
0
        ret = ret + fraction;
8395
0
        while ((CUR >= '0') && (CUR <= '9'))
8396
0
            NEXT;
8397
0
    }
8398
0
    if ((CUR == 'e') || (CUR == 'E')) {
8399
0
        NEXT;
8400
0
        if (CUR == '-') {
8401
0
            is_exponent_negative = 1;
8402
0
            NEXT;
8403
0
        } else if (CUR == '+') {
8404
0
      NEXT;
8405
0
  }
8406
0
        while ((CUR >= '0') && (CUR <= '9')) {
8407
0
            if (exponent < 1000000)
8408
0
                exponent = exponent * 10 + (CUR - '0');
8409
0
            NEXT;
8410
0
        }
8411
0
        if (is_exponent_negative)
8412
0
            exponent = -exponent;
8413
0
        ret *= pow(10.0, (double) exponent);
8414
0
    }
8415
0
    num = xmlXPathCacheNewFloat(ctxt, ret);
8416
0
    if (num == NULL) {
8417
0
  ctxt->error = XPATH_MEMORY_ERROR;
8418
0
    } else if (PUSH_LONG_EXPR(XPATH_OP_VALUE, XPATH_NUMBER, 0, 0, num,
8419
0
                              NULL) == -1) {
8420
0
        xmlXPathReleaseObject(ctxt->context, num);
8421
0
    }
8422
0
}
8423
8424
/**
8425
 * Parse a Literal
8426
 *
8427
 *  [29]   Literal ::=   '"' [^"]* '"'
8428
 *                    | "'" [^']* "'"
8429
 *
8430
 * @param ctxt  the XPath Parser context
8431
 * @returns the value found or NULL in case of error
8432
 */
8433
static xmlChar *
8434
0
xmlXPathParseLiteral(xmlXPathParserContextPtr ctxt) {
8435
0
    const xmlChar *q;
8436
0
    xmlChar *ret = NULL;
8437
0
    int quote;
8438
8439
0
    if (CUR == '"') {
8440
0
        quote = '"';
8441
0
    } else if (CUR == '\'') {
8442
0
        quote = '\'';
8443
0
    } else {
8444
0
  XP_ERRORNULL(XPATH_START_LITERAL_ERROR);
8445
0
    }
8446
8447
0
    NEXT;
8448
0
    q = CUR_PTR;
8449
0
    while (CUR != quote) {
8450
0
        int ch;
8451
0
        int len = 4;
8452
8453
0
        if (CUR == 0)
8454
0
            XP_ERRORNULL(XPATH_UNFINISHED_LITERAL_ERROR);
8455
0
        ch = xmlGetUTF8Char(CUR_PTR, &len);
8456
0
        if ((ch < 0) || (IS_CHAR(ch) == 0))
8457
0
            XP_ERRORNULL(XPATH_INVALID_CHAR_ERROR);
8458
0
        CUR_PTR += len;
8459
0
    }
8460
0
    ret = xmlStrndup(q, CUR_PTR - q);
8461
0
    if (ret == NULL)
8462
0
        xmlXPathPErrMemory(ctxt);
8463
0
    NEXT;
8464
0
    return(ret);
8465
0
}
8466
8467
/**
8468
 * Parse a Literal and push it on the stack.
8469
 *
8470
 *  [29]   Literal ::=   '"' [^"]* '"'
8471
 *                    | "'" [^']* "'"
8472
 *
8473
 * TODO: Memory allocation could be improved.
8474
 *
8475
 * @param ctxt  the XPath Parser context
8476
 */
8477
static void
8478
0
xmlXPathCompLiteral(xmlXPathParserContextPtr ctxt) {
8479
0
    xmlChar *ret = NULL;
8480
0
    xmlXPathObjectPtr lit;
8481
8482
0
    ret = xmlXPathParseLiteral(ctxt);
8483
0
    if (ret == NULL)
8484
0
        return;
8485
0
    lit = xmlXPathCacheNewString(ctxt, ret);
8486
0
    if (lit == NULL) {
8487
0
        ctxt->error = XPATH_MEMORY_ERROR;
8488
0
    } else if (PUSH_LONG_EXPR(XPATH_OP_VALUE, XPATH_STRING, 0, 0, lit,
8489
0
                              NULL) == -1) {
8490
0
        xmlXPathReleaseObject(ctxt->context, lit);
8491
0
    }
8492
0
    xmlFree(ret);
8493
0
}
8494
8495
/**
8496
 * Parse a VariableReference, evaluate it and push it on the stack.
8497
 *
8498
 * The variable bindings consist of a mapping from variable names
8499
 * to variable values. The value of a variable is an object, which can be
8500
 * of any of the types that are possible for the value of an expression,
8501
 * and may also be of additional types not specified here.
8502
 *
8503
 * Early evaluation is possible since:
8504
 * The variable bindings [...] used to evaluate a subexpression are
8505
 * always the same as those used to evaluate the containing expression.
8506
 *
8507
 *  [36]   VariableReference ::=   '$' QName
8508
 * @param ctxt  the XPath Parser context
8509
 */
8510
static void
8511
0
xmlXPathCompVariableReference(xmlXPathParserContextPtr ctxt) {
8512
0
    xmlChar *name;
8513
0
    xmlChar *prefix;
8514
8515
0
    SKIP_BLANKS;
8516
0
    if (CUR != '$') {
8517
0
  XP_ERROR(XPATH_VARIABLE_REF_ERROR);
8518
0
    }
8519
0
    NEXT;
8520
0
    name = xmlXPathParseQName(ctxt, &prefix);
8521
0
    if (name == NULL) {
8522
0
        xmlFree(prefix);
8523
0
  XP_ERROR(XPATH_VARIABLE_REF_ERROR);
8524
0
    }
8525
0
    ctxt->comp->last = -1;
8526
0
    if (PUSH_LONG_EXPR(XPATH_OP_VARIABLE, 0, 0, 0, name, prefix) == -1) {
8527
0
        xmlFree(prefix);
8528
0
        xmlFree(name);
8529
0
    }
8530
0
    SKIP_BLANKS;
8531
0
    if ((ctxt->context != NULL) && (ctxt->context->flags & XML_XPATH_NOVAR)) {
8532
0
  XP_ERROR(XPATH_FORBID_VARIABLE_ERROR);
8533
0
    }
8534
0
}
8535
8536
/**
8537
 * Is the name given a NodeType one.
8538
 *
8539
 *  [38]   NodeType ::=   'comment'
8540
 *                    | 'text'
8541
 *                    | 'processing-instruction'
8542
 *                    | 'node'
8543
 *
8544
 * @param name  a name string
8545
 * @returns 1 if true 0 otherwise
8546
 */
8547
int
8548
0
xmlXPathIsNodeType(const xmlChar *name) {
8549
0
    if (name == NULL)
8550
0
  return(0);
8551
8552
0
    if (xmlStrEqual(name, BAD_CAST "node"))
8553
0
  return(1);
8554
0
    if (xmlStrEqual(name, BAD_CAST "text"))
8555
0
  return(1);
8556
0
    if (xmlStrEqual(name, BAD_CAST "comment"))
8557
0
  return(1);
8558
0
    if (xmlStrEqual(name, BAD_CAST "processing-instruction"))
8559
0
  return(1);
8560
0
    return(0);
8561
0
}
8562
8563
/**
8564
 *  [16]   FunctionCall ::=   FunctionName '(' ( Argument ( ',' Argument)*)? ')'
8565
 *  [17]   Argument ::=   Expr
8566
 *
8567
 * Compile a function call, the evaluation of all arguments are
8568
 * pushed on the stack
8569
 *
8570
 * @param ctxt  the XPath Parser context
8571
 */
8572
static void
8573
0
xmlXPathCompFunctionCall(xmlXPathParserContextPtr ctxt) {
8574
0
    xmlChar *name;
8575
0
    xmlChar *prefix;
8576
0
    int nbargs = 0;
8577
0
    int sort = 1;
8578
8579
0
    name = xmlXPathParseQName(ctxt, &prefix);
8580
0
    if (name == NULL) {
8581
0
  xmlFree(prefix);
8582
0
  XP_ERROR(XPATH_EXPR_ERROR);
8583
0
    }
8584
0
    SKIP_BLANKS;
8585
8586
0
    if (CUR != '(') {
8587
0
  xmlFree(name);
8588
0
  xmlFree(prefix);
8589
0
  XP_ERROR(XPATH_EXPR_ERROR);
8590
0
    }
8591
0
    NEXT;
8592
0
    SKIP_BLANKS;
8593
8594
    /*
8595
    * Optimization for count(): we don't need the node-set to be sorted.
8596
    */
8597
0
    if ((prefix == NULL) && (name[0] == 'c') &&
8598
0
  xmlStrEqual(name, BAD_CAST "count"))
8599
0
    {
8600
0
  sort = 0;
8601
0
    }
8602
0
    ctxt->comp->last = -1;
8603
0
    if (CUR != ')') {
8604
0
  while (CUR != 0) {
8605
0
      int op1 = ctxt->comp->last;
8606
0
      ctxt->comp->last = -1;
8607
0
      xmlXPathCompileExpr(ctxt, sort);
8608
0
      if (ctxt->error != XPATH_EXPRESSION_OK) {
8609
0
    xmlFree(name);
8610
0
    xmlFree(prefix);
8611
0
    return;
8612
0
      }
8613
0
      PUSH_BINARY_EXPR(XPATH_OP_ARG, op1, ctxt->comp->last, 0, 0);
8614
0
      nbargs++;
8615
0
      if (CUR == ')') break;
8616
0
      if (CUR != ',') {
8617
0
    xmlFree(name);
8618
0
    xmlFree(prefix);
8619
0
    XP_ERROR(XPATH_EXPR_ERROR);
8620
0
      }
8621
0
      NEXT;
8622
0
      SKIP_BLANKS;
8623
0
  }
8624
0
    }
8625
0
    if (PUSH_LONG_EXPR(XPATH_OP_FUNCTION, nbargs, 0, 0, name, prefix) == -1) {
8626
0
        xmlFree(prefix);
8627
0
        xmlFree(name);
8628
0
    }
8629
0
    NEXT;
8630
0
    SKIP_BLANKS;
8631
0
}
8632
8633
/**
8634
 *  [15]   PrimaryExpr ::=   VariableReference
8635
 *                | '(' Expr ')'
8636
 *                | Literal
8637
 *                | Number
8638
 *                | FunctionCall
8639
 *
8640
 * Compile a primary expression.
8641
 *
8642
 * @param ctxt  the XPath Parser context
8643
 */
8644
static void
8645
0
xmlXPathCompPrimaryExpr(xmlXPathParserContextPtr ctxt) {
8646
0
    SKIP_BLANKS;
8647
0
    if (CUR == '$') xmlXPathCompVariableReference(ctxt);
8648
0
    else if (CUR == '(') {
8649
0
  NEXT;
8650
0
  SKIP_BLANKS;
8651
0
  xmlXPathCompileExpr(ctxt, 1);
8652
0
  CHECK_ERROR;
8653
0
  if (CUR != ')') {
8654
0
      XP_ERROR(XPATH_EXPR_ERROR);
8655
0
  }
8656
0
  NEXT;
8657
0
  SKIP_BLANKS;
8658
0
    } else if (IS_ASCII_DIGIT(CUR) || (CUR == '.' && IS_ASCII_DIGIT(NXT(1)))) {
8659
0
  xmlXPathCompNumber(ctxt);
8660
0
    } else if ((CUR == '\'') || (CUR == '"')) {
8661
0
  xmlXPathCompLiteral(ctxt);
8662
0
    } else {
8663
0
  xmlXPathCompFunctionCall(ctxt);
8664
0
    }
8665
0
    SKIP_BLANKS;
8666
0
}
8667
8668
/**
8669
 *  [20]   FilterExpr ::=   PrimaryExpr
8670
 *               | FilterExpr Predicate
8671
 *
8672
 * Compile a filter expression.
8673
 * Square brackets are used to filter expressions in the same way that
8674
 * they are used in location paths. It is an error if the expression to
8675
 * be filtered does not evaluate to a node-set. The context node list
8676
 * used for evaluating the expression in square brackets is the node-set
8677
 * to be filtered listed in document order.
8678
 *
8679
 * @param ctxt  the XPath Parser context
8680
 */
8681
8682
static void
8683
0
xmlXPathCompFilterExpr(xmlXPathParserContextPtr ctxt) {
8684
0
    xmlXPathCompPrimaryExpr(ctxt);
8685
0
    CHECK_ERROR;
8686
0
    SKIP_BLANKS;
8687
8688
0
    while (CUR == '[') {
8689
0
  xmlXPathCompPredicate(ctxt, 1);
8690
0
  SKIP_BLANKS;
8691
0
    }
8692
8693
8694
0
}
8695
8696
/**
8697
 * Trickery: parse an XML name but without consuming the input flow
8698
 * Needed to avoid insanity in the parser state.
8699
 *
8700
 * @param ctxt  the XPath Parser context
8701
 * @returns the Name parsed or NULL
8702
 */
8703
8704
static xmlChar *
8705
0
xmlXPathScanName(xmlXPathParserContextPtr ctxt) {
8706
0
    const xmlChar *end;
8707
0
    xmlChar *ret;
8708
8709
0
    end = xmlScanName(ctxt->cur, XML_MAX_NAME_LENGTH, 0);
8710
0
    if (end == NULL) {
8711
0
        XP_ERRORNULL(XPATH_EXPR_ERROR);
8712
0
    }
8713
0
    if (end == ctxt->cur)
8714
0
        return(NULL);
8715
8716
0
    ret = xmlStrndup(ctxt->cur, end - ctxt->cur);
8717
0
    if (ret == NULL)
8718
0
        xmlXPathPErrMemory(ctxt);
8719
0
    return(ret);
8720
0
}
8721
8722
/**
8723
 *  [19]   PathExpr ::=   LocationPath
8724
 *               | FilterExpr
8725
 *               | FilterExpr '/' RelativeLocationPath
8726
 *               | FilterExpr '//' RelativeLocationPath
8727
 *
8728
 * Compile a path expression.
8729
 *
8730
 * @param ctxt  the XPath Parser context
8731
 */
8732
8733
static void
8734
0
xmlXPathCompPathExpr(xmlXPathParserContextPtr ctxt) {
8735
0
    int lc = 1;           /* Should we branch to LocationPath ?         */
8736
0
    xmlChar *name = NULL; /* we may have to preparse a name to find out */
8737
8738
0
    SKIP_BLANKS;
8739
0
    if ((CUR == '$') || (CUR == '(') ||
8740
0
  (IS_ASCII_DIGIT(CUR)) ||
8741
0
        (CUR == '\'') || (CUR == '"') ||
8742
0
  (CUR == '.' && IS_ASCII_DIGIT(NXT(1)))) {
8743
0
  lc = 0;
8744
0
    } else if (CUR == '*') {
8745
  /* relative or absolute location path */
8746
0
  lc = 1;
8747
0
    } else if (CUR == '/') {
8748
  /* relative or absolute location path */
8749
0
  lc = 1;
8750
0
    } else if (CUR == '@') {
8751
  /* relative abbreviated attribute location path */
8752
0
  lc = 1;
8753
0
    } else if (CUR == '.') {
8754
  /* relative abbreviated attribute location path */
8755
0
  lc = 1;
8756
0
    } else {
8757
  /*
8758
   * Problem is finding if we have a name here whether it's:
8759
   *   - a nodetype
8760
   *   - a function call in which case it's followed by '('
8761
   *   - an axis in which case it's followed by ':'
8762
   *   - a element name
8763
   * We do an a priori analysis here rather than having to
8764
   * maintain parsed token content through the recursive function
8765
   * calls. This looks uglier but makes the code easier to
8766
   * read/write/debug.
8767
   */
8768
0
  SKIP_BLANKS;
8769
0
  name = xmlXPathScanName(ctxt);
8770
0
  if ((name != NULL) && (xmlStrstr(name, (xmlChar *) "::") != NULL)) {
8771
0
      lc = 1;
8772
0
      xmlFree(name);
8773
0
  } else if (name != NULL) {
8774
0
      int len =xmlStrlen(name);
8775
8776
8777
0
      while (NXT(len) != 0) {
8778
0
    if (NXT(len) == '/') {
8779
        /* element name */
8780
0
        lc = 1;
8781
0
        break;
8782
0
    } else if (IS_BLANK_CH(NXT(len))) {
8783
        /* ignore blanks */
8784
0
        ;
8785
0
    } else if (NXT(len) == ':') {
8786
0
        lc = 1;
8787
0
        break;
8788
0
    } else if ((NXT(len) == '(')) {
8789
        /* Node Type or Function */
8790
0
        if (xmlXPathIsNodeType(name)) {
8791
0
      lc = 1;
8792
0
        } else {
8793
0
      lc = 0;
8794
0
        }
8795
0
                    break;
8796
0
    } else if ((NXT(len) == '[')) {
8797
        /* element name */
8798
0
        lc = 1;
8799
0
        break;
8800
0
    } else if ((NXT(len) == '<') || (NXT(len) == '>') ||
8801
0
         (NXT(len) == '=')) {
8802
0
        lc = 1;
8803
0
        break;
8804
0
    } else {
8805
0
        lc = 1;
8806
0
        break;
8807
0
    }
8808
0
    len++;
8809
0
      }
8810
0
      if (NXT(len) == 0) {
8811
    /* element name */
8812
0
    lc = 1;
8813
0
      }
8814
0
      xmlFree(name);
8815
0
  } else {
8816
      /* make sure all cases are covered explicitly */
8817
0
      XP_ERROR(XPATH_EXPR_ERROR);
8818
0
  }
8819
0
    }
8820
8821
0
    if (lc) {
8822
0
  if (CUR == '/') {
8823
0
      PUSH_LEAVE_EXPR(XPATH_OP_ROOT, 0, 0);
8824
0
  } else {
8825
0
      PUSH_LEAVE_EXPR(XPATH_OP_NODE, 0, 0);
8826
0
  }
8827
0
  xmlXPathCompLocationPath(ctxt);
8828
0
    } else {
8829
0
  xmlXPathCompFilterExpr(ctxt);
8830
0
  CHECK_ERROR;
8831
0
  if ((CUR == '/') && (NXT(1) == '/')) {
8832
0
      SKIP(2);
8833
0
      SKIP_BLANKS;
8834
8835
0
      PUSH_LONG_EXPR(XPATH_OP_COLLECT, AXIS_DESCENDANT_OR_SELF,
8836
0
        NODE_TEST_TYPE, NODE_TYPE_NODE, NULL, NULL);
8837
8838
0
      xmlXPathCompRelativeLocationPath(ctxt);
8839
0
  } else if (CUR == '/') {
8840
0
      xmlXPathCompRelativeLocationPath(ctxt);
8841
0
  }
8842
0
    }
8843
0
    SKIP_BLANKS;
8844
0
}
8845
8846
/**
8847
 *  [18]   UnionExpr ::=   PathExpr
8848
 *               | UnionExpr '|' PathExpr
8849
 *
8850
 * Compile an union expression.
8851
 *
8852
 * @param ctxt  the XPath Parser context
8853
 */
8854
8855
static void
8856
0
xmlXPathCompUnionExpr(xmlXPathParserContextPtr ctxt) {
8857
0
    xmlXPathCompPathExpr(ctxt);
8858
0
    CHECK_ERROR;
8859
0
    SKIP_BLANKS;
8860
0
    while (CUR == '|') {
8861
0
  int op1 = ctxt->comp->last;
8862
0
  PUSH_LEAVE_EXPR(XPATH_OP_NODE, 0, 0);
8863
8864
0
  NEXT;
8865
0
  SKIP_BLANKS;
8866
0
  xmlXPathCompPathExpr(ctxt);
8867
8868
0
  PUSH_BINARY_EXPR(XPATH_OP_UNION, op1, ctxt->comp->last, 0, 0);
8869
8870
0
  SKIP_BLANKS;
8871
0
    }
8872
0
}
8873
8874
/**
8875
 *  [27]   UnaryExpr ::=   UnionExpr
8876
 *                   | '-' UnaryExpr
8877
 *
8878
 * Compile an unary expression.
8879
 *
8880
 * @param ctxt  the XPath Parser context
8881
 */
8882
8883
static void
8884
0
xmlXPathCompUnaryExpr(xmlXPathParserContextPtr ctxt) {
8885
0
    int minus = 0;
8886
0
    int found = 0;
8887
8888
0
    SKIP_BLANKS;
8889
0
    while (CUR == '-') {
8890
0
        minus = 1 - minus;
8891
0
  found = 1;
8892
0
  NEXT;
8893
0
  SKIP_BLANKS;
8894
0
    }
8895
8896
0
    xmlXPathCompUnionExpr(ctxt);
8897
0
    CHECK_ERROR;
8898
0
    if (found) {
8899
0
  if (minus)
8900
0
      PUSH_UNARY_EXPR(XPATH_OP_PLUS, ctxt->comp->last, 2, 0);
8901
0
  else
8902
0
      PUSH_UNARY_EXPR(XPATH_OP_PLUS, ctxt->comp->last, 3, 0);
8903
0
    }
8904
0
}
8905
8906
/**
8907
 *  [26]   MultiplicativeExpr ::=   UnaryExpr
8908
 *                   | MultiplicativeExpr MultiplyOperator UnaryExpr
8909
 *                   | MultiplicativeExpr 'div' UnaryExpr
8910
 *                   | MultiplicativeExpr 'mod' UnaryExpr
8911
 *  [34]   MultiplyOperator ::=   '*'
8912
 *
8913
 * Compile an Additive expression.
8914
 *
8915
 * @param ctxt  the XPath Parser context
8916
 */
8917
8918
static void
8919
0
xmlXPathCompMultiplicativeExpr(xmlXPathParserContextPtr ctxt) {
8920
0
    xmlXPathCompUnaryExpr(ctxt);
8921
0
    CHECK_ERROR;
8922
0
    SKIP_BLANKS;
8923
0
    while ((CUR == '*') ||
8924
0
           ((CUR == 'd') && (NXT(1) == 'i') && (NXT(2) == 'v')) ||
8925
0
           ((CUR == 'm') && (NXT(1) == 'o') && (NXT(2) == 'd'))) {
8926
0
  int op = -1;
8927
0
  int op1 = ctxt->comp->last;
8928
8929
0
        if (CUR == '*') {
8930
0
      op = 0;
8931
0
      NEXT;
8932
0
  } else if (CUR == 'd') {
8933
0
      op = 1;
8934
0
      SKIP(3);
8935
0
  } else if (CUR == 'm') {
8936
0
      op = 2;
8937
0
      SKIP(3);
8938
0
  }
8939
0
  SKIP_BLANKS;
8940
0
        xmlXPathCompUnaryExpr(ctxt);
8941
0
  CHECK_ERROR;
8942
0
  PUSH_BINARY_EXPR(XPATH_OP_MULT, op1, ctxt->comp->last, op, 0);
8943
0
  SKIP_BLANKS;
8944
0
    }
8945
0
}
8946
8947
/**
8948
 *  [25]   AdditiveExpr ::=   MultiplicativeExpr
8949
 *                   | AdditiveExpr '+' MultiplicativeExpr
8950
 *                   | AdditiveExpr '-' MultiplicativeExpr
8951
 *
8952
 * Compile an Additive expression.
8953
 *
8954
 * @param ctxt  the XPath Parser context
8955
 */
8956
8957
static void
8958
0
xmlXPathCompAdditiveExpr(xmlXPathParserContextPtr ctxt) {
8959
8960
0
    xmlXPathCompMultiplicativeExpr(ctxt);
8961
0
    CHECK_ERROR;
8962
0
    SKIP_BLANKS;
8963
0
    while ((CUR == '+') || (CUR == '-')) {
8964
0
  int plus;
8965
0
  int op1 = ctxt->comp->last;
8966
8967
0
        if (CUR == '+') plus = 1;
8968
0
  else plus = 0;
8969
0
  NEXT;
8970
0
  SKIP_BLANKS;
8971
0
        xmlXPathCompMultiplicativeExpr(ctxt);
8972
0
  CHECK_ERROR;
8973
0
  PUSH_BINARY_EXPR(XPATH_OP_PLUS, op1, ctxt->comp->last, plus, 0);
8974
0
  SKIP_BLANKS;
8975
0
    }
8976
0
}
8977
8978
/**
8979
 *  [24]   RelationalExpr ::=   AdditiveExpr
8980
 *                 | RelationalExpr '<' AdditiveExpr
8981
 *                 | RelationalExpr '>' AdditiveExpr
8982
 *                 | RelationalExpr '<=' AdditiveExpr
8983
 *                 | RelationalExpr '>=' AdditiveExpr
8984
 *
8985
 *  A <= B > C is allowed ? Answer from James, yes with
8986
 *  (AdditiveExpr <= AdditiveExpr) > AdditiveExpr
8987
 *  which is basically what got implemented.
8988
 *
8989
 * Compile a Relational expression, then push the result
8990
 * on the stack
8991
 *
8992
 * @param ctxt  the XPath Parser context
8993
 */
8994
8995
static void
8996
0
xmlXPathCompRelationalExpr(xmlXPathParserContextPtr ctxt) {
8997
0
    xmlXPathCompAdditiveExpr(ctxt);
8998
0
    CHECK_ERROR;
8999
0
    SKIP_BLANKS;
9000
0
    while ((CUR == '<') || (CUR == '>')) {
9001
0
  int inf, strict;
9002
0
  int op1 = ctxt->comp->last;
9003
9004
0
        if (CUR == '<') inf = 1;
9005
0
  else inf = 0;
9006
0
  if (NXT(1) == '=') strict = 0;
9007
0
  else strict = 1;
9008
0
  NEXT;
9009
0
  if (!strict) NEXT;
9010
0
  SKIP_BLANKS;
9011
0
        xmlXPathCompAdditiveExpr(ctxt);
9012
0
  CHECK_ERROR;
9013
0
  PUSH_BINARY_EXPR(XPATH_OP_CMP, op1, ctxt->comp->last, inf, strict);
9014
0
  SKIP_BLANKS;
9015
0
    }
9016
0
}
9017
9018
/**
9019
 *  [23]   EqualityExpr ::=   RelationalExpr
9020
 *                 | EqualityExpr '=' RelationalExpr
9021
 *                 | EqualityExpr '!=' RelationalExpr
9022
 *
9023
 *  A != B != C is allowed ? Answer from James, yes with
9024
 *  (RelationalExpr = RelationalExpr) = RelationalExpr
9025
 *  (RelationalExpr != RelationalExpr) != RelationalExpr
9026
 *  which is basically what got implemented.
9027
 *
9028
 * Compile an Equality expression.
9029
 *
9030
 * @param ctxt  the XPath Parser context
9031
 */
9032
static void
9033
0
xmlXPathCompEqualityExpr(xmlXPathParserContextPtr ctxt) {
9034
0
    xmlXPathCompRelationalExpr(ctxt);
9035
0
    CHECK_ERROR;
9036
0
    SKIP_BLANKS;
9037
0
    while ((CUR == '=') || ((CUR == '!') && (NXT(1) == '='))) {
9038
0
  int eq;
9039
0
  int op1 = ctxt->comp->last;
9040
9041
0
        if (CUR == '=') eq = 1;
9042
0
  else eq = 0;
9043
0
  NEXT;
9044
0
  if (!eq) NEXT;
9045
0
  SKIP_BLANKS;
9046
0
        xmlXPathCompRelationalExpr(ctxt);
9047
0
  CHECK_ERROR;
9048
0
  PUSH_BINARY_EXPR(XPATH_OP_EQUAL, op1, ctxt->comp->last, eq, 0);
9049
0
  SKIP_BLANKS;
9050
0
    }
9051
0
}
9052
9053
/**
9054
 *  [22]   AndExpr ::=   EqualityExpr
9055
 *                 | AndExpr 'and' EqualityExpr
9056
 *
9057
 * Compile an AND expression.
9058
 *
9059
 * @param ctxt  the XPath Parser context
9060
 */
9061
static void
9062
0
xmlXPathCompAndExpr(xmlXPathParserContextPtr ctxt) {
9063
0
    xmlXPathCompEqualityExpr(ctxt);
9064
0
    CHECK_ERROR;
9065
0
    SKIP_BLANKS;
9066
0
    while ((CUR == 'a') && (NXT(1) == 'n') && (NXT(2) == 'd')) {
9067
0
  int op1 = ctxt->comp->last;
9068
0
        SKIP(3);
9069
0
  SKIP_BLANKS;
9070
0
        xmlXPathCompEqualityExpr(ctxt);
9071
0
  CHECK_ERROR;
9072
0
  PUSH_BINARY_EXPR(XPATH_OP_AND, op1, ctxt->comp->last, 0, 0);
9073
0
  SKIP_BLANKS;
9074
0
    }
9075
0
}
9076
9077
/**
9078
 *  [14]   Expr ::=   OrExpr
9079
 *  [21]   OrExpr ::=   AndExpr
9080
 *                 | OrExpr 'or' AndExpr
9081
 *
9082
 * Parse and compile an expression
9083
 *
9084
 * @param ctxt  the XPath Parser context
9085
 * @param sort  whether to sort the resulting node set
9086
 */
9087
static void
9088
0
xmlXPathCompileExpr(xmlXPathParserContextPtr ctxt, int sort) {
9089
0
    xmlXPathContextPtr xpctxt = ctxt->context;
9090
9091
0
    if (xpctxt != NULL) {
9092
0
        if (xpctxt->depth >= XPATH_MAX_RECURSION_DEPTH)
9093
0
            XP_ERROR(XPATH_RECURSION_LIMIT_EXCEEDED);
9094
        /*
9095
         * Parsing a single '(' pushes about 10 functions on the call stack
9096
         * before recursing!
9097
         */
9098
0
        xpctxt->depth += 10;
9099
0
    }
9100
9101
0
    xmlXPathCompAndExpr(ctxt);
9102
0
    CHECK_ERROR;
9103
0
    SKIP_BLANKS;
9104
0
    while ((CUR == 'o') && (NXT(1) == 'r')) {
9105
0
  int op1 = ctxt->comp->last;
9106
0
        SKIP(2);
9107
0
  SKIP_BLANKS;
9108
0
        xmlXPathCompAndExpr(ctxt);
9109
0
  CHECK_ERROR;
9110
0
  PUSH_BINARY_EXPR(XPATH_OP_OR, op1, ctxt->comp->last, 0, 0);
9111
0
  SKIP_BLANKS;
9112
0
    }
9113
0
    if ((sort) && (ctxt->comp->steps[ctxt->comp->last].op != XPATH_OP_VALUE)) {
9114
  /* more ops could be optimized too */
9115
  /*
9116
  * This is the main place to eliminate sorting for
9117
  * operations which don't require a sorted node-set.
9118
  * E.g. count().
9119
  */
9120
0
  PUSH_UNARY_EXPR(XPATH_OP_SORT, ctxt->comp->last , 0, 0);
9121
0
    }
9122
9123
0
    if (xpctxt != NULL)
9124
0
        xpctxt->depth -= 10;
9125
0
}
9126
9127
/**
9128
 *  [8]   Predicate ::=   '[' PredicateExpr ']'
9129
 *  [9]   PredicateExpr ::=   Expr
9130
 *
9131
 * Compile a predicate expression
9132
 *
9133
 * @param ctxt  the XPath Parser context
9134
 * @param filter  act as a filter
9135
 */
9136
static void
9137
0
xmlXPathCompPredicate(xmlXPathParserContextPtr ctxt, int filter) {
9138
0
    int op1 = ctxt->comp->last;
9139
9140
0
    SKIP_BLANKS;
9141
0
    if (CUR != '[') {
9142
0
  XP_ERROR(XPATH_INVALID_PREDICATE_ERROR);
9143
0
    }
9144
0
    NEXT;
9145
0
    SKIP_BLANKS;
9146
9147
0
    ctxt->comp->last = -1;
9148
    /*
9149
    * This call to xmlXPathCompileExpr() will deactivate sorting
9150
    * of the predicate result.
9151
    * TODO: Sorting is still activated for filters, since I'm not
9152
    *  sure if needed. Normally sorting should not be needed, since
9153
    *  a filter can only diminish the number of items in a sequence,
9154
    *  but won't change its order; so if the initial sequence is sorted,
9155
    *  subsequent sorting is not needed.
9156
    */
9157
0
    if (! filter)
9158
0
  xmlXPathCompileExpr(ctxt, 0);
9159
0
    else
9160
0
  xmlXPathCompileExpr(ctxt, 1);
9161
0
    CHECK_ERROR;
9162
9163
0
    if (CUR != ']') {
9164
0
  XP_ERROR(XPATH_INVALID_PREDICATE_ERROR);
9165
0
    }
9166
9167
0
    if (filter)
9168
0
  PUSH_BINARY_EXPR(XPATH_OP_FILTER, op1, ctxt->comp->last, 0, 0);
9169
0
    else
9170
0
  PUSH_BINARY_EXPR(XPATH_OP_PREDICATE, op1, ctxt->comp->last, 0, 0);
9171
9172
0
    NEXT;
9173
0
    SKIP_BLANKS;
9174
0
}
9175
9176
/**
9177
 * ```
9178
 * [7] NodeTest ::=   NameTest
9179
 *        | NodeType '(' ')'
9180
 *        | 'processing-instruction' '(' Literal ')'
9181
 *
9182
 * [37] NameTest ::=  '*'
9183
 *        | NCName ':' '*'
9184
 *        | QName
9185
 * [38] NodeType ::= 'comment'
9186
 *       | 'text'
9187
 *       | 'processing-instruction'
9188
 *       | 'node'
9189
 * ```
9190
 *
9191
 * @param ctxt  the XPath Parser context
9192
 * @param test  pointer to a xmlXPathTestVal
9193
 * @param type  pointer to a xmlXPathTypeVal
9194
 * @param prefix  placeholder for a possible name prefix
9195
 * @param name  current name token (optional)
9196
 * @returns the name found and updates `test`, `type` and `prefix` appropriately
9197
 */
9198
static xmlChar *
9199
xmlXPathCompNodeTest(xmlXPathParserContextPtr ctxt, xmlXPathTestVal *test,
9200
               xmlXPathTypeVal *type, xmlChar **prefix,
9201
0
         xmlChar *name) {
9202
0
    int blanks;
9203
9204
0
    if ((test == NULL) || (type == NULL) || (prefix == NULL)) {
9205
0
  return(NULL);
9206
0
    }
9207
0
    *type = (xmlXPathTypeVal) 0;
9208
0
    *test = (xmlXPathTestVal) 0;
9209
0
    *prefix = NULL;
9210
0
    SKIP_BLANKS;
9211
9212
0
    if ((name == NULL) && (CUR == '*')) {
9213
  /*
9214
   * All elements
9215
   */
9216
0
  NEXT;
9217
0
  *test = NODE_TEST_ALL;
9218
0
  return(NULL);
9219
0
    }
9220
9221
0
    if (name == NULL)
9222
0
  name = xmlXPathParseNCName(ctxt);
9223
0
    if (name == NULL) {
9224
0
  XP_ERRORNULL(XPATH_EXPR_ERROR);
9225
0
    }
9226
9227
0
    blanks = IS_BLANK_CH(CUR);
9228
0
    SKIP_BLANKS;
9229
0
    if (CUR == '(') {
9230
0
  NEXT;
9231
  /*
9232
   * NodeType or PI search
9233
   */
9234
0
  if (xmlStrEqual(name, BAD_CAST "comment"))
9235
0
      *type = NODE_TYPE_COMMENT;
9236
0
  else if (xmlStrEqual(name, BAD_CAST "node"))
9237
0
      *type = NODE_TYPE_NODE;
9238
0
  else if (xmlStrEqual(name, BAD_CAST "processing-instruction"))
9239
0
      *type = NODE_TYPE_PI;
9240
0
  else if (xmlStrEqual(name, BAD_CAST "text"))
9241
0
      *type = NODE_TYPE_TEXT;
9242
0
  else {
9243
0
      if (name != NULL)
9244
0
    xmlFree(name);
9245
0
      XP_ERRORNULL(XPATH_EXPR_ERROR);
9246
0
  }
9247
9248
0
  *test = NODE_TEST_TYPE;
9249
9250
0
  SKIP_BLANKS;
9251
0
  if (*type == NODE_TYPE_PI) {
9252
      /*
9253
       * Specific case: search a PI by name.
9254
       */
9255
0
      if (name != NULL)
9256
0
    xmlFree(name);
9257
0
      name = NULL;
9258
0
      if (CUR != ')') {
9259
0
    name = xmlXPathParseLiteral(ctxt);
9260
0
    *test = NODE_TEST_PI;
9261
0
    SKIP_BLANKS;
9262
0
      }
9263
0
  }
9264
0
  if (CUR != ')') {
9265
0
      if (name != NULL)
9266
0
    xmlFree(name);
9267
0
      XP_ERRORNULL(XPATH_UNCLOSED_ERROR);
9268
0
  }
9269
0
  NEXT;
9270
0
  return(name);
9271
0
    }
9272
0
    *test = NODE_TEST_NAME;
9273
0
    if ((!blanks) && (CUR == ':')) {
9274
0
  NEXT;
9275
9276
  /*
9277
   * Since currently the parser context don't have a
9278
   * namespace list associated:
9279
   * The namespace name for this prefix can be computed
9280
   * only at evaluation time. The compilation is done
9281
   * outside of any context.
9282
   */
9283
0
  *prefix = name;
9284
9285
0
  if (CUR == '*') {
9286
      /*
9287
       * All elements
9288
       */
9289
0
      NEXT;
9290
0
      *test = NODE_TEST_ALL;
9291
0
      return(NULL);
9292
0
  }
9293
9294
0
  name = xmlXPathParseNCName(ctxt);
9295
0
  if (name == NULL) {
9296
0
      XP_ERRORNULL(XPATH_EXPR_ERROR);
9297
0
  }
9298
0
    }
9299
0
    return(name);
9300
0
}
9301
9302
/**
9303
 * [6] AxisName ::=   'ancestor'
9304
 *                  | 'ancestor-or-self'
9305
 *                  | 'attribute'
9306
 *                  | 'child'
9307
 *                  | 'descendant'
9308
 *                  | 'descendant-or-self'
9309
 *                  | 'following'
9310
 *                  | 'following-sibling'
9311
 *                  | 'namespace'
9312
 *                  | 'parent'
9313
 *                  | 'preceding'
9314
 *                  | 'preceding-sibling'
9315
 *                  | 'self'
9316
 *
9317
 * @param name  a preparsed name token
9318
 * @returns the axis or 0
9319
 */
9320
static xmlXPathAxisVal
9321
0
xmlXPathIsAxisName(const xmlChar *name) {
9322
0
    xmlXPathAxisVal ret = (xmlXPathAxisVal) 0;
9323
0
    switch (name[0]) {
9324
0
  case 'a':
9325
0
      if (xmlStrEqual(name, BAD_CAST "ancestor"))
9326
0
    ret = AXIS_ANCESTOR;
9327
0
      if (xmlStrEqual(name, BAD_CAST "ancestor-or-self"))
9328
0
    ret = AXIS_ANCESTOR_OR_SELF;
9329
0
      if (xmlStrEqual(name, BAD_CAST "attribute"))
9330
0
    ret = AXIS_ATTRIBUTE;
9331
0
      break;
9332
0
  case 'c':
9333
0
      if (xmlStrEqual(name, BAD_CAST "child"))
9334
0
    ret = AXIS_CHILD;
9335
0
      break;
9336
0
  case 'd':
9337
0
      if (xmlStrEqual(name, BAD_CAST "descendant"))
9338
0
    ret = AXIS_DESCENDANT;
9339
0
      if (xmlStrEqual(name, BAD_CAST "descendant-or-self"))
9340
0
    ret = AXIS_DESCENDANT_OR_SELF;
9341
0
      break;
9342
0
  case 'f':
9343
0
      if (xmlStrEqual(name, BAD_CAST "following"))
9344
0
    ret = AXIS_FOLLOWING;
9345
0
      if (xmlStrEqual(name, BAD_CAST "following-sibling"))
9346
0
    ret = AXIS_FOLLOWING_SIBLING;
9347
0
      break;
9348
0
  case 'n':
9349
0
      if (xmlStrEqual(name, BAD_CAST "namespace"))
9350
0
    ret = AXIS_NAMESPACE;
9351
0
      break;
9352
0
  case 'p':
9353
0
      if (xmlStrEqual(name, BAD_CAST "parent"))
9354
0
    ret = AXIS_PARENT;
9355
0
      if (xmlStrEqual(name, BAD_CAST "preceding"))
9356
0
    ret = AXIS_PRECEDING;
9357
0
      if (xmlStrEqual(name, BAD_CAST "preceding-sibling"))
9358
0
    ret = AXIS_PRECEDING_SIBLING;
9359
0
      break;
9360
0
  case 's':
9361
0
      if (xmlStrEqual(name, BAD_CAST "self"))
9362
0
    ret = AXIS_SELF;
9363
0
      break;
9364
0
    }
9365
0
    return(ret);
9366
0
}
9367
9368
/**
9369
 * [4] Step ::=   AxisSpecifier NodeTest Predicate*
9370
 *                  | AbbreviatedStep
9371
 *
9372
 * [12] AbbreviatedStep ::=   '.' | '..'
9373
 *
9374
 * [5] AxisSpecifier ::= AxisName '::'
9375
 *                  | AbbreviatedAxisSpecifier
9376
 *
9377
 * [13] AbbreviatedAxisSpecifier ::= '@'?
9378
 *
9379
 * Modified for XPtr range support as:
9380
 *
9381
 *  [4xptr] Step ::= AxisSpecifier NodeTest Predicate*
9382
 *                     | AbbreviatedStep
9383
 *                     | 'range-to' '(' Expr ')' Predicate*
9384
 *
9385
 * Compile one step in a Location Path
9386
 *
9387
 * @param ctxt  the XPath Parser context
9388
 */
9389
static void
9390
0
xmlXPathCompStep(xmlXPathParserContextPtr ctxt) {
9391
0
    SKIP_BLANKS;
9392
0
    if ((CUR == '.') && (NXT(1) == '.')) {
9393
0
  SKIP(2);
9394
0
  SKIP_BLANKS;
9395
0
  PUSH_LONG_EXPR(XPATH_OP_COLLECT, AXIS_PARENT,
9396
0
        NODE_TEST_TYPE, NODE_TYPE_NODE, NULL, NULL);
9397
0
    } else if (CUR == '.') {
9398
0
  NEXT;
9399
0
  SKIP_BLANKS;
9400
0
    } else {
9401
0
  xmlChar *name = NULL;
9402
0
  xmlChar *prefix = NULL;
9403
0
  xmlXPathTestVal test = (xmlXPathTestVal) 0;
9404
0
  xmlXPathAxisVal axis = (xmlXPathAxisVal) 0;
9405
0
  xmlXPathTypeVal type = (xmlXPathTypeVal) 0;
9406
0
  int op1;
9407
9408
0
  if (CUR == '*') {
9409
0
      axis = AXIS_CHILD;
9410
0
  } else {
9411
0
      if (name == NULL)
9412
0
    name = xmlXPathParseNCName(ctxt);
9413
0
      if (name != NULL) {
9414
0
    axis = xmlXPathIsAxisName(name);
9415
0
    if (axis != 0) {
9416
0
        SKIP_BLANKS;
9417
0
        if ((CUR == ':') && (NXT(1) == ':')) {
9418
0
      SKIP(2);
9419
0
      xmlFree(name);
9420
0
      name = NULL;
9421
0
        } else {
9422
      /* an element name can conflict with an axis one :-\ */
9423
0
      axis = AXIS_CHILD;
9424
0
        }
9425
0
    } else {
9426
0
        axis = AXIS_CHILD;
9427
0
    }
9428
0
      } else if (CUR == '@') {
9429
0
    NEXT;
9430
0
    axis = AXIS_ATTRIBUTE;
9431
0
      } else {
9432
0
    axis = AXIS_CHILD;
9433
0
      }
9434
0
  }
9435
9436
0
        if (ctxt->error != XPATH_EXPRESSION_OK) {
9437
0
            xmlFree(name);
9438
0
            return;
9439
0
        }
9440
9441
0
  name = xmlXPathCompNodeTest(ctxt, &test, &type, &prefix, name);
9442
0
  if (test == 0)
9443
0
      return;
9444
9445
0
        if ((prefix != NULL) && (ctxt->context != NULL) &&
9446
0
      (ctxt->context->flags & XML_XPATH_CHECKNS)) {
9447
0
      if (xmlXPathNsLookup(ctxt->context, prefix) == NULL) {
9448
0
    xmlXPathErrFmt(ctxt, XPATH_UNDEF_PREFIX_ERROR,
9449
0
                               "Undefined namespace prefix: %s\n", prefix);
9450
0
      }
9451
0
  }
9452
9453
0
  op1 = ctxt->comp->last;
9454
0
  ctxt->comp->last = -1;
9455
9456
0
  SKIP_BLANKS;
9457
0
  while (CUR == '[') {
9458
0
      xmlXPathCompPredicate(ctxt, 0);
9459
0
  }
9460
9461
0
        if (PUSH_FULL_EXPR(XPATH_OP_COLLECT, op1, ctxt->comp->last, axis,
9462
0
                           test, type, (void *)prefix, (void *)name) == -1) {
9463
0
            xmlFree(prefix);
9464
0
            xmlFree(name);
9465
0
        }
9466
0
    }
9467
0
}
9468
9469
/**
9470
 *  [3]   RelativeLocationPath ::=   Step
9471
 *                     | RelativeLocationPath '/' Step
9472
 *                     | AbbreviatedRelativeLocationPath
9473
 *  [11]  AbbreviatedRelativeLocationPath ::=   RelativeLocationPath '//' Step
9474
 *
9475
 * Compile a relative location path.
9476
 *
9477
 * @param ctxt  the XPath Parser context
9478
 */
9479
static void
9480
xmlXPathCompRelativeLocationPath
9481
0
(xmlXPathParserContextPtr ctxt) {
9482
0
    SKIP_BLANKS;
9483
0
    if ((CUR == '/') && (NXT(1) == '/')) {
9484
0
  SKIP(2);
9485
0
  SKIP_BLANKS;
9486
0
  PUSH_LONG_EXPR(XPATH_OP_COLLECT, AXIS_DESCENDANT_OR_SELF,
9487
0
             NODE_TEST_TYPE, NODE_TYPE_NODE, NULL, NULL);
9488
0
    } else if (CUR == '/') {
9489
0
      NEXT;
9490
0
  SKIP_BLANKS;
9491
0
    }
9492
0
    xmlXPathCompStep(ctxt);
9493
0
    CHECK_ERROR;
9494
0
    SKIP_BLANKS;
9495
0
    while (CUR == '/') {
9496
0
  if ((CUR == '/') && (NXT(1) == '/')) {
9497
0
      SKIP(2);
9498
0
      SKIP_BLANKS;
9499
0
      PUSH_LONG_EXPR(XPATH_OP_COLLECT, AXIS_DESCENDANT_OR_SELF,
9500
0
           NODE_TEST_TYPE, NODE_TYPE_NODE, NULL, NULL);
9501
0
      xmlXPathCompStep(ctxt);
9502
0
  } else if (CUR == '/') {
9503
0
      NEXT;
9504
0
      SKIP_BLANKS;
9505
0
      xmlXPathCompStep(ctxt);
9506
0
  }
9507
0
  SKIP_BLANKS;
9508
0
    }
9509
0
}
9510
9511
/**
9512
 *  [1]   LocationPath ::=   RelativeLocationPath
9513
 *                     | AbsoluteLocationPath
9514
 *  [2]   AbsoluteLocationPath ::=   '/' RelativeLocationPath?
9515
 *                     | AbbreviatedAbsoluteLocationPath
9516
 *  [10]   AbbreviatedAbsoluteLocationPath ::=
9517
 *                           '//' RelativeLocationPath
9518
 *
9519
 * Compile a location path
9520
 *
9521
 * @param ctxt  the XPath Parser context
9522
 */
9523
static void
9524
0
xmlXPathCompLocationPath(xmlXPathParserContextPtr ctxt) {
9525
0
    SKIP_BLANKS;
9526
0
    if (CUR != '/') {
9527
0
        xmlXPathCompRelativeLocationPath(ctxt);
9528
0
    } else {
9529
0
  while (CUR == '/') {
9530
0
      if ((CUR == '/') && (NXT(1) == '/')) {
9531
0
    SKIP(2);
9532
0
    SKIP_BLANKS;
9533
0
    PUSH_LONG_EXPR(XPATH_OP_COLLECT, AXIS_DESCENDANT_OR_SELF,
9534
0
           NODE_TEST_TYPE, NODE_TYPE_NODE, NULL, NULL);
9535
0
    xmlXPathCompRelativeLocationPath(ctxt);
9536
0
      } else if (CUR == '/') {
9537
0
    NEXT;
9538
0
    SKIP_BLANKS;
9539
0
    if ((CUR != 0) &&
9540
0
        ((IS_ASCII_LETTER(CUR)) || (CUR >= 0x80) ||
9541
0
                     (CUR == '_') || (CUR == '.') ||
9542
0
         (CUR == '@') || (CUR == '*')))
9543
0
        xmlXPathCompRelativeLocationPath(ctxt);
9544
0
      }
9545
0
      CHECK_ERROR;
9546
0
  }
9547
0
    }
9548
0
}
9549
9550
/************************************************************************
9551
 *                  *
9552
 *    XPath precompiled expression evaluation     *
9553
 *                  *
9554
 ************************************************************************/
9555
9556
static int
9557
xmlXPathCompOpEval(xmlXPathParserContextPtr ctxt, xmlXPathStepOpPtr op);
9558
9559
/**
9560
 * Filter a node set, keeping only nodes for which the predicate expression
9561
 * matches. Afterwards, keep only nodes between minPos and maxPos in the
9562
 * filtered result.
9563
 *
9564
 * @param ctxt  the XPath Parser context
9565
 * @param set  the node set to filter
9566
 * @param filterOpIndex  the index of the predicate/filter op
9567
 * @param minPos  minimum position in the filtered set (1-based)
9568
 * @param maxPos  maximum position in the filtered set (1-based)
9569
 * @param hasNsNodes  true if the node set may contain namespace nodes
9570
 */
9571
static void
9572
xmlXPathNodeSetFilter(xmlXPathParserContextPtr ctxt,
9573
          xmlNodeSetPtr set,
9574
          int filterOpIndex,
9575
                      int minPos, int maxPos,
9576
          int hasNsNodes)
9577
0
{
9578
0
    xmlXPathContextPtr xpctxt;
9579
0
    xmlNodePtr oldnode;
9580
0
    xmlDocPtr olddoc;
9581
0
    xmlXPathStepOpPtr filterOp;
9582
0
    int oldcs, oldpp;
9583
0
    int i, j, pos;
9584
9585
0
    if ((set == NULL) || (set->nodeNr == 0))
9586
0
        return;
9587
9588
    /*
9589
    * Check if the node set contains a sufficient number of nodes for
9590
    * the requested range.
9591
    */
9592
0
    if (set->nodeNr < minPos) {
9593
0
        xmlXPathNodeSetClear(set, hasNsNodes);
9594
0
        return;
9595
0
    }
9596
9597
0
    xpctxt = ctxt->context;
9598
0
    oldnode = xpctxt->node;
9599
0
    olddoc = xpctxt->doc;
9600
0
    oldcs = xpctxt->contextSize;
9601
0
    oldpp = xpctxt->proximityPosition;
9602
0
    filterOp = &ctxt->comp->steps[filterOpIndex];
9603
9604
0
    xpctxt->contextSize = set->nodeNr;
9605
9606
0
    for (i = 0, j = 0, pos = 1; i < set->nodeNr; i++) {
9607
0
        xmlNodePtr node = set->nodeTab[i];
9608
0
        int res;
9609
9610
0
        xpctxt->node = node;
9611
0
        xpctxt->proximityPosition = i + 1;
9612
9613
        /*
9614
        * Also set the xpath document in case things like
9615
        * key() are evaluated in the predicate.
9616
        *
9617
        * TODO: Get real doc for namespace nodes.
9618
        */
9619
0
        if ((node->type != XML_NAMESPACE_DECL) &&
9620
0
            (node->doc != NULL))
9621
0
            xpctxt->doc = node->doc;
9622
9623
0
        res = xmlXPathCompOpEvalToBoolean(ctxt, filterOp, 1);
9624
9625
0
        if (ctxt->error != XPATH_EXPRESSION_OK)
9626
0
            break;
9627
0
        if (res < 0) {
9628
            /* Shouldn't happen */
9629
0
            xmlXPathErr(ctxt, XPATH_EXPR_ERROR);
9630
0
            break;
9631
0
        }
9632
9633
0
        if ((res != 0) && ((pos >= minPos) && (pos <= maxPos))) {
9634
0
            if (i != j) {
9635
0
                set->nodeTab[j] = node;
9636
0
                set->nodeTab[i] = NULL;
9637
0
            }
9638
9639
0
            j += 1;
9640
0
        } else {
9641
            /* Remove the entry from the initial node set. */
9642
0
            set->nodeTab[i] = NULL;
9643
0
            if (node->type == XML_NAMESPACE_DECL)
9644
0
                xmlXPathNodeSetFreeNs((xmlNsPtr) node);
9645
0
        }
9646
9647
0
        if (res != 0) {
9648
0
            if (pos == maxPos) {
9649
0
                i += 1;
9650
0
                break;
9651
0
            }
9652
9653
0
            pos += 1;
9654
0
        }
9655
0
    }
9656
9657
    /* Free remaining nodes. */
9658
0
    if (hasNsNodes) {
9659
0
        for (; i < set->nodeNr; i++) {
9660
0
            xmlNodePtr node = set->nodeTab[i];
9661
0
            if ((node != NULL) && (node->type == XML_NAMESPACE_DECL))
9662
0
                xmlXPathNodeSetFreeNs((xmlNsPtr) node);
9663
0
        }
9664
0
    }
9665
9666
0
    set->nodeNr = j;
9667
9668
    /* If too many elements were removed, shrink table to preserve memory. */
9669
0
    if ((set->nodeMax > XML_NODESET_DEFAULT) &&
9670
0
        (set->nodeNr < set->nodeMax / 2)) {
9671
0
        xmlNodePtr *tmp;
9672
0
        int nodeMax = set->nodeNr;
9673
9674
0
        if (nodeMax < XML_NODESET_DEFAULT)
9675
0
            nodeMax = XML_NODESET_DEFAULT;
9676
0
        tmp = (xmlNodePtr *) xmlRealloc(set->nodeTab,
9677
0
                nodeMax * sizeof(xmlNodePtr));
9678
0
        if (tmp == NULL) {
9679
0
            xmlXPathPErrMemory(ctxt);
9680
0
        } else {
9681
0
            set->nodeTab = tmp;
9682
0
            set->nodeMax = nodeMax;
9683
0
        }
9684
0
    }
9685
9686
0
    xpctxt->node = oldnode;
9687
0
    xpctxt->doc = olddoc;
9688
0
    xpctxt->contextSize = oldcs;
9689
0
    xpctxt->proximityPosition = oldpp;
9690
0
}
9691
9692
/**
9693
 * Filter a node set, keeping only nodes for which the sequence of predicate
9694
 * expressions matches. Afterwards, keep only nodes between minPos and maxPos
9695
 * in the filtered result.
9696
 *
9697
 * @param ctxt  the XPath Parser context
9698
 * @param op  the predicate op
9699
 * @param set  the node set to filter
9700
 * @param minPos  minimum position in the filtered set (1-based)
9701
 * @param maxPos  maximum position in the filtered set (1-based)
9702
 * @param hasNsNodes  true if the node set may contain namespace nodes
9703
 */
9704
static void
9705
xmlXPathCompOpEvalPredicate(xmlXPathParserContextPtr ctxt,
9706
          xmlXPathStepOpPtr op,
9707
          xmlNodeSetPtr set,
9708
                            int minPos, int maxPos,
9709
          int hasNsNodes)
9710
0
{
9711
0
    if (op->ch1 != -1) {
9712
0
  xmlXPathCompExprPtr comp = ctxt->comp;
9713
  /*
9714
  * Process inner predicates first.
9715
  */
9716
0
  if (comp->steps[op->ch1].op != XPATH_OP_PREDICATE) {
9717
0
            XP_ERROR(XPATH_INVALID_OPERAND);
9718
0
  }
9719
0
        if (ctxt->context->depth >= XPATH_MAX_RECURSION_DEPTH)
9720
0
            XP_ERROR(XPATH_RECURSION_LIMIT_EXCEEDED);
9721
0
        ctxt->context->depth += 1;
9722
0
  xmlXPathCompOpEvalPredicate(ctxt, &comp->steps[op->ch1], set,
9723
0
                                    1, set->nodeNr, hasNsNodes);
9724
0
        ctxt->context->depth -= 1;
9725
0
  CHECK_ERROR;
9726
0
    }
9727
9728
0
    if (op->ch2 != -1)
9729
0
        xmlXPathNodeSetFilter(ctxt, set, op->ch2, minPos, maxPos, hasNsNodes);
9730
0
}
9731
9732
static int
9733
xmlXPathIsPositionalPredicate(xmlXPathParserContextPtr ctxt,
9734
          xmlXPathStepOpPtr op,
9735
          int *maxPos)
9736
0
{
9737
9738
0
    xmlXPathStepOpPtr exprOp;
9739
9740
    /*
9741
    * BIG NOTE: This is not intended for XPATH_OP_FILTER yet!
9742
    */
9743
9744
    /*
9745
    * If not -1, then ch1 will point to:
9746
    * 1) For predicates (XPATH_OP_PREDICATE):
9747
    *    - an inner predicate operator
9748
    * 2) For filters (XPATH_OP_FILTER):
9749
    *    - an inner filter operator OR
9750
    *    - an expression selecting the node set.
9751
    *      E.g. "key('a', 'b')" or "(//foo | //bar)".
9752
    */
9753
0
    if ((op->op != XPATH_OP_PREDICATE) && (op->op != XPATH_OP_FILTER))
9754
0
  return(0);
9755
9756
0
    if (op->ch2 != -1) {
9757
0
  exprOp = &ctxt->comp->steps[op->ch2];
9758
0
    } else
9759
0
  return(0);
9760
9761
0
    if ((exprOp != NULL) &&
9762
0
  (exprOp->op == XPATH_OP_VALUE) &&
9763
0
  (exprOp->value4 != NULL) &&
9764
0
  (((xmlXPathObjectPtr) exprOp->value4)->type == XPATH_NUMBER))
9765
0
    {
9766
0
        double floatval = ((xmlXPathObjectPtr) exprOp->value4)->floatval;
9767
9768
  /*
9769
  * We have a "[n]" predicate here.
9770
  * TODO: Unfortunately this simplistic test here is not
9771
  * able to detect a position() predicate in compound
9772
  * expressions like "[@attr = 'a" and position() = 1],
9773
  * and even not the usage of position() in
9774
  * "[position() = 1]"; thus - obviously - a position-range,
9775
  * like it "[position() < 5]", is also not detected.
9776
  * Maybe we could rewrite the AST to ease the optimization.
9777
  */
9778
9779
0
        if ((floatval > INT_MIN) && (floatval < INT_MAX)) {
9780
0
      *maxPos = (int) floatval;
9781
0
            if (floatval == (double) *maxPos)
9782
0
                return(1);
9783
0
        }
9784
0
    }
9785
0
    return(0);
9786
0
}
9787
9788
static int
9789
xmlXPathNodeCollectAndTest(xmlXPathParserContextPtr ctxt,
9790
                           xmlXPathStepOpPtr op,
9791
         xmlNodePtr * first, xmlNodePtr * last,
9792
         int toBool)
9793
0
{
9794
9795
0
#define XP_TEST_HIT \
9796
0
    if (hasAxisRange != 0) { \
9797
0
  if (++pos == maxPos) { \
9798
0
      if (addNode(seq, cur) < 0) \
9799
0
          xmlXPathPErrMemory(ctxt); \
9800
0
      goto axis_range_end; } \
9801
0
    } else { \
9802
0
  if (addNode(seq, cur) < 0) \
9803
0
      xmlXPathPErrMemory(ctxt); \
9804
0
  if (breakOnFirstHit) goto first_hit; }
9805
9806
0
#define XP_TEST_HIT_NS \
9807
0
    if (hasAxisRange != 0) { \
9808
0
  if (++pos == maxPos) { \
9809
0
      hasNsNodes = 1; \
9810
0
      if (xmlXPathNodeSetAddNs(seq, xpctxt->node, (xmlNsPtr) cur) < 0) \
9811
0
          xmlXPathPErrMemory(ctxt); \
9812
0
  goto axis_range_end; } \
9813
0
    } else { \
9814
0
  hasNsNodes = 1; \
9815
0
  if (xmlXPathNodeSetAddNs(seq, xpctxt->node, (xmlNsPtr) cur) < 0) \
9816
0
      xmlXPathPErrMemory(ctxt); \
9817
0
  if (breakOnFirstHit) goto first_hit; }
9818
9819
0
    xmlXPathAxisVal axis = (xmlXPathAxisVal) op->value;
9820
0
    xmlXPathTestVal test = (xmlXPathTestVal) op->value2;
9821
0
    xmlXPathTypeVal type = (xmlXPathTypeVal) op->value3;
9822
0
    const xmlChar *prefix = op->value4;
9823
0
    const xmlChar *name = op->value5;
9824
0
    const xmlChar *URI = NULL;
9825
9826
0
    int total = 0, hasNsNodes = 0;
9827
    /* The popped object holding the context nodes */
9828
0
    xmlXPathObjectPtr obj;
9829
    /* The set of context nodes for the node tests */
9830
0
    xmlNodeSetPtr contextSeq;
9831
0
    int contextIdx;
9832
0
    xmlNodePtr contextNode;
9833
    /* The final resulting node set wrt to all context nodes */
9834
0
    xmlNodeSetPtr outSeq;
9835
    /*
9836
    * The temporary resulting node set wrt 1 context node.
9837
    * Used to feed predicate evaluation.
9838
    */
9839
0
    xmlNodeSetPtr seq;
9840
0
    xmlNodePtr cur;
9841
    /* First predicate operator */
9842
0
    xmlXPathStepOpPtr predOp;
9843
0
    int maxPos; /* The requested position() (when a "[n]" predicate) */
9844
0
    int hasPredicateRange, hasAxisRange, pos;
9845
0
    int breakOnFirstHit;
9846
9847
0
    xmlXPathTraversalFunction next = NULL;
9848
0
    int (*addNode) (xmlNodeSetPtr, xmlNodePtr);
9849
0
    xmlXPathNodeSetMergeFunction mergeAndClear;
9850
0
    xmlNodePtr oldContextNode;
9851
0
    xmlXPathContextPtr xpctxt = ctxt->context;
9852
9853
9854
0
    CHECK_TYPE0(XPATH_NODESET);
9855
0
    obj = xmlXPathValuePop(ctxt);
9856
    /*
9857
    * Setup namespaces.
9858
    */
9859
0
    if (prefix != NULL) {
9860
0
        URI = xmlXPathNsLookup(xpctxt, prefix);
9861
0
        if (URI == NULL) {
9862
0
      xmlXPathReleaseObject(xpctxt, obj);
9863
0
            xmlXPathErrFmt(ctxt, XPATH_UNDEF_PREFIX_ERROR,
9864
0
                           "Undefined namespace prefix: %s\n", prefix);
9865
0
            return 0;
9866
0
  }
9867
0
    }
9868
    /*
9869
    * Setup axis.
9870
    *
9871
    * MAYBE FUTURE TODO: merging optimizations:
9872
    * - If the nodes to be traversed wrt to the initial nodes and
9873
    *   the current axis cannot overlap, then we could avoid searching
9874
    *   for duplicates during the merge.
9875
    *   But the question is how/when to evaluate if they cannot overlap.
9876
    *   Example: if we know that for two initial nodes, the one is
9877
    *   not in the ancestor-or-self axis of the other, then we could safely
9878
    *   avoid a duplicate-aware merge, if the axis to be traversed is e.g.
9879
    *   the descendant-or-self axis.
9880
    */
9881
0
    mergeAndClear = xmlXPathNodeSetMergeAndClear;
9882
0
    switch (axis) {
9883
0
        case AXIS_ANCESTOR:
9884
0
            first = NULL;
9885
0
            next = xmlXPathNextAncestor;
9886
0
            break;
9887
0
        case AXIS_ANCESTOR_OR_SELF:
9888
0
            first = NULL;
9889
0
            next = xmlXPathNextAncestorOrSelf;
9890
0
            break;
9891
0
        case AXIS_ATTRIBUTE:
9892
0
            first = NULL;
9893
0
      last = NULL;
9894
0
            next = xmlXPathNextAttribute;
9895
0
      mergeAndClear = xmlXPathNodeSetMergeAndClearNoDupls;
9896
0
            break;
9897
0
        case AXIS_CHILD:
9898
0
      last = NULL;
9899
0
      if (((test == NODE_TEST_NAME) || (test == NODE_TEST_ALL)) &&
9900
0
    (type == NODE_TYPE_NODE))
9901
0
      {
9902
    /*
9903
    * Optimization if an element node type is 'element'.
9904
    */
9905
0
    next = xmlXPathNextChildElement;
9906
0
      } else
9907
0
    next = xmlXPathNextChild;
9908
0
      mergeAndClear = xmlXPathNodeSetMergeAndClearNoDupls;
9909
0
            break;
9910
0
        case AXIS_DESCENDANT:
9911
0
      last = NULL;
9912
0
            next = xmlXPathNextDescendant;
9913
0
            break;
9914
0
        case AXIS_DESCENDANT_OR_SELF:
9915
0
      last = NULL;
9916
0
            next = xmlXPathNextDescendantOrSelf;
9917
0
            break;
9918
0
        case AXIS_FOLLOWING:
9919
0
      last = NULL;
9920
0
            next = xmlXPathNextFollowing;
9921
0
            break;
9922
0
        case AXIS_FOLLOWING_SIBLING:
9923
0
      last = NULL;
9924
0
            next = xmlXPathNextFollowingSibling;
9925
0
            break;
9926
0
        case AXIS_NAMESPACE:
9927
0
            first = NULL;
9928
0
      last = NULL;
9929
0
            next = (xmlXPathTraversalFunction) xmlXPathNextNamespace;
9930
0
      mergeAndClear = xmlXPathNodeSetMergeAndClearNoDupls;
9931
0
            break;
9932
0
        case AXIS_PARENT:
9933
0
            first = NULL;
9934
0
            next = xmlXPathNextParent;
9935
0
            break;
9936
0
        case AXIS_PRECEDING:
9937
0
            first = NULL;
9938
0
            next = xmlXPathNextPrecedingInternal;
9939
0
            break;
9940
0
        case AXIS_PRECEDING_SIBLING:
9941
0
            first = NULL;
9942
0
            next = xmlXPathNextPrecedingSibling;
9943
0
            break;
9944
0
        case AXIS_SELF:
9945
0
            first = NULL;
9946
0
      last = NULL;
9947
0
            next = xmlXPathNextSelf;
9948
0
      mergeAndClear = xmlXPathNodeSetMergeAndClearNoDupls;
9949
0
            break;
9950
0
    }
9951
9952
0
    if (next == NULL) {
9953
0
  xmlXPathReleaseObject(xpctxt, obj);
9954
0
        return(0);
9955
0
    }
9956
0
    contextSeq = obj->nodesetval;
9957
0
    if ((contextSeq == NULL) || (contextSeq->nodeNr <= 0)) {
9958
0
        xmlXPathValuePush(ctxt, obj);
9959
0
        return(0);
9960
0
    }
9961
    /*
9962
    * Predicate optimization ---------------------------------------------
9963
    * If this step has a last predicate, which contains a position(),
9964
    * then we'll optimize (although not exactly "position()", but only
9965
    * the  short-hand form, i.e., "[n]".
9966
    *
9967
    * Example - expression "/foo[parent::bar][1]":
9968
    *
9969
    * COLLECT 'child' 'name' 'node' foo    -- op (we are here)
9970
    *   ROOT                               -- op->ch1
9971
    *   PREDICATE                          -- op->ch2 (predOp)
9972
    *     PREDICATE                          -- predOp->ch1 = [parent::bar]
9973
    *       SORT
9974
    *         COLLECT  'parent' 'name' 'node' bar
9975
    *           NODE
9976
    *     ELEM Object is a number : 1        -- predOp->ch2 = [1]
9977
    *
9978
    */
9979
0
    maxPos = 0;
9980
0
    predOp = NULL;
9981
0
    hasPredicateRange = 0;
9982
0
    hasAxisRange = 0;
9983
0
    if (op->ch2 != -1) {
9984
  /*
9985
  * There's at least one predicate. 16 == XPATH_OP_PREDICATE
9986
  */
9987
0
  predOp = &ctxt->comp->steps[op->ch2];
9988
0
  if (xmlXPathIsPositionalPredicate(ctxt, predOp, &maxPos)) {
9989
0
      if (predOp->ch1 != -1) {
9990
    /*
9991
    * Use the next inner predicate operator.
9992
    */
9993
0
    predOp = &ctxt->comp->steps[predOp->ch1];
9994
0
    hasPredicateRange = 1;
9995
0
      } else {
9996
    /*
9997
    * There's no other predicate than the [n] predicate.
9998
    */
9999
0
    predOp = NULL;
10000
0
    hasAxisRange = 1;
10001
0
      }
10002
0
  }
10003
0
    }
10004
0
    breakOnFirstHit = ((toBool) && (predOp == NULL)) ? 1 : 0;
10005
    /*
10006
    * Axis traversal -----------------------------------------------------
10007
    */
10008
    /*
10009
     * 2.3 Node Tests
10010
     *  - For the attribute axis, the principal node type is attribute.
10011
     *  - For the namespace axis, the principal node type is namespace.
10012
     *  - For other axes, the principal node type is element.
10013
     *
10014
     * A node test * is true for any node of the
10015
     * principal node type. For example, child::* will
10016
     * select all element children of the context node
10017
     */
10018
0
    oldContextNode = xpctxt->node;
10019
0
    addNode = xmlXPathNodeSetAddUnique;
10020
0
    outSeq = NULL;
10021
0
    seq = NULL;
10022
0
    contextNode = NULL;
10023
0
    contextIdx = 0;
10024
10025
10026
0
    while (((contextIdx < contextSeq->nodeNr) || (contextNode != NULL)) &&
10027
0
           (ctxt->error == XPATH_EXPRESSION_OK)) {
10028
0
  xpctxt->node = contextSeq->nodeTab[contextIdx++];
10029
10030
0
  if (seq == NULL) {
10031
0
      seq = xmlXPathNodeSetCreate(NULL);
10032
0
      if (seq == NULL) {
10033
0
                xmlXPathPErrMemory(ctxt);
10034
0
    total = 0;
10035
0
    goto error;
10036
0
      }
10037
0
  }
10038
  /*
10039
  * Traverse the axis and test the nodes.
10040
  */
10041
0
  pos = 0;
10042
0
  cur = NULL;
10043
0
  hasNsNodes = 0;
10044
0
        do {
10045
0
            if (OP_LIMIT_EXCEEDED(ctxt, 1))
10046
0
                goto error;
10047
10048
0
            cur = next(ctxt, cur);
10049
0
            if (cur == NULL)
10050
0
                break;
10051
10052
      /*
10053
      * QUESTION TODO: What does the "first" and "last" stuff do?
10054
      */
10055
0
            if ((first != NULL) && (*first != NULL)) {
10056
0
    if (*first == cur)
10057
0
        break;
10058
0
    if (((total % 256) == 0) &&
10059
0
#ifdef XP_OPTIMIZED_NON_ELEM_COMPARISON
10060
0
        (xmlXPathCmpNodesExt(*first, cur) >= 0))
10061
#else
10062
        (xmlXPathCmpNodes(*first, cur) >= 0))
10063
#endif
10064
0
    {
10065
0
        break;
10066
0
    }
10067
0
      }
10068
0
      if ((last != NULL) && (*last != NULL)) {
10069
0
    if (*last == cur)
10070
0
        break;
10071
0
    if (((total % 256) == 0) &&
10072
0
#ifdef XP_OPTIMIZED_NON_ELEM_COMPARISON
10073
0
        (xmlXPathCmpNodesExt(cur, *last) >= 0))
10074
#else
10075
        (xmlXPathCmpNodes(cur, *last) >= 0))
10076
#endif
10077
0
    {
10078
0
        break;
10079
0
    }
10080
0
      }
10081
10082
0
            total++;
10083
10084
0
      switch (test) {
10085
0
                case NODE_TEST_NONE:
10086
0
        total = 0;
10087
0
        goto error;
10088
0
                case NODE_TEST_TYPE:
10089
0
        if (type == NODE_TYPE_NODE) {
10090
0
      switch (cur->type) {
10091
0
          case XML_DOCUMENT_NODE:
10092
0
          case XML_HTML_DOCUMENT_NODE:
10093
0
          case XML_ELEMENT_NODE:
10094
0
          case XML_ATTRIBUTE_NODE:
10095
0
          case XML_PI_NODE:
10096
0
          case XML_COMMENT_NODE:
10097
0
          case XML_CDATA_SECTION_NODE:
10098
0
          case XML_TEXT_NODE:
10099
0
        XP_TEST_HIT
10100
0
        break;
10101
0
          case XML_NAMESPACE_DECL: {
10102
0
        if (axis == AXIS_NAMESPACE) {
10103
0
            XP_TEST_HIT_NS
10104
0
        } else {
10105
0
                              hasNsNodes = 1;
10106
0
            XP_TEST_HIT
10107
0
        }
10108
0
        break;
10109
0
                            }
10110
0
          default:
10111
0
        break;
10112
0
      }
10113
0
        } else if (cur->type == (xmlElementType) type) {
10114
0
      if (cur->type == XML_NAMESPACE_DECL)
10115
0
          XP_TEST_HIT_NS
10116
0
      else
10117
0
          XP_TEST_HIT
10118
0
        } else if ((type == NODE_TYPE_TEXT) &&
10119
0
       (cur->type == XML_CDATA_SECTION_NODE))
10120
0
        {
10121
0
      XP_TEST_HIT
10122
0
        }
10123
0
        break;
10124
0
                case NODE_TEST_PI:
10125
0
                    if ((cur->type == XML_PI_NODE) &&
10126
0
                        ((name == NULL) || xmlStrEqual(name, cur->name)))
10127
0
        {
10128
0
      XP_TEST_HIT
10129
0
                    }
10130
0
                    break;
10131
0
                case NODE_TEST_ALL:
10132
0
                    if (axis == AXIS_ATTRIBUTE) {
10133
0
                        if (cur->type == XML_ATTRIBUTE_NODE)
10134
0
      {
10135
0
                            if (prefix == NULL)
10136
0
          {
10137
0
        XP_TEST_HIT
10138
0
                            } else if ((cur->ns != NULL) &&
10139
0
        (xmlStrEqual(URI, cur->ns->href)))
10140
0
          {
10141
0
        XP_TEST_HIT
10142
0
                            }
10143
0
                        }
10144
0
                    } else if (axis == AXIS_NAMESPACE) {
10145
0
                        if (cur->type == XML_NAMESPACE_DECL)
10146
0
      {
10147
0
          XP_TEST_HIT_NS
10148
0
                        }
10149
0
                    } else {
10150
0
                        if (cur->type == XML_ELEMENT_NODE) {
10151
0
                            if (prefix == NULL)
10152
0
          {
10153
0
        XP_TEST_HIT
10154
10155
0
                            } else if ((cur->ns != NULL) &&
10156
0
        (xmlStrEqual(URI, cur->ns->href)))
10157
0
          {
10158
0
        XP_TEST_HIT
10159
0
                            }
10160
0
                        }
10161
0
                    }
10162
0
                    break;
10163
0
                case NODE_TEST_NS:{
10164
                        /* TODO */
10165
0
                        break;
10166
0
                    }
10167
0
                case NODE_TEST_NAME:
10168
0
                    if (axis == AXIS_ATTRIBUTE) {
10169
0
                        if (cur->type != XML_ATTRIBUTE_NODE)
10170
0
          break;
10171
0
        } else if (axis == AXIS_NAMESPACE) {
10172
0
                        if (cur->type != XML_NAMESPACE_DECL)
10173
0
          break;
10174
0
        } else {
10175
0
            if (cur->type != XML_ELEMENT_NODE)
10176
0
          break;
10177
0
        }
10178
0
                    switch (cur->type) {
10179
0
                        case XML_ELEMENT_NODE:
10180
0
                            if (xmlStrEqual(name, cur->name)) {
10181
0
                                if (prefix == NULL) {
10182
0
                                    if (cur->ns == NULL)
10183
0
            {
10184
0
          XP_TEST_HIT
10185
0
                                    }
10186
0
                                } else {
10187
0
                                    if ((cur->ns != NULL) &&
10188
0
                                        (xmlStrEqual(URI, cur->ns->href)))
10189
0
            {
10190
0
          XP_TEST_HIT
10191
0
                                    }
10192
0
                                }
10193
0
                            }
10194
0
                            break;
10195
0
                        case XML_ATTRIBUTE_NODE:{
10196
0
                                xmlAttrPtr attr = (xmlAttrPtr) cur;
10197
10198
0
                                if (xmlStrEqual(name, attr->name)) {
10199
0
                                    if (prefix == NULL) {
10200
0
                                        if ((attr->ns == NULL) ||
10201
0
                                            (attr->ns->prefix == NULL))
10202
0
          {
10203
0
              XP_TEST_HIT
10204
0
                                        }
10205
0
                                    } else {
10206
0
                                        if ((attr->ns != NULL) &&
10207
0
                                            (xmlStrEqual(URI,
10208
0
                attr->ns->href)))
10209
0
          {
10210
0
              XP_TEST_HIT
10211
0
                                        }
10212
0
                                    }
10213
0
                                }
10214
0
                                break;
10215
0
                            }
10216
0
                        case XML_NAMESPACE_DECL:
10217
0
                            if (cur->type == XML_NAMESPACE_DECL) {
10218
0
                                xmlNsPtr ns = (xmlNsPtr) cur;
10219
10220
0
                                if ((ns->prefix != NULL) && (name != NULL)
10221
0
                                    && (xmlStrEqual(ns->prefix, name)))
10222
0
        {
10223
0
            XP_TEST_HIT_NS
10224
0
                                }
10225
0
                            }
10226
0
                            break;
10227
0
                        default:
10228
0
                            break;
10229
0
                    }
10230
0
                    break;
10231
0
      } /* switch(test) */
10232
0
        } while ((cur != NULL) && (ctxt->error == XPATH_EXPRESSION_OK));
10233
10234
0
  goto apply_predicates;
10235
10236
0
axis_range_end: /* ----------------------------------------------------- */
10237
  /*
10238
  * We have a "/foo[n]", and position() = n was reached.
10239
  * Note that we can have as well "/foo/::parent::foo[1]", so
10240
  * a duplicate-aware merge is still needed.
10241
  * Merge with the result.
10242
  */
10243
0
  if (outSeq == NULL) {
10244
0
      outSeq = seq;
10245
0
      seq = NULL;
10246
0
  } else {
10247
0
      outSeq = mergeAndClear(outSeq, seq);
10248
0
            if (outSeq == NULL)
10249
0
                xmlXPathPErrMemory(ctxt);
10250
0
        }
10251
  /*
10252
  * Break if only a true/false result was requested.
10253
  */
10254
0
  if (toBool)
10255
0
      break;
10256
0
  continue;
10257
10258
0
first_hit: /* ---------------------------------------------------------- */
10259
  /*
10260
  * Break if only a true/false result was requested and
10261
  * no predicates existed and a node test succeeded.
10262
  */
10263
0
  if (outSeq == NULL) {
10264
0
      outSeq = seq;
10265
0
      seq = NULL;
10266
0
  } else {
10267
0
      outSeq = mergeAndClear(outSeq, seq);
10268
0
            if (outSeq == NULL)
10269
0
                xmlXPathPErrMemory(ctxt);
10270
0
        }
10271
0
  break;
10272
10273
0
apply_predicates: /* --------------------------------------------------- */
10274
0
        if (ctxt->error != XPATH_EXPRESSION_OK)
10275
0
      goto error;
10276
10277
        /*
10278
  * Apply predicates.
10279
  */
10280
0
        if ((predOp != NULL) && (seq->nodeNr > 0)) {
10281
      /*
10282
      * E.g. when we have a "/foo[some expression][n]".
10283
      */
10284
      /*
10285
      * QUESTION TODO: The old predicate evaluation took into
10286
      *  account location-sets.
10287
      *  (E.g. ctxt->value->type == XPATH_LOCATIONSET)
10288
      *  Do we expect such a set here?
10289
      *  All what I learned now from the evaluation semantics
10290
      *  does not indicate that a location-set will be processed
10291
      *  here, so this looks OK.
10292
      */
10293
      /*
10294
      * Iterate over all predicates, starting with the outermost
10295
      * predicate.
10296
      * TODO: Problem: we cannot execute the inner predicates first
10297
      *  since we cannot go back *up* the operator tree!
10298
      *  Options we have:
10299
      *  1) Use of recursive functions (like is it currently done
10300
      *     via xmlXPathCompOpEval())
10301
      *  2) Add a predicate evaluation information stack to the
10302
      *     context struct
10303
      *  3) Change the way the operators are linked; we need a
10304
      *     "parent" field on xmlXPathStepOp
10305
      *
10306
      * For the moment, I'll try to solve this with a recursive
10307
      * function: xmlXPathCompOpEvalPredicate().
10308
      */
10309
0
      if (hasPredicateRange != 0)
10310
0
    xmlXPathCompOpEvalPredicate(ctxt, predOp, seq, maxPos, maxPos,
10311
0
              hasNsNodes);
10312
0
      else
10313
0
    xmlXPathCompOpEvalPredicate(ctxt, predOp, seq, 1, seq->nodeNr,
10314
0
              hasNsNodes);
10315
10316
0
      if (ctxt->error != XPATH_EXPRESSION_OK) {
10317
0
    total = 0;
10318
0
    goto error;
10319
0
      }
10320
0
        }
10321
10322
0
        if (seq->nodeNr > 0) {
10323
      /*
10324
      * Add to result set.
10325
      */
10326
0
      if (outSeq == NULL) {
10327
0
    outSeq = seq;
10328
0
    seq = NULL;
10329
0
      } else {
10330
0
    outSeq = mergeAndClear(outSeq, seq);
10331
0
                if (outSeq == NULL)
10332
0
                    xmlXPathPErrMemory(ctxt);
10333
0
      }
10334
10335
0
            if (toBool)
10336
0
                break;
10337
0
  }
10338
0
    }
10339
10340
0
error:
10341
0
    if ((obj->boolval) && (obj->user != NULL)) {
10342
  /*
10343
  * QUESTION TODO: What does this do and why?
10344
  * TODO: Do we have to do this also for the "error"
10345
  * cleanup further down?
10346
  */
10347
0
  ctxt->value->boolval = 1;
10348
0
  ctxt->value->user = obj->user;
10349
0
  obj->user = NULL;
10350
0
  obj->boolval = 0;
10351
0
    }
10352
0
    xmlXPathReleaseObject(xpctxt, obj);
10353
10354
    /*
10355
    * Ensure we return at least an empty set.
10356
    */
10357
0
    if (outSeq == NULL) {
10358
0
  if ((seq != NULL) && (seq->nodeNr == 0)) {
10359
0
      outSeq = seq;
10360
0
        } else {
10361
0
      outSeq = xmlXPathNodeSetCreate(NULL);
10362
0
            if (outSeq == NULL)
10363
0
                xmlXPathPErrMemory(ctxt);
10364
0
        }
10365
0
    }
10366
0
    if ((seq != NULL) && (seq != outSeq)) {
10367
0
   xmlXPathFreeNodeSet(seq);
10368
0
    }
10369
    /*
10370
    * Hand over the result. Better to push the set also in
10371
    * case of errors.
10372
    */
10373
0
    xmlXPathValuePush(ctxt, xmlXPathCacheWrapNodeSet(ctxt, outSeq));
10374
    /*
10375
    * Reset the context node.
10376
    */
10377
0
    xpctxt->node = oldContextNode;
10378
    /*
10379
    * When traversing the namespace axis in "toBool" mode, it's
10380
    * possible that tmpNsList wasn't freed.
10381
    */
10382
0
    if (xpctxt->tmpNsList != NULL) {
10383
0
        xmlFree(xpctxt->tmpNsList);
10384
0
        xpctxt->tmpNsList = NULL;
10385
0
    }
10386
10387
0
    return(total);
10388
0
}
10389
10390
static int
10391
xmlXPathCompOpEvalFilterFirst(xmlXPathParserContextPtr ctxt,
10392
            xmlXPathStepOpPtr op, xmlNodePtr * first);
10393
10394
/**
10395
 * Evaluate the Precompiled XPath operation searching only the first
10396
 * element in document order
10397
 *
10398
 * @param ctxt  the XPath parser context with the compiled expression
10399
 * @param op  an XPath compiled operation
10400
 * @param first  the first elem found so far
10401
 * @returns the number of examined objects.
10402
 */
10403
static int
10404
xmlXPathCompOpEvalFirst(xmlXPathParserContextPtr ctxt,
10405
                        xmlXPathStepOpPtr op, xmlNodePtr * first)
10406
0
{
10407
0
    int total = 0, cur;
10408
0
    xmlXPathCompExprPtr comp;
10409
0
    xmlXPathObjectPtr arg1, arg2;
10410
10411
0
    CHECK_ERROR0;
10412
0
    if (OP_LIMIT_EXCEEDED(ctxt, 1))
10413
0
        return(0);
10414
0
    if (ctxt->context->depth >= XPATH_MAX_RECURSION_DEPTH)
10415
0
        XP_ERROR0(XPATH_RECURSION_LIMIT_EXCEEDED);
10416
0
    ctxt->context->depth += 1;
10417
0
    comp = ctxt->comp;
10418
0
    switch (op->op) {
10419
0
        case XPATH_OP_END:
10420
0
            break;
10421
0
        case XPATH_OP_UNION:
10422
0
            total =
10423
0
                xmlXPathCompOpEvalFirst(ctxt, &comp->steps[op->ch1],
10424
0
                                        first);
10425
0
      CHECK_ERROR0;
10426
0
            if ((ctxt->value != NULL)
10427
0
                && (ctxt->value->type == XPATH_NODESET)
10428
0
                && (ctxt->value->nodesetval != NULL)
10429
0
                && (ctxt->value->nodesetval->nodeNr >= 1)) {
10430
                /*
10431
                 * limit tree traversing to first node in the result
10432
                 */
10433
    /*
10434
    * OPTIMIZE TODO: This implicitly sorts
10435
    *  the result, even if not needed. E.g. if the argument
10436
    *  of the count() function, no sorting is needed.
10437
    * OPTIMIZE TODO: How do we know if the node-list wasn't
10438
    *  already sorted?
10439
    */
10440
0
    if (ctxt->value->nodesetval->nodeNr > 1)
10441
0
        xmlXPathNodeSetSort(ctxt->value->nodesetval);
10442
0
                *first = ctxt->value->nodesetval->nodeTab[0];
10443
0
            }
10444
0
            cur =
10445
0
                xmlXPathCompOpEvalFirst(ctxt, &comp->steps[op->ch2],
10446
0
                                        first);
10447
0
      CHECK_ERROR0;
10448
10449
0
            arg2 = xmlXPathValuePop(ctxt);
10450
0
            arg1 = xmlXPathValuePop(ctxt);
10451
0
            if ((arg1 == NULL) || (arg1->type != XPATH_NODESET) ||
10452
0
                (arg2 == NULL) || (arg2->type != XPATH_NODESET)) {
10453
0
          xmlXPathReleaseObject(ctxt->context, arg1);
10454
0
          xmlXPathReleaseObject(ctxt->context, arg2);
10455
0
                XP_ERROR0(XPATH_INVALID_TYPE);
10456
0
            }
10457
0
            if ((ctxt->context->opLimit != 0) &&
10458
0
                (((arg1->nodesetval != NULL) &&
10459
0
                  (xmlXPathCheckOpLimit(ctxt,
10460
0
                                        arg1->nodesetval->nodeNr) < 0)) ||
10461
0
                 ((arg2->nodesetval != NULL) &&
10462
0
                  (xmlXPathCheckOpLimit(ctxt,
10463
0
                                        arg2->nodesetval->nodeNr) < 0)))) {
10464
0
          xmlXPathReleaseObject(ctxt->context, arg1);
10465
0
          xmlXPathReleaseObject(ctxt->context, arg2);
10466
0
                break;
10467
0
            }
10468
10469
0
            if ((arg2->nodesetval != NULL) &&
10470
0
                (arg2->nodesetval->nodeNr != 0)) {
10471
0
                arg1->nodesetval = xmlXPathNodeSetMerge(arg1->nodesetval,
10472
0
                                                        arg2->nodesetval);
10473
0
                if (arg1->nodesetval == NULL)
10474
0
                    xmlXPathPErrMemory(ctxt);
10475
0
            }
10476
0
            xmlXPathValuePush(ctxt, arg1);
10477
0
      xmlXPathReleaseObject(ctxt->context, arg2);
10478
0
            total += cur;
10479
0
            break;
10480
0
        case XPATH_OP_ROOT:
10481
0
            xmlXPathRoot(ctxt);
10482
0
            break;
10483
0
        case XPATH_OP_NODE:
10484
0
            if (op->ch1 != -1)
10485
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10486
0
      CHECK_ERROR0;
10487
0
            if (op->ch2 != -1)
10488
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
10489
0
      CHECK_ERROR0;
10490
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewNodeSet(ctxt,
10491
0
    ctxt->context->node));
10492
0
            break;
10493
0
        case XPATH_OP_COLLECT:{
10494
0
                if (op->ch1 == -1)
10495
0
                    break;
10496
10497
0
                total = xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10498
0
    CHECK_ERROR0;
10499
10500
0
                total += xmlXPathNodeCollectAndTest(ctxt, op, first, NULL, 0);
10501
0
                break;
10502
0
            }
10503
0
        case XPATH_OP_VALUE:
10504
0
            xmlXPathValuePush(ctxt, xmlXPathCacheObjectCopy(ctxt, op->value4));
10505
0
            break;
10506
0
        case XPATH_OP_SORT:
10507
0
            if (op->ch1 != -1)
10508
0
                total +=
10509
0
                    xmlXPathCompOpEvalFirst(ctxt, &comp->steps[op->ch1],
10510
0
                                            first);
10511
0
      CHECK_ERROR0;
10512
0
            if ((ctxt->value != NULL)
10513
0
                && (ctxt->value->type == XPATH_NODESET)
10514
0
                && (ctxt->value->nodesetval != NULL)
10515
0
    && (ctxt->value->nodesetval->nodeNr > 1))
10516
0
                xmlXPathNodeSetSort(ctxt->value->nodesetval);
10517
0
            break;
10518
0
#ifdef XP_OPTIMIZED_FILTER_FIRST
10519
0
  case XPATH_OP_FILTER:
10520
0
                total += xmlXPathCompOpEvalFilterFirst(ctxt, op, first);
10521
0
            break;
10522
0
#endif
10523
0
        default:
10524
0
            total += xmlXPathCompOpEval(ctxt, op);
10525
0
            break;
10526
0
    }
10527
10528
0
    ctxt->context->depth -= 1;
10529
0
    return(total);
10530
0
}
10531
10532
/**
10533
 * Evaluate the Precompiled XPath operation searching only the last
10534
 * element in document order
10535
 *
10536
 * @param ctxt  the XPath parser context with the compiled expression
10537
 * @param op  an XPath compiled operation
10538
 * @param last  the last elem found so far
10539
 * @returns the number of nodes traversed
10540
 */
10541
static int
10542
xmlXPathCompOpEvalLast(xmlXPathParserContextPtr ctxt, xmlXPathStepOpPtr op,
10543
                       xmlNodePtr * last)
10544
0
{
10545
0
    int total = 0, cur;
10546
0
    xmlXPathCompExprPtr comp;
10547
0
    xmlXPathObjectPtr arg1, arg2;
10548
10549
0
    CHECK_ERROR0;
10550
0
    if (OP_LIMIT_EXCEEDED(ctxt, 1))
10551
0
        return(0);
10552
0
    if (ctxt->context->depth >= XPATH_MAX_RECURSION_DEPTH)
10553
0
        XP_ERROR0(XPATH_RECURSION_LIMIT_EXCEEDED);
10554
0
    ctxt->context->depth += 1;
10555
0
    comp = ctxt->comp;
10556
0
    switch (op->op) {
10557
0
        case XPATH_OP_END:
10558
0
            break;
10559
0
        case XPATH_OP_UNION:
10560
0
            total =
10561
0
                xmlXPathCompOpEvalLast(ctxt, &comp->steps[op->ch1], last);
10562
0
      CHECK_ERROR0;
10563
0
            if ((ctxt->value != NULL)
10564
0
                && (ctxt->value->type == XPATH_NODESET)
10565
0
                && (ctxt->value->nodesetval != NULL)
10566
0
                && (ctxt->value->nodesetval->nodeNr >= 1)) {
10567
                /*
10568
                 * limit tree traversing to first node in the result
10569
                 */
10570
0
    if (ctxt->value->nodesetval->nodeNr > 1)
10571
0
        xmlXPathNodeSetSort(ctxt->value->nodesetval);
10572
0
                *last =
10573
0
                    ctxt->value->nodesetval->nodeTab[ctxt->value->
10574
0
                                                     nodesetval->nodeNr -
10575
0
                                                     1];
10576
0
            }
10577
0
            cur =
10578
0
                xmlXPathCompOpEvalLast(ctxt, &comp->steps[op->ch2], last);
10579
0
      CHECK_ERROR0;
10580
0
            if ((ctxt->value != NULL)
10581
0
                && (ctxt->value->type == XPATH_NODESET)
10582
0
                && (ctxt->value->nodesetval != NULL)
10583
0
                && (ctxt->value->nodesetval->nodeNr >= 1)) { /* TODO: NOP ? */
10584
0
            }
10585
10586
0
            arg2 = xmlXPathValuePop(ctxt);
10587
0
            arg1 = xmlXPathValuePop(ctxt);
10588
0
            if ((arg1 == NULL) || (arg1->type != XPATH_NODESET) ||
10589
0
                (arg2 == NULL) || (arg2->type != XPATH_NODESET)) {
10590
0
          xmlXPathReleaseObject(ctxt->context, arg1);
10591
0
          xmlXPathReleaseObject(ctxt->context, arg2);
10592
0
                XP_ERROR0(XPATH_INVALID_TYPE);
10593
0
            }
10594
0
            if ((ctxt->context->opLimit != 0) &&
10595
0
                (((arg1->nodesetval != NULL) &&
10596
0
                  (xmlXPathCheckOpLimit(ctxt,
10597
0
                                        arg1->nodesetval->nodeNr) < 0)) ||
10598
0
                 ((arg2->nodesetval != NULL) &&
10599
0
                  (xmlXPathCheckOpLimit(ctxt,
10600
0
                                        arg2->nodesetval->nodeNr) < 0)))) {
10601
0
          xmlXPathReleaseObject(ctxt->context, arg1);
10602
0
          xmlXPathReleaseObject(ctxt->context, arg2);
10603
0
                break;
10604
0
            }
10605
10606
0
            if ((arg2->nodesetval != NULL) &&
10607
0
                (arg2->nodesetval->nodeNr != 0)) {
10608
0
                arg1->nodesetval = xmlXPathNodeSetMerge(arg1->nodesetval,
10609
0
                                                        arg2->nodesetval);
10610
0
                if (arg1->nodesetval == NULL)
10611
0
                    xmlXPathPErrMemory(ctxt);
10612
0
            }
10613
0
            xmlXPathValuePush(ctxt, arg1);
10614
0
      xmlXPathReleaseObject(ctxt->context, arg2);
10615
0
            total += cur;
10616
0
            break;
10617
0
        case XPATH_OP_ROOT:
10618
0
            xmlXPathRoot(ctxt);
10619
0
            break;
10620
0
        case XPATH_OP_NODE:
10621
0
            if (op->ch1 != -1)
10622
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10623
0
      CHECK_ERROR0;
10624
0
            if (op->ch2 != -1)
10625
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
10626
0
      CHECK_ERROR0;
10627
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewNodeSet(ctxt,
10628
0
    ctxt->context->node));
10629
0
            break;
10630
0
        case XPATH_OP_COLLECT:{
10631
0
                if (op->ch1 == -1)
10632
0
                    break;
10633
10634
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10635
0
    CHECK_ERROR0;
10636
10637
0
                total += xmlXPathNodeCollectAndTest(ctxt, op, NULL, last, 0);
10638
0
                break;
10639
0
            }
10640
0
        case XPATH_OP_VALUE:
10641
0
            xmlXPathValuePush(ctxt, xmlXPathCacheObjectCopy(ctxt, op->value4));
10642
0
            break;
10643
0
        case XPATH_OP_SORT:
10644
0
            if (op->ch1 != -1)
10645
0
                total +=
10646
0
                    xmlXPathCompOpEvalLast(ctxt, &comp->steps[op->ch1],
10647
0
                                           last);
10648
0
      CHECK_ERROR0;
10649
0
            if ((ctxt->value != NULL)
10650
0
                && (ctxt->value->type == XPATH_NODESET)
10651
0
                && (ctxt->value->nodesetval != NULL)
10652
0
    && (ctxt->value->nodesetval->nodeNr > 1))
10653
0
                xmlXPathNodeSetSort(ctxt->value->nodesetval);
10654
0
            break;
10655
0
        default:
10656
0
            total += xmlXPathCompOpEval(ctxt, op);
10657
0
            break;
10658
0
    }
10659
10660
0
    ctxt->context->depth -= 1;
10661
0
    return (total);
10662
0
}
10663
10664
#ifdef XP_OPTIMIZED_FILTER_FIRST
10665
static int
10666
xmlXPathCompOpEvalFilterFirst(xmlXPathParserContextPtr ctxt,
10667
            xmlXPathStepOpPtr op, xmlNodePtr * first)
10668
0
{
10669
0
    int total = 0;
10670
0
    xmlXPathCompExprPtr comp;
10671
0
    xmlXPathObjectPtr obj;
10672
0
    xmlNodeSetPtr set;
10673
10674
0
    CHECK_ERROR0;
10675
0
    comp = ctxt->comp;
10676
    /*
10677
    * Optimization for ()[last()] selection i.e. the last elem
10678
    */
10679
0
    if ((op->ch1 != -1) && (op->ch2 != -1) &&
10680
0
  (comp->steps[op->ch1].op == XPATH_OP_SORT) &&
10681
0
  (comp->steps[op->ch2].op == XPATH_OP_SORT)) {
10682
0
  int f = comp->steps[op->ch2].ch1;
10683
10684
0
  if ((f != -1) &&
10685
0
      (comp->steps[f].op == XPATH_OP_FUNCTION) &&
10686
0
      (comp->steps[f].value5 == NULL) &&
10687
0
      (comp->steps[f].value == 0) &&
10688
0
      (comp->steps[f].value4 != NULL) &&
10689
0
      (xmlStrEqual
10690
0
      (comp->steps[f].value4, BAD_CAST "last"))) {
10691
0
      xmlNodePtr last = NULL;
10692
10693
0
      total +=
10694
0
    xmlXPathCompOpEvalLast(ctxt,
10695
0
        &comp->steps[op->ch1],
10696
0
        &last);
10697
0
      CHECK_ERROR0;
10698
      /*
10699
      * The nodeset should be in document order,
10700
      * Keep only the last value
10701
      */
10702
0
      if ((ctxt->value != NULL) &&
10703
0
    (ctxt->value->type == XPATH_NODESET) &&
10704
0
    (ctxt->value->nodesetval != NULL) &&
10705
0
    (ctxt->value->nodesetval->nodeTab != NULL) &&
10706
0
    (ctxt->value->nodesetval->nodeNr > 1)) {
10707
0
                xmlXPathNodeSetKeepLast(ctxt->value->nodesetval);
10708
0
    *first = *(ctxt->value->nodesetval->nodeTab);
10709
0
      }
10710
0
      return (total);
10711
0
  }
10712
0
    }
10713
10714
0
    if (op->ch1 != -1)
10715
0
  total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10716
0
    CHECK_ERROR0;
10717
0
    if (op->ch2 == -1)
10718
0
  return (total);
10719
0
    if (ctxt->value == NULL)
10720
0
  return (total);
10721
10722
    /*
10723
     * In case of errors, xmlXPathNodeSetFilter can pop additional nodes from
10724
     * the stack. We have to temporarily remove the nodeset object from the
10725
     * stack to avoid freeing it prematurely.
10726
     */
10727
0
    CHECK_TYPE0(XPATH_NODESET);
10728
0
    obj = xmlXPathValuePop(ctxt);
10729
0
    set = obj->nodesetval;
10730
0
    if (set != NULL) {
10731
0
        xmlXPathNodeSetFilter(ctxt, set, op->ch2, 1, 1, 1);
10732
0
        if (set->nodeNr > 0)
10733
0
            *first = set->nodeTab[0];
10734
0
    }
10735
0
    xmlXPathValuePush(ctxt, obj);
10736
10737
0
    return (total);
10738
0
}
10739
#endif /* XP_OPTIMIZED_FILTER_FIRST */
10740
10741
/**
10742
 * Evaluate the Precompiled XPath operation
10743
 *
10744
 * @param ctxt  the XPath parser context with the compiled expression
10745
 * @param op  an XPath compiled operation
10746
 * @returns the number of nodes traversed
10747
 */
10748
static int
10749
xmlXPathCompOpEval(xmlXPathParserContextPtr ctxt, xmlXPathStepOpPtr op)
10750
0
{
10751
0
    int total = 0;
10752
0
    int equal, ret;
10753
0
    xmlXPathCompExprPtr comp;
10754
0
    xmlXPathObjectPtr arg1, arg2;
10755
10756
0
    CHECK_ERROR0;
10757
0
    if (OP_LIMIT_EXCEEDED(ctxt, 1))
10758
0
        return(0);
10759
0
    if (ctxt->context->depth >= XPATH_MAX_RECURSION_DEPTH)
10760
0
        XP_ERROR0(XPATH_RECURSION_LIMIT_EXCEEDED);
10761
0
    ctxt->context->depth += 1;
10762
0
    comp = ctxt->comp;
10763
0
    switch (op->op) {
10764
0
        case XPATH_OP_END:
10765
0
            break;
10766
0
        case XPATH_OP_AND:
10767
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10768
0
      CHECK_ERROR0;
10769
0
            xmlXPathBooleanFunction(ctxt, 1);
10770
0
            if ((ctxt->value == NULL) || (ctxt->value->boolval == 0))
10771
0
                break;
10772
0
            arg2 = xmlXPathValuePop(ctxt);
10773
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
10774
0
      if (ctxt->error) {
10775
0
    xmlXPathFreeObject(arg2);
10776
0
    break;
10777
0
      }
10778
0
            xmlXPathBooleanFunction(ctxt, 1);
10779
0
            if (ctxt->value != NULL)
10780
0
                ctxt->value->boolval &= arg2->boolval;
10781
0
      xmlXPathReleaseObject(ctxt->context, arg2);
10782
0
            break;
10783
0
        case XPATH_OP_OR:
10784
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10785
0
      CHECK_ERROR0;
10786
0
            xmlXPathBooleanFunction(ctxt, 1);
10787
0
            if ((ctxt->value == NULL) || (ctxt->value->boolval == 1))
10788
0
                break;
10789
0
            arg2 = xmlXPathValuePop(ctxt);
10790
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
10791
0
      if (ctxt->error) {
10792
0
    xmlXPathFreeObject(arg2);
10793
0
    break;
10794
0
      }
10795
0
            xmlXPathBooleanFunction(ctxt, 1);
10796
0
            if (ctxt->value != NULL)
10797
0
                ctxt->value->boolval |= arg2->boolval;
10798
0
      xmlXPathReleaseObject(ctxt->context, arg2);
10799
0
            break;
10800
0
        case XPATH_OP_EQUAL:
10801
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10802
0
      CHECK_ERROR0;
10803
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
10804
0
      CHECK_ERROR0;
10805
0
      if (op->value)
10806
0
    equal = xmlXPathEqualValues(ctxt);
10807
0
      else
10808
0
    equal = xmlXPathNotEqualValues(ctxt);
10809
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewBoolean(ctxt, equal));
10810
0
            break;
10811
0
        case XPATH_OP_CMP:
10812
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10813
0
      CHECK_ERROR0;
10814
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
10815
0
      CHECK_ERROR0;
10816
0
            ret = xmlXPathCompareValues(ctxt, op->value, op->value2);
10817
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewBoolean(ctxt, ret));
10818
0
            break;
10819
0
        case XPATH_OP_PLUS:
10820
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10821
0
      CHECK_ERROR0;
10822
0
            if (op->ch2 != -1) {
10823
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
10824
0
      }
10825
0
      CHECK_ERROR0;
10826
0
            if (op->value == 0)
10827
0
                xmlXPathSubValues(ctxt);
10828
0
            else if (op->value == 1)
10829
0
                xmlXPathAddValues(ctxt);
10830
0
            else if (op->value == 2)
10831
0
                xmlXPathValueFlipSign(ctxt);
10832
0
            else if (op->value == 3) {
10833
0
                CAST_TO_NUMBER;
10834
0
                CHECK_TYPE0(XPATH_NUMBER);
10835
0
            }
10836
0
            break;
10837
0
        case XPATH_OP_MULT:
10838
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10839
0
      CHECK_ERROR0;
10840
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
10841
0
      CHECK_ERROR0;
10842
0
            if (op->value == 0)
10843
0
                xmlXPathMultValues(ctxt);
10844
0
            else if (op->value == 1)
10845
0
                xmlXPathDivValues(ctxt);
10846
0
            else if (op->value == 2)
10847
0
                xmlXPathModValues(ctxt);
10848
0
            break;
10849
0
        case XPATH_OP_UNION:
10850
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10851
0
      CHECK_ERROR0;
10852
0
            total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
10853
0
      CHECK_ERROR0;
10854
10855
0
            arg2 = xmlXPathValuePop(ctxt);
10856
0
            arg1 = xmlXPathValuePop(ctxt);
10857
0
            if ((arg1 == NULL) || (arg1->type != XPATH_NODESET) ||
10858
0
                (arg2 == NULL) || (arg2->type != XPATH_NODESET)) {
10859
0
          xmlXPathReleaseObject(ctxt->context, arg1);
10860
0
          xmlXPathReleaseObject(ctxt->context, arg2);
10861
0
                XP_ERROR0(XPATH_INVALID_TYPE);
10862
0
            }
10863
0
            if ((ctxt->context->opLimit != 0) &&
10864
0
                (((arg1->nodesetval != NULL) &&
10865
0
                  (xmlXPathCheckOpLimit(ctxt,
10866
0
                                        arg1->nodesetval->nodeNr) < 0)) ||
10867
0
                 ((arg2->nodesetval != NULL) &&
10868
0
                  (xmlXPathCheckOpLimit(ctxt,
10869
0
                                        arg2->nodesetval->nodeNr) < 0)))) {
10870
0
          xmlXPathReleaseObject(ctxt->context, arg1);
10871
0
          xmlXPathReleaseObject(ctxt->context, arg2);
10872
0
                break;
10873
0
            }
10874
10875
0
      if (((arg2->nodesetval != NULL) &&
10876
0
     (arg2->nodesetval->nodeNr != 0)))
10877
0
      {
10878
0
    arg1->nodesetval = xmlXPathNodeSetMerge(arg1->nodesetval,
10879
0
              arg2->nodesetval);
10880
0
                if (arg1->nodesetval == NULL)
10881
0
                    xmlXPathPErrMemory(ctxt);
10882
0
      }
10883
10884
0
            xmlXPathValuePush(ctxt, arg1);
10885
0
      xmlXPathReleaseObject(ctxt->context, arg2);
10886
0
            break;
10887
0
        case XPATH_OP_ROOT:
10888
0
            xmlXPathRoot(ctxt);
10889
0
            break;
10890
0
        case XPATH_OP_NODE:
10891
0
            if (op->ch1 != -1)
10892
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10893
0
      CHECK_ERROR0;
10894
0
            if (op->ch2 != -1)
10895
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
10896
0
      CHECK_ERROR0;
10897
0
      xmlXPathValuePush(ctxt, xmlXPathCacheNewNodeSet(ctxt,
10898
0
                                                    ctxt->context->node));
10899
0
            break;
10900
0
        case XPATH_OP_COLLECT:{
10901
0
                if (op->ch1 == -1)
10902
0
                    break;
10903
10904
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10905
0
    CHECK_ERROR0;
10906
10907
0
                total += xmlXPathNodeCollectAndTest(ctxt, op, NULL, NULL, 0);
10908
0
                break;
10909
0
            }
10910
0
        case XPATH_OP_VALUE:
10911
0
            xmlXPathValuePush(ctxt, xmlXPathCacheObjectCopy(ctxt, op->value4));
10912
0
            break;
10913
0
        case XPATH_OP_VARIABLE:{
10914
0
    xmlXPathObjectPtr val;
10915
10916
0
                if (op->ch1 != -1)
10917
0
                    total +=
10918
0
                        xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10919
0
                if (op->value5 == NULL) {
10920
0
        val = xmlXPathVariableLookup(ctxt->context, op->value4);
10921
0
        if (val == NULL) {
10922
0
                        xmlXPathErrFmt(ctxt, XPATH_UNDEF_VARIABLE_ERROR,
10923
0
                                       "Undefined variable: %s\n", op->value4);
10924
0
                        return 0;
10925
0
                    }
10926
0
                    xmlXPathValuePush(ctxt, val);
10927
0
    } else {
10928
0
                    const xmlChar *URI;
10929
10930
0
                    URI = xmlXPathNsLookup(ctxt->context, op->value5);
10931
0
                    if (URI == NULL) {
10932
0
                        xmlXPathErrFmt(ctxt, XPATH_UNDEF_PREFIX_ERROR,
10933
0
                                       "Undefined namespace prefix: %s\n",
10934
0
                                       op->value5);
10935
0
                        return 0;
10936
0
                    }
10937
0
        val = xmlXPathVariableLookupNS(ctxt->context,
10938
0
                                                       op->value4, URI);
10939
0
        if (val == NULL) {
10940
0
                        xmlXPathErrFmt(ctxt, XPATH_UNDEF_VARIABLE_ERROR,
10941
0
                                       "Undefined variable: %s:%s\n",
10942
0
                                       op->value5, op->value4);
10943
0
                        return 0;
10944
0
                    }
10945
0
                    xmlXPathValuePush(ctxt, val);
10946
0
                }
10947
0
                break;
10948
0
            }
10949
0
        case XPATH_OP_FUNCTION:{
10950
0
                xmlXPathFunction func;
10951
0
                const xmlChar *oldFunc, *oldFuncURI;
10952
0
    int i;
10953
0
                int frame;
10954
10955
0
                frame = ctxt->valueNr;
10956
0
                if (op->ch1 != -1) {
10957
0
                    total +=
10958
0
                        xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
10959
0
                    if (ctxt->error != XPATH_EXPRESSION_OK)
10960
0
                        break;
10961
0
                }
10962
0
    if (ctxt->valueNr < frame + op->value)
10963
0
        XP_ERROR0(XPATH_INVALID_OPERAND);
10964
0
    for (i = 0; i < op->value; i++) {
10965
0
        if (ctxt->valueTab[(ctxt->valueNr - 1) - i] == NULL)
10966
0
      XP_ERROR0(XPATH_INVALID_OPERAND);
10967
0
                }
10968
0
                if (op->cache != NULL)
10969
0
                    func = op->cache;
10970
0
                else {
10971
0
                    const xmlChar *URI = NULL;
10972
10973
0
                    if (op->value5 == NULL) {
10974
0
                        func = xmlXPathFunctionLookup(ctxt->context,
10975
0
                                                      op->value4);
10976
0
                        if (func == NULL) {
10977
0
                            xmlXPathErrFmt(ctxt, XPATH_UNKNOWN_FUNC_ERROR,
10978
0
                                           "Unregistered function: %s\n",
10979
0
                                           op->value4);
10980
0
                            return 0;
10981
0
                        }
10982
0
                    } else {
10983
0
                        URI = xmlXPathNsLookup(ctxt->context, op->value5);
10984
0
                        if (URI == NULL) {
10985
0
                            xmlXPathErrFmt(ctxt, XPATH_UNDEF_PREFIX_ERROR,
10986
0
                                           "Undefined namespace prefix: %s\n",
10987
0
                                           op->value5);
10988
0
                            return 0;
10989
0
                        }
10990
0
                        func = xmlXPathFunctionLookupNS(ctxt->context,
10991
0
                                                        op->value4, URI);
10992
0
                        if (func == NULL) {
10993
0
                            xmlXPathErrFmt(ctxt, XPATH_UNKNOWN_FUNC_ERROR,
10994
0
                                           "Unregistered function: %s:%s\n",
10995
0
                                           op->value5, op->value4);
10996
0
                            return 0;
10997
0
                        }
10998
0
                    }
10999
0
                    op->cache = func;
11000
0
                    op->cacheURI = (void *) URI;
11001
0
                }
11002
0
                oldFunc = ctxt->context->function;
11003
0
                oldFuncURI = ctxt->context->functionURI;
11004
0
                ctxt->context->function = op->value4;
11005
0
                ctxt->context->functionURI = op->cacheURI;
11006
0
                func(ctxt, op->value);
11007
0
                ctxt->context->function = oldFunc;
11008
0
                ctxt->context->functionURI = oldFuncURI;
11009
0
                if ((ctxt->error == XPATH_EXPRESSION_OK) &&
11010
0
                    (ctxt->valueNr != frame + 1))
11011
0
                    XP_ERROR0(XPATH_STACK_ERROR);
11012
0
                break;
11013
0
            }
11014
0
        case XPATH_OP_ARG:
11015
0
            if (op->ch1 != -1) {
11016
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
11017
0
          CHECK_ERROR0;
11018
0
            }
11019
0
            if (op->ch2 != -1) {
11020
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch2]);
11021
0
          CHECK_ERROR0;
11022
0
      }
11023
0
            break;
11024
0
        case XPATH_OP_PREDICATE:
11025
0
        case XPATH_OP_FILTER:{
11026
0
                xmlXPathObjectPtr obj;
11027
0
                xmlNodeSetPtr set;
11028
11029
                /*
11030
                 * Optimization for ()[1] selection i.e. the first elem
11031
                 */
11032
0
                if ((op->ch1 != -1) && (op->ch2 != -1) &&
11033
0
#ifdef XP_OPTIMIZED_FILTER_FIRST
11034
        /*
11035
        * FILTER TODO: Can we assume that the inner processing
11036
        *  will result in an ordered list if we have an
11037
        *  XPATH_OP_FILTER?
11038
        *  What about an additional field or flag on
11039
        *  xmlXPathObject like @sorted ? This way we wouldn't need
11040
        *  to assume anything, so it would be more robust and
11041
        *  easier to optimize.
11042
        */
11043
0
                    ((comp->steps[op->ch1].op == XPATH_OP_SORT) || /* 18 */
11044
0
         (comp->steps[op->ch1].op == XPATH_OP_FILTER)) && /* 17 */
11045
#else
11046
        (comp->steps[op->ch1].op == XPATH_OP_SORT) &&
11047
#endif
11048
0
                    (comp->steps[op->ch2].op == XPATH_OP_VALUE)) { /* 12 */
11049
0
                    xmlXPathObjectPtr val;
11050
11051
0
                    val = comp->steps[op->ch2].value4;
11052
0
                    if ((val != NULL) && (val->type == XPATH_NUMBER) &&
11053
0
                        (val->floatval == 1.0)) {
11054
0
                        xmlNodePtr first = NULL;
11055
11056
0
                        total +=
11057
0
                            xmlXPathCompOpEvalFirst(ctxt,
11058
0
                                                    &comp->steps[op->ch1],
11059
0
                                                    &first);
11060
0
      CHECK_ERROR0;
11061
                        /*
11062
                         * The nodeset should be in document order,
11063
                         * Keep only the first value
11064
                         */
11065
0
                        if ((ctxt->value != NULL) &&
11066
0
                            (ctxt->value->type == XPATH_NODESET) &&
11067
0
                            (ctxt->value->nodesetval != NULL) &&
11068
0
                            (ctxt->value->nodesetval->nodeNr > 1))
11069
0
                            xmlXPathNodeSetClearFromPos(ctxt->value->nodesetval,
11070
0
                                                        1, 1);
11071
0
                        break;
11072
0
                    }
11073
0
                }
11074
                /*
11075
                 * Optimization for ()[last()] selection i.e. the last elem
11076
                 */
11077
0
                if ((op->ch1 != -1) && (op->ch2 != -1) &&
11078
0
                    (comp->steps[op->ch1].op == XPATH_OP_SORT) &&
11079
0
                    (comp->steps[op->ch2].op == XPATH_OP_SORT)) {
11080
0
                    int f = comp->steps[op->ch2].ch1;
11081
11082
0
                    if ((f != -1) &&
11083
0
                        (comp->steps[f].op == XPATH_OP_FUNCTION) &&
11084
0
                        (comp->steps[f].value5 == NULL) &&
11085
0
                        (comp->steps[f].value == 0) &&
11086
0
                        (comp->steps[f].value4 != NULL) &&
11087
0
                        (xmlStrEqual
11088
0
                         (comp->steps[f].value4, BAD_CAST "last"))) {
11089
0
                        xmlNodePtr last = NULL;
11090
11091
0
                        total +=
11092
0
                            xmlXPathCompOpEvalLast(ctxt,
11093
0
                                                   &comp->steps[op->ch1],
11094
0
                                                   &last);
11095
0
      CHECK_ERROR0;
11096
                        /*
11097
                         * The nodeset should be in document order,
11098
                         * Keep only the last value
11099
                         */
11100
0
                        if ((ctxt->value != NULL) &&
11101
0
                            (ctxt->value->type == XPATH_NODESET) &&
11102
0
                            (ctxt->value->nodesetval != NULL) &&
11103
0
                            (ctxt->value->nodesetval->nodeTab != NULL) &&
11104
0
                            (ctxt->value->nodesetval->nodeNr > 1))
11105
0
                            xmlXPathNodeSetKeepLast(ctxt->value->nodesetval);
11106
0
                        break;
11107
0
                    }
11108
0
                }
11109
    /*
11110
    * Process inner predicates first.
11111
    * Example "index[parent::book][1]":
11112
    * ...
11113
    *   PREDICATE   <-- we are here "[1]"
11114
    *     PREDICATE <-- process "[parent::book]" first
11115
    *       SORT
11116
    *         COLLECT  'parent' 'name' 'node' book
11117
    *           NODE
11118
    *     ELEM Object is a number : 1
11119
    */
11120
0
                if (op->ch1 != -1)
11121
0
                    total +=
11122
0
                        xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
11123
0
    CHECK_ERROR0;
11124
0
                if (op->ch2 == -1)
11125
0
                    break;
11126
0
                if (ctxt->value == NULL)
11127
0
                    break;
11128
11129
                /*
11130
                 * In case of errors, xmlXPathNodeSetFilter can pop additional
11131
                 * nodes from the stack. We have to temporarily remove the
11132
                 * nodeset object from the stack to avoid freeing it
11133
                 * prematurely.
11134
                 */
11135
0
                CHECK_TYPE0(XPATH_NODESET);
11136
0
                obj = xmlXPathValuePop(ctxt);
11137
0
                set = obj->nodesetval;
11138
0
                if (set != NULL)
11139
0
                    xmlXPathNodeSetFilter(ctxt, set, op->ch2,
11140
0
                                          1, set->nodeNr, 1);
11141
0
                xmlXPathValuePush(ctxt, obj);
11142
0
                break;
11143
0
            }
11144
0
        case XPATH_OP_SORT:
11145
0
            if (op->ch1 != -1)
11146
0
                total += xmlXPathCompOpEval(ctxt, &comp->steps[op->ch1]);
11147
0
      CHECK_ERROR0;
11148
0
            if ((ctxt->value != NULL) &&
11149
0
                (ctxt->value->type == XPATH_NODESET) &&
11150
0
                (ctxt->value->nodesetval != NULL) &&
11151
0
    (ctxt->value->nodesetval->nodeNr > 1))
11152
0
      {
11153
0
                xmlXPathNodeSetSort(ctxt->value->nodesetval);
11154
0
      }
11155
0
            break;
11156
0
        default:
11157
0
            XP_ERROR0(XPATH_INVALID_OPERAND);
11158
0
            break;
11159
0
    }
11160
11161
0
    ctxt->context->depth -= 1;
11162
0
    return (total);
11163
0
}
11164
11165
/**
11166
 * Evaluates if the expression evaluates to true.
11167
 *
11168
 * @param ctxt  the XPath parser context
11169
 * @param op  the step operation
11170
 * @param isPredicate  whether a predicate is evaluated
11171
 * @returns 1 if true, 0 if false and -1 on API or internal errors.
11172
 */
11173
static int
11174
xmlXPathCompOpEvalToBoolean(xmlXPathParserContextPtr ctxt,
11175
          xmlXPathStepOpPtr op,
11176
          int isPredicate)
11177
0
{
11178
0
    xmlXPathObjectPtr resObj = NULL;
11179
11180
0
start:
11181
0
    if (OP_LIMIT_EXCEEDED(ctxt, 1))
11182
0
        return(0);
11183
    /* comp = ctxt->comp; */
11184
0
    switch (op->op) {
11185
0
        case XPATH_OP_END:
11186
0
            return (0);
11187
0
  case XPATH_OP_VALUE:
11188
0
      resObj = (xmlXPathObjectPtr) op->value4;
11189
0
      if (isPredicate)
11190
0
    return(xmlXPathEvaluatePredicateResult(ctxt, resObj));
11191
0
      return(xmlXPathCastToBoolean(resObj));
11192
0
  case XPATH_OP_SORT:
11193
      /*
11194
      * We don't need sorting for boolean results. Skip this one.
11195
      */
11196
0
            if (op->ch1 != -1) {
11197
0
    op = &ctxt->comp->steps[op->ch1];
11198
0
    goto start;
11199
0
      }
11200
0
      return(0);
11201
0
  case XPATH_OP_COLLECT:
11202
0
      if (op->ch1 == -1)
11203
0
    return(0);
11204
11205
0
            xmlXPathCompOpEval(ctxt, &ctxt->comp->steps[op->ch1]);
11206
0
      if (ctxt->error != XPATH_EXPRESSION_OK)
11207
0
    return(-1);
11208
11209
0
            xmlXPathNodeCollectAndTest(ctxt, op, NULL, NULL, 1);
11210
0
      if (ctxt->error != XPATH_EXPRESSION_OK)
11211
0
    return(-1);
11212
11213
0
      resObj = xmlXPathValuePop(ctxt);
11214
0
      if (resObj == NULL)
11215
0
    return(-1);
11216
0
      break;
11217
0
  default:
11218
      /*
11219
      * Fallback to call xmlXPathCompOpEval().
11220
      */
11221
0
      xmlXPathCompOpEval(ctxt, op);
11222
0
      if (ctxt->error != XPATH_EXPRESSION_OK)
11223
0
    return(-1);
11224
11225
0
      resObj = xmlXPathValuePop(ctxt);
11226
0
      if (resObj == NULL)
11227
0
    return(-1);
11228
0
      break;
11229
0
    }
11230
11231
0
    if (resObj) {
11232
0
  int res;
11233
11234
0
  if (resObj->type == XPATH_BOOLEAN) {
11235
0
      res = resObj->boolval;
11236
0
  } else if (isPredicate) {
11237
      /*
11238
      * For predicates a result of type "number" is handled
11239
      * differently:
11240
      * SPEC XPath 1.0:
11241
      * "If the result is a number, the result will be converted
11242
      *  to true if the number is equal to the context position
11243
      *  and will be converted to false otherwise;"
11244
      */
11245
0
      res = xmlXPathEvaluatePredicateResult(ctxt, resObj);
11246
0
  } else {
11247
0
      res = xmlXPathCastToBoolean(resObj);
11248
0
  }
11249
0
  xmlXPathReleaseObject(ctxt->context, resObj);
11250
0
  return(res);
11251
0
    }
11252
11253
0
    return(0);
11254
0
}
11255
11256
#ifdef XPATH_STREAMING
11257
/**
11258
 * Evaluate the Precompiled Streamable XPath expression in the given context.
11259
 *
11260
 * @param pctxt  the XPath parser context with the compiled expression
11261
 */
11262
static int
11263
xmlXPathRunStreamEval(xmlXPathParserContextPtr pctxt, xmlPatternPtr comp,
11264
          xmlXPathObjectPtr *resultSeq, int toBool)
11265
{
11266
    int max_depth, min_depth;
11267
    int from_root;
11268
    int ret, depth;
11269
    int eval_all_nodes;
11270
    xmlNodePtr cur = NULL, limit = NULL;
11271
    xmlStreamCtxtPtr patstream = NULL;
11272
    xmlXPathContextPtr ctxt = pctxt->context;
11273
11274
    if ((ctxt == NULL) || (comp == NULL))
11275
        return(-1);
11276
    max_depth = xmlPatternMaxDepth(comp);
11277
    if (max_depth == -1)
11278
        return(-1);
11279
    if (max_depth == -2)
11280
        max_depth = 10000;
11281
    min_depth = xmlPatternMinDepth(comp);
11282
    if (min_depth == -1)
11283
        return(-1);
11284
    from_root = xmlPatternFromRoot(comp);
11285
    if (from_root < 0)
11286
        return(-1);
11287
11288
    if (! toBool) {
11289
  if (resultSeq == NULL)
11290
      return(-1);
11291
  *resultSeq = xmlXPathCacheNewNodeSet(pctxt, NULL);
11292
  if (*resultSeq == NULL)
11293
      return(-1);
11294
    }
11295
11296
    /*
11297
     * handle the special cases of "/" amd "." being matched
11298
     */
11299
    if (min_depth == 0) {
11300
        int res;
11301
11302
  if (from_root) {
11303
      /* Select "/" */
11304
      if (toBool)
11305
    return(1);
11306
            res = xmlXPathNodeSetAddUnique((*resultSeq)->nodesetval,
11307
                                           (xmlNodePtr) ctxt->doc);
11308
  } else {
11309
      /* Select "self::node()" */
11310
      if (toBool)
11311
    return(1);
11312
            res = xmlXPathNodeSetAddUnique((*resultSeq)->nodesetval,
11313
                                           ctxt->node);
11314
  }
11315
11316
        if (res < 0)
11317
            xmlXPathPErrMemory(pctxt);
11318
    }
11319
    if (max_depth == 0) {
11320
  return(0);
11321
    }
11322
11323
    if (from_root) {
11324
        cur = (xmlNodePtr)ctxt->doc;
11325
    } else if (ctxt->node != NULL) {
11326
        switch (ctxt->node->type) {
11327
            case XML_ELEMENT_NODE:
11328
            case XML_DOCUMENT_NODE:
11329
            case XML_DOCUMENT_FRAG_NODE:
11330
            case XML_HTML_DOCUMENT_NODE:
11331
          cur = ctxt->node;
11332
    break;
11333
            case XML_ATTRIBUTE_NODE:
11334
            case XML_TEXT_NODE:
11335
            case XML_CDATA_SECTION_NODE:
11336
            case XML_ENTITY_REF_NODE:
11337
            case XML_ENTITY_NODE:
11338
            case XML_PI_NODE:
11339
            case XML_COMMENT_NODE:
11340
            case XML_NOTATION_NODE:
11341
            case XML_DTD_NODE:
11342
            case XML_DOCUMENT_TYPE_NODE:
11343
            case XML_ELEMENT_DECL:
11344
            case XML_ATTRIBUTE_DECL:
11345
            case XML_ENTITY_DECL:
11346
            case XML_NAMESPACE_DECL:
11347
            case XML_XINCLUDE_START:
11348
            case XML_XINCLUDE_END:
11349
    break;
11350
  }
11351
  limit = cur;
11352
    }
11353
    if (cur == NULL) {
11354
        return(0);
11355
    }
11356
11357
    patstream = xmlPatternGetStreamCtxt(comp);
11358
    if (patstream == NULL) {
11359
        xmlXPathPErrMemory(pctxt);
11360
  return(-1);
11361
    }
11362
11363
    eval_all_nodes = xmlStreamWantsAnyNode(patstream);
11364
11365
    if (from_root) {
11366
  ret = xmlStreamPush(patstream, NULL, NULL);
11367
  if (ret < 0) {
11368
  } else if (ret == 1) {
11369
      if (toBool)
11370
    goto return_1;
11371
      if (xmlXPathNodeSetAddUnique((*resultSeq)->nodesetval, cur) < 0)
11372
                xmlXPathPErrMemory(pctxt);
11373
  }
11374
    }
11375
    depth = 0;
11376
    goto scan_children;
11377
next_node:
11378
    do {
11379
        if (ctxt->opLimit != 0) {
11380
            if (ctxt->opCount >= ctxt->opLimit) {
11381
                xmlXPathErr(ctxt, XPATH_RECURSION_LIMIT_EXCEEDED);
11382
                xmlFreeStreamCtxt(patstream);
11383
                return(-1);
11384
            }
11385
            ctxt->opCount++;
11386
        }
11387
11388
  switch (cur->type) {
11389
      case XML_ELEMENT_NODE:
11390
      case XML_TEXT_NODE:
11391
      case XML_CDATA_SECTION_NODE:
11392
      case XML_COMMENT_NODE:
11393
      case XML_PI_NODE:
11394
    if (cur->type == XML_ELEMENT_NODE) {
11395
        ret = xmlStreamPush(patstream, cur->name,
11396
        (cur->ns ? cur->ns->href : NULL));
11397
    } else if (eval_all_nodes)
11398
        ret = xmlStreamPushNode(patstream, NULL, NULL, cur->type);
11399
    else
11400
        break;
11401
11402
    if (ret < 0) {
11403
        xmlXPathPErrMemory(pctxt);
11404
    } else if (ret == 1) {
11405
        if (toBool)
11406
      goto return_1;
11407
        if (xmlXPathNodeSetAddUnique((*resultSeq)->nodesetval,
11408
                                                 cur) < 0)
11409
                        xmlXPathPErrMemory(pctxt);
11410
    }
11411
    if ((cur->children == NULL) || (depth >= max_depth)) {
11412
        ret = xmlStreamPop(patstream);
11413
        while (cur->next != NULL) {
11414
      cur = cur->next;
11415
      if ((cur->type != XML_ENTITY_DECL) &&
11416
          (cur->type != XML_DTD_NODE))
11417
          goto next_node;
11418
        }
11419
    }
11420
      default:
11421
    break;
11422
  }
11423
11424
scan_children:
11425
  if (cur->type == XML_NAMESPACE_DECL) break;
11426
  if ((cur->children != NULL) && (depth < max_depth)) {
11427
      /*
11428
       * Do not descend on entities declarations
11429
       */
11430
      if (cur->children->type != XML_ENTITY_DECL) {
11431
    cur = cur->children;
11432
    depth++;
11433
    /*
11434
     * Skip DTDs
11435
     */
11436
    if (cur->type != XML_DTD_NODE)
11437
        continue;
11438
      }
11439
  }
11440
11441
  if (cur == limit)
11442
      break;
11443
11444
  while (cur->next != NULL) {
11445
      cur = cur->next;
11446
      if ((cur->type != XML_ENTITY_DECL) &&
11447
    (cur->type != XML_DTD_NODE))
11448
    goto next_node;
11449
  }
11450
11451
  do {
11452
      cur = cur->parent;
11453
      depth--;
11454
      if ((cur == NULL) || (cur == limit) ||
11455
                (cur->type == XML_DOCUMENT_NODE))
11456
          goto done;
11457
      if (cur->type == XML_ELEMENT_NODE) {
11458
    ret = xmlStreamPop(patstream);
11459
      } else if ((eval_all_nodes) &&
11460
    ((cur->type == XML_TEXT_NODE) ||
11461
     (cur->type == XML_CDATA_SECTION_NODE) ||
11462
     (cur->type == XML_COMMENT_NODE) ||
11463
     (cur->type == XML_PI_NODE)))
11464
      {
11465
    ret = xmlStreamPop(patstream);
11466
      }
11467
      if (cur->next != NULL) {
11468
    cur = cur->next;
11469
    break;
11470
      }
11471
  } while (cur != NULL);
11472
11473
    } while ((cur != NULL) && (depth >= 0));
11474
11475
done:
11476
11477
    if (patstream)
11478
  xmlFreeStreamCtxt(patstream);
11479
    return(0);
11480
11481
return_1:
11482
    if (patstream)
11483
  xmlFreeStreamCtxt(patstream);
11484
    return(1);
11485
}
11486
#endif /* XPATH_STREAMING */
11487
11488
/**
11489
 * Evaluate the Precompiled XPath expression in the given context.
11490
 *
11491
 * @param ctxt  the XPath parser context with the compiled expression
11492
 * @param toBool  evaluate to a boolean result
11493
 */
11494
static int
11495
xmlXPathRunEval(xmlXPathParserContextPtr ctxt, int toBool)
11496
0
{
11497
0
    xmlXPathCompExprPtr comp;
11498
0
    int oldDepth;
11499
11500
0
    if ((ctxt == NULL) || (ctxt->comp == NULL))
11501
0
  return(-1);
11502
11503
0
    if (ctxt->valueTab == NULL) {
11504
0
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
11505
0
        int valueMax = 1;
11506
#else
11507
        int valueMax = 10;
11508
#endif
11509
11510
  /* Allocate the value stack */
11511
0
  ctxt->valueTab = xmlMalloc(valueMax * sizeof(xmlXPathObjectPtr));
11512
0
  if (ctxt->valueTab == NULL) {
11513
0
      xmlXPathPErrMemory(ctxt);
11514
0
      return(-1);
11515
0
  }
11516
0
  ctxt->valueNr = 0;
11517
0
  ctxt->valueMax = valueMax;
11518
0
  ctxt->value = NULL;
11519
0
    }
11520
#ifdef XPATH_STREAMING
11521
    if (ctxt->comp->stream) {
11522
  int res;
11523
11524
  if (toBool) {
11525
      /*
11526
      * Evaluation to boolean result.
11527
      */
11528
      res = xmlXPathRunStreamEval(ctxt, ctxt->comp->stream, NULL, 1);
11529
      if (res != -1)
11530
    return(res);
11531
  } else {
11532
      xmlXPathObjectPtr resObj = NULL;
11533
11534
      /*
11535
      * Evaluation to a sequence.
11536
      */
11537
      res = xmlXPathRunStreamEval(ctxt, ctxt->comp->stream, &resObj, 0);
11538
11539
      if ((res != -1) && (resObj != NULL)) {
11540
    xmlXPathValuePush(ctxt, resObj);
11541
    return(0);
11542
      }
11543
      if (resObj != NULL)
11544
    xmlXPathReleaseObject(ctxt->context, resObj);
11545
  }
11546
  /*
11547
  * QUESTION TODO: This falls back to normal XPath evaluation
11548
  * if res == -1. Is this intended?
11549
  */
11550
    }
11551
#endif
11552
0
    comp = ctxt->comp;
11553
0
    if (comp->last < 0) {
11554
0
        xmlXPathErr(ctxt, XPATH_STACK_ERROR);
11555
0
  return(-1);
11556
0
    }
11557
0
    oldDepth = ctxt->context->depth;
11558
0
    if (toBool)
11559
0
  return(xmlXPathCompOpEvalToBoolean(ctxt,
11560
0
      &comp->steps[comp->last], 0));
11561
0
    else
11562
0
  xmlXPathCompOpEval(ctxt, &comp->steps[comp->last]);
11563
0
    ctxt->context->depth = oldDepth;
11564
11565
0
    return(0);
11566
0
}
11567
11568
/************************************************************************
11569
 *                  *
11570
 *      Public interfaces       *
11571
 *                  *
11572
 ************************************************************************/
11573
11574
/**
11575
 * Evaluate a predicate result for the current node.
11576
 * A PredicateExpr is evaluated by evaluating the Expr and converting
11577
 * the result to a boolean. If the result is a number, the result will
11578
 * be converted to true if the number is equal to the position of the
11579
 * context node in the context node list (as returned by the position
11580
 * function) and will be converted to false otherwise; if the result
11581
 * is not a number, then the result will be converted as if by a call
11582
 * to the boolean function.
11583
 *
11584
 * @param ctxt  the XPath context
11585
 * @param res  the Predicate Expression evaluation result
11586
 * @returns 1 if predicate is true, 0 otherwise
11587
 */
11588
int
11589
0
xmlXPathEvalPredicate(xmlXPathContext *ctxt, xmlXPathObject *res) {
11590
0
    if ((ctxt == NULL) || (res == NULL)) return(0);
11591
0
    switch (res->type) {
11592
0
        case XPATH_BOOLEAN:
11593
0
      return(res->boolval);
11594
0
        case XPATH_NUMBER:
11595
0
      return(res->floatval == ctxt->proximityPosition);
11596
0
        case XPATH_NODESET:
11597
0
        case XPATH_XSLT_TREE:
11598
0
      if (res->nodesetval == NULL)
11599
0
    return(0);
11600
0
      return(res->nodesetval->nodeNr != 0);
11601
0
        case XPATH_STRING:
11602
0
      return((res->stringval != NULL) &&
11603
0
             (xmlStrlen(res->stringval) != 0));
11604
0
        default:
11605
0
      break;
11606
0
    }
11607
0
    return(0);
11608
0
}
11609
11610
/**
11611
 * Evaluate a predicate result for the current node.
11612
 * A PredicateExpr is evaluated by evaluating the Expr and converting
11613
 * the result to a boolean. If the result is a number, the result will
11614
 * be converted to true if the number is equal to the position of the
11615
 * context node in the context node list (as returned by the position
11616
 * function) and will be converted to false otherwise; if the result
11617
 * is not a number, then the result will be converted as if by a call
11618
 * to the boolean function.
11619
 *
11620
 * @param ctxt  the XPath Parser context
11621
 * @param res  the Predicate Expression evaluation result
11622
 * @returns 1 if predicate is true, 0 otherwise
11623
 */
11624
int
11625
xmlXPathEvaluatePredicateResult(xmlXPathParserContext *ctxt,
11626
0
                                xmlXPathObject *res) {
11627
0
    if ((ctxt == NULL) || (res == NULL)) return(0);
11628
0
    switch (res->type) {
11629
0
        case XPATH_BOOLEAN:
11630
0
      return(res->boolval);
11631
0
        case XPATH_NUMBER:
11632
#if defined(__BORLANDC__) || (defined(_MSC_VER) && (_MSC_VER == 1200))
11633
      return((res->floatval == ctxt->context->proximityPosition) &&
11634
             (!xmlXPathIsNaN(res->floatval))); /* MSC pbm Mark Vakoc !*/
11635
#else
11636
0
      return(res->floatval == ctxt->context->proximityPosition);
11637
0
#endif
11638
0
        case XPATH_NODESET:
11639
0
        case XPATH_XSLT_TREE:
11640
0
      if (res->nodesetval == NULL)
11641
0
    return(0);
11642
0
      return(res->nodesetval->nodeNr != 0);
11643
0
        case XPATH_STRING:
11644
0
      return((res->stringval != NULL) && (res->stringval[0] != 0));
11645
0
        default:
11646
0
      break;
11647
0
    }
11648
0
    return(0);
11649
0
}
11650
11651
#ifdef XPATH_STREAMING
11652
/**
11653
 * Try to compile the XPath expression as a streamable subset.
11654
 *
11655
 * @param ctxt  an XPath context
11656
 * @param str  the XPath expression
11657
 * @returns the compiled expression or NULL if failed to compile.
11658
 */
11659
static xmlXPathCompExprPtr
11660
xmlXPathTryStreamCompile(xmlXPathContextPtr ctxt, const xmlChar *str) {
11661
    /*
11662
     * Optimization: use streaming patterns when the XPath expression can
11663
     * be compiled to a stream lookup
11664
     */
11665
    xmlPatternPtr stream;
11666
    xmlXPathCompExprPtr comp;
11667
    xmlDictPtr dict = NULL;
11668
    const xmlChar **namespaces = NULL;
11669
    xmlNsPtr ns;
11670
    int i, j;
11671
11672
    if ((!xmlStrchr(str, '[')) && (!xmlStrchr(str, '(')) &&
11673
        (!xmlStrchr(str, '@'))) {
11674
  const xmlChar *tmp;
11675
        int res;
11676
11677
  /*
11678
   * We don't try to handle expressions using the verbose axis
11679
   * specifiers ("::"), just the simplified form at this point.
11680
   * Additionally, if there is no list of namespaces available and
11681
   *  there's a ":" in the expression, indicating a prefixed QName,
11682
   *  then we won't try to compile either. xmlPatterncompile() needs
11683
   *  to have a list of namespaces at compilation time in order to
11684
   *  compile prefixed name tests.
11685
   */
11686
  tmp = xmlStrchr(str, ':');
11687
  if ((tmp != NULL) &&
11688
      ((ctxt == NULL) || (ctxt->nsNr == 0) || (tmp[1] == ':')))
11689
      return(NULL);
11690
11691
  if (ctxt != NULL) {
11692
      dict = ctxt->dict;
11693
      if (ctxt->nsNr > 0) {
11694
    namespaces = xmlMalloc(2 * (ctxt->nsNr + 1) * sizeof(xmlChar*));
11695
    if (namespaces == NULL) {
11696
        xmlXPathErrMemory(ctxt);
11697
        return(NULL);
11698
    }
11699
    for (i = 0, j = 0; (j < ctxt->nsNr); j++) {
11700
        ns = ctxt->namespaces[j];
11701
        namespaces[i++] = ns->href;
11702
        namespaces[i++] = ns->prefix;
11703
    }
11704
    namespaces[i++] = NULL;
11705
    namespaces[i] = NULL;
11706
      }
11707
  }
11708
11709
  res = xmlPatternCompileSafe(str, dict, XML_PATTERN_XPATH, namespaces,
11710
                                    &stream);
11711
  if (namespaces != NULL) {
11712
      xmlFree((xmlChar **)namespaces);
11713
  }
11714
        if (res < 0) {
11715
            xmlXPathErrMemory(ctxt);
11716
            return(NULL);
11717
        }
11718
  if ((stream != NULL) && (xmlPatternStreamable(stream) == 1)) {
11719
      comp = xmlXPathNewCompExpr();
11720
      if (comp == NULL) {
11721
    xmlXPathErrMemory(ctxt);
11722
          xmlFreePattern(stream);
11723
    return(NULL);
11724
      }
11725
      comp->stream = stream;
11726
      comp->dict = dict;
11727
      if (comp->dict)
11728
    xmlDictReference(comp->dict);
11729
      return(comp);
11730
  }
11731
  xmlFreePattern(stream);
11732
    }
11733
    return(NULL);
11734
}
11735
#endif /* XPATH_STREAMING */
11736
11737
static void
11738
xmlXPathOptimizeExpression(xmlXPathParserContextPtr pctxt,
11739
                           xmlXPathStepOpPtr op)
11740
0
{
11741
0
    xmlXPathCompExprPtr comp = pctxt->comp;
11742
0
    xmlXPathContextPtr ctxt;
11743
11744
    /*
11745
    * Try to rewrite "descendant-or-self::node()/foo" to an optimized
11746
    * internal representation.
11747
    */
11748
11749
0
    if ((op->op == XPATH_OP_COLLECT /* 11 */) &&
11750
0
        (op->ch1 != -1) &&
11751
0
        (op->ch2 == -1 /* no predicate */))
11752
0
    {
11753
0
        xmlXPathStepOpPtr prevop = &comp->steps[op->ch1];
11754
11755
0
        if ((prevop->op == XPATH_OP_COLLECT /* 11 */) &&
11756
0
            ((xmlXPathAxisVal) prevop->value ==
11757
0
                AXIS_DESCENDANT_OR_SELF) &&
11758
0
            (prevop->ch2 == -1) &&
11759
0
            ((xmlXPathTestVal) prevop->value2 == NODE_TEST_TYPE) &&
11760
0
            ((xmlXPathTypeVal) prevop->value3 == NODE_TYPE_NODE))
11761
0
        {
11762
            /*
11763
            * This is a "descendant-or-self::node()" without predicates.
11764
            * Try to eliminate it.
11765
            */
11766
11767
0
            switch ((xmlXPathAxisVal) op->value) {
11768
0
                case AXIS_CHILD:
11769
0
                case AXIS_DESCENDANT:
11770
                    /*
11771
                    * Convert "descendant-or-self::node()/child::" or
11772
                    * "descendant-or-self::node()/descendant::" to
11773
                    * "descendant::"
11774
                    */
11775
0
                    op->ch1   = prevop->ch1;
11776
0
                    op->value = AXIS_DESCENDANT;
11777
0
                    break;
11778
0
                case AXIS_SELF:
11779
0
                case AXIS_DESCENDANT_OR_SELF:
11780
                    /*
11781
                    * Convert "descendant-or-self::node()/self::" or
11782
                    * "descendant-or-self::node()/descendant-or-self::" to
11783
                    * to "descendant-or-self::"
11784
                    */
11785
0
                    op->ch1   = prevop->ch1;
11786
0
                    op->value = AXIS_DESCENDANT_OR_SELF;
11787
0
                    break;
11788
0
                default:
11789
0
                    break;
11790
0
            }
11791
0
  }
11792
0
    }
11793
11794
    /* OP_VALUE has invalid ch1. */
11795
0
    if (op->op == XPATH_OP_VALUE)
11796
0
        return;
11797
11798
    /* Recurse */
11799
0
    ctxt = pctxt->context;
11800
0
    if (ctxt != NULL) {
11801
0
        if (ctxt->depth >= XPATH_MAX_RECURSION_DEPTH)
11802
0
            return;
11803
0
        ctxt->depth += 1;
11804
0
    }
11805
0
    if (op->ch1 != -1)
11806
0
        xmlXPathOptimizeExpression(pctxt, &comp->steps[op->ch1]);
11807
0
    if (op->ch2 != -1)
11808
0
  xmlXPathOptimizeExpression(pctxt, &comp->steps[op->ch2]);
11809
0
    if (ctxt != NULL)
11810
0
        ctxt->depth -= 1;
11811
0
}
11812
11813
/**
11814
 * Compile an XPath expression
11815
 *
11816
 * @param ctxt  an XPath context
11817
 * @param str  the XPath expression
11818
 * @returns the xmlXPathCompExpr resulting from the compilation or NULL.
11819
 *         the caller has to free the object.
11820
 */
11821
xmlXPathCompExpr *
11822
0
xmlXPathCtxtCompile(xmlXPathContext *ctxt, const xmlChar *str) {
11823
0
    xmlXPathParserContextPtr pctxt;
11824
0
    xmlXPathContextPtr tmpctxt = NULL;
11825
0
    xmlXPathCompExprPtr comp;
11826
0
    int oldDepth = 0;
11827
11828
0
    if (str == NULL)
11829
0
        return(NULL);
11830
11831
#ifdef XPATH_STREAMING
11832
    comp = xmlXPathTryStreamCompile(ctxt, str);
11833
    if (comp != NULL)
11834
        return(comp);
11835
#endif
11836
11837
0
    xmlInitParser();
11838
11839
    /*
11840
     * We need an xmlXPathContext for the depth check.
11841
     */
11842
0
    if (ctxt == NULL) {
11843
0
        tmpctxt = xmlXPathNewContext(NULL);
11844
0
        if (tmpctxt == NULL)
11845
0
            return(NULL);
11846
0
        ctxt = tmpctxt;
11847
0
    }
11848
11849
0
    pctxt = xmlXPathNewParserContext(str, ctxt);
11850
0
    if (pctxt == NULL) {
11851
0
        if (tmpctxt != NULL)
11852
0
            xmlXPathFreeContext(tmpctxt);
11853
0
        return NULL;
11854
0
    }
11855
11856
0
    oldDepth = ctxt->depth;
11857
0
    xmlXPathCompileExpr(pctxt, 1);
11858
0
    ctxt->depth = oldDepth;
11859
11860
0
    if( pctxt->error != XPATH_EXPRESSION_OK )
11861
0
    {
11862
0
        xmlXPathFreeParserContext(pctxt);
11863
0
        if (tmpctxt != NULL)
11864
0
            xmlXPathFreeContext(tmpctxt);
11865
0
        return(NULL);
11866
0
    }
11867
11868
0
    if (*pctxt->cur != 0) {
11869
  /*
11870
   * aleksey: in some cases this line prints *second* error message
11871
   * (see bug #78858) and probably this should be fixed.
11872
   * However, we are not sure that all error messages are printed
11873
   * out in other places. It's not critical so we leave it as-is for now
11874
   */
11875
0
  xmlXPatherror(pctxt, __FILE__, __LINE__, XPATH_EXPR_ERROR);
11876
0
  comp = NULL;
11877
0
    } else {
11878
0
  comp = pctxt->comp;
11879
0
  if ((comp->nbStep > 1) && (comp->last >= 0)) {
11880
0
            if (ctxt != NULL)
11881
0
                oldDepth = ctxt->depth;
11882
0
      xmlXPathOptimizeExpression(pctxt, &comp->steps[comp->last]);
11883
0
            if (ctxt != NULL)
11884
0
                ctxt->depth = oldDepth;
11885
0
  }
11886
0
  pctxt->comp = NULL;
11887
0
    }
11888
0
    xmlXPathFreeParserContext(pctxt);
11889
0
    if (tmpctxt != NULL)
11890
0
        xmlXPathFreeContext(tmpctxt);
11891
11892
0
    if (comp != NULL) {
11893
0
  comp->expr = xmlStrdup(str);
11894
0
    }
11895
0
    return(comp);
11896
0
}
11897
11898
/**
11899
 * Compile an XPath expression
11900
 *
11901
 * @param str  the XPath expression
11902
 * @returns the xmlXPathCompExpr resulting from the compilation or NULL.
11903
 *         the caller has to free the object.
11904
 */
11905
xmlXPathCompExpr *
11906
0
xmlXPathCompile(const xmlChar *str) {
11907
0
    return(xmlXPathCtxtCompile(NULL, str));
11908
0
}
11909
11910
/**
11911
 * Evaluate the Precompiled XPath expression in the given context.
11912
 * The caller has to free `resObj`.
11913
 *
11914
 * @param comp  the compiled XPath expression
11915
 * @param ctxt  the XPath context
11916
 * @param resObjPtr  the resulting XPath object or NULL
11917
 * @param toBool  1 if only a boolean result is requested
11918
 * @returns the xmlXPathObject resulting from the evaluation or NULL.
11919
 *         the caller has to free the object.
11920
 */
11921
static int
11922
xmlXPathCompiledEvalInternal(xmlXPathCompExprPtr comp,
11923
           xmlXPathContextPtr ctxt,
11924
           xmlXPathObjectPtr *resObjPtr,
11925
           int toBool)
11926
0
{
11927
0
    xmlXPathParserContextPtr pctxt;
11928
0
    xmlXPathObjectPtr resObj = NULL;
11929
0
    int res;
11930
11931
0
    if (comp == NULL)
11932
0
  return(-1);
11933
0
    xmlInitParser();
11934
11935
0
    xmlResetError(&ctxt->lastError);
11936
11937
0
    pctxt = xmlXPathCompParserContext(comp, ctxt);
11938
0
    if (pctxt == NULL)
11939
0
        return(-1);
11940
0
    res = xmlXPathRunEval(pctxt, toBool);
11941
11942
0
    if (pctxt->error == XPATH_EXPRESSION_OK) {
11943
0
        if (pctxt->valueNr != ((toBool) ? 0 : 1))
11944
0
            xmlXPathErr(pctxt, XPATH_STACK_ERROR);
11945
0
        else if (!toBool)
11946
0
            resObj = xmlXPathValuePop(pctxt);
11947
0
    }
11948
11949
0
    if (resObjPtr)
11950
0
        *resObjPtr = resObj;
11951
0
    else
11952
0
        xmlXPathReleaseObject(ctxt, resObj);
11953
11954
0
    pctxt->comp = NULL;
11955
0
    xmlXPathFreeParserContext(pctxt);
11956
11957
0
    return(res);
11958
0
}
11959
11960
/**
11961
 * Evaluate the Precompiled XPath expression in the given context.
11962
 *
11963
 * @param comp  the compiled XPath expression
11964
 * @param ctx  the XPath context
11965
 * @returns the xmlXPathObject resulting from the evaluation or NULL.
11966
 *         the caller has to free the object.
11967
 */
11968
xmlXPathObject *
11969
xmlXPathCompiledEval(xmlXPathCompExpr *comp, xmlXPathContext *ctx)
11970
0
{
11971
0
    xmlXPathObjectPtr res = NULL;
11972
11973
0
    xmlXPathCompiledEvalInternal(comp, ctx, &res, 0);
11974
0
    return(res);
11975
0
}
11976
11977
/**
11978
 * Applies the XPath boolean() function on the result of the given
11979
 * compiled expression.
11980
 *
11981
 * @param comp  the compiled XPath expression
11982
 * @param ctxt  the XPath context
11983
 * @returns 1 if the expression evaluated to true, 0 if to false and
11984
 *         -1 in API and internal errors.
11985
 */
11986
int
11987
xmlXPathCompiledEvalToBoolean(xmlXPathCompExpr *comp,
11988
            xmlXPathContext *ctxt)
11989
0
{
11990
0
    return(xmlXPathCompiledEvalInternal(comp, ctxt, NULL, 1));
11991
0
}
11992
11993
/**
11994
 * Parse and evaluate an XPath expression in the given context,
11995
 * then push the result on the context stack
11996
 *
11997
 * @deprecated Internal function, don't use.
11998
 *
11999
 * @param ctxt  the XPath Parser context
12000
 */
12001
void
12002
0
xmlXPathEvalExpr(xmlXPathParserContext *ctxt) {
12003
#ifdef XPATH_STREAMING
12004
    xmlXPathCompExprPtr comp;
12005
#endif
12006
0
    int oldDepth = 0;
12007
12008
0
    if ((ctxt == NULL) || (ctxt->context == NULL))
12009
0
        return;
12010
0
    if (ctxt->context->lastError.code != 0)
12011
0
        return;
12012
12013
#ifdef XPATH_STREAMING
12014
    comp = xmlXPathTryStreamCompile(ctxt->context, ctxt->base);
12015
    if ((comp == NULL) &&
12016
        (ctxt->context->lastError.code == XML_ERR_NO_MEMORY)) {
12017
        xmlXPathPErrMemory(ctxt);
12018
        return;
12019
    }
12020
    if (comp != NULL) {
12021
        if (ctxt->comp != NULL)
12022
      xmlXPathFreeCompExpr(ctxt->comp);
12023
        ctxt->comp = comp;
12024
    } else
12025
#endif
12026
0
    {
12027
0
        if (ctxt->context != NULL)
12028
0
            oldDepth = ctxt->context->depth;
12029
0
  xmlXPathCompileExpr(ctxt, 1);
12030
0
        if (ctxt->context != NULL)
12031
0
            ctxt->context->depth = oldDepth;
12032
0
        CHECK_ERROR;
12033
12034
        /* Check for trailing characters. */
12035
0
        if (*ctxt->cur != 0)
12036
0
            XP_ERROR(XPATH_EXPR_ERROR);
12037
12038
0
  if ((ctxt->comp->nbStep > 1) && (ctxt->comp->last >= 0)) {
12039
0
            if (ctxt->context != NULL)
12040
0
                oldDepth = ctxt->context->depth;
12041
0
      xmlXPathOptimizeExpression(ctxt,
12042
0
    &ctxt->comp->steps[ctxt->comp->last]);
12043
0
            if (ctxt->context != NULL)
12044
0
                ctxt->context->depth = oldDepth;
12045
0
        }
12046
0
    }
12047
12048
0
    xmlXPathRunEval(ctxt, 0);
12049
0
}
12050
12051
/**
12052
 * Evaluate the XPath Location Path in the given context.
12053
 *
12054
 * @param str  the XPath expression
12055
 * @param ctx  the XPath context
12056
 * @returns the xmlXPathObject resulting from the evaluation or NULL.
12057
 *         the caller has to free the object.
12058
 */
12059
xmlXPathObject *
12060
0
xmlXPathEval(const xmlChar *str, xmlXPathContext *ctx) {
12061
0
    xmlXPathParserContextPtr ctxt;
12062
0
    xmlXPathObjectPtr res;
12063
12064
0
    if (ctx == NULL)
12065
0
        return(NULL);
12066
12067
0
    xmlInitParser();
12068
12069
0
    xmlResetError(&ctx->lastError);
12070
12071
0
    ctxt = xmlXPathNewParserContext(str, ctx);
12072
0
    if (ctxt == NULL)
12073
0
        return NULL;
12074
0
    xmlXPathEvalExpr(ctxt);
12075
12076
0
    if (ctxt->error != XPATH_EXPRESSION_OK) {
12077
0
  res = NULL;
12078
0
    } else if (ctxt->valueNr != 1) {
12079
0
        xmlXPathErr(ctxt, XPATH_STACK_ERROR);
12080
0
  res = NULL;
12081
0
    } else {
12082
0
  res = xmlXPathValuePop(ctxt);
12083
0
    }
12084
12085
0
    xmlXPathFreeParserContext(ctxt);
12086
0
    return(res);
12087
0
}
12088
12089
/**
12090
 * Sets 'node' as the context node. The node must be in the same
12091
 * document as that associated with the context.
12092
 *
12093
 * @param node  the node to to use as the context node
12094
 * @param ctx  the XPath context
12095
 * @returns -1 in case of error or 0 if successful
12096
 */
12097
int
12098
0
xmlXPathSetContextNode(xmlNode *node, xmlXPathContext *ctx) {
12099
0
    if ((node == NULL) || (ctx == NULL))
12100
0
        return(-1);
12101
12102
0
    if (node->doc == ctx->doc) {
12103
0
        ctx->node = node;
12104
0
  return(0);
12105
0
    }
12106
0
    return(-1);
12107
0
}
12108
12109
/**
12110
 * Evaluate the XPath Location Path in the given context. The node 'node'
12111
 * is set as the context node. The context node is not restored.
12112
 *
12113
 * @param node  the node to to use as the context node
12114
 * @param str  the XPath expression
12115
 * @param ctx  the XPath context
12116
 * @returns the xmlXPathObject resulting from the evaluation or NULL.
12117
 *         the caller has to free the object.
12118
 */
12119
xmlXPathObject *
12120
0
xmlXPathNodeEval(xmlNode *node, const xmlChar *str, xmlXPathContext *ctx) {
12121
0
    if (str == NULL)
12122
0
        return(NULL);
12123
0
    if (xmlXPathSetContextNode(node, ctx) < 0)
12124
0
        return(NULL);
12125
0
    return(xmlXPathEval(str, ctx));
12126
0
}
12127
12128
/**
12129
 * Alias for #xmlXPathEval.
12130
 *
12131
 * @param str  the XPath expression
12132
 * @param ctxt  the XPath context
12133
 * @returns the xmlXPathObject resulting from the evaluation or NULL.
12134
 *         the caller has to free the object.
12135
 */
12136
xmlXPathObject *
12137
0
xmlXPathEvalExpression(const xmlChar *str, xmlXPathContext *ctxt) {
12138
0
    return(xmlXPathEval(str, ctxt));
12139
0
}
12140
12141
/**
12142
 * Registers all default XPath functions in this context
12143
 *
12144
 * @deprecated No-op since 2.14.0.
12145
 *
12146
 * @param ctxt  the XPath context
12147
 */
12148
void
12149
xmlXPathRegisterAllFunctions(xmlXPathContext *ctxt ATTRIBUTE_UNUSED)
12150
0
{
12151
0
}
12152
12153
#endif /* LIBXML_XPATH_ENABLED */