Coverage Report

Created: 2026-06-09 06:59

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/qpdf/libqpdf/QPDF_objects.cc
Line
Count
Source
1
#include <qpdf/qpdf-config.h> // include first for large file support
2
3
#include <qpdf/QPDF_private.hh>
4
5
#include <qpdf/InputSource_private.hh>
6
#include <qpdf/OffsetInputSource.hh>
7
#include <qpdf/Pipeline.hh>
8
#include <qpdf/QPDFExc.hh>
9
#include <qpdf/QPDFLogger.hh>
10
#include <qpdf/QPDFObjectHandle_private.hh>
11
#include <qpdf/QPDFObject_private.hh>
12
#include <qpdf/QPDFParser.hh>
13
#include <qpdf/QTC.hh>
14
#include <qpdf/QUtil.hh>
15
#include <qpdf/Util.hh>
16
17
#include <array>
18
#include <atomic>
19
#include <cstring>
20
#include <limits>
21
#include <map>
22
#include <vector>
23
24
using namespace qpdf;
25
using namespace std::literals;
26
27
using Objects = QPDF::Doc::Objects;
28
using Parser = impl::Parser;
29
30
3.62M
QPDFXRefEntry::QPDFXRefEntry() = default;
31
32
QPDFXRefEntry::QPDFXRefEntry(int type, qpdf_offset_t field1, int field2) :
33
0
    type(type),
34
0
    field1(field1),
35
0
    field2(field2)
36
0
{
37
0
    util::assertion(type == 1 || type == 2, "invalid xref type " + std::to_string(type));
38
0
}
39
40
int
41
QPDFXRefEntry::getType() const
42
1.24M
{
43
1.24M
    return type;
44
1.24M
}
45
46
qpdf_offset_t
47
QPDFXRefEntry::getOffset() const
48
846k
{
49
846k
    util::assertion(type == 1, "getOffset called for xref entry of type != 1");
50
846k
    return this->field1;
51
846k
}
52
53
int
54
QPDFXRefEntry::getObjStreamNumber() const
55
208k
{
56
208k
    util::assertion(type == 2, "getObjStreamNumber called for xref entry of type != 2");
57
208k
    return QIntC::to_int(field1);
58
208k
}
59
60
int
61
QPDFXRefEntry::getObjStreamIndex() const
62
13.3k
{
63
13.3k
    util::assertion(type == 2, "getObjStreamIndex called for xref entry of type != 2");
64
13.3k
    return field2;
65
13.3k
}
66
67
namespace
68
{
69
    class InvalidInputSource: public InputSource
70
    {
71
      public:
72
        ~InvalidInputSource() override = default;
73
        qpdf_offset_t
74
        findAndSkipNextEOL() override
75
0
        {
76
0
            throwException();
77
0
            return 0;
78
0
        }
79
        std::string const&
80
        getName() const override
81
0
        {
82
0
            static std::string name("closed input source");
83
0
            return name;
84
0
        }
85
        qpdf_offset_t
86
        tell() override
87
0
        {
88
0
            throwException();
89
0
            return 0;
90
0
        }
91
        void
92
        seek(qpdf_offset_t offset, int whence) override
93
0
        {
94
0
            throwException();
95
0
        }
96
        void
97
        rewind() override
98
0
        {
99
0
            throwException();
100
0
        }
101
        size_t
102
        read(char* buffer, size_t length) override
103
0
        {
104
0
            throwException();
105
0
            return 0;
106
0
        }
107
        void
108
        unreadCh(char ch) override
109
0
        {
110
0
            throwException();
111
0
        }
112
113
      private:
114
        void
115
        throwException()
116
0
        {
117
0
            throw std::logic_error(
118
0
                "QPDF operation attempted on a QPDF object with no input "
119
0
                "source. QPDF operations are invalid before processFile (or "
120
0
                "another process method) or after closeInputSource");
121
0
        }
122
    };
123
} // namespace
124
125
class QPDF::ResolveRecorder final
126
{
127
  public:
128
    ResolveRecorder(QPDF& qpdf, QPDFObjGen const& og) :
129
311k
        qpdf(qpdf),
130
311k
        iter(qpdf.m->resolving.insert(og).first)
131
311k
    {
132
311k
    }
133
    ~ResolveRecorder()
134
311k
    {
135
311k
        qpdf.m->resolving.erase(iter);
136
311k
    }
137
138
  private:
139
    QPDF& qpdf;
140
    std::set<QPDFObjGen>::const_iterator iter;
141
};
142
143
class Objects::PatternFinder final: public InputSource::Finder
144
{
145
  public:
146
    PatternFinder(Objects& o, bool (Objects::*checker)()) :
147
68.4k
        o(o),
148
68.4k
        checker(checker)
149
68.4k
    {
150
68.4k
    }
151
    ~PatternFinder() final = default;
152
    bool
153
    check() final
154
72.6k
    {
155
72.6k
        return (this->o.*checker)();
156
72.6k
    }
157
158
  private:
159
    Objects& o;
160
    bool (Objects::*checker)();
161
};
162
163
bool
164
Objects::validatePDFVersion(char const*& p, std::string& version)
165
4.61k
{
166
4.61k
    if (!util::is_digit(*p)) {
167
2.01k
        return false;
168
2.01k
    }
169
8.10k
    while (util::is_digit(*p)) {
170
5.50k
        version.append(1, *p++);
171
5.50k
    }
172
2.60k
    if (!(*p == '.' && util::is_digit(*(p + 1)))) {
173
939
        return false;
174
939
    }
175
1.66k
    version.append(1, *p++);
176
6.35k
    while (util::is_digit(*p)) {
177
4.69k
        version.append(1, *p++);
178
4.69k
    }
179
1.66k
    return true;
180
2.60k
}
181
182
bool
183
Objects::findHeader()
184
4.62k
{
185
4.62k
    qpdf_offset_t global_offset = m->file->tell();
186
4.62k
    std::string line = m->file->readLine(1024);
187
4.62k
    char const* p = line.data();
188
4.62k
    util::assertion(strncmp(p, "%PDF-", 5) == 0, "findHeader is not looking at %PDF-");
189
4.62k
    p += 5;
190
4.62k
    std::string version;
191
    // Note: The string returned by line.data() is always null-terminated. The code below never
192
    // overruns the buffer because a null character always short-circuits further advancement.
193
4.62k
    if (!validatePDFVersion(p, version)) {
194
2.95k
        return false;
195
2.95k
    }
196
1.66k
    m->pdf_version = version;
197
1.66k
    if (global_offset != 0) {
198
        // Empirical evidence strongly suggests (codified in PDF 2.0 spec) that when there is
199
        // leading material prior to the PDF header, all explicit offsets in the file are such that
200
        // 0 points to the beginning of the header.
201
1.17k
        m->file = std::make_shared<OffsetInputSource>(m->file, global_offset);
202
1.17k
    }
203
1.66k
    return true;
204
4.62k
}
205
206
bool
207
Objects::findStartxref()
208
6.62k
{
209
6.62k
    if (readToken(*m->file).isWord("startxref") && readToken(*m->file).isInteger()) {
210
        // Position in front of offset token
211
4.97k
        m->file->seek(m->file->getLastOffset(), SEEK_SET);
212
4.97k
        return true;
213
4.97k
    }
214
1.65k
    return false;
215
6.62k
}
216
217
void
218
Objects::parse(char const* password)
219
21.3k
{
220
21.3k
    if (password) {
221
0
        m->encp->provided_password = password;
222
0
    }
223
224
    // Find the header anywhere in the first 1024 bytes of the file.
225
21.3k
    PatternFinder hf(*this, &Objects::findHeader);
226
21.3k
    if (!m->file->findFirst("%PDF-", 0, 1024, hf)) {
227
19.6k
        warn(damagedPDF("", -1, "can't find PDF header"));
228
        // QPDFWriter writes files that usually require at least version 1.2 for /FlateDecode
229
19.6k
        m->pdf_version = "1.2";
230
19.6k
    }
231
232
    // PDF spec says %%EOF must be found within the last 1024 bytes of/ the file.  We add an extra
233
    // 30 characters to leave room for the startxref stuff.
234
21.3k
    m->file->seek(0, SEEK_END);
235
21.3k
    qpdf_offset_t end_offset = m->file->tell();
236
21.3k
    m->xref_table_max_offset = end_offset;
237
    // Sanity check on object ids. All objects must appear in xref table / stream. In all realistic
238
    // scenarios at least 3 bytes are required.
239
21.3k
    if (m->xref_table_max_id > m->xref_table_max_offset / 3) {
240
21.2k
        m->xref_table_max_id = static_cast<int>(m->xref_table_max_offset / 3);
241
21.2k
    }
242
21.3k
    qpdf_offset_t start_offset = (end_offset > 1054 ? end_offset - 1054 : 0);
243
21.3k
    PatternFinder sf(*this, &Objects::findStartxref);
244
21.3k
    qpdf_offset_t xref_offset = 0;
245
21.3k
    if (m->file->findLast("startxref", start_offset, 0, sf)) {
246
4.67k
        xref_offset = QUtil::string_to_ll(readToken(*m->file).getValue().c_str());
247
4.67k
    }
248
249
21.3k
    try {
250
21.3k
        if (xref_offset == 0) {
251
16.7k
            throw damagedPDF("", -1, "can't find startxref");
252
16.7k
        }
253
4.57k
        try {
254
4.57k
            read_xref(xref_offset);
255
4.57k
        } catch (QPDFExc&) {
256
3.63k
            throw;
257
3.63k
        } catch (std::exception& e) {
258
387
            throw damagedPDF("", -1, std::string("error reading xref: ") + e.what());
259
387
        }
260
20.7k
    } catch (QPDFExc& e) {
261
20.7k
        if (global::Options::inspection_mode()) {
262
0
            try {
263
0
                reconstruct_xref(e, xref_offset > 0);
264
0
            } catch (std::exception& er) {
265
0
                warn(damagedPDF("", -1, "error reconstructing xref: "s + er.what()));
266
0
            }
267
0
            if (!m->trailer) {
268
0
                m->trailer = Dictionary::empty();
269
0
            }
270
0
            return;
271
0
        }
272
20.7k
        if (cf.surpress_recovery()) {
273
0
            throw;
274
0
        }
275
20.7k
        reconstruct_xref(e, xref_offset > 0);
276
20.7k
    }
277
278
9.10k
    m->encp->initialize(qpdf);
279
9.10k
    m->parsed = true;
280
9.10k
    if (!m->xref_table.empty() && !qpdf.getRoot().getKey("/Pages").isDictionary()) {
281
        // QPDFs created from JSON have an empty xref table and no root object yet.
282
1
        throw damagedPDF("", -1, "unable to find page tree");
283
1
    }
284
9.10k
    if (m->cf.max_warnings()) {
285
8.47k
        if (m->pages.empty()) {
286
8
            throw damagedPDF("", -1, "no pages found");
287
8
        }
288
8.46k
        (void)m->cf.max_warnings(0);
289
8.46k
    }
290
9.10k
}
291
292
void
293
Objects::inParse(bool v)
294
298k
{
295
298k
    util::internal_error_if(
296
298k
        m->in_parse == v, "QPDF: re-entrant parsing detected"
297
        // This happens if QPDFParser::parse tries to resolve an indirect object while it is
298
        // parsing.
299
298k
    );
300
298k
    m->in_parse = v;
301
298k
}
302
303
void
304
Objects::setTrailer(QPDFObjectHandle obj)
305
6.32k
{
306
6.32k
    if (m->trailer) {
307
197
        return;
308
197
    }
309
6.12k
    m->trailer = obj;
310
6.12k
}
311
312
void
313
Objects::reconstruct_xref(QPDFExc& e, bool found_startxref)
314
25.5k
{
315
25.5k
    if (m->reconstructed_xref) {
316
        // Avoid xref reconstruction infinite loops. This is getting very hard to reproduce because
317
        // qpdf is throwing many fewer exceptions while parsing. Most situations are warnings now.
318
4.64k
        throw e;
319
4.64k
    }
320
321
    // If recovery generates more than 1000 warnings, the file is so severely damaged that there
322
    // probably is no point trying to continue.
323
20.8k
    const auto max_warnings = m->warnings.size() + 1000U;
324
1.31M
    auto check_warnings = [this, max_warnings]() {
325
1.31M
        if (m->warnings.size() > max_warnings) {
326
0
            throw damagedPDF("", -1, "too many errors while reconstructing cross-reference table");
327
0
        }
328
1.31M
    };
329
330
20.8k
    m->reconstructed_xref = true;
331
    // We may find more objects, which may contain dangling references.
332
20.8k
    m->fixed_dangling_refs = false;
333
334
20.8k
    warn(damagedPDF("", -1, "file is damaged"));
335
20.8k
    warn(e);
336
20.8k
    warn(damagedPDF("", -1, "Attempting to reconstruct cross-reference table"));
337
338
    // Delete all references to type 1 (uncompressed) objects
339
20.8k
    std::vector<QPDFObjGen> to_delete;
340
87.8k
    for (auto const& iter: m->xref_table) {
341
87.8k
        if (iter.second.getType() == 1) {
342
81.3k
            to_delete.emplace_back(iter.first);
343
81.3k
        }
344
87.8k
    }
345
81.3k
    for (auto const& iter: to_delete) {
346
81.3k
        m->xref_table.erase(iter);
347
81.3k
    }
348
349
20.8k
    std::vector<std::tuple<int, int, qpdf_offset_t>> found_objects;
350
20.8k
    std::vector<qpdf_offset_t> trailers;
351
20.8k
    std::vector<qpdf_offset_t> startxrefs;
352
353
20.8k
    m->file->seek(0, SEEK_END);
354
20.8k
    qpdf_offset_t eof = m->file->tell();
355
20.8k
    m->file->seek(0, SEEK_SET);
356
    // Don't allow very long tokens here during recovery. All the interesting tokens are covered.
357
20.8k
    static size_t const MAX_LEN = 10;
358
1.19M
    while (m->file->tell() < eof) {
359
1.17M
        QPDFTokenizer::Token t1 = m->objects.readToken(*m->file, MAX_LEN);
360
1.17M
        qpdf_offset_t token_start = m->file->tell() - toO(t1.getValue().length());
361
1.17M
        if (t1.isInteger()) {
362
197k
            auto pos = m->file->tell();
363
197k
            auto t2 = m->objects.readToken(*m->file, MAX_LEN);
364
197k
            if (t2.isInteger() && m->objects.readToken(*m->file, MAX_LEN).isWord("obj")) {
365
107k
                int obj = QUtil::string_to_int(t1.getValue().c_str());
366
107k
                int gen = QUtil::string_to_int(t2.getValue().c_str());
367
107k
                if (obj <= m->xref_table_max_id) {
368
106k
                    found_objects.emplace_back(obj, gen, token_start);
369
106k
                } else {
370
1.13k
                    warn(damagedPDF(
371
1.13k
                        "", -1, "ignoring object with impossibly large id " + std::to_string(obj)));
372
1.13k
                }
373
107k
            }
374
197k
            m->file->seek(pos, SEEK_SET);
375
973k
        } else if (!m->trailer && t1.isWord("trailer")) {
376
35.8k
            trailers.emplace_back(m->file->tell());
377
937k
        } else if (!found_startxref && t1.isWord("startxref")) {
378
1.34k
            startxrefs.emplace_back(m->file->tell());
379
1.34k
        }
380
1.17M
        check_warnings();
381
1.17M
        m->file->findAndSkipNextEOL();
382
1.17M
    }
383
384
20.8k
    if (!found_startxref && !startxrefs.empty() && !found_objects.empty() &&
385
519
        startxrefs.back() > std::get<2>(found_objects.back())) {
386
260
        auto xref_backup{m->xref_table};
387
260
        try {
388
260
            m->file->seek(startxrefs.back(), SEEK_SET);
389
260
            if (auto offset = QUtil::string_to_ll(readToken(*m->file).getValue().data())) {
390
134
                read_xref(offset);
391
392
134
                if (qpdf.getRoot().getKey("/Pages").isDictionary()) {
393
3
                    warn(damagedPDF(
394
3
                        "", -1, "startxref was more than 1024 bytes before end of file"));
395
3
                    m->encp->initialize(qpdf);
396
3
                    m->parsed = true;
397
3
                    m->reconstructed_xref = false;
398
3
                    return;
399
3
                }
400
134
            }
401
260
        } catch (...) {
402
            // ok, bad luck. Do recovery.
403
130
        }
404
257
        m->xref_table = std::move(xref_backup);
405
257
    }
406
407
20.8k
    auto rend = found_objects.rend();
408
127k
    for (auto it = found_objects.rbegin(); it != rend; it++) {
409
106k
        auto [obj, gen, token_start] = *it;
410
106k
        insertXrefEntry(obj, 1, token_start, gen);
411
106k
        check_warnings();
412
106k
    }
413
20.8k
    m->deleted_objects.clear();
414
415
    // Search at most the last 100 trailer candidates. If none of them are valid, odds are this file
416
    // is deliberately broken.
417
20.8k
    int end_index = trailers.size() > 100 ? static_cast<int>(trailers.size()) - 100 : 0;
418
34.3k
    for (auto it = trailers.rbegin(); it != std::prev(trailers.rend(), end_index); it++) {
419
15.8k
        m->file->seek(*it, SEEK_SET);
420
15.8k
        auto t = readTrailer();
421
15.8k
        if (!t.isDictionary()) {
422
            // Oh well.  It was worth a try.
423
12.8k
        } else {
424
3.02k
            if (t.hasKey("/Root")) {
425
2.33k
                m->trailer = t;
426
2.33k
                break;
427
2.33k
            }
428
688
            warn(damagedPDF("trailer", *it, "recovered trailer has no /Root entry"));
429
688
        }
430
13.5k
        check_warnings();
431
13.5k
    }
432
433
20.8k
    if (!m->trailer) {
434
17.8k
        qpdf_offset_t max_offset{0};
435
17.8k
        size_t max_size{0};
436
        // If there are any xref streams, take the last one to appear.
437
67.1k
        for (auto const& iter: m->xref_table) {
438
67.1k
            auto entry = iter.second;
439
67.1k
            if (entry.getType() != 1) {
440
1.27k
                continue;
441
1.27k
            }
442
65.8k
            auto oh = qpdf.getObject(iter.first);
443
65.8k
            try {
444
65.8k
                if (!oh.isStreamOfType("/XRef")) {
445
56.8k
                    continue;
446
56.8k
                }
447
65.8k
            } catch (std::exception&) {
448
3.54k
                continue;
449
3.54k
            }
450
5.43k
            auto offset = entry.getOffset();
451
5.43k
            auto size = oh.getDict().getKey("/Size").getUIntValueAsUInt();
452
5.43k
            if (size > max_size || (size == max_size && offset > max_offset)) {
453
5.29k
                max_offset = offset;
454
5.29k
                setTrailer(oh.getDict());
455
5.29k
            }
456
5.43k
            check_warnings();
457
5.43k
        }
458
17.8k
        if (max_offset > 0) {
459
5.08k
            try {
460
5.08k
                read_xref(max_offset, true);
461
5.08k
            } catch (std::exception&) {
462
2.93k
                warn(damagedPDF(
463
2.93k
                    "", -1, "error decoding candidate xref stream while recovering damaged file"));
464
2.93k
            }
465
5.08k
            QTC::TC("qpdf", "QPDF recover xref stream");
466
5.05k
        }
467
17.8k
    }
468
469
20.8k
    if (!m->trailer || (!m->parsed && !m->trailer.getKey("/Root").isDictionary())) {
470
        // Try to find a Root dictionary. As a quick fix try the one with the highest object id.
471
18.2k
        QPDFObjectHandle root;
472
158k
        for (auto const& iter: m->obj_cache) {
473
158k
            try {
474
158k
                if (QPDFObjectHandle(iter.second.object).isDictionaryOfType("/Catalog")) {
475
7.35k
                    root = iter.second.object;
476
7.35k
                }
477
158k
            } catch (std::exception&) {
478
6.75k
                continue;
479
6.75k
            }
480
158k
        }
481
18.2k
        if (root) {
482
7.25k
            if (!m->trailer) {
483
6.15k
                warn(damagedPDF(
484
6.15k
                    "", -1, "unable to find trailer dictionary while recovering damaged file"));
485
6.15k
                m->trailer = QPDFObjectHandle::newDictionary();
486
6.15k
            }
487
7.25k
            m->trailer.replaceKey("/Root", root);
488
7.25k
        }
489
18.2k
    }
490
491
20.8k
    if (!m->trailer) {
492
        // We could check the last encountered object to see if it was an xref stream.  If so, we
493
        // could try to get the trailer from there.  This may make it possible to recover files with
494
        // bad startxref pointers even when they have object streams.
495
496
6.64k
        throw damagedPDF("", -1, "unable to find trailer dictionary while recovering damaged file");
497
6.64k
    }
498
14.1k
    if (m->xref_table.empty()) {
499
        // We cannot check for an empty xref table in parse because empty tables are valid when
500
        // creating QPDF objects from JSON.
501
385
        throw damagedPDF("", -1, "unable to find objects while recovering damaged file");
502
385
    }
503
13.8k
    check_warnings();
504
13.8k
    if (!m->parsed) {
505
13.6k
        m->parsed = !m->pages.empty();
506
13.6k
        if (!m->parsed) {
507
722
            throw damagedPDF("", -1, "unable to find any pages while recovering damaged file");
508
722
        }
509
12.9k
        check_warnings();
510
12.9k
    }
511
512
    // We could iterate through the objects looking for streams and try to find objects inside of
513
    // them, but it's probably not worth the trouble.  Acrobat can't recover files with any errors
514
    // in an xref stream, and this would be a real long shot anyway.  If we wanted to do anything
515
    // that involved looking at stream contents, we'd also have to call initializeEncryption() here.
516
    // It's safe to call it more than once.
517
13.8k
}
518
519
void
520
Objects::read_xref(qpdf_offset_t xref_offset, bool in_stream_recovery)
521
9.78k
{
522
9.78k
    std::map<int, int> free_table;
523
9.78k
    std::set<qpdf_offset_t> visited;
524
20.1k
    while (xref_offset) {
525
10.5k
        visited.insert(xref_offset);
526
10.5k
        char buf[7];
527
10.5k
        memset(buf, 0, sizeof(buf));
528
10.5k
        m->file->seek(xref_offset, SEEK_SET);
529
        // Some files miss the mark a little with startxref. We could do a better job of searching
530
        // in the neighborhood for something that looks like either an xref table or stream, but the
531
        // simple heuristic of skipping whitespace can help with the xref table case and is harmless
532
        // with the stream case.
533
10.5k
        bool done = false;
534
10.5k
        bool skipped_space = false;
535
25.2k
        while (!done) {
536
14.6k
            char ch;
537
14.6k
            if (1 == m->file->read(&ch, 1)) {
538
14.1k
                if (util::is_space(ch)) {
539
4.28k
                    skipped_space = true;
540
9.90k
                } else {
541
9.90k
                    m->file->unreadCh(ch);
542
9.90k
                    done = true;
543
9.90k
                }
544
14.1k
            } else {
545
426
                QTC::TC("qpdf", "QPDF eof skipping spaces before xref", skipped_space ? 0 : 1);
546
426
                done = true;
547
426
            }
548
14.6k
        }
549
550
10.5k
        m->file->read(buf, sizeof(buf) - 1);
551
        // The PDF spec says xref must be followed by a line terminator, but files exist in the wild
552
        // where it is terminated by arbitrary whitespace.
553
10.5k
        if ((strncmp(buf, "xref", 4) == 0) && util::is_space(buf[4])) {
554
1.45k
            if (skipped_space) {
555
74
                warn(damagedPDF("", -1, "extraneous whitespace seen before xref"));
556
74
            }
557
1.45k
            QTC::TC(
558
1.45k
                "qpdf",
559
1.45k
                "QPDF xref space",
560
1.45k
                ((buf[4] == '\n')       ? 0
561
1.45k
                     : (buf[4] == '\r') ? 1
562
1.15k
                     : (buf[4] == ' ')  ? 2
563
548
                                        : 9999));
564
1.45k
            int skip = 4;
565
            // buf is null-terminated, and util::is_space('\0') is false, so this won't overrun.
566
3.11k
            while (util::is_space(buf[skip])) {
567
1.66k
                ++skip;
568
1.66k
            }
569
1.45k
            xref_offset = read_xrefTable(xref_offset + skip);
570
9.13k
        } else {
571
9.13k
            xref_offset = read_xrefStream(xref_offset, in_stream_recovery);
572
9.13k
        }
573
10.5k
        if (visited.contains(xref_offset)) {
574
191
            throw damagedPDF("", -1, "loop detected following xref tables");
575
191
        }
576
10.5k
    }
577
578
9.59k
    if (!m->trailer) {
579
0
        throw damagedPDF("", -1, "unable to find trailer while reading xref");
580
0
    }
581
9.59k
    int size = m->trailer.getKey("/Size").getIntValueAsInt();
582
9.59k
    int max_obj = 0;
583
9.59k
    if (!m->xref_table.empty()) {
584
2.49k
        max_obj = m->xref_table.rbegin()->first.getObj();
585
2.49k
    }
586
9.59k
    if (!m->deleted_objects.empty()) {
587
837
        max_obj = std::max(max_obj, *(m->deleted_objects.rbegin()));
588
837
    }
589
9.59k
    if (size < 1 || (size - 1) != max_obj) {
590
2.08k
        if (size == (max_obj + 2) && qpdf.getObject(max_obj + 1, 0).isStreamOfType("/XRef")) {
591
4
            warn(damagedPDF(
592
4
                "",
593
4
                -1,
594
4
                "xref entry for the xref stream itself is missing - a common error handled "
595
4
                "correctly by qpdf and most other applications"));
596
2.08k
        } else {
597
2.08k
            warn(damagedPDF(
598
2.08k
                "",
599
2.08k
                -1,
600
2.08k
                ("reported number of objects (" + std::to_string(size) +
601
2.08k
                 ") is not one plus the highest object number (" + std::to_string(max_obj) + ")")));
602
2.08k
        }
603
2.08k
    }
604
605
    // We no longer need the deleted_objects table, so go ahead and clear it out to make sure we
606
    // never depend on its being set.
607
9.59k
    m->deleted_objects.clear();
608
609
    // Make sure we keep only the highest generation for any object.
610
9.59k
    QPDFObjGen last_og{-1, 0};
611
293k
    for (auto const& item: m->xref_table) {
612
293k
        auto id = item.first.getObj();
613
293k
        if (id == last_og.getObj() && id > 0) {
614
17.7k
            qpdf.removeObject(last_og);
615
17.7k
        }
616
293k
        last_og = item.first;
617
293k
    }
618
9.59k
}
619
620
bool
621
Objects::parse_xrefFirst(std::string const& line, int& obj, int& num, int& bytes)
622
6.89k
{
623
    // is_space and is_digit both return false on '\0', so this will not overrun the null-terminated
624
    // buffer.
625
6.89k
    char const* p = line.c_str();
626
6.89k
    char const* start = line.c_str();
627
628
    // Skip zero or more spaces
629
7.99k
    while (util::is_space(*p)) {
630
1.10k
        ++p;
631
1.10k
    }
632
    // Require digit
633
6.89k
    if (!util::is_digit(*p)) {
634
154
        return false;
635
154
    }
636
    // Gather digits
637
6.73k
    std::string obj_str;
638
28.0k
    while (util::is_digit(*p)) {
639
21.2k
        obj_str.append(1, *p++);
640
21.2k
    }
641
    // Require space
642
6.73k
    if (!util::is_space(*p)) {
643
92
        return false;
644
92
    }
645
    // Skip spaces
646
17.3k
    while (util::is_space(*p)) {
647
10.6k
        ++p;
648
10.6k
    }
649
    // Require digit
650
6.64k
    if (!util::is_digit(*p)) {
651
84
        return false;
652
84
    }
653
    // Gather digits
654
6.56k
    std::string num_str;
655
21.0k
    while (util::is_digit(*p)) {
656
14.4k
        num_str.append(1, *p++);
657
14.4k
    }
658
    // Skip any space including line terminators
659
18.1k
    while (util::is_space(*p)) {
660
11.6k
        ++p;
661
11.6k
    }
662
6.56k
    bytes = toI(p - start);
663
6.56k
    obj = QUtil::string_to_int(obj_str.c_str());
664
6.56k
    num = QUtil::string_to_int(num_str.c_str());
665
6.56k
    return true;
666
6.64k
}
667
668
bool
669
Objects::read_bad_xrefEntry(qpdf_offset_t& f1, int& f2, char& type)
670
7.18k
{
671
    // Reposition after initial read attempt and reread.
672
7.18k
    m->file->seek(m->file->getLastOffset(), SEEK_SET);
673
7.18k
    auto line = m->file->readLine(30);
674
675
    // is_space and is_digit both return false on '\0', so this will not overrun the null-terminated
676
    // buffer.
677
7.18k
    char const* p = line.data();
678
679
    // Skip zero or more spaces. There aren't supposed to be any.
680
7.18k
    bool invalid = false;
681
14.3k
    while (util::is_space(*p)) {
682
7.17k
        ++p;
683
7.17k
        invalid = true;
684
7.17k
    }
685
    // Require digit
686
7.18k
    if (!util::is_digit(*p)) {
687
10
        return false;
688
10
    }
689
    // Gather digits
690
7.17k
    std::string f1_str;
691
32.2k
    while (util::is_digit(*p)) {
692
25.0k
        f1_str.append(1, *p++);
693
25.0k
    }
694
    // Require space
695
7.17k
    if (!util::is_space(*p)) {
696
27
        return false;
697
27
    }
698
7.14k
    if (util::is_space(*(p + 1))) {
699
1.79k
        invalid = true;
700
1.79k
    }
701
    // Skip spaces
702
16.9k
    while (util::is_space(*p)) {
703
9.85k
        ++p;
704
9.85k
    }
705
    // Require digit
706
7.14k
    if (!util::is_digit(*p)) {
707
50
        return false;
708
50
    }
709
    // Gather digits
710
7.09k
    std::string f2_str;
711
33.1k
    while (util::is_digit(*p)) {
712
26.0k
        f2_str.append(1, *p++);
713
26.0k
    }
714
    // Require space
715
7.09k
    if (!util::is_space(*p)) {
716
50
        return false;
717
50
    }
718
7.04k
    if (util::is_space(*(p + 1))) {
719
1.16k
        invalid = true;
720
1.16k
    }
721
    // Skip spaces
722
15.9k
    while (util::is_space(*p)) {
723
8.94k
        ++p;
724
8.94k
    }
725
7.04k
    if ((*p == 'f') || (*p == 'n')) {
726
6.91k
        type = *p;
727
6.91k
    } else {
728
130
        return false;
729
130
    }
730
6.91k
    if ((f1_str.length() != 10) || (f2_str.length() != 5)) {
731
6.37k
        invalid = true;
732
6.37k
    }
733
734
6.91k
    if (invalid) {
735
6.38k
        warn(damagedPDF("xref table", "accepting invalid xref table entry"));
736
6.38k
    }
737
738
6.91k
    f1 = QUtil::string_to_ll(f1_str.c_str());
739
6.91k
    f2 = QUtil::string_to_int(f2_str.c_str());
740
741
6.91k
    return true;
742
7.04k
}
743
744
// Optimistically read and parse xref entry. If entry is bad, call read_bad_xrefEntry and return
745
// result.
746
bool
747
Objects::read_xrefEntry(qpdf_offset_t& f1, int& f2, char& type)
748
16.6k
{
749
16.6k
    std::array<char, 21> line;
750
16.6k
    if (m->file->read(line.data(), 20) != 20) {
751
        // C++20: [[unlikely]]
752
199
        return false;
753
199
    }
754
16.4k
    line[20] = '\0';
755
16.4k
    char const* p = line.data();
756
757
16.4k
    int f1_len = 0;
758
16.4k
    int f2_len = 0;
759
760
    // is_space and is_digit both return false on '\0', so this will not overrun the null-terminated
761
    // buffer.
762
763
    // Gather f1 digits. NB No risk of overflow as 9'999'999'999 < max long long.
764
73.7k
    while (*p == '0') {
765
57.2k
        ++f1_len;
766
57.2k
        ++p;
767
57.2k
    }
768
72.3k
    while (util::is_digit(*p) && f1_len++ < 10) {
769
55.9k
        f1 *= 10;
770
55.9k
        f1 += *p++ - '0';
771
55.9k
    }
772
    // Require space
773
16.4k
    if (!util::is_space(*p++)) {
774
        // Entry doesn't start with space or digit.
775
        // C++20: [[unlikely]]
776
112
        return false;
777
112
    }
778
    // Gather digits. NB No risk of overflow as 99'999 < max int.
779
72.1k
    while (*p == '0') {
780
55.7k
        ++f2_len;
781
55.7k
        ++p;
782
55.7k
    }
783
23.0k
    while (util::is_digit(*p) && f2_len++ < 5) {
784
6.63k
        f2 *= 10;
785
6.63k
        f2 += static_cast<int>(*p++ - '0');
786
6.63k
    }
787
16.3k
    if (util::is_space(*p++) && (*p == 'f' || *p == 'n')) {
788
        // C++20: [[likely]]
789
12.3k
        type = *p;
790
        // No test for valid line[19].
791
12.3k
        if (*(++p) && *(++p) && (*p == '\n' || *p == '\r') && f1_len == 10 && f2_len == 5) {
792
            // C++20: [[likely]]
793
9.18k
            return true;
794
9.18k
        }
795
12.3k
    }
796
7.18k
    return read_bad_xrefEntry(f1, f2, type);
797
16.3k
}
798
799
// Read a single cross-reference table section and associated trailer.
800
qpdf_offset_t
801
Objects::read_xrefTable(qpdf_offset_t xref_offset)
802
1.45k
{
803
1.45k
    m->file->seek(xref_offset, SEEK_SET);
804
1.45k
    std::string line;
805
6.92k
    while (true) {
806
6.89k
        line.assign(50, '\0');
807
6.89k
        m->file->read(line.data(), line.size());
808
6.89k
        int obj = 0;
809
6.89k
        int num = 0;
810
6.89k
        int bytes = 0;
811
6.89k
        if (!parse_xrefFirst(line, obj, num, bytes)) {
812
330
            throw damagedPDF("xref table", "xref syntax invalid");
813
330
        }
814
6.56k
        m->file->seek(m->file->getLastOffset() + bytes, SEEK_SET);
815
22.6k
        for (qpdf_offset_t i = obj; i - num < obj; ++i) {
816
16.6k
            if (i == 0) {
817
                // This is needed by checkLinearization()
818
562
                first_xref_item_offset_ = m->file->tell();
819
562
            }
820
            // For xref_table, these will always be small enough to be ints
821
16.6k
            qpdf_offset_t f1 = 0;
822
16.6k
            int f2 = 0;
823
16.6k
            char type = '\0';
824
16.6k
            if (!read_xrefEntry(f1, f2, type)) {
825
578
                throw damagedPDF(
826
578
                    "xref table", "invalid xref entry (obj=" + std::to_string(i) + ")");
827
578
            }
828
16.1k
            if (type == 'f') {
829
1.91k
                insertFreeXrefEntry(QPDFObjGen(toI(i), f2));
830
14.1k
            } else {
831
14.1k
                insertXrefEntry(toI(i), 1, f1, f2);
832
14.1k
            }
833
16.1k
        }
834
5.98k
        qpdf_offset_t pos = m->file->tell();
835
5.98k
        if (readToken(*m->file).isWord("trailer")) {
836
510
            break;
837
5.47k
        } else {
838
5.47k
            m->file->seek(pos, SEEK_SET);
839
5.47k
        }
840
5.98k
    }
841
842
    // Set offset to previous xref table if any
843
544
    QPDFObjectHandle cur_trailer = m->objects.readTrailer();
844
544
    if (!cur_trailer.isDictionary()) {
845
94
        throw damagedPDF("", "expected trailer dictionary");
846
94
    }
847
848
450
    if (!m->trailer) {
849
372
        setTrailer(cur_trailer);
850
851
372
        if (!m->trailer.hasKey("/Size")) {
852
149
            throw damagedPDF("trailer", "trailer dictionary lacks /Size key");
853
149
        }
854
223
        if (!m->trailer.getKey("/Size").isInteger()) {
855
1
            throw damagedPDF("trailer", "/Size key in trailer dictionary is not an integer");
856
1
        }
857
223
    }
858
859
300
    if (cur_trailer.hasKey("/XRefStm")) {
860
23
        if (cf.ignore_xref_streams()) {
861
0
            QTC::TC("qpdf", "QPDF ignoring XRefStm in trailer");
862
23
        } else {
863
23
            if (cur_trailer.getKey("/XRefStm").isInteger()) {
864
                // Read the xref stream but disregard any return value -- we'll use our trailer's
865
                // /Prev key instead of the xref stream's.
866
22
                (void)read_xrefStream(cur_trailer.getKey("/XRefStm").getIntValue());
867
22
            } else {
868
1
                throw damagedPDF("xref stream", xref_offset, "invalid /XRefStm");
869
1
            }
870
23
        }
871
23
    }
872
873
299
    if (cur_trailer.hasKey("/Prev")) {
874
62
        if (!cur_trailer.getKey("/Prev").isInteger()) {
875
1
            throw damagedPDF("trailer", "/Prev key in trailer dictionary is not an integer");
876
1
        }
877
61
        return cur_trailer.getKey("/Prev").getIntValue();
878
62
    }
879
880
237
    return 0;
881
299
}
882
883
// Read a single cross-reference stream.
884
qpdf_offset_t
885
Objects::read_xrefStream(qpdf_offset_t xref_offset, bool in_stream_recovery)
886
8.90k
{
887
8.90k
    if (!cf.ignore_xref_streams()) {
888
8.90k
        QPDFObjectHandle xref_obj;
889
8.90k
        try {
890
8.90k
            m->in_read_xref_stream = true;
891
8.90k
            xref_obj = readObjectAtOffset(xref_offset, "xref stream", true);
892
8.90k
        } catch (QPDFExc&) {
893
            // ignore -- report error below
894
976
        }
895
8.90k
        m->in_read_xref_stream = false;
896
8.86k
        if (xref_obj.isStreamOfType("/XRef")) {
897
6.84k
            return processXRefStream(xref_offset, xref_obj, in_stream_recovery);
898
6.84k
        }
899
8.86k
    }
900
901
2.01k
    throw damagedPDF("", xref_offset, "xref not found");
902
0
    return 0; // unreachable
903
8.90k
}
904
905
// Return the entry size of the xref stream and the processed W array.
906
std::pair<int, std::array<int, 3>>
907
Objects::processXRefW(QPDFObjectHandle& dict, std::function<QPDFExc(std::string_view)> damaged)
908
6.84k
{
909
6.84k
    auto W_obj = dict.getKey("/W");
910
6.84k
    if (!(W_obj.size() >= 3 && W_obj.getArrayItem(0).isInteger() &&
911
6.64k
          W_obj.getArrayItem(1).isInteger() && W_obj.getArrayItem(2).isInteger())) {
912
215
        throw damaged("Cross-reference stream does not have a proper /W key");
913
215
    }
914
915
6.62k
    std::array<int, 3> W;
916
6.62k
    int entry_size = 0;
917
6.62k
    auto w_vector = W_obj.getArrayAsVector();
918
6.62k
    int max_bytes = sizeof(qpdf_offset_t);
919
26.4k
    for (size_t i = 0; i < 3; ++i) {
920
19.8k
        W[i] = w_vector[i].getIntValueAsInt();
921
19.8k
        if (W[i] > max_bytes) {
922
18
            throw damaged("Cross-reference stream's /W contains impossibly large values");
923
18
        }
924
19.8k
        if (W[i] < 0) {
925
48
            throw damaged("Cross-reference stream's /W contains negative values");
926
48
        }
927
19.7k
        entry_size += W[i];
928
19.7k
    }
929
6.56k
    if (entry_size == 0) {
930
3
        throw damaged("Cross-reference stream's /W indicates entry size of 0");
931
3
    }
932
6.56k
    return {entry_size, W};
933
6.56k
}
934
935
// Validate Size key and return the maximum number of entries that the xref stream can contain.
936
int
937
Objects::processXRefSize(
938
    QPDFObjectHandle& dict, int entry_size, std::function<QPDFExc(std::string_view)> damaged)
939
6.55k
{
940
    // Number of entries is limited by the highest possible object id and stream size.
941
6.55k
    auto max_num_entries = std::numeric_limits<int>::max();
942
6.55k
    if (max_num_entries > (std::numeric_limits<qpdf_offset_t>::max() / entry_size)) {
943
0
        max_num_entries = toI(std::numeric_limits<qpdf_offset_t>::max() / entry_size);
944
0
    }
945
946
6.55k
    auto Size_obj = dict.getKey("/Size");
947
6.55k
    long long size;
948
6.55k
    if (!dict.getKey("/Size").getValueAsInt(size)) {
949
93
        throw damaged("Cross-reference stream does not have a proper /Size key");
950
6.46k
    } else if (size < 0) {
951
58
        throw damaged("Cross-reference stream has a negative /Size key");
952
6.40k
    } else if (size >= max_num_entries) {
953
75
        throw damaged("Cross-reference stream has an impossibly large /Size key");
954
75
    }
955
    // We are not validating that Size <= (Size key of parent xref / trailer).
956
6.33k
    return max_num_entries;
957
6.55k
}
958
959
// Return the number of entries of the xref stream and the processed Index array.
960
std::pair<int, std::vector<std::pair<int, int>>>
961
Objects::processXRefIndex(
962
    QPDFObjectHandle& dict, int max_num_entries, std::function<QPDFExc(std::string_view)> damaged)
963
6.33k
{
964
6.33k
    auto size = dict.getKey("/Size").getIntValueAsInt();
965
6.33k
    auto Index_obj = dict.getKey("/Index");
966
967
6.33k
    if (Index_obj.isArray()) {
968
1.06k
        std::vector<std::pair<int, int>> indx;
969
1.06k
        int num_entries = 0;
970
1.06k
        auto index_vec = Index_obj.getArrayAsVector();
971
1.06k
        if ((index_vec.size() % 2) || index_vec.size() < 2) {
972
22
            throw damaged("Cross-reference stream's /Index has an invalid number of values");
973
22
        }
974
975
1.03k
        int i = 0;
976
1.03k
        long long first = 0;
977
618k
        for (auto& val: index_vec) {
978
618k
            if (val.isInteger()) {
979
618k
                if (i % 2) {
980
309k
                    auto count = val.getIntValue();
981
309k
                    if (count <= 0) {
982
48
                        throw damaged(
983
48
                            "Cross-reference stream section claims to contain " +
984
48
                            std::to_string(count) + " entries");
985
48
                    }
986
                    // We are guarding against the possibility of num_entries * entry_size
987
                    // overflowing. We are not checking that entries are in ascending order as
988
                    // required by the spec, which probably should generate a warning. We are also
989
                    // not checking that for each subsection first object number + number of entries
990
                    // <= /Size. The spec requires us to ignore object number > /Size.
991
309k
                    if (first > (max_num_entries - count) ||
992
309k
                        count > (max_num_entries - num_entries)) {
993
75
                        throw damaged(
994
75
                            "Cross-reference stream claims to contain too many entries: " +
995
75
                            std::to_string(first) + " " + std::to_string(max_num_entries) + " " +
996
75
                            std::to_string(num_entries));
997
75
                    }
998
309k
                    indx.emplace_back(static_cast<int>(first), static_cast<int>(count));
999
309k
                    num_entries += static_cast<int>(count);
1000
309k
                } else {
1001
309k
                    first = val.getIntValue();
1002
309k
                    if (first < 0) {
1003
47
                        throw damaged(
1004
47
                            "Cross-reference stream's /Index contains a negative object id");
1005
309k
                    } else if (first > max_num_entries) {
1006
71
                        throw damaged(
1007
71
                            "Cross-reference stream's /Index contains an impossibly "
1008
71
                            "large object id");
1009
71
                    }
1010
309k
                }
1011
618k
            } else {
1012
17
                throw damaged(
1013
17
                    "Cross-reference stream's /Index's item " + std::to_string(i) +
1014
17
                    " is not an integer");
1015
17
            }
1016
618k
            i++;
1017
618k
        }
1018
781
        QTC::TC("qpdf", "QPDF xref /Index is array", index_vec.size() == 2 ? 0 : 1);
1019
781
        return {num_entries, indx};
1020
5.27k
    } else if (Index_obj.null()) {
1021
5.26k
        return {size, {{0, size}}};
1022
5.26k
    } else {
1023
4
        throw damaged("Cross-reference stream does not have a proper /Index key");
1024
4
    }
1025
6.33k
}
1026
1027
qpdf_offset_t
1028
Objects::processXRefStream(
1029
    qpdf_offset_t xref_offset, QPDFObjectHandle& xref_obj, bool in_stream_recovery)
1030
6.84k
{
1031
6.84k
    auto damaged = [this, xref_offset](std::string_view msg) -> QPDFExc {
1032
4.19k
        return damagedPDF("xref stream", xref_offset, msg.data());
1033
4.19k
    };
1034
1035
6.84k
    auto dict = xref_obj.getDict();
1036
1037
6.84k
    auto [entry_size, W] = processXRefW(dict, damaged);
1038
6.84k
    int max_num_entries = processXRefSize(dict, entry_size, damaged);
1039
6.84k
    auto [num_entries, indx] = processXRefIndex(dict, max_num_entries, damaged);
1040
1041
6.84k
    std::shared_ptr<Buffer> bp = xref_obj.getStreamData(qpdf_dl_specialized);
1042
6.84k
    size_t actual_size = bp->getSize();
1043
6.84k
    auto expected_size = toS(entry_size) * toS(num_entries);
1044
1045
6.84k
    if (expected_size != actual_size) {
1046
3.40k
        QPDFExc x = damaged(
1047
3.40k
            "Cross-reference stream data has the wrong size; expected = " +
1048
3.40k
            std::to_string(expected_size) + "; actual = " + std::to_string(actual_size));
1049
3.40k
        if (expected_size > actual_size) {
1050
614
            throw x;
1051
2.78k
        } else {
1052
2.78k
            warn(x);
1053
2.78k
        }
1054
3.40k
    }
1055
1056
6.23k
    bool saw_first_compressed_object = false;
1057
1058
    // Actual size vs. expected size check above ensures that we will not overflow any buffers here.
1059
    // We know that entry_size * num_entries is less or equal to the size of the buffer.
1060
6.23k
    auto p = bp->getBuffer();
1061
6.23k
    for (auto [obj, sec_entries]: indx) {
1062
        // Process a subsection.
1063
767k
        for (int i = 0; i < sec_entries; ++i) {
1064
            // Read this entry
1065
762k
            std::array<qpdf_offset_t, 3> fields{};
1066
762k
            if (W[0] == 0) {
1067
183k
                fields[0] = 1;
1068
183k
            }
1069
3.05M
            for (size_t j = 0; j < 3; ++j) {
1070
4.98M
                for (int k = 0; k < W[j]; ++k) {
1071
2.69M
                    fields[j] <<= 8;
1072
2.69M
                    fields[j] |= *p++;
1073
2.69M
                }
1074
2.28M
            }
1075
1076
            // Get the generation number.  The generation number is 0 unless this is an uncompressed
1077
            // object record, in which case the generation number appears as the third field.
1078
762k
            if (saw_first_compressed_object) {
1079
542k
                if (fields[0] != 2) {
1080
221k
                    uncompressed_after_compressed_ = true;
1081
221k
                }
1082
542k
            } else if (fields[0] == 2) {
1083
2.08k
                saw_first_compressed_object = true;
1084
2.08k
            }
1085
762k
            if (obj == 0) {
1086
                // This is needed by checkLinearization()
1087
2.97k
                first_xref_item_offset_ = xref_offset;
1088
759k
            } else if (fields[0] == 0) {
1089
                // Ignore fields[2], which we don't care about in this case. This works around the
1090
                // issue of some PDF files that put invalid values, like -1, here for deleted
1091
                // objects.
1092
79.0k
                insertFreeXrefEntry(QPDFObjGen(obj, 0));
1093
680k
            } else {
1094
680k
                auto typ = toI(fields[0]);
1095
680k
                if (!in_stream_recovery || typ == 2) {
1096
                    // If we are in xref stream recovery all actual uncompressed objects have
1097
                    // already been inserted into the xref table. Avoid adding junk data into the
1098
                    // xref table.
1099
612k
                    insertXrefEntry(obj, toI(fields[0]), fields[1], toI(fields[2]));
1100
612k
                }
1101
680k
            }
1102
762k
            ++obj;
1103
762k
        }
1104
5.17k
    }
1105
1106
6.23k
    if (!m->trailer) {
1107
657
        setTrailer(dict);
1108
657
    }
1109
1110
6.23k
    if (dict.hasKey("/Prev")) {
1111
1.04k
        if (!dict.getKey("/Prev").isInteger()) {
1112
103
            throw damagedPDF(
1113
103
                "xref stream", "/Prev key in xref stream dictionary is not an integer");
1114
103
        }
1115
939
        return dict.getKey("/Prev").getIntValue();
1116
5.18k
    } else {
1117
5.18k
        return 0;
1118
5.18k
    }
1119
6.23k
}
1120
1121
void
1122
Objects::insertXrefEntry(int obj, int f0, qpdf_offset_t f1, int f2)
1123
733k
{
1124
    // Populate the xref table in such a way that the first reference to an object that we see,
1125
    // which is the one in the latest xref table in which it appears, is the one that gets stored.
1126
    // This works because we are reading more recent appends before older ones.
1127
1128
    // If there is already an entry for this object and generation in the table, it means that a
1129
    // later xref table has registered this object.  Disregard this one.
1130
733k
    int new_gen = f0 == 2 ? 0 : f2;
1131
1132
733k
    if (!(f0 == 1 || f0 == 2)) {
1133
35.3k
        return;
1134
35.3k
    }
1135
1136
697k
    if (!(obj > 0 && obj <= m->xref_table_max_id && 0 <= f2 && new_gen < 65535)) {
1137
        // We are ignoring invalid objgens. Most will arrive here from xref reconstruction. There
1138
        // is probably no point having another warning but we could count invalid items in order to
1139
        // decide when to give up.
1140
        // ignore impossibly large object ids or object ids > Size.
1141
188k
        return;
1142
188k
    }
1143
1144
509k
    if (m->deleted_objects.contains(obj)) {
1145
721
        return;
1146
721
    }
1147
1148
508k
    if (f0 == 2) {
1149
267k
        if (f1 == obj) {
1150
467
            warn(
1151
467
                damagedPDF("xref stream", "self-referential object stream " + std::to_string(obj)));
1152
467
            return;
1153
467
        }
1154
267k
        if (f1 > m->xref_table_max_id) {
1155
            // ignore impossibly large object stream ids
1156
7.26k
            warn(damagedPDF(
1157
7.26k
                "xref stream",
1158
7.26k
                "object stream id " + std::to_string(f1) + " for object " + std::to_string(obj) +
1159
7.26k
                    " is impossibly large"));
1160
7.26k
            return;
1161
7.26k
        }
1162
267k
    }
1163
1164
500k
    auto [iter, created] = m->xref_table.try_emplace(QPDFObjGen(obj, (f0 == 2 ? 0 : f2)));
1165
500k
    if (!created) {
1166
29.4k
        return;
1167
29.4k
    }
1168
1169
471k
    switch (f0) {
1170
213k
    case 1:
1171
        // f2 is generation
1172
213k
        QTC::TC("qpdf", "QPDF xref gen > 0", ((f2 > 0) ? 1 : 0));
1173
213k
        iter->second = QPDFXRefEntry(f1);
1174
213k
        break;
1175
1176
257k
    case 2:
1177
257k
        iter->second = QPDFXRefEntry(toI(f1), f2);
1178
257k
        break;
1179
1180
0
    default:
1181
0
        throw damagedPDF("xref stream", "unknown xref stream entry type " + std::to_string(f0));
1182
0
        break;
1183
471k
    }
1184
471k
}
1185
1186
void
1187
Objects::insertFreeXrefEntry(QPDFObjGen og)
1188
80.9k
{
1189
80.9k
    if (!m->xref_table.contains(og) && og.getObj() <= m->xref_table_max_id) {
1190
35.8k
        m->deleted_objects.insert(og.getObj());
1191
35.8k
    }
1192
80.9k
}
1193
1194
void
1195
QPDF::showXRefTable()
1196
0
{
1197
0
    auto& cout = *m->cf.log()->getInfo();
1198
0
    for (auto const& iter: m->xref_table) {
1199
0
        QPDFObjGen const& og = iter.first;
1200
0
        QPDFXRefEntry const& entry = iter.second;
1201
0
        cout << og.unparse('/') << ": ";
1202
0
        switch (entry.getType()) {
1203
0
        case 1:
1204
0
            cout << "uncompressed; offset = " << entry.getOffset();
1205
0
            break;
1206
1207
0
        case 2:
1208
0
            *m->cf.log()->getInfo() << "compressed; stream = " << entry.getObjStreamNumber()
1209
0
                                    << ", index = " << entry.getObjStreamIndex();
1210
0
            break;
1211
1212
0
        default:
1213
0
            throw std::logic_error("unknown cross-reference table type while showing xref_table");
1214
0
            break;
1215
0
        }
1216
0
        m->cf.log()->info("\n");
1217
0
    }
1218
0
}
1219
1220
// Resolve all objects in the xref table. If this triggers a xref table reconstruction abort and
1221
// return false. Otherwise return true.
1222
bool
1223
Objects::resolveXRefTable()
1224
8.69k
{
1225
8.69k
    bool may_change = !m->reconstructed_xref;
1226
209k
    for (auto& iter: m->xref_table) {
1227
209k
        if (isUnresolved(iter.first)) {
1228
126k
            resolve(iter.first);
1229
126k
            if (may_change && m->reconstructed_xref) {
1230
28
                return false;
1231
28
            }
1232
126k
        }
1233
209k
    }
1234
8.66k
    return true;
1235
8.69k
}
1236
1237
// Ensure all objects in the pdf file, including those in indirect references, appear in the object
1238
// cache.
1239
void
1240
QPDF::fixDanglingReferences(bool force)
1241
21.1k
{
1242
21.1k
    if (m->fixed_dangling_refs) {
1243
12.4k
        return;
1244
12.4k
    }
1245
8.66k
    if (!m->objects.resolveXRefTable()) {
1246
28
        m->objects.resolveXRefTable();
1247
28
    }
1248
8.66k
    m->fixed_dangling_refs = true;
1249
8.66k
}
1250
1251
size_t
1252
QPDF::getObjectCount()
1253
12.9k
{
1254
    // This method returns the next available indirect object number. makeIndirectObject uses it for
1255
    // this purpose. After fixDanglingReferences is called, all objects in the xref table will also
1256
    // be in obj_cache.
1257
12.9k
    fixDanglingReferences();
1258
12.9k
    QPDFObjGen og;
1259
12.9k
    if (!m->obj_cache.empty()) {
1260
12.8k
        og = (*(m->obj_cache.rbegin())).first;
1261
12.8k
    }
1262
12.9k
    return QIntC::to_size(og.getObj());
1263
12.9k
}
1264
1265
std::vector<QPDFObjectHandle>
1266
QPDF::getAllObjects()
1267
0
{
1268
    // After fixDanglingReferences is called, all objects are in the object cache.
1269
0
    fixDanglingReferences();
1270
0
    std::vector<QPDFObjectHandle> result;
1271
0
    for (auto const& iter: m->obj_cache) {
1272
0
        result.emplace_back(m->objects.newIndirect(iter.first, iter.second.object));
1273
0
    }
1274
0
    return result;
1275
0
}
1276
1277
void
1278
Objects::setLastObjectDescription(std::string const& description, QPDFObjGen og)
1279
209k
{
1280
209k
    m->last_object_description.clear();
1281
209k
    if (!description.empty()) {
1282
7.96k
        m->last_object_description += description;
1283
7.96k
        if (og.isIndirect()) {
1284
7.96k
            m->last_object_description += ": ";
1285
7.96k
        }
1286
7.96k
    }
1287
209k
    if (og.isIndirect()) {
1288
209k
        m->last_object_description += "object " + og.unparse(' ');
1289
209k
    }
1290
209k
}
1291
1292
QPDFObjectHandle
1293
Objects::readTrailer()
1294
16.3k
{
1295
16.3k
    qpdf_offset_t offset = m->file->tell();
1296
16.3k
    auto object =
1297
16.3k
        Parser::parse(*m->file, "trailer", m->tokenizer, nullptr, qpdf, m->reconstructed_xref);
1298
16.3k
    if (object.isDictionary() && m->objects.readToken(*m->file).isWord("stream")) {
1299
111
        warn(damagedPDF("trailer", m->file->tell(), "stream keyword found in trailer"));
1300
111
    }
1301
    // Override last_offset so that it points to the beginning of the object we just read
1302
16.3k
    m->file->setLastOffset(offset);
1303
16.3k
    return object;
1304
16.3k
}
1305
1306
QPDFObjectHandle
1307
Objects::readObject(std::string const& description, QPDFObjGen og)
1308
105k
{
1309
105k
    setLastObjectDescription(description, og);
1310
105k
    qpdf_offset_t offset = m->file->tell();
1311
1312
105k
    StringDecrypter decrypter{&qpdf, og};
1313
105k
    StringDecrypter* decrypter_ptr = m->encp->encrypted ? &decrypter : nullptr;
1314
105k
    auto object = Parser::parse(
1315
105k
        *m->file,
1316
105k
        m->last_object_description,
1317
105k
        m->tokenizer,
1318
105k
        decrypter_ptr,
1319
105k
        qpdf,
1320
105k
        m->reconstructed_xref || m->in_read_xref_stream);
1321
105k
    if (!object) {
1322
7.53k
        return {};
1323
7.53k
    }
1324
98.1k
    auto token = readToken(*m->file);
1325
98.1k
    if (object.isDictionary() && token.isWord("stream")) {
1326
47.4k
        readStream(object, og, offset);
1327
47.4k
        token = readToken(*m->file);
1328
47.4k
    }
1329
98.1k
    if (!token.isWord("endobj")) {
1330
31.0k
        warn(damagedPDF("expected endobj"));
1331
31.0k
    }
1332
98.1k
    return object;
1333
105k
}
1334
1335
// After reading stream dictionary and stream keyword, read rest of stream.
1336
void
1337
Objects::readStream(QPDFObjectHandle& object, QPDFObjGen og, qpdf_offset_t offset)
1338
47.4k
{
1339
47.4k
    validateStreamLineEnd(object, og, offset);
1340
1341
    // Must get offset before accessing any additional objects since resolving a previously
1342
    // unresolved indirect object will change file position.
1343
47.4k
    qpdf_offset_t stream_offset = m->file->tell();
1344
47.4k
    size_t length = 0;
1345
1346
47.4k
    try {
1347
47.4k
        auto length_obj = object.getKey("/Length");
1348
1349
47.4k
        if (!length_obj.isInteger()) {
1350
20.1k
            if (length_obj.null()) {
1351
19.9k
                throw damagedPDF(offset, "stream dictionary lacks /Length key");
1352
19.9k
            }
1353
193
            throw damagedPDF(offset, "/Length key in stream dictionary is not an integer");
1354
20.1k
        }
1355
1356
27.3k
        length = toS(length_obj.getUIntValue());
1357
        // Seek in two steps to avoid potential integer overflow
1358
27.3k
        m->file->seek(stream_offset, SEEK_SET);
1359
27.3k
        m->file->seek(toO(length), SEEK_CUR);
1360
27.3k
        if (!readToken(*m->file).isWord("endstream")) {
1361
7.11k
            throw damagedPDF("expected endstream");
1362
7.11k
        }
1363
33.9k
    } catch (QPDFExc& e) {
1364
33.9k
        if (!cf.surpress_recovery()) {
1365
33.9k
            warn(e);
1366
33.9k
            length = recoverStreamLength(m->file, og, stream_offset);
1367
33.9k
        } else {
1368
0
            throw;
1369
0
        }
1370
33.9k
    }
1371
39.0k
    object = QPDFObjectHandle(qpdf::Stream(qpdf, og, object, stream_offset, length));
1372
39.0k
}
1373
1374
void
1375
Objects::validateStreamLineEnd(QPDFObjectHandle& object, QPDFObjGen og, qpdf_offset_t offset)
1376
47.4k
{
1377
    // The PDF specification states that the word "stream" should be followed by either a carriage
1378
    // return and a newline or by a newline alone.  It specifically disallowed following it by a
1379
    // carriage return alone since, in that case, there would be no way to tell whether the NL in a
1380
    // CR NL sequence was part of the stream data.  However, some readers, including Adobe reader,
1381
    // accept a carriage return by itself when followed by a non-newline character, so that's what
1382
    // we do here. We have also seen files that have extraneous whitespace between the stream
1383
    // keyword and the newline.
1384
54.8k
    while (true) {
1385
54.7k
        char ch;
1386
54.7k
        if (m->file->read(&ch, 1) == 0) {
1387
            // A premature EOF here will result in some other problem that will get reported at
1388
            // another time.
1389
188
            return;
1390
188
        }
1391
54.5k
        if (ch == '\n') {
1392
            // ready to read stream data
1393
23.9k
            return;
1394
23.9k
        }
1395
30.6k
        if (ch == '\r') {
1396
            // Read another character
1397
19.0k
            if (m->file->read(&ch, 1) != 0) {
1398
19.0k
                if (ch == '\n') {
1399
                    // Ready to read stream data
1400
16.3k
                    QTC::TC("qpdf", "QPDF stream with CRNL");
1401
16.3k
                } else {
1402
                    // Treat the \r by itself as the whitespace after endstream and start reading
1403
                    // stream data in spite of not having seen a newline.
1404
2.67k
                    m->file->unreadCh(ch);
1405
2.67k
                    warn(damagedPDF(
1406
2.67k
                        m->file->tell(), "stream keyword followed by carriage return only"));
1407
2.67k
                }
1408
19.0k
            }
1409
19.0k
            return;
1410
19.0k
        }
1411
11.5k
        if (!util::is_space(ch)) {
1412
4.16k
            m->file->unreadCh(ch);
1413
4.16k
            warn(damagedPDF(
1414
4.16k
                m->file->tell(), "stream keyword not followed by proper line terminator"));
1415
4.16k
            return;
1416
4.16k
        }
1417
7.39k
        warn(damagedPDF(m->file->tell(), "stream keyword followed by extraneous whitespace"));
1418
7.39k
    }
1419
47.4k
}
1420
1421
bool
1422
Objects::findEndstream()
1423
61.3k
{
1424
    // Find endstream or endobj. Position the input at that token.
1425
61.3k
    auto t = readToken(*m->file, 20);
1426
61.3k
    if (t.isWord("endobj") || t.isWord("endstream")) {
1427
25.2k
        m->file->seek(m->file->getLastOffset(), SEEK_SET);
1428
25.2k
        return true;
1429
25.2k
    }
1430
36.1k
    return false;
1431
61.3k
}
1432
1433
size_t
1434
Objects::recoverStreamLength(
1435
    std::shared_ptr<InputSource> input, QPDFObjGen og, qpdf_offset_t stream_offset)
1436
25.8k
{
1437
    // Try to reconstruct stream length by looking for endstream or endobj
1438
25.8k
    warn(damagedPDF(*input, stream_offset, "attempting to recover stream length"));
1439
1440
25.8k
    PatternFinder ef(*this, &Objects::findEndstream);
1441
25.8k
    size_t length = 0;
1442
25.8k
    if (m->file->findFirst("end", stream_offset, 0, ef)) {
1443
25.2k
        length = toS(m->file->tell() - stream_offset);
1444
        // Reread endstream but, if it was endobj, don't skip that.
1445
25.2k
        QPDFTokenizer::Token t = readToken(*m->file);
1446
25.2k
        if (t.getValue() == "endobj") {
1447
17.9k
            m->file->seek(m->file->getLastOffset(), SEEK_SET);
1448
17.9k
        }
1449
25.2k
    }
1450
1451
25.8k
    if (length) {
1452
24.0k
        auto end = stream_offset + toO(length);
1453
24.0k
        qpdf_offset_t found_offset = 0;
1454
24.0k
        QPDFObjGen found_og;
1455
1456
        // Make sure this is inside this object
1457
563k
        for (auto const& [current_og, entry]: m->xref_table) {
1458
563k
            if (entry.getType() == 1) {
1459
555k
                qpdf_offset_t obj_offset = entry.getOffset();
1460
555k
                if (found_offset < obj_offset && obj_offset < end) {
1461
143k
                    found_offset = obj_offset;
1462
143k
                    found_og = current_og;
1463
143k
                }
1464
555k
            }
1465
563k
        }
1466
24.0k
        if (!found_offset || found_og == og) {
1467
            // If we are trying to recover an XRef stream the xref table will not contain and
1468
            // won't contain any entries, therefore we cannot check the found length. Otherwise we
1469
            // found endstream\nendobj within the space allowed for this object, so we're probably
1470
            // in good shape.
1471
22.2k
        } else {
1472
1.84k
            length = 0;
1473
1.84k
        }
1474
24.0k
    }
1475
1476
25.8k
    if (length == 0) {
1477
3.63k
        warn(damagedPDF(
1478
3.63k
            *input, stream_offset, "unable to recover stream data; treating stream as empty"));
1479
22.2k
    } else {
1480
22.2k
        warn(damagedPDF(
1481
22.2k
            *input, stream_offset, "recovered stream length: " + std::to_string(length)));
1482
22.2k
    }
1483
1484
25.8k
    return length;
1485
25.8k
}
1486
1487
QPDFTokenizer::Token
1488
Objects::readToken(InputSource& input, size_t max_len)
1489
2.24M
{
1490
2.24M
    return m->tokenizer.readToken(input, m->last_object_description, true, max_len);
1491
2.24M
}
1492
1493
QPDFObjGen
1494
Objects::read_object_start(qpdf_offset_t offset)
1495
112k
{
1496
112k
    m->file->seek(offset, SEEK_SET);
1497
112k
    QPDFTokenizer::Token tobjid = readToken(*m->file);
1498
112k
    bool objidok = tobjid.isInteger();
1499
112k
    if (!objidok) {
1500
3.50k
        throw damagedPDF(offset, "expected n n obj");
1501
3.50k
    }
1502
108k
    QPDFTokenizer::Token tgen = readToken(*m->file);
1503
108k
    bool genok = tgen.isInteger();
1504
108k
    if (!genok) {
1505
441
        throw damagedPDF(offset, "expected n n obj");
1506
441
    }
1507
108k
    QPDFTokenizer::Token tobj = readToken(*m->file);
1508
1509
108k
    bool objok = tobj.isWord("obj");
1510
1511
108k
    if (!objok) {
1512
844
        throw damagedPDF(offset, "expected n n obj");
1513
844
    }
1514
107k
    int objid = QUtil::string_to_int(tobjid.getValue().c_str());
1515
107k
    int generation = QUtil::string_to_int(tgen.getValue().c_str());
1516
107k
    if (objid == 0) {
1517
247
        throw damagedPDF(offset, "object with ID 0");
1518
247
    }
1519
107k
    return {objid, generation};
1520
107k
}
1521
1522
void
1523
Objects::readObjectAtOffset(
1524
    bool try_recovery, qpdf_offset_t offset, std::string const& description, QPDFObjGen exp_og)
1525
103k
{
1526
103k
    QPDFObjGen og;
1527
103k
    setLastObjectDescription(description, exp_og);
1528
1529
103k
    if (cf.surpress_recovery()) {
1530
0
        try_recovery = false;
1531
0
    }
1532
1533
    // Special case: if offset is 0, just return null.  Some PDF writers, in particular
1534
    // "Mac OS X 10.7.5 Quartz PDFContext", may store deleted objects in the xref table as
1535
    // "0000000000 00000 n", which is not correct, but it won't hurt anything for us to ignore
1536
    // these.
1537
103k
    if (offset == 0) {
1538
176
        warn(damagedPDF(
1539
176
            -1,
1540
176
            "object has offset 0 - a common error handled correctly by qpdf and most other "
1541
176
            "applications"));
1542
176
        return;
1543
176
    }
1544
1545
103k
    try {
1546
103k
        og = read_object_start(offset);
1547
103k
        if (exp_og != og) {
1548
620
            QPDFExc e = damagedPDF(offset, "expected " + exp_og.unparse(' ') + " obj");
1549
620
            if (try_recovery) {
1550
                // Will be retried below
1551
620
                throw e;
1552
620
            } else {
1553
                // We can try reading the object anyway even if the ID doesn't match.
1554
0
                warn(e);
1555
0
            }
1556
620
        }
1557
103k
    } catch (QPDFExc& e) {
1558
4.75k
        if (!try_recovery) {
1559
0
            throw;
1560
0
        }
1561
        // Try again after reconstructing xref table
1562
4.75k
        reconstruct_xref(e);
1563
4.75k
        if (m->xref_table.contains(exp_og) && m->xref_table[exp_og].getType() == 1) {
1564
23
            qpdf_offset_t new_offset = m->xref_table[exp_og].getOffset();
1565
23
            readObjectAtOffset(false, new_offset, description, exp_og);
1566
23
            return;
1567
23
        }
1568
4.73k
        warn(damagedPDF(
1569
4.73k
            "",
1570
4.73k
            -1,
1571
4.73k
            ("object " + exp_og.unparse(' ') +
1572
4.73k
             " not found in file after regenerating cross reference table")));
1573
4.73k
        return;
1574
4.75k
    }
1575
1576
97.7k
    if (auto oh = readObject(description, og)) {
1577
        // Determine the end offset of this object before and after white space.  We use these
1578
        // numbers to validate linearization hint tables.  Offsets and lengths of objects may imply
1579
        // the end of an object to be anywhere between these values.
1580
76.6k
        qpdf_offset_t end_before_space = m->file->tell();
1581
1582
        // skip over spaces
1583
168k
        while (true) {
1584
168k
            char ch;
1585
168k
            if (!m->file->read(&ch, 1)) {
1586
798
                throw damagedPDF(m->file->tell(), "EOF after endobj");
1587
798
            }
1588
167k
            if (!isspace(static_cast<unsigned char>(ch))) {
1589
75.8k
                m->file->seek(-1, SEEK_CUR);
1590
75.8k
                break;
1591
75.8k
            }
1592
167k
        }
1593
75.8k
        m->objects.updateCache(og, oh.obj_sp(), end_before_space, m->file->tell());
1594
75.8k
    }
1595
97.7k
}
1596
1597
QPDFObjectHandle
1598
Objects::readObjectAtOffset(
1599
    qpdf_offset_t offset, std::string const& description, bool skip_cache_if_in_xref)
1600
8.90k
{
1601
8.90k
    auto og = read_object_start(offset);
1602
8.90k
    auto oh = readObject(description, og);
1603
1604
8.90k
    if (!oh || !m->objects.isUnresolved(og)) {
1605
5.22k
        return oh;
1606
5.22k
    }
1607
1608
3.67k
    if (skip_cache_if_in_xref && m->xref_table.contains(og)) {
1609
        // In the special case of the xref stream and linearization hint tables, the offset comes
1610
        // from another source. For the specific case of xref streams, the xref stream is read and
1611
        // loaded into the object cache very early in parsing. Ordinarily, when a file is updated by
1612
        // appending, items inserted into the xref table in later updates take precedence over
1613
        // earlier items. In the special case of reusing the object number previously used as the
1614
        // xref stream, we have the following order of events:
1615
        //
1616
        // * reused object gets loaded into the xref table
1617
        // * old object is read here while reading xref streams
1618
        // * original xref entry is ignored (since already in xref table)
1619
        //
1620
        // It is the second step that causes a problem. Even though the xref table is correct in
1621
        // this case, the old object is already in the cache and so effectively prevails over the
1622
        // reused object. To work around this issue, we have a special case for the xref stream (via
1623
        // the skip_cache_if_in_xref): if the object is already in the xref stream, don't cache what
1624
        // we read here.
1625
        //
1626
        // It is likely that the same bug may exist for linearization hint tables, but the existing
1627
        // code uses end_before_space and end_after_space from the cache, so fixing that would
1628
        // require more significant rework. The chances of a linearization hint stream being reused
1629
        // seems smaller because the xref stream is probably the highest object in the file and the
1630
        // linearization hint stream would be some random place in the middle, so I'm leaving that
1631
        // bug unfixed for now. If the bug were to be fixed, we could use !check_og in place of
1632
        // skip_cache_if_in_xref.
1633
14
        QTC::TC("qpdf", "QPDF skipping cache for known unchecked object");
1634
14
        return oh;
1635
14
    }
1636
1637
    // Determine the end offset of this object before and after white space.  We use these
1638
    // numbers to validate linearization hint tables.  Offsets and lengths of objects may imply
1639
    // the end of an object to be anywhere between these values.
1640
3.66k
    qpdf_offset_t end_before_space = m->file->tell();
1641
1642
    // skip over spaces
1643
6.78k
    while (true) {
1644
5.82k
        char ch;
1645
5.82k
        if (!m->file->read(&ch, 1)) {
1646
60
            throw damagedPDF(m->file->tell(), "EOF after endobj");
1647
60
        }
1648
5.76k
        if (!isspace(static_cast<unsigned char>(ch))) {
1649
2.64k
            m->file->seek(-1, SEEK_CUR);
1650
2.64k
            break;
1651
2.64k
        }
1652
5.76k
    }
1653
3.60k
    m->objects.updateCache(og, oh.obj_sp(), end_before_space, m->file->tell());
1654
1655
3.60k
    return oh;
1656
3.66k
}
1657
1658
std::shared_ptr<QPDFObject> const&
1659
Objects::resolve(QPDFObjGen og)
1660
311k
{
1661
311k
    if (!isUnresolved(og)) {
1662
0
        return m->obj_cache[og].object;
1663
0
    }
1664
1665
311k
    if (m->resolving.contains(og)) {
1666
        // This can happen if an object references itself directly or indirectly in some key that
1667
        // has to be resolved during object parsing, such as stream length.
1668
250
        warn(damagedPDF("", "loop detected resolving object " + og.unparse(' ')));
1669
250
        updateCache(og, QPDFObject::create<QPDF_Null>(), -1, -1);
1670
250
        return m->obj_cache[og].object;
1671
250
    }
1672
311k
    ResolveRecorder rr(qpdf, og);
1673
1674
311k
    if (m->xref_table.contains(og)) {
1675
254k
        QPDFXRefEntry const& entry = m->xref_table[og];
1676
254k
        try {
1677
254k
            switch (entry.getType()) {
1678
103k
            case 1:
1679
                // Object stored in cache by readObjectAtOffset
1680
103k
                readObjectAtOffset(true, entry.getOffset(), "", og);
1681
103k
                break;
1682
1683
151k
            case 2:
1684
151k
                resolveObjectsInStream(entry.getObjStreamNumber());
1685
151k
                break;
1686
1687
2
            default:
1688
2
                throw damagedPDF(
1689
2
                    "", -1, ("object " + og.unparse('/') + " has unexpected xref entry type"));
1690
254k
            }
1691
254k
        } catch (QPDFExc& e) {
1692
51.3k
            warn(e);
1693
51.3k
        } catch (std::exception& e) {
1694
940
            warn(damagedPDF(
1695
940
                "", -1, ("object " + og.unparse('/') + ": error reading object: " + e.what())));
1696
940
        }
1697
254k
    }
1698
1699
293k
    if (isUnresolved(og)) {
1700
        // PDF spec says unknown objects resolve to the null object.
1701
216k
        updateCache(og, QPDFObject::create<QPDF_Null>(), -1, -1);
1702
216k
    }
1703
1704
293k
    auto& result(m->obj_cache[og].object);
1705
293k
    result->setDefaultDescription(&qpdf, og);
1706
293k
    return result;
1707
311k
}
1708
1709
void
1710
Objects::resolveObjectsInStream(int obj_stream_number)
1711
151k
{
1712
151k
    auto damaged =
1713
151k
        [this, obj_stream_number](int id, qpdf_offset_t offset, std::string const& msg) -> QPDFExc {
1714
20.0k
        return {
1715
20.0k
            qpdf_e_damaged_pdf,
1716
20.0k
            m->file->getName() + " object stream " + std::to_string(obj_stream_number),
1717
20.0k
            +"object " + std::to_string(id) + " 0",
1718
20.0k
            offset,
1719
20.0k
            msg,
1720
20.0k
            true};
1721
20.0k
    };
1722
1723
151k
    if (m->resolved_object_streams.contains(obj_stream_number)) {
1724
117k
        return;
1725
117k
    }
1726
33.0k
    m->resolved_object_streams.insert(obj_stream_number);
1727
    // Force resolution of object stream
1728
33.0k
    Stream obj_stream = qpdf.getObject(obj_stream_number, 0);
1729
33.0k
    if (!obj_stream) {
1730
29.5k
        throw damagedPDF(
1731
29.5k
            "object " + std::to_string(obj_stream_number) + " 0",
1732
29.5k
            "supposed object stream " + std::to_string(obj_stream_number) + " is not a stream");
1733
29.5k
    }
1734
1735
    // For linearization data in the object, use the data from the object stream for the objects in
1736
    // the stream.
1737
3.49k
    QPDFObjGen stream_og(obj_stream_number, 0);
1738
3.49k
    qpdf_offset_t end_before_space = m->obj_cache[stream_og].end_before_space;
1739
3.49k
    qpdf_offset_t end_after_space = m->obj_cache[stream_og].end_after_space;
1740
1741
3.49k
    QPDFObjectHandle dict = obj_stream.getDict();
1742
3.49k
    if (!dict.isDictionaryOfType("/ObjStm")) {
1743
1.15k
        warn(damagedPDF(
1744
1.15k
            "object " + std::to_string(obj_stream_number) + " 0",
1745
1.15k
            "supposed object stream " + std::to_string(obj_stream_number) + " has wrong type"));
1746
1.15k
    }
1747
1748
3.49k
    unsigned int n{0};
1749
3.49k
    int first{0};
1750
3.49k
    if (!(dict.getKey("/N").getValueAsUInt(n) && dict.getKey("/First").getValueAsInt(first))) {
1751
415
        throw damagedPDF(
1752
415
            "object " + std::to_string(obj_stream_number) + " 0",
1753
415
            "object stream " + std::to_string(obj_stream_number) + " has incorrect keys");
1754
415
    }
1755
1756
    // id, offset, size
1757
3.08k
    std::vector<std::tuple<int, qpdf_offset_t, size_t>> offsets;
1758
1759
3.08k
    auto stream_data = obj_stream.getStreamData(qpdf_dl_specialized);
1760
1761
3.08k
    is::OffsetBuffer input("", stream_data);
1762
1763
3.08k
    const auto b_size = stream_data.size();
1764
3.08k
    const auto end_offset = static_cast<qpdf_offset_t>(b_size);
1765
3.08k
    auto b_start = stream_data.data();
1766
1767
3.08k
    if (first >= end_offset) {
1768
92
        throw damagedPDF(
1769
92
            "object " + std::to_string(obj_stream_number) + " 0",
1770
92
            "object stream " + std::to_string(obj_stream_number) + " has invalid /First entry");
1771
92
    }
1772
1773
2.99k
    int id = 0;
1774
2.99k
    long long last_offset = -1;
1775
2.99k
    bool is_first = true;
1776
62.2k
    for (unsigned int i = 0; i < n; ++i) {
1777
59.5k
        auto tnum = readToken(input);
1778
59.5k
        auto id_offset = input.getLastOffset();
1779
59.5k
        auto toffset = readToken(input);
1780
59.5k
        if (!(tnum.isInteger() && toffset.isInteger())) {
1781
208
            throw damaged(0, input.getLastOffset(), "expected integer in object stream header");
1782
208
        }
1783
1784
59.3k
        int num = QUtil::string_to_int(tnum.getValue().c_str());
1785
59.3k
        long long offset = QUtil::string_to_int(toffset.getValue().c_str());
1786
1787
59.3k
        if (num == obj_stream_number) {
1788
613
            warn(damaged(num, id_offset, "object stream claims to contain itself"));
1789
613
            continue;
1790
613
        }
1791
1792
58.6k
        if (num < 1) {
1793
942
            warn(damaged(num, id_offset, "object id is invalid"s));
1794
942
            continue;
1795
942
        }
1796
1797
57.7k
        if (offset <= last_offset) {
1798
9.86k
            warn(damaged(
1799
9.86k
                num,
1800
9.86k
                input.getLastOffset(),
1801
9.86k
                "offset " + std::to_string(offset) +
1802
9.86k
                    " is invalid (must be larger than previous offset " +
1803
9.86k
                    std::to_string(last_offset) + ")"));
1804
9.86k
            continue;
1805
9.86k
        }
1806
1807
47.8k
        if (num > m->xref_table_max_id) {
1808
2.37k
            continue;
1809
2.37k
        }
1810
1811
45.5k
        if (first + offset >= end_offset) {
1812
8.44k
            warn(damaged(
1813
8.44k
                num, input.getLastOffset(), "offset " + std::to_string(offset) + " is too large"));
1814
8.44k
            continue;
1815
8.44k
        }
1816
1817
37.0k
        if (is_first) {
1818
942
            is_first = false;
1819
36.1k
        } else {
1820
36.1k
            offsets.emplace_back(
1821
36.1k
                id, last_offset + first, static_cast<size_t>(offset - last_offset));
1822
36.1k
        }
1823
1824
37.0k
        last_offset = offset;
1825
37.0k
        id = num;
1826
37.0k
    }
1827
1828
2.78k
    if (!is_first) {
1829
        // We found at least one valid entry.
1830
769
        offsets.emplace_back(
1831
769
            id, last_offset + first, b_size - static_cast<size_t>(last_offset + first));
1832
769
    }
1833
1834
    // To avoid having to read the object stream multiple times, store all objects that would be
1835
    // found here in the cache.  Remember that some objects stored here might have been overridden
1836
    // by new objects appended to the file, so it is necessary to recheck the xref table and only
1837
    // cache what would actually be resolved here.
1838
31.2k
    for (auto const& [obj_id, obj_offset, obj_size]: offsets) {
1839
31.2k
        QPDFObjGen og(obj_id, 0);
1840
31.2k
        auto entry = m->xref_table.find(og);
1841
31.2k
        if (entry != m->xref_table.end() && entry->second.getType() == 2 &&
1842
29.4k
            entry->second.getObjStreamNumber() == obj_stream_number) {
1843
27.0k
            is::OffsetBuffer in("", {b_start + obj_offset, obj_size}, obj_offset);
1844
27.0k
            if (auto oh = Parser::parse(in, obj_stream_number, obj_id, m->tokenizer, qpdf)) {
1845
23.7k
                updateCache(og, oh.obj_sp(), end_before_space, end_after_space);
1846
23.7k
            }
1847
27.0k
        } else {
1848
4.27k
            QTC::TC("qpdf", "QPDF not caching overridden objstm object");
1849
4.27k
        }
1850
31.2k
    }
1851
2.78k
}
1852
1853
QPDFObjectHandle
1854
Objects::newIndirect(QPDFObjGen og, std::shared_ptr<QPDFObject> const& obj)
1855
3.88k
{
1856
3.88k
    obj->setDefaultDescription(&qpdf, og);
1857
3.88k
    return {obj};
1858
3.88k
}
1859
1860
void
1861
Objects::updateCache(
1862
    QPDFObjGen og,
1863
    std::shared_ptr<QPDFObject> const& object,
1864
    qpdf_offset_t end_before_space,
1865
    qpdf_offset_t end_after_space,
1866
    bool destroy)
1867
319k
{
1868
319k
    object->setObjGen(&qpdf, og);
1869
319k
    if (isCached(og)) {
1870
187k
        auto& cache = m->obj_cache[og];
1871
187k
        object->move_to(cache.object, destroy);
1872
187k
        cache.end_before_space = end_before_space;
1873
187k
        cache.end_after_space = end_after_space;
1874
187k
    } else {
1875
132k
        m->obj_cache[og] = ObjCache(object, end_before_space, end_after_space);
1876
132k
    }
1877
319k
}
1878
1879
bool
1880
Objects::isCached(QPDFObjGen og)
1881
1.14M
{
1882
1.14M
    return m->obj_cache.contains(og);
1883
1.14M
}
1884
1885
bool
1886
Objects::isUnresolved(QPDFObjGen og)
1887
822k
{
1888
822k
    return !isCached(og) || m->obj_cache[og].object->isUnresolved();
1889
822k
}
1890
1891
QPDFObjGen
1892
Objects::nextObjGen()
1893
3.89k
{
1894
3.89k
    int max_objid = toI(qpdf.getObjectCount());
1895
3.89k
    if (max_objid == std::numeric_limits<int>::max()) {
1896
1
        throw std::range_error("max object id is too high to create new objects");
1897
1
    }
1898
3.89k
    return {max_objid + 1, 0};
1899
3.89k
}
1900
1901
QPDFObjectHandle
1902
Objects::makeIndirectFromQPDFObject(std::shared_ptr<QPDFObject> const& obj)
1903
3.89k
{
1904
3.89k
    QPDFObjGen next{nextObjGen()};
1905
3.89k
    m->obj_cache[next] = ObjCache(obj, -1, -1);
1906
3.89k
    return newIndirect(next, m->obj_cache[next].object);
1907
3.89k
}
1908
1909
QPDFObjectHandle
1910
QPDF::makeIndirectObject(QPDFObjectHandle oh)
1911
3.89k
{
1912
3.89k
    if (!oh) {
1913
0
        throw std::logic_error("attempted to make an uninitialized QPDFObjectHandle indirect");
1914
0
    }
1915
3.89k
    return m->objects.makeIndirectFromQPDFObject(oh.obj_sp());
1916
3.89k
}
1917
1918
std::shared_ptr<QPDFObject>
1919
Objects::getObjectForParser(int id, int gen, bool parse_pdf)
1920
247k
{
1921
    // This method is called by the parser and therefore must not resolve any objects.
1922
247k
    auto og = QPDFObjGen(id, gen);
1923
247k
    if (auto iter = m->obj_cache.find(og); iter != m->obj_cache.end()) {
1924
89.5k
        return iter->second.object;
1925
89.5k
    }
1926
158k
    if (m->xref_table.contains(og) || (!m->parsed && og.getObj() < m->xref_table_max_id)) {
1927
145k
        return m->obj_cache.insert({og, QPDFObject::create<QPDF_Unresolved>(&qpdf, og)})
1928
145k
            .first->second.object;
1929
145k
    }
1930
13.2k
    if (parse_pdf) {
1931
13.2k
        return QPDFObject::create<QPDF_Null>();
1932
13.2k
    }
1933
0
    return m->obj_cache.insert({og, QPDFObject::create<QPDF_Null>(&qpdf, og)}).first->second.object;
1934
13.2k
}
1935
1936
std::shared_ptr<QPDFObject>
1937
Objects::getObjectForJSON(int id, int gen)
1938
0
{
1939
0
    auto og = QPDFObjGen(id, gen);
1940
0
    auto [it, inserted] = m->obj_cache.try_emplace(og);
1941
0
    auto& obj = it->second.object;
1942
0
    if (inserted) {
1943
0
        obj = (m->parsed && !m->xref_table.contains(og))
1944
0
            ? QPDFObject::create<QPDF_Null>(&qpdf, og)
1945
0
            : QPDFObject::create<QPDF_Unresolved>(&qpdf, og);
1946
0
    }
1947
0
    return obj;
1948
0
}
1949
1950
QPDFObjectHandle
1951
QPDF::getObject(QPDFObjGen og)
1952
115k
{
1953
115k
    if (auto it = m->obj_cache.find(og); it != m->obj_cache.end()) {
1954
54.8k
        return {it->second.object};
1955
60.4k
    } else if (m->parsed && !m->xref_table.contains(og)) {
1956
6.15k
        return QPDFObject::create<QPDF_Null>();
1957
54.2k
    } else {
1958
54.2k
        auto result =
1959
54.2k
            m->obj_cache.try_emplace(og, QPDFObject::create<QPDF_Unresolved>(this, og), -1, -1);
1960
54.2k
        return {result.first->second.object};
1961
54.2k
    }
1962
115k
}
1963
1964
void
1965
QPDF::replaceObject(int objid, int generation, QPDFObjectHandle oh)
1966
0
{
1967
0
    replaceObject(QPDFObjGen(objid, generation), oh);
1968
0
}
1969
1970
void
1971
QPDF::replaceObject(QPDFObjGen og, QPDFObjectHandle oh)
1972
0
{
1973
0
    if (!oh || (oh.isIndirect() && !(oh.isStream() && oh.getObjGen() == og))) {
1974
0
        throw std::logic_error("QPDF::replaceObject called with indirect object handle");
1975
0
    }
1976
0
    m->objects.updateCache(og, oh.obj_sp(), -1, -1, false);
1977
0
}
1978
1979
void
1980
QPDF::removeObject(QPDFObjGen og)
1981
18.3k
{
1982
18.3k
    m->xref_table.erase(og);
1983
18.3k
    if (auto cached = m->obj_cache.find(og); cached != m->obj_cache.end()) {
1984
        // Take care of any object handles that may be floating around.
1985
949
        cached->second.object->assign_null();
1986
949
        cached->second.object->setObjGen(nullptr, QPDFObjGen());
1987
949
        m->obj_cache.erase(cached);
1988
949
    }
1989
18.3k
}
1990
1991
void
1992
QPDF::replaceReserved(QPDFObjectHandle reserved, QPDFObjectHandle replacement)
1993
0
{
1994
0
    QTC::TC("qpdf", "QPDF replaceReserved");
1995
0
    auto tc = reserved.getTypeCode();
1996
0
    if (!(tc == ::ot_reserved || tc == ::ot_null)) {
1997
0
        throw std::logic_error("replaceReserved called with non-reserved object");
1998
0
    }
1999
0
    replaceObject(reserved.getObjGen(), replacement);
2000
0
}
2001
2002
void
2003
QPDF::swapObjects(int objid1, int generation1, int objid2, int generation2)
2004
0
{
2005
0
    swapObjects(QPDFObjGen(objid1, generation1), QPDFObjGen(objid2, generation2));
2006
0
}
2007
2008
void
2009
QPDF::swapObjects(QPDFObjGen og1, QPDFObjGen og2)
2010
0
{
2011
    // Force objects to be read from the input source if needed, then swap them in the cache.
2012
0
    m->objects.resolve(og1);
2013
0
    m->objects.resolve(og2);
2014
0
    m->obj_cache[og1].object->swapWith(m->obj_cache[og2].object);
2015
0
}
2016
2017
size_t
2018
Objects::table_size()
2019
8.25k
{
2020
    // If obj_cache is dense, accommodate all object in tables,else accommodate only original
2021
    // objects.
2022
8.25k
    auto max_xref = !m->xref_table.empty() ? m->xref_table.crbegin()->first.getObj() : 0;
2023
8.25k
    auto max_obj = !m->obj_cache.empty() ? m->obj_cache.crbegin()->first.getObj() : 0;
2024
8.25k
    auto max_id = std::numeric_limits<int>::max() - 1;
2025
8.25k
    if (max_obj >= max_id || max_xref >= max_id) {
2026
        // Temporary fix. Long-term solution is
2027
        // - QPDFObjGen to enforce objgens are valid and sensible
2028
        // - xref table and obj cache to protect against insertion of impossibly large obj ids
2029
1
        stopOnError("Impossibly large object id encountered.");
2030
1
    }
2031
8.25k
    if (max_obj < 1.1 * std::max(toI(m->obj_cache.size()), max_xref)) {
2032
7.02k
        return toS(++max_obj);
2033
7.02k
    }
2034
1.22k
    return toS(++max_xref);
2035
8.25k
}
2036
2037
std::vector<QPDFObjGen>
2038
Objects::compressible_vector()
2039
0
{
2040
0
    return compressible<QPDFObjGen>();
2041
0
}
2042
2043
std::vector<bool>
2044
Objects::compressible_set()
2045
807
{
2046
807
    return compressible<bool>();
2047
807
}
2048
2049
template <typename T>
2050
std::vector<T>
2051
Objects::compressible()
2052
807
{
2053
    // Return a list of objects that are allowed to be in object streams.  Walk through the objects
2054
    // by traversing the document from the root, including a traversal of the pages tree.  This
2055
    // makes that objects that are on the same page are more likely to be in the same object stream,
2056
    // which is slightly more efficient, particularly with linearized files.  This is better than
2057
    // iterating through the xref table since it avoids preserving orphaned items.
2058
2059
    // Exclude encryption dictionary, if any
2060
807
    QPDFObjectHandle encryption_dict = m->trailer.getKey("/Encrypt");
2061
807
    QPDFObjGen encryption_dict_og = encryption_dict.getObjGen();
2062
2063
807
    const size_t max_obj = qpdf.getObjectCount();
2064
807
    std::vector<bool> visited(max_obj, false);
2065
807
    std::vector<QPDFObjectHandle> queue;
2066
807
    queue.reserve(512);
2067
807
    queue.emplace_back(m->trailer);
2068
807
    std::vector<T> result;
2069
807
    if constexpr (std::is_same_v<T, QPDFObjGen>) {
2070
0
        result.reserve(m->obj_cache.size());
2071
807
    } else {
2072
807
        qpdf_static_expect(std::is_same_v<T, bool>);
2073
807
        result.resize(max_obj + 1U, false);
2074
807
    }
2075
834k
    while (!queue.empty()) {
2076
833k
        auto obj = queue.back();
2077
833k
        queue.pop_back();
2078
833k
        if (obj.getObjectID() > 0) {
2079
37.9k
            QPDFObjGen og = obj.getObjGen();
2080
37.9k
            const size_t id = toS(og.getObj() - 1);
2081
37.9k
            if (id >= max_obj) {
2082
0
                throw std::logic_error(
2083
0
                    "unexpected object id encountered in getCompressibleObjGens");
2084
0
            }
2085
37.9k
            if (visited[id]) {
2086
8.01k
                continue;
2087
8.01k
            }
2088
2089
            // Check whether this is the current object. If not, remove it (which changes it into a
2090
            // direct null and therefore stops us from revisiting it) and move on to the next object
2091
            // in the queue.
2092
29.9k
            auto upper = m->obj_cache.upper_bound(og);
2093
29.9k
            if (upper != m->obj_cache.end() && upper->first.getObj() == og.getObj()) {
2094
613
                qpdf.removeObject(og);
2095
613
                continue;
2096
613
            }
2097
2098
29.3k
            visited[id] = true;
2099
2100
29.3k
            if (og == encryption_dict_og) {
2101
27
                QTC::TC("qpdf", "QPDF exclude encryption dictionary");
2102
29.2k
            } else if (!(obj.isStream() ||
2103
25.7k
                         (obj.isDictionaryOfType("/Sig") && obj.hasKey("/ByteRange") &&
2104
25.7k
                          obj.hasKey("/Contents")))) {
2105
25.7k
                if constexpr (std::is_same_v<T, QPDFObjGen>) {
2106
0
                    result.push_back(og);
2107
25.7k
                } else if constexpr (std::is_same_v<T, bool>) {
2108
25.7k
                    result[id + 1U] = true;
2109
25.7k
                }
2110
25.7k
            }
2111
29.3k
        }
2112
824k
        if (obj.isStream()) {
2113
3.49k
            auto dict = obj.getDict().as_dictionary();
2114
3.49k
            auto end = dict.crend();
2115
23.3k
            for (auto iter = dict.crbegin(); iter != end; ++iter) {
2116
19.8k
                std::string const& key = iter->first;
2117
19.8k
                QPDFObjectHandle const& value = iter->second;
2118
19.8k
                if (!value.null()) {
2119
18.5k
                    if (key == "/Length") {
2120
                        // omit stream lengths
2121
3.17k
                        if (value.isIndirect()) {
2122
30
                            QTC::TC("qpdf", "QPDF exclude indirect length");
2123
30
                        }
2124
15.3k
                    } else {
2125
15.3k
                        queue.emplace_back(value);
2126
15.3k
                    }
2127
18.5k
                }
2128
19.8k
            }
2129
821k
        } else if (obj.isDictionary()) {
2130
14.5k
            auto dict = obj.as_dictionary();
2131
14.5k
            auto end = dict.crend();
2132
86.2k
            for (auto iter = dict.crbegin(); iter != end; ++iter) {
2133
71.6k
                if (!iter->second.null()) {
2134
59.5k
                    queue.emplace_back(iter->second);
2135
59.5k
                }
2136
71.6k
            }
2137
806k
        } else if (auto items = obj.as_array()) {
2138
806k
            queue.insert(queue.end(), items.crbegin(), items.crend());
2139
806k
        }
2140
824k
    }
2141
2142
807
    return result;
2143
807
}
Unexecuted instantiation: std::__1::vector<QPDFObjGen, std::__1::allocator<QPDFObjGen> > QPDF::Doc::Objects::compressible<QPDFObjGen>()
std::__1::vector<bool, std::__1::allocator<bool> > QPDF::Doc::Objects::compressible<bool>()
Line
Count
Source
2052
807
{
2053
    // Return a list of objects that are allowed to be in object streams.  Walk through the objects
2054
    // by traversing the document from the root, including a traversal of the pages tree.  This
2055
    // makes that objects that are on the same page are more likely to be in the same object stream,
2056
    // which is slightly more efficient, particularly with linearized files.  This is better than
2057
    // iterating through the xref table since it avoids preserving orphaned items.
2058
2059
    // Exclude encryption dictionary, if any
2060
807
    QPDFObjectHandle encryption_dict = m->trailer.getKey("/Encrypt");
2061
807
    QPDFObjGen encryption_dict_og = encryption_dict.getObjGen();
2062
2063
807
    const size_t max_obj = qpdf.getObjectCount();
2064
807
    std::vector<bool> visited(max_obj, false);
2065
807
    std::vector<QPDFObjectHandle> queue;
2066
807
    queue.reserve(512);
2067
807
    queue.emplace_back(m->trailer);
2068
807
    std::vector<T> result;
2069
    if constexpr (std::is_same_v<T, QPDFObjGen>) {
2070
        result.reserve(m->obj_cache.size());
2071
807
    } else {
2072
807
        qpdf_static_expect(std::is_same_v<T, bool>);
2073
807
        result.resize(max_obj + 1U, false);
2074
807
    }
2075
834k
    while (!queue.empty()) {
2076
833k
        auto obj = queue.back();
2077
833k
        queue.pop_back();
2078
833k
        if (obj.getObjectID() > 0) {
2079
37.9k
            QPDFObjGen og = obj.getObjGen();
2080
37.9k
            const size_t id = toS(og.getObj() - 1);
2081
37.9k
            if (id >= max_obj) {
2082
0
                throw std::logic_error(
2083
0
                    "unexpected object id encountered in getCompressibleObjGens");
2084
0
            }
2085
37.9k
            if (visited[id]) {
2086
8.01k
                continue;
2087
8.01k
            }
2088
2089
            // Check whether this is the current object. If not, remove it (which changes it into a
2090
            // direct null and therefore stops us from revisiting it) and move on to the next object
2091
            // in the queue.
2092
29.9k
            auto upper = m->obj_cache.upper_bound(og);
2093
29.9k
            if (upper != m->obj_cache.end() && upper->first.getObj() == og.getObj()) {
2094
613
                qpdf.removeObject(og);
2095
613
                continue;
2096
613
            }
2097
2098
29.3k
            visited[id] = true;
2099
2100
29.3k
            if (og == encryption_dict_og) {
2101
27
                QTC::TC("qpdf", "QPDF exclude encryption dictionary");
2102
29.2k
            } else if (!(obj.isStream() ||
2103
25.7k
                         (obj.isDictionaryOfType("/Sig") && obj.hasKey("/ByteRange") &&
2104
25.7k
                          obj.hasKey("/Contents")))) {
2105
                if constexpr (std::is_same_v<T, QPDFObjGen>) {
2106
                    result.push_back(og);
2107
25.7k
                } else if constexpr (std::is_same_v<T, bool>) {
2108
25.7k
                    result[id + 1U] = true;
2109
25.7k
                }
2110
25.7k
            }
2111
29.3k
        }
2112
824k
        if (obj.isStream()) {
2113
3.49k
            auto dict = obj.getDict().as_dictionary();
2114
3.49k
            auto end = dict.crend();
2115
23.3k
            for (auto iter = dict.crbegin(); iter != end; ++iter) {
2116
19.8k
                std::string const& key = iter->first;
2117
19.8k
                QPDFObjectHandle const& value = iter->second;
2118
19.8k
                if (!value.null()) {
2119
18.5k
                    if (key == "/Length") {
2120
                        // omit stream lengths
2121
3.17k
                        if (value.isIndirect()) {
2122
30
                            QTC::TC("qpdf", "QPDF exclude indirect length");
2123
30
                        }
2124
15.3k
                    } else {
2125
15.3k
                        queue.emplace_back(value);
2126
15.3k
                    }
2127
18.5k
                }
2128
19.8k
            }
2129
821k
        } else if (obj.isDictionary()) {
2130
14.5k
            auto dict = obj.as_dictionary();
2131
14.5k
            auto end = dict.crend();
2132
86.2k
            for (auto iter = dict.crbegin(); iter != end; ++iter) {
2133
71.6k
                if (!iter->second.null()) {
2134
59.5k
                    queue.emplace_back(iter->second);
2135
59.5k
                }
2136
71.6k
            }
2137
806k
        } else if (auto items = obj.as_array()) {
2138
806k
            queue.insert(queue.end(), items.crbegin(), items.crend());
2139
806k
        }
2140
824k
    }
2141
2142
807
    return result;
2143
807
}