1mod ccitt;
2mod crypt;
3pub mod filters;
4mod header;
5mod jbig2;
6mod lexer;
7mod object_parser;
8mod recovery;
9mod xref;
10
11pub use header::PdfHeader;
12pub use lexer::Lexer;
13pub use object_parser::ObjectParser;
14pub use xref::{XrefEntry, XrefTable};
15
16use std::cell::{OnceCell, RefCell};
17use std::collections::HashMap;
18use std::sync::Arc;
19use zpdf_core::{ObjectId, ParseLimits, PdfDict, PdfName, PdfObject, PdfStream, Result};
20
21struct DecodedObjStm {
24 data: Arc<[u8]>,
26 first: usize,
28 entries: Vec<(u32, usize)>,
31}
32
33pub struct PdfFile {
34 data: Arc<[u8]>,
35 pub header: PdfHeader,
36 pub xref: XrefTable,
37 pub trailer: zpdf_core::PdfDict,
38 limits: ParseLimits,
39 decryptor: Option<crypt::Decryptor>,
43 object_cache: RefCell<HashMap<ObjectId, PdfObject>>,
47 objstm_cache: RefCell<HashMap<u32, Arc<DecodedObjStm>>>,
50 repair_table: OnceCell<Option<XrefTable>>,
55}
56
57impl PdfFile {
58 pub fn parse(data: impl Into<Arc<[u8]>>) -> Result<Self> {
59 Self::parse_with_limits(data, ParseLimits::default())
60 }
61
62 pub fn parse_with_limits(data: impl Into<Arc<[u8]>>, limits: ParseLimits) -> Result<Self> {
63 Self::parse_with_password_and_limits(data, b"", limits)
64 }
65
66 pub fn parse_with_password(data: impl Into<Arc<[u8]>>, password: &[u8]) -> Result<Self> {
70 Self::parse_with_password_and_limits(data, password, ParseLimits::default())
71 }
72
73 pub fn parse_with_password_and_limits(
74 data: impl Into<Arc<[u8]>>,
75 password: &[u8],
76 limits: ParseLimits,
77 ) -> Result<Self> {
78 let data: Arc<[u8]> = data.into();
79 let header_res = header::parse_header(&data);
84
85 let normal = xref::parse_xref_and_trailer(&data, &limits);
88 let (xref, trailer) = match normal {
89 Ok((xref, trailer)) if root_resolves(&data, &xref, &trailer, &limits) => {
90 (xref, trailer)
91 }
92 other => {
93 match &other {
94 Err(e) => {
95 tracing::warn!("xref parse failed ({e}); attempting tail-scan recovery")
96 }
97 Ok(_) => {
98 tracing::warn!("xref /Root did not resolve; attempting tail-scan recovery")
99 }
100 }
101 match recovery::scan_all_objects(&data, &limits) {
102 Ok(recovered) => recovered,
103 Err(rec_err) => match other {
108 Ok(parsed) => parsed,
109 Err(_) if header_res.is_err() => return Err(zpdf_core::Error::NotAPdf),
110 Err(_) => return Err(rec_err),
111 },
112 }
113 }
114 };
115 let header = header_res.unwrap_or(PdfHeader { major: 1, minor: 7 });
119
120 let mut file = Self {
121 data,
122 header,
123 xref,
124 trailer,
125 limits,
126 decryptor: None,
127 object_cache: RefCell::new(HashMap::new()),
128 objstm_cache: RefCell::new(HashMap::new()),
129 repair_table: OnceCell::new(),
130 };
131 file.decryptor = file.build_decryptor(password)?;
135 Ok(file)
136 }
137
138 pub fn is_encrypted(&self) -> bool {
141 self.trailer.get("Encrypt").is_some()
142 }
143
144 fn build_decryptor(&self, password: &[u8]) -> Result<Option<crypt::Decryptor>> {
149 let Some(enc) = self.trailer.get("Encrypt") else {
153 return Ok(None);
154 };
155 let (enc_obj, encrypt_ref) = match enc {
156 PdfObject::Ref(r) => match self.resolve(*r) {
157 Ok(o) => (o, Some(*r)),
158 Err(_) => return Ok(None),
159 },
160 direct => (direct.clone(), None),
161 };
162 let Ok(enc_dict) = enc_obj.as_dict() else {
163 return Ok(None);
164 };
165 let id_first = self.first_id_bytes();
166 match crypt::Decryptor::from_encrypt_dict(enc_dict, &id_first, encrypt_ref, password) {
167 crypt::BuildResult::Decryptor(d) => Ok(Some(d)),
168 crypt::BuildResult::Degrade => Ok(None),
169 crypt::BuildResult::WrongPassword => Err(zpdf_core::Error::WrongPassword),
170 }
171 }
172
173 fn first_id_bytes(&self) -> Vec<u8> {
178 let arr = match self.trailer.get("ID") {
179 Some(PdfObject::Array(a)) => Some(std::borrow::Cow::Borrowed(a.as_slice())),
180 Some(PdfObject::Ref(r)) => self.resolve(*r).ok().and_then(|o| {
181 o.as_array()
182 .ok()
183 .map(|a| std::borrow::Cow::Owned(a.to_vec()))
184 }),
185 _ => None,
186 };
187 match arr.as_deref().and_then(|a| a.first()) {
188 Some(PdfObject::String(s)) => s.0.clone(),
189 _ => Vec::new(),
190 }
191 }
192
193 pub fn resolve(&self, id: zpdf_core::ObjectId) -> Result<PdfObject> {
194 self.resolve_depth(id, 0)
195 }
196
197 fn resolve_depth(&self, id: ObjectId, depth: u32) -> Result<PdfObject> {
198 const MAX_REF_CHAIN: u32 = 32;
202 if depth > MAX_REF_CHAIN {
203 tracing::warn!(
204 "indirect reference chain longer than {MAX_REF_CHAIN} at {id}; treating as null"
205 );
206 return Ok(PdfObject::Null);
207 }
208
209 if let Some(obj) = self.object_cache.borrow().get(&id) {
211 return Ok(obj.clone());
212 }
213
214 let obj = match self.xref.get(id) {
223 Some(XrefEntry::InUse { offset, .. }) => self.parse_at_offset_checked(*offset, id)?,
224 Some(XrefEntry::Compressed {
225 stream_obj,
226 index_in_stream,
227 }) => self.extract_from_object_stream(*stream_obj, *index_in_stream)?,
228 Some(XrefEntry::Free { .. }) => match self.repaired_object(id) {
229 Some(obj) => obj,
230 None => {
231 tracing::warn!("reference to free object {id}; treating as null");
232 PdfObject::Null
233 }
234 },
235 None => match self.repaired_object(id) {
236 Some(obj) => obj,
237 None => {
238 tracing::warn!("reference to missing object {id}; treating as null");
239 PdfObject::Null
240 }
241 },
242 };
243
244 let obj = match obj {
247 PdfObject::Ref(next) => self.resolve_depth(next, depth + 1)?,
248 other => other,
249 };
250
251 self.object_cache.borrow_mut().insert(id, obj.clone());
252 Ok(obj)
253 }
254
255 fn parse_at_offset_checked(&self, offset: u64, id: ObjectId) -> Result<PdfObject> {
260 let parser = ObjectParser::new(&self.data, &self.limits);
261 match parser.parse_indirect_with_id(offset as usize) {
262 Ok((pid, mut obj)) if pid == id => {
263 if let Some(dec) = &self.decryptor {
269 dec.decrypt_object(&mut obj, id);
270 }
271 Ok(obj)
272 }
273 Ok((pid, _)) => {
274 tracing::warn!("xref offset {offset} for {id} holds object {pid}; trying repair");
275 self.repaired_object(id).ok_or_else(|| {
276 zpdf_core::Error::InvalidObject(
277 offset,
278 format!("xref entry for {id} points at object {pid}"),
279 )
280 })
281 }
282 Err(e) => {
283 tracing::warn!("failed to parse {id} at xref offset {offset} ({e}); trying repair");
284 match self.repaired_object(id) {
285 Some(obj) => Ok(obj),
286 None => Err(e),
287 }
288 }
289 }
290 }
291
292 fn repaired_object(&self, id: ObjectId) -> Option<PdfObject> {
297 let table = self
298 .repair_table
299 .get_or_init(
300 || match recovery::scan_all_objects(&self.data, &self.limits) {
301 Ok((table, _trailer)) => Some(table),
302 Err(e) => {
303 tracing::warn!("repair object scan failed: {e}");
304 None
305 }
306 },
307 )
308 .as_ref()?;
309 match table.get(id)? {
310 XrefEntry::InUse { offset, .. } => {
311 let parser = ObjectParser::new(&self.data, &self.limits);
312 let (pid, mut obj) = parser.parse_indirect_with_id(*offset as usize).ok()?;
313 if pid != id {
314 return None;
315 }
316 if let Some(dec) = &self.decryptor {
317 dec.decrypt_object(&mut obj, id);
318 }
319 Some(obj)
320 }
321 XrefEntry::Compressed {
322 stream_obj,
323 index_in_stream,
324 } => self
325 .extract_from_object_stream(*stream_obj, *index_in_stream)
326 .ok(),
327 XrefEntry::Free { .. } => None,
328 }
329 }
330
331 pub fn resolve_stream_data(&self, id: zpdf_core::ObjectId) -> Result<Vec<u8>> {
336 self.resolve_stream_data_inner(id, true)
337 }
338
339 fn resolve_stream_data_inner(
340 &self,
341 id: zpdf_core::ObjectId,
342 inline_globals: bool,
343 ) -> Result<Vec<u8>> {
344 let obj = self.resolve(id)?;
345 let stream = obj.as_stream()?;
346 match self.dict_with_resolved_filters(&stream.dict, inline_globals) {
347 Some(resolved) => filters::decode_stream(&stream.data, &resolved),
348 None => filters::decode_stream(&stream.data, &stream.dict),
349 }
350 }
351
352 fn dict_with_resolved_filters(&self, dict: &PdfDict, inline_globals: bool) -> Option<PdfDict> {
359 const KEYS: [&str; 3] = ["Filter", "DecodeParms", "DP"];
360 let dict_needs_globals = |obj: &PdfObject| {
363 inline_globals
364 && matches!(obj, PdfObject::Dict(d)
365 if matches!(d.get("JBIG2Globals"), Some(PdfObject::Ref(_))))
366 };
367 let needs_resolve = |obj: &PdfObject| match obj {
368 PdfObject::Ref(_) => true,
369 PdfObject::Array(a) => a
370 .iter()
371 .any(|e| matches!(e, PdfObject::Ref(_)) || dict_needs_globals(e)),
372 other => dict_needs_globals(other),
373 };
374 if !KEYS.iter().any(|k| dict.get(k).is_some_and(needs_resolve)) {
375 return None;
376 }
377
378 let resolve_shallow = |obj: &PdfObject| match obj {
379 PdfObject::Ref(r) => self.resolve(*r).unwrap_or(PdfObject::Null),
380 other => other.clone(),
381 };
382 let inline = |obj: PdfObject| {
383 if inline_globals {
384 self.inline_jbig2_globals(obj)
385 } else {
386 obj
387 }
388 };
389 let mut out = dict.clone();
390 for key in KEYS {
391 let Some(value) = dict.get(key) else { continue };
392 let resolved = match resolve_shallow(value) {
393 PdfObject::Array(a) => {
395 PdfObject::Array(a.iter().map(resolve_shallow).map(inline).collect())
396 }
397 other => inline(other),
398 };
399 out.insert(PdfName::new(key), resolved);
400 }
401 Some(out)
402 }
403
404 fn inline_jbig2_globals(&self, obj: PdfObject) -> PdfObject {
411 let PdfObject::Dict(mut d) = obj else {
412 return obj;
413 };
414 if let Some(PdfObject::Ref(r)) = d.get("JBIG2Globals") {
415 let r = *r;
416 let value = match self.resolve_stream_data_inner(r, false) {
417 Ok(bytes) => PdfObject::String(zpdf_core::PdfString(bytes)),
418 Err(e) => {
419 tracing::warn!("failed to decode /JBIG2Globals stream {r}: {e}");
420 PdfObject::Null
421 }
422 };
423 d.insert(PdfName::new("JBIG2Globals"), value);
424 }
425 PdfObject::Dict(d)
426 }
427
428 fn extract_from_object_stream(
430 &self,
431 stream_obj_num: u32,
432 index_in_stream: u32,
433 ) -> Result<PdfObject> {
434 let objstm = self.get_or_decode_objstm(stream_obj_num)?;
435
436 let idx = index_in_stream as usize;
437 if idx >= objstm.entries.len() {
438 return Err(zpdf_core::Error::InvalidObject(
439 0,
440 format!(
441 "object stream index {idx} out of range (n={})",
442 objstm.entries.len()
443 ),
444 ));
445 }
446
447 let (_, obj_offset) = objstm.entries[idx];
448 let oob = || {
449 zpdf_core::Error::InvalidObject(0, "object stream member offset out of range".into())
450 };
451 let data_start = objstm.first.checked_add(obj_offset).ok_or_else(oob)?;
452 let data_end = if idx + 1 < objstm.entries.len() {
453 objstm
454 .first
455 .checked_add(objstm.entries[idx + 1].1)
456 .ok_or_else(oob)?
457 } else {
458 objstm.data.len()
459 };
460
461 let data_end = data_end.min(objstm.data.len());
465 if data_start > data_end {
466 return Err(zpdf_core::Error::InvalidObject(
467 0,
468 "object stream member offsets out of order".into(),
469 ));
470 }
471
472 let obj_data = &objstm.data[data_start..data_end];
473 let mut lexer = Lexer::new(obj_data, 0, &self.limits);
474 lexer.next_token()
475 }
476
477 fn get_or_decode_objstm(&self, stream_obj_num: u32) -> Result<Arc<DecodedObjStm>> {
482 if let Some(hit) = self.objstm_cache.borrow().get(&stream_obj_num) {
483 return Ok(Arc::clone(hit));
484 }
485
486 let stream_id = zpdf_core::ObjectId(stream_obj_num, 0);
487 let stream_entry = self
488 .xref
489 .get(stream_id)
490 .ok_or(zpdf_core::Error::ObjectNotFound(stream_id))?;
491 let stream_obj = match stream_entry {
492 XrefEntry::InUse { offset, .. } => {
493 let parser = ObjectParser::new(&self.data, &self.limits);
494 parser.parse_indirect_at(*offset as usize)?
495 }
496 _ => return Err(zpdf_core::Error::ObjectNotFound(stream_id)),
497 };
498
499 let stream: &PdfStream = stream_obj.as_stream()?;
500 let neg =
504 |what: &str| zpdf_core::Error::InvalidObject(0, format!("ObjStm {what} is negative"));
505 let n = usize::try_from(stream.dict.get_i64("N")?).map_err(|_| neg("/N"))?;
506 let first = usize::try_from(stream.dict.get_i64("First")?).map_err(|_| neg("/First"))?;
507
508 let raw: std::borrow::Cow<[u8]> = match &self.decryptor {
512 Some(dec) => std::borrow::Cow::Owned(
513 dec.decrypt_stream_bytes(zpdf_core::ObjectId(stream_obj_num, 0), &stream.data),
514 ),
515 None => std::borrow::Cow::Borrowed(&stream.data),
516 };
517 let decoded = filters::decode_stream(&raw, &stream.dict)?;
518
519 let header = &decoded[..first.min(decoded.len())];
522 let mut header_lexer = Lexer::new(header, 0, &self.limits);
523 let mut entries = Vec::with_capacity(n.min(header.len()));
524 for _ in 0..n {
525 let obj_num_tok = header_lexer.next_token()?;
526 let offset_tok = header_lexer.next_token()?;
527 let obj_num = u32::try_from(obj_num_tok.as_i64()?).map_err(|_| {
528 zpdf_core::Error::StreamDecode("ObjStm: object number out of range".into())
529 })?;
530 let offset = usize::try_from(offset_tok.as_i64()?).map_err(|_| {
531 zpdf_core::Error::StreamDecode("ObjStm: member offset out of range".into())
532 })?;
533 entries.push((obj_num, offset));
534 }
535
536 let decoded_arc = Arc::new(DecodedObjStm {
537 data: Arc::<[u8]>::from(decoded),
538 first,
539 entries,
540 });
541 self.objstm_cache
542 .borrow_mut()
543 .insert(stream_obj_num, Arc::clone(&decoded_arc));
544 Ok(decoded_arc)
545 }
546
547 pub fn data(&self) -> &[u8] {
548 &self.data
549 }
550
551 pub fn force_repair_scan(&self) -> Option<&XrefTable> {
555 self.repair_table
556 .get_or_init(
557 || match recovery::scan_all_objects(&self.data, &self.limits) {
558 Ok((table, _trailer)) => Some(table),
559 Err(e) => {
560 tracing::warn!("repair object scan failed: {e}");
561 None
562 }
563 },
564 )
565 .as_ref()
566 }
567
568 pub fn all_object_ids(&self) -> Vec<ObjectId> {
571 let mut ids: Vec<ObjectId> = self.xref.object_ids().collect();
572 if let Some(table) = self.force_repair_scan() {
573 ids.extend(table.object_ids());
574 }
575 ids.sort_by_key(|id| (id.0, id.1));
576 ids.dedup();
577 ids
578 }
579
580 pub fn find_objects_by_type(&self, ty: &str) -> Vec<ObjectId> {
587 let mut out = Vec::new();
588 for id in self.all_object_ids() {
589 if out.len() as u32 >= self.limits.max_objects {
590 break;
591 }
592 let obj = match self.resolve(id) {
593 Ok(PdfObject::Null) | Err(_) => self.repaired_object(id),
594 Ok(o) => Some(o),
595 };
596 let is_match = obj
597 .as_ref()
598 .and_then(|o| o.as_dict().ok())
599 .map(|d| d.get_name("Type").map(|t| t == ty).unwrap_or(false))
600 .unwrap_or(false);
601 if is_match {
602 out.push(id);
603 }
604 }
605 out
606 }
607}
608
609fn root_resolves(
617 data: &[u8],
618 xref: &XrefTable,
619 trailer: &zpdf_core::PdfDict,
620 limits: &ParseLimits,
621) -> bool {
622 let Ok(root_ref) = trailer.get_ref("Root") else {
623 return false;
624 };
625 match xref.get(root_ref) {
626 Some(XrefEntry::InUse { offset, .. }) => {
627 let parser = ObjectParser::new(data, limits);
628 matches!(
629 parser
630 .parse_indirect_at(*offset as usize)
631 .ok()
632 .and_then(|o| o
633 .as_dict()
634 .ok()
635 .map(|d| d.get_name("Type").unwrap_or("").to_string())),
636 Some(t) if t == "Catalog"
637 )
638 }
639 Some(_) => true, None => false,
641 }
642}
643
644#[cfg(test)]
645mod tests {
646 use super::*;
647
648 #[test]
652 fn objstm_header_and_slicing_math() {
653 let limits = ParseLimits::default();
654 let o10 = b"<< /Type /Catalog /Pages 2 0 R >>";
655 let o11 = b"42";
656 let header = format!("10 0 11 {} ", o10.len() + 1);
657 let first = header.len();
658 let mut decoded = header.into_bytes();
659 decoded.extend_from_slice(o10);
660 decoded.push(b' ');
661 decoded.extend_from_slice(o11);
662
663 let mut hx = Lexer::new(&decoded[..first], 0, &limits);
665 let mut entries = Vec::new();
666 for _ in 0..2 {
667 let num = hx.next_token().unwrap().as_i64().unwrap() as u32;
668 let off = hx.next_token().unwrap().as_i64().unwrap() as usize;
669 entries.push((num, off));
670 }
671 assert_eq!(entries, vec![(10, 0), (11, o10.len() + 1)]);
672
673 let (start0, end0) = (first + entries[0].1, first + entries[1].1);
675 let obj = Lexer::new(&decoded[start0..end0], 0, &limits)
676 .next_token()
677 .unwrap();
678 assert!(obj.as_dict().is_ok(), "obj 10 should lex as a dict");
679
680 let start1 = first + entries[1].1;
682 let n = Lexer::new(&decoded[start1..], 0, &limits)
683 .next_token()
684 .unwrap();
685 assert_eq!(n.as_i64().unwrap(), 42);
686 }
687
688 fn build_pdf(objects: &[(u32, &str)], root: u32) -> Vec<u8> {
692 let mut d = Vec::from(&b"%PDF-1.4\n"[..]);
693 let mut offsets = Vec::new();
694 for (num, body) in objects {
695 offsets.push((*num, d.len()));
696 d.extend_from_slice(format!("{num} 0 obj\n{body}\nendobj\n").as_bytes());
697 }
698 let xref_off = d.len();
699 d.extend_from_slice(b"xref\n0 1\n0000000000 65535 f \n");
700 for (num, off) in &offsets {
701 d.extend_from_slice(format!("{num} 1\n{off:010} 00000 n \n").as_bytes());
702 }
703 let size = objects.iter().map(|(n, _)| n + 1).max().unwrap_or(1);
704 d.extend_from_slice(
705 format!("trailer\n<< /Size {size} /Root {root} 0 R >>\nstartxref\n{xref_off}\n%%EOF\n")
706 .as_bytes(),
707 );
708 d
709 }
710
711 #[test]
712 fn dangling_ref_resolves_to_null() {
713 let pdf = build_pdf(&[(1, "<< /Type /Catalog /Pages 9 0 R >>")], 1);
716 let file = PdfFile::parse(pdf).unwrap();
717 assert_eq!(file.resolve(ObjectId(9, 0)).unwrap(), PdfObject::Null);
718 assert_eq!(file.resolve(ObjectId(9, 0)).unwrap(), PdfObject::Null);
720 }
721
722 #[test]
723 fn free_entry_resolves_to_null() {
724 let mut d = Vec::from(&b"%PDF-1.4\n"[..]);
725 let off1 = d.len();
726 d.extend_from_slice(b"1 0 obj\n<< /Type /Catalog /Pages 2 0 R >>\nendobj\n");
727 let xref_off = d.len();
728 d.extend_from_slice(b"xref\n0 1\n0000000000 65535 f \n1 1\n");
729 d.extend_from_slice(format!("{off1:010} 00000 n \n").as_bytes());
730 d.extend_from_slice(b"2 1\n0000000000 00000 f \n");
731 d.extend_from_slice(
732 format!("trailer\n<< /Size 3 /Root 1 0 R >>\nstartxref\n{xref_off}\n%%EOF\n")
733 .as_bytes(),
734 );
735
736 let file = PdfFile::parse(d).unwrap();
737 assert!(matches!(
738 file.xref.get(ObjectId(2, 0)),
739 Some(XrefEntry::Free { .. })
740 ));
741 assert_eq!(file.resolve(ObjectId(2, 0)).unwrap(), PdfObject::Null);
742 }
743
744 #[test]
745 fn header_mismatch_triggers_lazy_repair() {
746 let mut d = Vec::from(&b"%PDF-1.4\n"[..]);
749 let off1 = d.len();
750 d.extend_from_slice(b"1 0 obj\n<< /Type /Catalog /Pages 2 0 R >>\nendobj\n");
751 let off2 = d.len();
752 d.extend_from_slice(b"2 0 obj\n<< /Marker /Wrong >>\nendobj\n");
753 d.extend_from_slice(b"3 0 obj\n<< /Marker /Real >>\nendobj\n");
755 let xref_off = d.len();
756 d.extend_from_slice(b"xref\n0 1\n0000000000 65535 f \n");
757 d.extend_from_slice(format!("1 1\n{off1:010} 00000 n \n").as_bytes());
758 d.extend_from_slice(format!("2 1\n{off2:010} 00000 n \n").as_bytes());
759 d.extend_from_slice(format!("3 1\n{off2:010} 00000 n \n").as_bytes()); d.extend_from_slice(
761 format!("trailer\n<< /Size 4 /Root 1 0 R >>\nstartxref\n{xref_off}\n%%EOF\n")
762 .as_bytes(),
763 );
764
765 let file = PdfFile::parse(d).unwrap();
766 let obj = file.resolve(ObjectId(3, 0)).unwrap();
767 assert_eq!(obj.as_dict().unwrap().get_name("Marker").unwrap(), "Real");
768 let obj2 = file.resolve(ObjectId(2, 0)).unwrap();
770 assert_eq!(obj2.as_dict().unwrap().get_name("Marker").unwrap(), "Wrong");
771 }
772
773 #[test]
774 fn ref_to_ref_chain_resolves() {
775 let pdf = build_pdf(
776 &[
777 (1, "<< /Type /Catalog /Pages 2 0 R >>"),
778 (4, "5 0 R"),
779 (5, "42"),
780 ],
781 1,
782 );
783 let file = PdfFile::parse(pdf).unwrap();
784 assert_eq!(
785 file.resolve(ObjectId(4, 0)).unwrap(),
786 PdfObject::Integer(42)
787 );
788 }
789
790 #[test]
791 fn ref_cycle_resolves_to_null() {
792 let pdf = build_pdf(
795 &[
796 (1, "<< /Type /Catalog /Pages 2 0 R >>"),
797 (4, "5 0 R"),
798 (5, "4 0 R"),
799 ],
800 1,
801 );
802 let file = PdfFile::parse(pdf).unwrap();
803 assert_eq!(file.resolve(ObjectId(4, 0)).unwrap(), PdfObject::Null);
804 }
805
806 #[test]
807 fn indirect_filter_is_resolved() {
808 use flate2::write::ZlibEncoder;
809 use flate2::Compression;
810 use std::io::Write;
811
812 let payload = b"indirect filter payload";
813 let mut enc = ZlibEncoder::new(Vec::new(), Compression::default());
814 enc.write_all(payload).unwrap();
815 let compressed = enc.finish().unwrap();
816
817 let mut d = Vec::from(&b"%PDF-1.4\n"[..]);
818 let off1 = d.len();
819 d.extend_from_slice(b"1 0 obj\n<< /Type /Catalog /Pages 2 0 R >>\nendobj\n");
820 let off3 = d.len();
821 d.extend_from_slice(
822 format!(
823 "3 0 obj\n<< /Length {} /Filter 4 0 R >>\nstream\n",
824 compressed.len()
825 )
826 .as_bytes(),
827 );
828 d.extend_from_slice(&compressed);
829 d.extend_from_slice(b"\nendstream\nendobj\n");
830 let off4 = d.len();
831 d.extend_from_slice(b"4 0 obj\n/FlateDecode\nendobj\n");
832 let xref_off = d.len();
833 d.extend_from_slice(b"xref\n0 1\n0000000000 65535 f \n");
834 d.extend_from_slice(format!("1 1\n{off1:010} 00000 n \n").as_bytes());
835 d.extend_from_slice(format!("3 1\n{off3:010} 00000 n \n").as_bytes());
836 d.extend_from_slice(format!("4 1\n{off4:010} 00000 n \n").as_bytes());
837 d.extend_from_slice(
838 format!("trailer\n<< /Size 5 /Root 1 0 R >>\nstartxref\n{xref_off}\n%%EOF\n")
839 .as_bytes(),
840 );
841
842 let file = PdfFile::parse(d).unwrap();
843 let data = file.resolve_stream_data(ObjectId(3, 0)).unwrap();
844 assert_eq!(data, payload);
845 }
846
847 #[test]
853 fn jbig2_globals_stream_is_resolved_and_decoded() {
854 use flate2::write::ZlibEncoder;
855 use flate2::Compression;
856 use std::io::Write;
857
858 let globals: Vec<u8> = [
860 &[0, 0, 0, 0, 0x30, 0x00, 0x01, 0, 0, 0, 19][..], &[0, 0, 0, 8, 0, 0, 0, 2][..], &[0; 8][..], &[0x00, 0, 0][..], ]
865 .concat();
866 let mut gz = ZlibEncoder::new(Vec::new(), Compression::default());
867 gz.write_all(&globals).unwrap();
868 let globals_z = gz.finish().unwrap();
869
870 let image: Vec<u8> = [
873 &[0, 0, 0, 1, 0x26, 0x00, 0x01, 0, 0, 0, 20][..], &[0, 0, 0, 8, 0, 0, 0, 2][..], &[0, 0, 0, 0, 0, 0, 0, 0, 0x00][..], &[0x01, 0x31, 0xF8][..], ]
878 .concat();
879
880 let mut d = Vec::from(&b"%PDF-1.4\n"[..]);
881 let off1 = d.len();
882 d.extend_from_slice(b"1 0 obj\n<< /Type /Catalog /Pages 2 0 R >>\nendobj\n");
883 let off3 = d.len();
884 d.extend_from_slice(
885 format!(
886 "3 0 obj\n<< /Length {} /Filter /JBIG2Decode \
887 /DecodeParms << /JBIG2Globals 4 0 R >> >>\nstream\n",
888 image.len()
889 )
890 .as_bytes(),
891 );
892 d.extend_from_slice(&image);
893 d.extend_from_slice(b"\nendstream\nendobj\n");
894 let off4 = d.len();
895 d.extend_from_slice(
896 format!(
897 "4 0 obj\n<< /Length {} /Filter /FlateDecode >>\nstream\n",
898 globals_z.len()
899 )
900 .as_bytes(),
901 );
902 d.extend_from_slice(&globals_z);
903 d.extend_from_slice(b"\nendstream\nendobj\n");
904 let xref_off = d.len();
905 d.extend_from_slice(b"xref\n0 1\n0000000000 65535 f \n");
906 d.extend_from_slice(format!("1 1\n{off1:010} 00000 n \n").as_bytes());
907 d.extend_from_slice(format!("3 1\n{off3:010} 00000 n \n").as_bytes());
908 d.extend_from_slice(format!("4 1\n{off4:010} 00000 n \n").as_bytes());
909 d.extend_from_slice(
910 format!("trailer\n<< /Size 5 /Root 1 0 R >>\nstartxref\n{xref_off}\n%%EOF\n")
911 .as_bytes(),
912 );
913
914 let file = PdfFile::parse(d).unwrap();
915 let data = file.resolve_stream_data(ObjectId(3, 0)).unwrap();
916 assert_eq!(data, vec![0xE7, 0xE7]);
918 }
919}