Coverage Report

Created: 2026-08-22 06:39

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/xpdf-4.06/xpdf/XRef.cc
Line
Count
Source
1
//========================================================================
2
//
3
// XRef.cc
4
//
5
// Copyright 1996-2003 Glyph & Cog, LLC
6
//
7
//========================================================================
8
9
#include <aconf.h>
10
11
#include <stdlib.h>
12
#include <stddef.h>
13
#include <string.h>
14
#include <ctype.h>
15
#include <limits.h>
16
#include "gmem.h"
17
#include "gmempp.h"
18
#include "gfile.h"
19
#include "Object.h"
20
#include "Stream.h"
21
#include "Lexer.h"
22
#include "Parser.h"
23
#include "Dict.h"
24
#include "Error.h"
25
#include "ErrorCodes.h"
26
#include "XRef.h"
27
28
//------------------------------------------------------------------------
29
30
24.6k
#define xrefSearchSize 1024  // read this many bytes at end of file
31
        //   to look for 'startxref'
32
33
//------------------------------------------------------------------------
34
// Permission bits
35
//------------------------------------------------------------------------
36
37
0
#define permPrint    (1<<2)
38
0
#define permChange   (1<<3)
39
0
#define permCopy     (1<<4)
40
0
#define permNotes    (1<<5)
41
24.6k
#define defPermFlags 0xfffc
42
43
//------------------------------------------------------------------------
44
// XRefPosSet
45
//------------------------------------------------------------------------
46
47
class XRefPosSet {
48
public:
49
50
  XRefPosSet();
51
  ~XRefPosSet();
52
  void add(GFileOffset pos);
53
  GBool check(GFileOffset pos);
54
578
  int getLength() { return len; }
55
659
  GFileOffset get(int idx) { return tab[idx]; }
56
57
private:
58
59
  int find(GFileOffset pos);
60
61
  GFileOffset *tab;
62
  int size;
63
  int len;
64
};
65
66
578
XRefPosSet::XRefPosSet() {
67
578
  size = 16;
68
578
  len = 0;
69
578
  tab = (GFileOffset *)gmallocn(size, sizeof(GFileOffset));
70
578
}
71
72
578
XRefPosSet::~XRefPosSet() {
73
578
  gfree(tab);
74
578
}
75
76
659
void XRefPosSet::add(GFileOffset pos) {
77
659
  int i;
78
79
659
  i = find(pos);
80
659
  if (i < len && tab[i] == pos) {
81
0
    return;
82
0
  }
83
659
  if (len == size) {
84
0
    if (size > INT_MAX / 2) {
85
0
      gMemError("Integer overflow in XRefPosSet::add()");
86
0
    }
87
0
    size *= 2;
88
0
    tab = (GFileOffset *)greallocn(tab, size, sizeof(GFileOffset));
89
0
  }
90
659
  if (i < len) {
91
23
    memmove(&tab[i + 1], &tab[i], (len - i) * sizeof(GFileOffset));
92
23
  }
93
659
  tab[i] = pos;
94
659
  ++len;
95
659
}
96
97
673
GBool XRefPosSet::check(GFileOffset pos) {
98
673
  int i;
99
100
673
  i = find(pos);
101
673
  return i < len && tab[i] == pos;
102
673
}
103
104
1.33k
int XRefPosSet::find(GFileOffset pos) {
105
1.33k
  int a, b, m;
106
107
1.33k
  a = - 1;
108
1.33k
  b = len;
109
  // invariant: tab[a] < pos < tab[b]
110
1.50k
  while (b - a > 1) {
111
184
    m = (a + b) / 2;
112
184
    if (tab[m] < pos) {
113
120
      a = m;
114
120
    } else if (tab[m] > pos) {
115
50
      b = m;
116
50
    } else {
117
14
      return m;
118
14
    }
119
184
  }
120
1.31k
  return b;
121
1.33k
}
122
123
//------------------------------------------------------------------------
124
// ObjectStream
125
//------------------------------------------------------------------------
126
127
class ObjectStream {
128
public:
129
130
  // Create an object stream, using object number <objStrNum>,
131
  // generation 0.
132
  ObjectStream(XRef *xref, int objStrNumA, int recursion);
133
134
113k
  GBool isOk() { return ok; }
135
136
  ~ObjectStream();
137
138
  // Return the object number of this object stream.
139
44.5k
  int getObjStrNum() { return objStrNum; }
140
141
  // Get the <objIdx>th object from this stream, which should be
142
  // object number <objNum>, generation 0.
143
  Object *getObject(int objIdx, int objNum, Object *obj);
144
145
private:
146
147
  int objStrNum;    // object number of the object stream
148
  int nObjects;     // number of objects in the stream
149
  Object *objs;     // the objects (length = nObjects)
150
  int *objNums;     // the object numbers (length = nObjects)
151
  GBool ok;
152
};
153
154
113k
ObjectStream::ObjectStream(XRef *xref, int objStrNumA, int recursion) {
155
113k
  Stream *str;
156
113k
  Lexer *lexer;
157
113k
  Parser *parser;
158
113k
  int *offsets;
159
113k
  Object objStr, obj1, obj2;
160
113k
  int first, i;
161
162
113k
  objStrNum = objStrNumA;
163
113k
  nObjects = 0;
164
113k
  objs = NULL;
165
113k
  objNums = NULL;
166
113k
  ok = gFalse;
167
168
113k
  if (!xref->fetch(objStrNum, 0, &objStr, recursion)->isStream()) {
169
676
    goto err1;
170
676
  }
171
172
113k
  if (!objStr.streamGetDict()->lookup("N", &obj1, recursion)->isInt()) {
173
258
    obj1.free();
174
258
    goto err1;
175
258
  }
176
113k
  nObjects = obj1.getInt();
177
113k
  obj1.free();
178
113k
  if (nObjects <= 0) {
179
91
    goto err1;
180
91
  }
181
182
112k
  if (!objStr.streamGetDict()->lookup("First", &obj1, recursion)->isInt()) {
183
102k
    obj1.free();
184
102k
    goto err1;
185
102k
  }
186
10.4k
  first = obj1.getInt();
187
10.4k
  obj1.free();
188
10.4k
  if (first < 0) {
189
227
    goto err1;
190
227
  }
191
192
  // this is an arbitrary limit to avoid integer overflow problems
193
  // in the 'new Object[nObjects]' call (Acrobat apparently limits
194
  // object streams to 100-200 objects)
195
10.2k
  if (nObjects > 1000000) {
196
78
    error(errSyntaxError, -1, "Too many objects in an object stream");
197
78
    goto err1;
198
78
  }
199
10.1k
  objs = new Object[nObjects];
200
10.1k
  objNums = (int *)gmallocn(nObjects, sizeof(int));
201
10.1k
  offsets = (int *)gmallocn(nObjects, sizeof(int));
202
203
  // parse the header: object numbers and offsets
204
10.1k
  objStr.streamReset();
205
10.1k
  obj1.initNull();
206
10.1k
  str = new EmbedStream(objStr.getStream(), &obj1, gTrue, first);
207
10.1k
  lexer = new Lexer(xref, str);
208
10.1k
  parser = new Parser(xref, lexer, gFalse);
209
188k
  for (i = 0; i < nObjects; ++i) {
210
183k
    parser->getObj(&obj1, gTrue);
211
183k
    parser->getObj(&obj2, gTrue);
212
183k
    if (!obj1.isInt() || !obj2.isInt()) {
213
2.16k
      obj1.free();
214
2.16k
      obj2.free();
215
2.16k
      delete parser;
216
2.16k
      gfree(offsets);
217
2.16k
      goto err2;
218
2.16k
    }
219
181k
    objNums[i] = obj1.getInt();
220
181k
    offsets[i] = obj2.getInt();
221
181k
    obj1.free();
222
181k
    obj2.free();
223
181k
    if (objNums[i] < 0 || offsets[i] < 0 ||
224
180k
  (i > 0 && offsets[i] < offsets[i-1])) {
225
3.49k
      delete parser;
226
3.49k
      gfree(offsets);
227
3.49k
      goto err2;
228
3.49k
    }
229
181k
  }
230
4.49k
  lexer->skipToEOF();
231
4.49k
  delete parser;
232
233
  // skip to the first object - this generally shouldn't be needed,
234
  // because offsets[0] is normally 0, but just in case...
235
4.49k
  if (offsets[0] > 0) {
236
261
    objStr.getStream()->discardChars(offsets[0]);
237
261
  }
238
239
  // parse the objects
240
42.1k
  for (i = 0; i < nObjects; ++i) {
241
37.6k
    obj1.initNull();
242
37.6k
    if (i == nObjects - 1) {
243
4.49k
      str = new EmbedStream(objStr.getStream(), &obj1, gFalse, 0);
244
33.1k
    } else {
245
33.1k
      str = new EmbedStream(objStr.getStream(), &obj1, gTrue,
246
33.1k
          offsets[i+1] - offsets[i]);
247
33.1k
    }
248
37.6k
    lexer = new Lexer(xref, str);
249
37.6k
    parser = new Parser(xref, lexer, gFalse);
250
37.6k
    parser->getObj(&objs[i]);
251
37.6k
    lexer->skipToEOF();
252
37.6k
    delete parser;
253
37.6k
  }
254
255
4.49k
  gfree(offsets);
256
4.49k
  ok = gTrue;
257
258
10.1k
 err2:
259
10.1k
  objStr.streamClose();
260
113k
 err1:
261
113k
  objStr.free();
262
113k
}
263
264
113k
ObjectStream::~ObjectStream() {
265
113k
  int i;
266
267
113k
  if (objs) {
268
390k
    for (i = 0; i < nObjects; ++i) {
269
380k
      objs[i].free();
270
380k
    }
271
10.1k
    delete[] objs;
272
10.1k
  }
273
113k
  gfree(objNums);
274
113k
}
275
276
32.4k
Object *ObjectStream::getObject(int objIdx, int objNum, Object *obj) {
277
32.4k
  if (objIdx < 0 || objIdx >= nObjects || objNum != objNums[objIdx]) {
278
381
    obj->initNull();
279
32.0k
  } else {
280
32.0k
    objs[objIdx].copy(obj);
281
32.0k
  }
282
32.4k
  return obj;
283
32.4k
}
284
285
//------------------------------------------------------------------------
286
// XRef
287
//------------------------------------------------------------------------
288
289
24.6k
XRef::XRef(BaseStream *strA, GBool repair) {
290
24.6k
  GFileOffset pos;
291
24.6k
  Object obj;
292
24.6k
  XRefPosSet *posSet;
293
24.6k
  int i;
294
295
24.6k
  ok = gTrue;
296
24.6k
  errCode = errNone;
297
24.6k
  repaired = gFalse;
298
24.6k
  size = 0;
299
24.6k
  last = -1;
300
24.6k
  entries = NULL;
301
24.6k
  lastStartxrefPos = 0;
302
24.6k
  xrefTablePos = NULL;
303
24.6k
  xrefTablePosLen = 0;
304
24.6k
  streamEnds = NULL;
305
24.6k
  streamEndsLen = 0;
306
3.17M
  for (i = 0; i < objStrCacheSize; ++i) {
307
3.15M
    objStrs[i] = NULL;
308
3.15M
    objStrLastUse[i] = 0;
309
3.15M
  }
310
24.6k
  objStrCacheLength = 0;
311
24.6k
  objStrTime = 0;
312
313
24.6k
  encrypted = gFalse;
314
24.6k
  permFlags = defPermFlags;
315
24.6k
  ownerPasswordOk = gFalse;
316
317
418k
  for (i = 0; i < xrefCacheSize; ++i) {
318
394k
    cache[i].num = -1;
319
394k
  }
320
321
24.6k
#if MULTITHREADED
322
24.6k
  gInitMutex(&objStrsMutex);
323
24.6k
  gInitMutex(&cacheMutex);
324
24.6k
#endif
325
326
24.6k
  str = strA;
327
24.6k
  start = str->getStart();
328
329
  // if the 'repair' flag is set, try to reconstruct the xref table
330
24.6k
  if (repair) {
331
12.2k
    if (!(ok = constructXRef())) {
332
8.73k
      errCode = errDamaged;
333
8.73k
      return;
334
8.73k
    }
335
3.55k
    repaired = gTrue;
336
337
  // if the 'repair' flag is not set, read the xref table
338
12.3k
  } else {
339
340
    // read the trailer
341
12.3k
    pos = getStartXref();
342
12.3k
    if (pos == 0) {
343
11.7k
      errCode = errDamaged;
344
11.7k
      ok = gFalse;
345
11.7k
      return;
346
11.7k
    }
347
348
    // read the xref table
349
578
    posSet = new XRefPosSet();
350
672
    while (readXRef(&pos, posSet, gFalse)) ;
351
578
    xrefTablePosLen = posSet->getLength();
352
578
    xrefTablePos = (GFileOffset *)gmallocn(xrefTablePosLen,
353
578
             sizeof(GFileOffset));
354
1.23k
    for (i = 0; i < xrefTablePosLen; ++i)  {
355
659
      xrefTablePos[i] = posSet->get(i);
356
659
    }
357
578
    delete posSet;
358
578
    if (!ok) {
359
435
      errCode = errDamaged;
360
435
      return;
361
435
    }
362
578
  }
363
364
  // get the root dictionary (catalog) object
365
3.69k
  trailerDict.dictLookupNF("Root", &obj);
366
3.69k
  if (obj.isRef()) {
367
3.45k
    rootNum = obj.getRefNum();
368
3.45k
    rootGen = obj.getRefGen();
369
3.45k
    obj.free();
370
3.45k
  } else {
371
236
    obj.free();
372
236
    if (!(ok = constructXRef())) {
373
42
      errCode = errDamaged;
374
42
      return;
375
42
    }
376
236
  }
377
378
  // now set the trailer dictionary's xref pointer so we can fetch
379
  // indirect objects from it
380
3.65k
  trailerDict.getDict()->setXRef(this);
381
3.65k
}
382
383
24.5k
XRef::~XRef() {
384
24.5k
  int i;
385
386
416k
  for (i = 0; i < xrefCacheSize; ++i) {
387
392k
    if (cache[i].num >= 0) {
388
33.8k
      cache[i].obj.free();
389
33.8k
    }
390
392k
  }
391
24.5k
  gfree(entries);
392
24.5k
  trailerDict.free();
393
24.5k
  if (xrefTablePos) {
394
578
    gfree(xrefTablePos);
395
578
  }
396
24.5k
  if (streamEnds) {
397
2.43k
    gfree(streamEnds);
398
2.43k
  }
399
3.16M
  for (i = 0; i < objStrCacheSize; ++i) {
400
3.13M
    if (objStrs[i]) {
401
3.76k
      delete objStrs[i];
402
3.76k
    }
403
3.13M
  }
404
24.5k
#if MULTITHREADED
405
24.5k
  gDestroyMutex(&objStrsMutex);
406
24.5k
  gDestroyMutex(&cacheMutex);
407
24.5k
#endif
408
24.5k
}
409
410
// Read the 'startxref' position.
411
12.3k
GFileOffset XRef::getStartXref() {
412
12.3k
  char buf[xrefSearchSize+1];
413
12.3k
  char *p;
414
12.3k
  int n, i;
415
416
  // read last xrefSearchSize bytes
417
12.3k
  str->setPos(xrefSearchSize, -1);
418
12.3k
  n = str->getBlock(buf, xrefSearchSize);
419
12.3k
  buf[n] = '\0';
420
421
  // find startxref
422
9.07M
  for (i = n - 9; i >= 0; --i) {
423
9.06M
    if (!strncmp(&buf[i], "startxref", 9)) {
424
880
      break;
425
880
    }
426
9.06M
  }
427
12.3k
  if (i < 0) {
428
11.4k
    return 0;
429
11.4k
  }
430
1.94k
  for (p = &buf[i+9]; isspace(*p & 0xff); ++p) ;
431
880
  lastXRefPos = strToFileOffset(p);
432
880
  lastStartxrefPos = str->getPos() - n + i;
433
434
880
  return lastXRefPos;
435
12.3k
}
436
437
// Read one xref table section.  Also reads the associated trailer
438
// dictionary, and returns the prev pointer (if any).  The [hybrid]
439
// flag is true when following the XRefStm link in a hybrid-reference
440
// file.
441
673
GBool XRef::readXRef(GFileOffset *pos, XRefPosSet *posSet, GBool hybrid) {
442
673
  Parser *parser;
443
673
  Object obj;
444
673
  GBool more;
445
673
  char buf[100];
446
673
  int n, i;
447
448
  // check for a loop in the xref tables
449
673
  if (posSet->check(*pos)) {
450
14
    error(errSyntaxWarning, -1, "Infinite loop in xref table");
451
14
    return gFalse;
452
14
  }
453
659
  posSet->add(*pos);
454
455
  // the xref data should either be "xref ..." (for an xref table) or
456
  // "nn gg obj << ... >> stream ..." (for an xref stream); possibly
457
  // preceded by whitespace
458
659
  str->setPos(start + *pos);
459
659
  n = str->getBlock(buf, 100);
460
1.95k
  for (i = 0; i < n && Lexer::isSpace(buf[i]); ++i) ;
461
462
  // parse an old-style xref table
463
659
  if (!hybrid &&
464
658
      i + 4 < n &&
465
610
      buf[i] == 'x' && buf[i+1] == 'r' && buf[i+2] == 'e' && buf[i+3] == 'f' &&
466
122
      Lexer::isSpace(buf[i+4])) {
467
122
    more = readXRefTable(pos, i + 5, posSet);
468
469
  // parse an xref stream
470
537
  } else {
471
537
    obj.initNull();
472
537
    parser = new Parser(NULL,
473
537
         new Lexer(NULL,
474
537
     str->makeSubStream(start + *pos, gFalse, 0, &obj)),
475
537
         gTrue);
476
537
    if (!parser->getObj(&obj, gTrue)->isInt()) {
477
180
      goto err;
478
180
    }
479
357
    obj.free();
480
357
    if (!parser->getObj(&obj, gTrue)->isInt()) {
481
21
      goto err;
482
21
    }
483
336
    obj.free();
484
336
    if (!parser->getObj(&obj, gTrue)->isCmd("obj")) {
485
33
      goto err;
486
33
    }
487
303
    obj.free();
488
303
    if (!parser->getObj(&obj)->isStream()) {
489
29
      goto err;
490
29
    }
491
274
    more = readXRefStream(obj.getStream(), pos);
492
274
    obj.free();
493
274
    delete parser;
494
274
  }
495
496
396
  return more;
497
498
263
 err:
499
263
  obj.free();
500
263
  delete parser;
501
263
  if (hybrid) {
502
0
    error(errSyntaxError, -1, "Invalid XRefStm link in trailer");
503
263
  } else {
504
263
    ok = gFalse;
505
263
  }
506
263
  return gFalse;
507
659
}
508
509
122
GBool XRef::readXRefTable(GFileOffset *pos, int offset, XRefPosSet *posSet) {
510
122
  XRefEntry entry;
511
122
  Parser *parser;
512
122
  Object obj, obj2;
513
122
  char buf[6];
514
122
  GFileOffset off, pos2;
515
122
  GBool more;
516
122
  int first, n, digit, newSize, gen, i, c;
517
518
122
  str->setPos(start + *pos + offset);
519
520
321
  while (1) {
521
472
    do {
522
472
      c = str->getChar();
523
472
    } while (Lexer::isSpace(c));
524
321
    if (c == 't') {
525
56
      if (str->getBlock(buf, 6) != 6 || memcmp(buf, "railer", 6)) {
526
2
  goto err1;
527
2
      }
528
54
      break;
529
56
    }
530
265
    if (c < '0' || c > '9') {
531
5
      goto err1;
532
5
    }
533
260
    first = 0;
534
1.02k
    do {
535
1.02k
      digit = c - '0';
536
1.02k
      if (first > (INT_MAX - digit) / 10) {
537
0
  goto err1;
538
0
      }
539
1.02k
      first = (first * 10) + digit;
540
1.02k
      c = str->getChar();
541
1.02k
    } while (c >= '0' && c <= '9');
542
260
    if (!Lexer::isSpace(c)) {
543
6
      goto err1;
544
6
    }
545
458
    do {
546
458
      c = str->getChar();
547
458
    } while (Lexer::isSpace(c));
548
254
    n = 0;
549
328
    do {
550
328
      digit = c - '0';
551
328
      if (n > (INT_MAX - digit) / 10) {
552
0
  goto err1;
553
0
      }
554
328
      n = (n * 10) + digit;
555
328
      c = str->getChar();
556
328
    } while (c >= '0' && c <= '9');
557
254
    if (!Lexer::isSpace(c)) {
558
26
      goto err1;
559
26
    }
560
228
    if (first > INT_MAX - n) {
561
0
      goto err1;
562
0
    }
563
228
    if (first + n > size) {
564
109
      newSize = size ? size : 512;
565
109
      do {
566
109
  if (newSize > INT_MAX / 2) {
567
0
    goto err1;
568
0
  }
569
109
  newSize <<= 1;
570
109
      } while (first + n > newSize);
571
109
      entries = (XRefEntry *)greallocn(entries, newSize, sizeof(XRefEntry));
572
111k
      for (i = size; i < newSize; ++i) {
573
111k
  entries[i].offset = (GFileOffset)-1;
574
111k
  entries[i].type = xrefEntryFree;
575
111k
      }
576
109
      size = newSize;
577
109
    }
578
453
    for (i = first; i < first + n; ++i) {
579
569
      do {
580
569
  c = str->getChar();
581
569
      } while (Lexer::isSpace(c));
582
254
      off = 0;
583
791
      do {
584
791
  off = (off * 10) + (c - '0');
585
791
  c = str->getChar();
586
791
      } while (c >= '0' && c <= '9');
587
254
      if (!Lexer::isSpace(c)) {
588
8
  goto err1;
589
8
      }
590
246
      entry.offset = off;
591
337
      do {
592
337
  c = str->getChar();
593
337
      } while (Lexer::isSpace(c));
594
246
      gen = 0;
595
981
      do {
596
981
  gen = (gen * 10) + (c - '0');
597
981
  c = str->getChar();
598
981
      } while (c >= '0' && c <= '9');
599
246
      if (!Lexer::isSpace(c)) {
600
15
  goto err1;
601
15
      }
602
231
      entry.gen = gen;
603
401
      do {
604
401
  c = str->getChar();
605
401
      } while (Lexer::isSpace(c));
606
231
      if (c == 'n') {
607
103
  entry.type = xrefEntryUncompressed;
608
128
      } else if (c == 'f') {
609
123
  entry.type = xrefEntryFree;
610
123
      } else {
611
5
  goto err1;
612
5
      }
613
226
      c = str->getChar();
614
226
      if (!Lexer::isSpace(c)) {
615
1
  goto err1;
616
1
      }
617
225
      if (entries[i].offset == (GFileOffset)-1) {
618
126
  entries[i] = entry;
619
  // PDF files of patents from the IBM Intellectual Property
620
  // Network have a bug: the xref table claims to start at 1
621
  // instead of 0.
622
126
  if (i == 1 && first == 1 &&
623
8
      entries[1].offset == 0 && entries[1].gen == 65535 &&
624
2
      entries[1].type == xrefEntryFree) {
625
1
    i = first = 0;
626
1
    entries[0] = entries[1];
627
1
    entries[1].offset = (GFileOffset)-1;
628
1
  }
629
126
  if (i > last) {
630
125
    last = i;
631
125
  }
632
126
      }
633
225
    }
634
228
  }
635
636
  // read the trailer dictionary
637
54
  obj.initNull();
638
54
  parser = new Parser(NULL,
639
54
       new Lexer(NULL,
640
54
         str->makeSubStream(str->getPos(), gFalse, 0, &obj)),
641
54
       gTrue);
642
54
  parser->getObj(&obj);
643
54
  delete parser;
644
54
  if (!obj.isDict()) {
645
3
    obj.free();
646
3
    goto err1;
647
3
  }
648
649
  // get the 'Prev' pointer
650
  //~ this can be a 64-bit int (?)
651
51
  obj.getDict()->lookupNF("Prev", &obj2);
652
51
  if (obj2.isInt()) {
653
1
    *pos = (GFileOffset)(Guint)obj2.getInt();
654
1
    more = gTrue;
655
50
  } else if (obj2.isRef()) {
656
    // certain buggy PDF generators generate "/Prev NNN 0 R" instead
657
    // of "/Prev NNN"
658
1
    *pos = (GFileOffset)(Guint)obj2.getRefNum();
659
1
    more = gTrue;
660
49
  } else {
661
49
    more = gFalse;
662
49
  }
663
51
  obj2.free();
664
665
  // save the first trailer dictionary
666
51
  if (trailerDict.isNone()) {
667
50
    obj.copy(&trailerDict);
668
50
  }
669
670
  // check for an 'XRefStm' key
671
  //~ this can be a 64-bit int (?)
672
51
  if (obj.getDict()->lookup("XRefStm", &obj2)->isInt()) {
673
1
    pos2 = (GFileOffset)(Guint)obj2.getInt();
674
1
    readXRef(&pos2, posSet, gTrue);
675
1
    if (!ok) {
676
0
      obj2.free();
677
0
      obj.free();
678
0
      goto err1;
679
0
    }
680
1
  }
681
51
  obj2.free();
682
683
51
  obj.free();
684
51
  return more;
685
686
71
 err1:
687
71
  ok = gFalse;
688
71
  return gFalse;
689
51
}
690
691
274
GBool XRef::readXRefStream(Stream *xrefStr, GFileOffset *pos) {
692
274
  Dict *dict;
693
274
  int w[3];
694
274
  GBool more;
695
274
  Object obj, obj2, idx;
696
274
  int newSize, first, n, i;
697
698
274
  dict = xrefStr->getDict();
699
700
274
  if (!dict->lookupNF("Size", &obj)->isInt()) {
701
28
    goto err1;
702
28
  }
703
246
  newSize = obj.getInt();
704
246
  obj.free();
705
246
  if (newSize < 0) {
706
2
    goto err1;
707
2
  }
708
244
  if (newSize > size) {
709
172
    entries = (XRefEntry *)greallocn(entries, newSize, sizeof(XRefEntry));
710
1.33M
    for (i = size; i < newSize; ++i) {
711
1.33M
      entries[i].offset = (GFileOffset)-1;
712
1.33M
      entries[i].type = xrefEntryFree;
713
1.33M
    }
714
172
    size = newSize;
715
172
  }
716
717
244
  if (!dict->lookupNF("W", &obj)->isArray() ||
718
243
      obj.arrayGetLength() < 3) {
719
3
    goto err1;
720
3
  }
721
957
  for (i = 0; i < 3; ++i) {
722
719
    if (!obj.arrayGet(i, &obj2)->isInt()) {
723
3
      obj2.free();
724
3
      goto err1;
725
3
    }
726
716
    w[i] = obj2.getInt();
727
716
    obj2.free();
728
716
  }
729
238
  obj.free();
730
238
  if (w[0] < 0 || w[0] > 8 ||
731
236
      w[1] < 0 || w[1] > 8 ||
732
236
      w[2] < 0 || w[2] > 8) {
733
3
    goto err0;
734
3
  }
735
736
235
  xrefStr->reset();
737
235
  dict->lookupNF("Index", &idx);
738
235
  if (idx.isArray()) {
739
495
    for (i = 0; i+1 < idx.arrayGetLength(); i += 2) {
740
391
      if (!idx.arrayGet(i, &obj)->isInt()) {
741
1
  idx.free();
742
1
  goto err1;
743
1
      }
744
390
      first = obj.getInt();
745
390
      obj.free();
746
390
      if (!idx.arrayGet(i+1, &obj)->isInt()) {
747
3
  idx.free();
748
3
  goto err1;
749
3
      }
750
387
      n = obj.getInt();
751
387
      obj.free();
752
387
      if (first < 0 || n < 0 ||
753
386
    !readXRefStreamSection(xrefStr, w, first, n)) {
754
19
  idx.free();
755
19
  goto err0;
756
19
      }
757
387
    }
758
127
  } else {
759
108
    if (!readXRefStreamSection(xrefStr, w, 0, newSize)) {
760
39
      idx.free();
761
39
      goto err0;
762
39
    }
763
108
  }
764
173
  idx.free();
765
766
  //~ this can be a 64-bit int (?)
767
173
  dict->lookupNF("Prev", &obj);
768
173
  if (obj.isInt()) {
769
93
    *pos = (GFileOffset)(Guint)obj.getInt();
770
93
    more = gTrue;
771
93
  } else {
772
80
    more = gFalse;
773
80
  }
774
173
  obj.free();
775
173
  if (trailerDict.isNone()) {
776
107
    trailerDict.initDict(dict);
777
107
  }
778
779
173
  return more;
780
781
40
 err1:
782
40
  obj.free();
783
101
 err0:
784
101
  ok = gFalse;
785
101
  return gFalse;
786
40
}
787
788
494
GBool XRef::readXRefStreamSection(Stream *xrefStr, int *w, int first, int n) {
789
494
  long long type, gen, offset;
790
494
  int c, newSize, i, j;
791
792
494
  if (first + n < 0) {
793
0
    return gFalse;
794
0
  }
795
494
  if (first + n > size) {
796
48
    for (newSize = size ? 2 * size : 1024;
797
152
   first + n > newSize && newSize > 0;
798
104
   newSize <<= 1) ;
799
48
    if (newSize < 0) {
800
1
      return gFalse;
801
1
    }
802
47
    entries = (XRefEntry *)greallocn(entries, newSize, sizeof(XRefEntry));
803
438k
    for (i = size; i < newSize; ++i) {
804
438k
      entries[i].offset = (GFileOffset)-1;
805
438k
      entries[i].type = xrefEntryFree;
806
438k
    }
807
47
    size = newSize;
808
47
  }
809
12.7k
  for (i = first; i < first + n; ++i) {
810
12.3k
    if (w[0] == 0) {
811
8.90k
      type = 1;
812
8.90k
    } else {
813
7.50k
      for (type = 0, j = 0; j < w[0]; ++j) {
814
4.06k
  if ((c = xrefStr->getChar()) == EOF) {
815
2
    return gFalse;
816
2
  }
817
4.06k
  type = (type << 8) + c;
818
4.06k
      }
819
3.43k
    }
820
26.3k
    for (offset = 0, j = 0; j < w[1]; ++j) {
821
13.9k
      if ((c = xrefStr->getChar()) == EOF) {
822
12
  return gFalse;
823
12
      }
824
13.9k
      offset = (offset << 8) + c;
825
13.9k
    }
826
12.3k
    if (offset < 0 || offset > GFILEOFFSET_MAX) {
827
1
      return gFalse;
828
1
    }
829
18.9k
    for (gen = 0, j = 0; j < w[2]; ++j) {
830
6.64k
      if ((c = xrefStr->getChar()) == EOF) {
831
12
  return gFalse;
832
12
      }
833
6.63k
      gen = (gen << 8) + c;
834
6.63k
    }
835
    // some PDF generators include a free entry with gen=0xffffffff
836
12.3k
    if ((gen < 0 || gen > INT_MAX) && type != 0) {
837
3
      return gFalse;
838
3
    }
839
12.3k
    if (entries[i].offset == (GFileOffset)-1) {
840
11.8k
      switch (type) {
841
462
      case 0:
842
462
  entries[i].offset = (GFileOffset)offset;
843
462
  entries[i].gen = (int)gen;
844
462
  entries[i].type = xrefEntryFree;
845
462
  break;
846
9.65k
      case 1:
847
9.65k
  entries[i].offset = (GFileOffset)offset;
848
9.65k
  entries[i].gen = (int)gen;
849
9.65k
  entries[i].type = xrefEntryUncompressed;
850
9.65k
  break;
851
1.67k
      case 2:
852
1.67k
  entries[i].offset = (GFileOffset)offset;
853
1.67k
  entries[i].gen = (int)gen;
854
1.67k
  entries[i].type = xrefEntryCompressed;
855
1.67k
  break;
856
26
      default:
857
26
  return gFalse;
858
11.8k
      }
859
11.7k
      if (i > last) {
860
10.2k
  last = i;
861
10.2k
      }
862
11.7k
    }
863
12.3k
  }
864
865
437
  return gTrue;
866
493
}
867
868
// Attempt to construct an xref table for a damaged file.
869
12.4k
GBool XRef::constructXRef() {
870
12.4k
  int *streamObjNums = NULL;
871
12.4k
  int streamObjNumsLen = 0;
872
12.4k
  int streamObjNumsSize = 0;
873
12.4k
  int lastObjNum = -1;
874
12.4k
  rootNum = -1;
875
12.4k
  int streamEndsSize = 0;
876
12.4k
  streamEndsLen = 0;
877
12.4k
  char buf[4096 + 1];
878
12.4k
  str->reset();
879
12.4k
  GFileOffset bufPos = start;
880
12.4k
  char *p = buf;
881
12.4k
  char *end = buf;
882
12.4k
  GBool startOfLine = gTrue;
883
12.4k
  GBool space = gTrue;
884
12.4k
  GBool eof = gFalse;
885
39.1M
  while (1) {
886
39.1M
    if (end - p < 256 && !eof) {
887
19.6k
      memcpy(buf, p, end - p);
888
19.6k
      bufPos += p - buf;
889
19.6k
      p = buf + (end - p);
890
19.6k
      int n = (int)(buf + 4096 - p);
891
19.6k
      int m = str->getBlock(p, n);
892
19.6k
      end = p + m;
893
19.6k
      *end = '\0';
894
19.6k
      p = buf;
895
19.6k
      eof = m < n;
896
19.6k
    }
897
39.1M
    if (p == end && eof) {
898
12.4k
      break;
899
12.4k
    }
900
39.1M
    if (startOfLine && !strncmp(p, "trailer", 7)) {
901
23.1k
      constructTrailerDict((GFileOffset)(bufPos + (p + 7 - buf)));
902
23.1k
      p += 7;
903
23.1k
      startOfLine = gFalse;
904
23.1k
      space = gFalse;
905
39.1M
    } else if (startOfLine && !strncmp(p, "endstream", 9)) {
906
18.4k
      if (streamEndsLen == streamEndsSize) {
907
2.53k
  streamEndsSize += 64;
908
2.53k
  streamEnds = (GFileOffset *)greallocn(streamEnds, streamEndsSize,
909
2.53k
                sizeof(GFileOffset));
910
2.53k
      }
911
18.4k
      streamEnds[streamEndsLen++] = (GFileOffset)(bufPos + (p - buf));
912
18.4k
      p += 9;
913
18.4k
      startOfLine = gFalse;
914
18.4k
      space = gFalse;
915
39.1M
    } else if (space && *p >= '0' && *p <= '9') {
916
827k
      p = constructObjectEntry(p, (GFileOffset)(bufPos + (p - buf)),
917
827k
             &lastObjNum);
918
827k
      startOfLine = gFalse;
919
827k
      space = gFalse;
920
38.3M
    } else if (p[0] == '>' && p[1] == '>') {
921
559k
      p += 2;
922
559k
      startOfLine = gFalse;
923
559k
      space = gFalse;
924
      // skip any PDF whitespace except for '\0'
925
839k
      while (*p == '\t' || *p == '\n' || *p == '\x0c' ||
926
589k
       *p == '\r' || *p == ' ') {
927
279k
  if (*p == '\n' || *p == '\r') {
928
52.5k
    startOfLine = gTrue;
929
52.5k
  }
930
279k
  space = gTrue;
931
279k
  ++p;
932
279k
      }
933
559k
      if (!strncmp(p, "stream", 6)) {
934
305k
  if (lastObjNum >= 0) {
935
300k
    if (streamObjNumsLen == streamObjNumsSize) {
936
14.0k
      streamObjNumsSize += 64;
937
14.0k
      streamObjNums = (int *)greallocn(streamObjNums, streamObjNumsSize,
938
14.0k
               sizeof(int));
939
14.0k
    }
940
300k
    streamObjNums[streamObjNumsLen++] = lastObjNum;
941
300k
  }
942
305k
  p += 6;
943
305k
  startOfLine = gFalse;
944
305k
  space = gFalse;
945
305k
      }
946
37.7M
    } else {
947
37.7M
      if (*p == '\n' || *p == '\r') {
948
1.29M
  startOfLine = gTrue;
949
1.29M
  space = gTrue;
950
36.4M
      } else if (Lexer::isSpace(*p & 0xff)) {
951
6.61M
  space = gTrue;
952
29.8M
      } else {
953
29.8M
  startOfLine = gFalse;
954
29.8M
  space = gFalse;
955
29.8M
      }
956
37.7M
      ++p;
957
37.7M
    }
958
39.1M
  }
959
960
  // read each stream object, check for xref or object stream
961
312k
  for (int i = 0; i < streamObjNumsLen; ++i) {
962
300k
    Object obj;
963
300k
    fetch(streamObjNums[i], entries[streamObjNums[i]].gen, &obj);
964
300k
    if (obj.isStream()) {
965
253k
      Dict *dict = obj.streamGetDict();
966
253k
      Object type;
967
253k
      dict->lookup("Type", &type);
968
253k
      if (type.isName("XRef")) {
969
3.94k
  saveTrailerDict(dict, gTrue);
970
249k
      } else if (type.isName("ObjStm")) {
971
230k
  constructObjectStreamEntries(&obj, streamObjNums[i]);
972
230k
      }
973
253k
      type.free();
974
253k
    }
975
300k
    obj.free();
976
300k
  }
977
978
12.4k
  gfree(streamObjNums);
979
980
  // if the file is encrypted, then any objects fetched here will be
981
  // incorrect (because decryption is not yet enabled), so clear the
982
  // cache to avoid that problem
983
209k
  for (int i = 0; i < xrefCacheSize; ++i) {
984
196k
    if (cache[i].num >= 0) {
985
28.9k
      cache[i].obj.free();
986
28.9k
      cache[i].num = -1;
987
28.9k
    }
988
196k
  }
989
990
12.4k
  if (rootNum < 0) {
991
8.78k
    error(errSyntaxError, -1, "Couldn't find trailer dictionary");
992
8.78k
    return gFalse;
993
8.78k
  }
994
3.62k
  return gTrue;
995
12.4k
}
996
997
// Attempt to construct a trailer dict at [pos] in the stream.
998
23.1k
void XRef::constructTrailerDict(GFileOffset pos) {
999
23.1k
  Object newTrailerDict, obj;
1000
23.1k
  obj.initNull();
1001
23.1k
  Parser *parser =
1002
23.1k
      new Parser(NULL,
1003
23.1k
     new Lexer(NULL,
1004
23.1k
         str->makeSubStream(pos, gFalse, 0, &obj)),
1005
23.1k
     gFalse);
1006
23.1k
  parser->getObj(&newTrailerDict);
1007
23.1k
  if (newTrailerDict.isDict()) {
1008
16.4k
    saveTrailerDict(newTrailerDict.getDict(), gFalse);
1009
16.4k
  }
1010
23.1k
  newTrailerDict.free();
1011
23.1k
  delete parser;
1012
23.1k
}
1013
1014
// If [dict] "looks like" a trailer dict (i.e., has a Root entry),
1015
// save it as the trailer dict.
1016
20.3k
void XRef::saveTrailerDict(Dict *dict, GBool isXRefStream) {
1017
20.3k
  Object obj;
1018
20.3k
  dict->lookupNF("Root", &obj);
1019
20.3k
  if (obj.isRef()) {
1020
6.21k
    int newRootNum = obj.getRefNum();
1021
    // the xref stream scanning code runs after all objects are found,
1022
    // so we can check for a valid root object number at that point
1023
6.21k
    if (!isXRefStream || newRootNum <= last) {
1024
6.00k
      rootNum = newRootNum;
1025
6.00k
      rootGen = obj.getRefGen();
1026
6.00k
      if (!trailerDict.isNone()) {
1027
2.57k
  trailerDict.free();
1028
2.57k
      }
1029
6.00k
      trailerDict.initDict(dict);
1030
6.00k
    }
1031
6.21k
  }
1032
20.3k
  obj.free();
1033
20.3k
}
1034
1035
// Look for an object header ("nnn ggg obj") at [p].  The first
1036
// character at *[p] is a digit.  [pos] is the position of *[p].
1037
827k
char *XRef::constructObjectEntry(char *p, GFileOffset pos, int *objNum) {
1038
  // we look for non-end-of-line space characters here, to deal with
1039
  // situations like:
1040
  //    nnn          <-- garbage digits on a line
1041
  //    nnn nnn obj  <-- actual object
1042
  // and we also ignore '\0' (because it's used to terminate the
1043
  // buffer in this damage-scanning code)
1044
827k
  int num = 0;
1045
1.96M
  do {
1046
1.96M
    num = (num * 10) + (*p - '0');
1047
1.96M
    ++p;
1048
1.96M
  } while (*p >= '0' && *p <= '9' && num < 100000000);
1049
827k
  if (*p != '\t' && *p != '\x0c' && *p != ' ') {
1050
405k
    return p;
1051
405k
  }
1052
456k
  do {
1053
456k
    ++p;
1054
456k
  } while (*p == '\t' || *p == '\x0c' || *p == ' ');
1055
421k
  if (!(*p >= '0' && *p <= '9')) {
1056
135k
    return p;
1057
135k
  }
1058
286k
  int gen = 0;
1059
458k
  do {
1060
458k
    gen = (gen * 10) + (*p - '0');
1061
458k
    ++p;
1062
458k
  } while (*p >= '0' && *p <= '9' && gen < 100000000);
1063
286k
  if (*p != '\t' && *p != '\x0c' && *p != ' ') {
1064
20.1k
    return p;
1065
20.1k
  }
1066
277k
  do {
1067
277k
    ++p;
1068
277k
  } while (*p == '\t' || *p == '\x0c' || *p == ' ');
1069
266k
  if (strncmp(p, "obj", 3)) {
1070
187k
    return p;
1071
187k
  }
1072
1073
78.3k
  if (constructXRefEntry(num, gen, pos - start, xrefEntryUncompressed)) {
1074
78.3k
    *objNum = num;
1075
78.3k
  }
1076
1077
78.3k
  return p;
1078
266k
}
1079
1080
// Read the header from an object stream, and add xref entries for all
1081
// of its objects.
1082
230k
void XRef::constructObjectStreamEntries(Object *objStr, int objStrObjNum) {
1083
230k
  Object obj1, obj2;
1084
1085
  // get the object count
1086
230k
  if (!objStr->streamGetDict()->lookup("N", &obj1)->isInt()) {
1087
820
    obj1.free();
1088
820
    return;
1089
820
  }
1090
229k
  int nObjects = obj1.getInt();
1091
229k
  obj1.free();
1092
229k
  if (nObjects <= 0 || nObjects > 1000000) {
1093
467
    return;
1094
467
  }
1095
1096
  // parse the header: object numbers and offsets
1097
228k
  Parser *parser = new Parser(NULL,
1098
228k
            new Lexer(NULL, objStr->getStream()->copy()),
1099
228k
            gFalse);
1100
68.7M
  for (int i = 0; i < nObjects; ++i) {
1101
68.5M
    parser->getObj(&obj1, gTrue);
1102
68.5M
    parser->getObj(&obj2, gTrue);
1103
68.5M
    if (obj1.isInt() && obj2.isInt()) {
1104
61.1k
      int num = obj1.getInt();
1105
61.1k
      if (num >= 0 && num < 1000000) {
1106
58.7k
  constructXRefEntry(num, i, objStrObjNum, xrefEntryCompressed);
1107
58.7k
      }
1108
61.1k
    }
1109
68.5M
    obj2.free();
1110
68.5M
    obj1.free();
1111
68.5M
  }
1112
228k
  delete parser;
1113
228k
}
1114
1115
GBool XRef::constructXRefEntry(int num, int gen, GFileOffset pos,
1116
137k
             XRefEntryType type) {
1117
137k
  if (num >= size) {
1118
13.0k
    int newSize = (num + 1 + 255) & ~255;
1119
13.0k
    if (newSize < 0) {
1120
0
      return gFalse;
1121
0
    }
1122
13.0k
    entries = (XRefEntry *)greallocn(entries, newSize, sizeof(XRefEntry));
1123
229M
    for (int i = size; i < newSize; ++i) {
1124
229M
      entries[i].offset = (GFileOffset)-1;
1125
229M
      entries[i].type = xrefEntryFree;
1126
229M
    }
1127
13.0k
    size = newSize;
1128
13.0k
  }
1129
1130
137k
  if (entries[num].type == xrefEntryFree ||
1131
132k
      gen >= entries[num].gen) {
1132
132k
    entries[num].offset = pos;
1133
132k
    entries[num].gen = gen;
1134
132k
    entries[num].type = type;
1135
132k
    if (num > last) {
1136
35.6k
      last = num;
1137
35.6k
    }
1138
132k
  }
1139
1140
137k
  return gTrue;
1141
137k
}
1142
1143
void XRef::setEncryption(int permFlagsA, GBool ownerPasswordOkA,
1144
       Guchar *fileKeyA, int keyLengthA, int encVersionA,
1145
331
       CryptAlgorithm encAlgorithmA) {
1146
331
  int i;
1147
1148
331
  encrypted = gTrue;
1149
331
  permFlags = permFlagsA;
1150
331
  ownerPasswordOk = ownerPasswordOkA;
1151
331
  if (keyLengthA <= 32) {
1152
331
    keyLength = keyLengthA;
1153
331
  } else {
1154
0
    keyLength = 32;
1155
0
  }
1156
7.36k
  for (i = 0; i < keyLength; ++i) {
1157
7.03k
    fileKey[i] = fileKeyA[i];
1158
7.03k
  }
1159
331
  encVersion = encVersionA;
1160
331
  encAlgorithm = encAlgorithmA;
1161
331
}
1162
1163
GBool XRef::getEncryption(int *permFlagsA, GBool *ownerPasswordOkA,
1164
        int *keyLengthA, int *encVersionA,
1165
0
        CryptAlgorithm *encAlgorithmA) {
1166
0
  if (!encrypted) {
1167
0
    return gFalse;
1168
0
  }
1169
0
  *permFlagsA = permFlags;
1170
0
  *ownerPasswordOkA = ownerPasswordOk;
1171
0
  *keyLengthA = keyLength;
1172
0
  *encVersionA = encVersion;
1173
0
  *encAlgorithmA = encAlgorithm;
1174
0
  return gTrue;
1175
0
}
1176
1177
0
GBool XRef::okToPrint(GBool ignoreOwnerPW) {
1178
0
  return (!ignoreOwnerPW && ownerPasswordOk) || (permFlags & permPrint);
1179
0
}
1180
1181
0
GBool XRef::okToChange(GBool ignoreOwnerPW) {
1182
0
  return (!ignoreOwnerPW && ownerPasswordOk) || (permFlags & permChange);
1183
0
}
1184
1185
0
GBool XRef::okToCopy(GBool ignoreOwnerPW) {
1186
0
  return (!ignoreOwnerPW && ownerPasswordOk) || (permFlags & permCopy);
1187
0
}
1188
1189
0
GBool XRef::okToAddNotes(GBool ignoreOwnerPW) {
1190
0
  return (!ignoreOwnerPW && ownerPasswordOk) || (permFlags & permNotes);
1191
0
}
1192
1193
38.9M
Object *XRef::fetch(int num, int gen, Object *obj, int recursion) {
1194
38.9M
  XRefEntry *e;
1195
38.9M
  Parser *parser;
1196
38.9M
  Object obj1, obj2, obj3;
1197
38.9M
  XRefCacheEntry tmp;
1198
38.9M
  int i, j;
1199
1200
  // check for bogus ref - this can happen in corrupted PDF files
1201
38.9M
  if (num < 0 || num >= size) {
1202
190k
    goto err;
1203
190k
  }
1204
1205
  // check the cache
1206
38.7M
#if MULTITHREADED
1207
38.7M
  gLockMutex(&cacheMutex);
1208
38.7M
#endif
1209
38.7M
  if (cache[0].num == num && cache[0].gen == gen) {
1210
816k
    cache[0].obj.copy(obj);
1211
816k
#if MULTITHREADED
1212
816k
    gUnlockMutex(&cacheMutex);
1213
816k
#endif
1214
816k
    return obj;
1215
816k
  }
1216
605M
  for (i = 1; i < xrefCacheSize; ++i) {
1217
567M
    if (cache[i].num == num && cache[i].gen == gen) {
1218
162k
      tmp = cache[i];
1219
543k
      for (j = i; j > 0; --j) {
1220
381k
  cache[j] = cache[j - 1];
1221
381k
      }
1222
162k
      cache[0] = tmp;
1223
162k
      cache[0].obj.copy(obj);
1224
162k
#if MULTITHREADED
1225
162k
      gUnlockMutex(&cacheMutex);
1226
162k
#endif
1227
162k
      return obj;
1228
162k
    }
1229
567M
  }
1230
37.8M
#if MULTITHREADED
1231
37.8M
  gUnlockMutex(&cacheMutex);
1232
37.8M
#endif
1233
1234
37.8M
  e = &entries[num];
1235
37.8M
  switch (e->type) {
1236
1237
242k
  case xrefEntryUncompressed:
1238
242k
    if (e->gen != gen) {
1239
149k
      goto err;
1240
149k
    }
1241
92.7k
    obj1.initNull();
1242
92.7k
    parser = new Parser(this,
1243
92.7k
         new Lexer(this,
1244
92.7k
     str->makeSubStream(start + e->offset, gFalse, 0, &obj1)),
1245
92.7k
         gTrue);
1246
92.7k
    parser->getObj(&obj1, gTrue);
1247
92.7k
    parser->getObj(&obj2, gTrue);
1248
92.7k
    parser->getObj(&obj3, gTrue);
1249
92.7k
    if (!obj1.isInt() || obj1.getInt() != num ||
1250
91.5k
  !obj2.isInt() || obj2.getInt() != gen ||
1251
91.0k
  !obj3.isCmd("obj")) {
1252
4.10k
      obj1.free();
1253
4.10k
      obj2.free();
1254
4.10k
      obj3.free();
1255
4.10k
      delete parser;
1256
4.10k
      goto err;
1257
4.10k
    }
1258
88.6k
    parser->getObj(obj, gFalse, encrypted ? fileKey : (Guchar *)NULL,
1259
88.6k
       encAlgorithm, keyLength, num, gen, recursion);
1260
88.6k
    obj1.free();
1261
88.6k
    obj2.free();
1262
88.6k
    obj3.free();
1263
88.6k
    delete parser;
1264
88.6k
    break;
1265
1266
143k
  case xrefEntryCompressed:
1267
#if 0 // Adobe apparently ignores the generation number on compressed objects
1268
    if (gen != 0) {
1269
      goto err;
1270
    }
1271
#endif
1272
143k
    if (e->offset >= (GFileOffset)size ||
1273
143k
  entries[e->offset].type != xrefEntryUncompressed) {
1274
1.31k
      error(errSyntaxError, -1, "Invalid object stream");
1275
1.31k
      goto err;
1276
1.31k
    }
1277
142k
    if (!getObjectStreamObject((int)e->offset, e->gen, num, obj, recursion)) {
1278
109k
      goto err;
1279
109k
    }
1280
32.4k
    break;
1281
1282
37.4M
  default:
1283
37.4M
    goto err;
1284
37.8M
  }
1285
1286
  // put the new object in the cache, throwing away the oldest object
1287
  // currently in the cache
1288
121k
#if MULTITHREADED
1289
121k
  gLockMutex(&cacheMutex);
1290
121k
#endif
1291
121k
  if (cache[xrefCacheSize - 1].num >= 0) {
1292
58.0k
    cache[xrefCacheSize - 1].obj.free();
1293
58.0k
  }
1294
1.93M
  for (i = xrefCacheSize - 1; i > 0; --i) {
1295
1.81M
    cache[i] = cache[i - 1];
1296
1.81M
  }
1297
121k
  cache[0].num = num;
1298
121k
  cache[0].gen = gen;
1299
121k
  obj->copy(&cache[0].obj);
1300
121k
#if MULTITHREADED
1301
121k
  gUnlockMutex(&cacheMutex);
1302
121k
#endif
1303
1304
121k
  return obj;
1305
1306
37.8M
 err:
1307
37.8M
  return obj->initNull();
1308
37.8M
}
1309
1310
GBool XRef::getObjectStreamObject(int objStrNum, int objIdx,
1311
142k
          int objNum, Object *obj, int recursion) {
1312
142k
  if (recursion >= objectRecursionLimit) {
1313
206
    return gFalse;
1314
206
  }
1315
1316
  // check for a cached ObjectStream
1317
141k
#if MULTITHREADED
1318
141k
  gLockMutex(&objStrsMutex);
1319
141k
#endif
1320
141k
  ObjectStream *objStr = getObjectStreamFromCache(objStrNum);
1321
141k
  GBool found = gFalse;
1322
141k
  if (objStr) {
1323
27.9k
    objStr->getObject(objIdx, objNum, obj);
1324
27.9k
    cleanObjectStreamCache();
1325
27.9k
    found = gTrue;
1326
27.9k
  }
1327
141k
#if MULTITHREADED
1328
141k
  gUnlockMutex(&objStrsMutex);
1329
141k
#endif
1330
141k
  if (found) {
1331
27.9k
    return gTrue;
1332
27.9k
  }
1333
1334
  // load a new ObjectStream
1335
113k
  objStr = new ObjectStream(this, objStrNum, recursion + 1);
1336
113k
  if (!objStr->isOk()) {
1337
109k
    delete objStr;
1338
109k
    return gFalse;
1339
109k
  }
1340
4.49k
  objStr->getObject(objIdx, objNum, obj);
1341
4.49k
#if MULTITHREADED
1342
4.49k
  gLockMutex(&objStrsMutex);
1343
4.49k
#endif
1344
4.49k
  addObjectStreamToCache(objStr);
1345
4.49k
  cleanObjectStreamCache();
1346
4.49k
#if MULTITHREADED
1347
4.49k
  gUnlockMutex(&objStrsMutex);
1348
4.49k
#endif
1349
4.49k
  return gTrue;
1350
113k
}
1351
1352
// NB: objStrsMutex must be locked when calling this function.
1353
141k
ObjectStream *XRef::getObjectStreamFromCache(int objStrNum) {
1354
  // check the MRU entry in the cache
1355
141k
  if (objStrs[0] && objStrs[0]->getObjStrNum() == objStrNum) {
1356
27.6k
    ObjectStream *objStr = objStrs[0];
1357
27.6k
    objStrLastUse[0] = objStrTime++;
1358
27.6k
    return objStr;
1359
27.6k
  }
1360
1361
  // check the rest of the cache
1362
125k
  for (int i = 1; i < objStrCacheLength; ++i) {
1363
11.3k
    if (objStrs[i] && objStrs[i]->getObjStrNum() == objStrNum) {
1364
338
      ObjectStream *objStr = objStrs[i];
1365
825
      for (int j = i; j > 0; --j) {
1366
487
  objStrs[j] = objStrs[j - 1];
1367
487
  objStrLastUse[j] = objStrLastUse[j - 1];
1368
487
      }
1369
338
      objStrs[0] = objStr;
1370
338
      objStrLastUse[0] = objStrTime++;
1371
338
      return objStr;
1372
338
    }
1373
11.3k
  }
1374
1375
113k
  return NULL;
1376
114k
}
1377
1378
// NB: objStrsMutex must be locked when calling this function.
1379
4.49k
void XRef::addObjectStreamToCache(ObjectStream *objStr) {
1380
  // add to the cache
1381
4.49k
  if (objStrCacheLength == objStrCacheSize) {
1382
727
    delete objStrs[objStrCacheSize - 1];
1383
727
    --objStrCacheLength;
1384
727
  }
1385
147k
  for (int j = objStrCacheLength; j > 0; --j) {
1386
142k
    objStrs[j] = objStrs[j - 1];
1387
142k
    objStrLastUse[j] = objStrLastUse[j - 1];
1388
142k
  }
1389
4.49k
  ++objStrCacheLength;
1390
4.49k
  objStrs[0] = objStr;
1391
4.49k
  objStrLastUse[0] = objStrTime++;
1392
4.49k
}
1393
1394
// If the oldest (least recently used) entry in the object stream
1395
// cache is more than objStrCacheTimeout accesses old (hasn't been
1396
// used in the last objStrCacheTimeout accesses), eject it from the
1397
// cache.
1398
// NB: objStrsMutex must be locked when calling this function.
1399
32.4k
void XRef::cleanObjectStreamCache() {
1400
  // NB: objStrTime and objStrLastUse[] are unsigned ints, so the
1401
  // mod-2^32 arithmetic makes the subtraction work out, even if the
1402
  // time wraps around.
1403
32.4k
  if (objStrCacheLength > 1 &&
1404
28.1k
      objStrTime - objStrLastUse[objStrCacheLength - 1]
1405
28.1k
        > objStrCacheTimeout) {
1406
0
    delete objStrs[objStrCacheLength - 1];
1407
0
    objStrs[objStrCacheLength - 1] = NULL;
1408
0
    --objStrCacheLength;
1409
0
  }
1410
32.4k
}
1411
1412
0
Object *XRef::getDocInfo(Object *obj) {
1413
0
  return trailerDict.dictLookup("Info", obj);
1414
0
}
1415
1416
// Added for the pdftex project.
1417
0
Object *XRef::getDocInfoNF(Object *obj) {
1418
0
  return trailerDict.dictLookupNF("Info", obj);
1419
0
}
1420
1421
97.1k
GBool XRef::getStreamEnd(GFileOffset streamStart, GFileOffset *streamEnd) {
1422
97.1k
  int a, b, m;
1423
1424
97.1k
  if (streamEndsLen == 0 ||
1425
66.4k
      streamStart > streamEnds[streamEndsLen - 1]) {
1426
49.6k
    return gFalse;
1427
49.6k
  }
1428
1429
47.5k
  a = -1;
1430
47.5k
  b = streamEndsLen - 1;
1431
  // invariant: streamEnds[a] < streamStart <= streamEnds[b]
1432
228k
  while (b - a > 1) {
1433
180k
    m = (a + b) / 2;
1434
180k
    if (streamStart <= streamEnds[m]) {
1435
79.2k
      b = m;
1436
101k
    } else {
1437
101k
      a = m;
1438
101k
    }
1439
180k
  }
1440
47.5k
  *streamEnd = streamEnds[b];
1441
47.5k
  return gTrue;
1442
97.1k
}
1443
1444
880
GFileOffset XRef::strToFileOffset(char *s) {
1445
880
  GFileOffset x, d;
1446
880
  char *p;
1447
1448
880
  x = 0;
1449
3.04k
  for (p = s; *p && isdigit(*p & 0xff); ++p) {
1450
2.17k
    d = *p - '0';
1451
2.17k
    if (x > (GFILEOFFSET_MAX - d) / 10) {
1452
8
      break;
1453
8
    }
1454
2.16k
    x = 10 * x + d;
1455
2.16k
  }
1456
880
  return x;
1457
880
}