PdfParser.py 34 KB

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  1. from __future__ import annotations
  2. import calendar
  3. import codecs
  4. import collections
  5. import mmap
  6. import os
  7. import re
  8. import time
  9. import zlib
  10. # see 7.9.2.2 Text String Type on page 86 and D.3 PDFDocEncoding Character Set
  11. # on page 656
  12. def encode_text(s):
  13. return codecs.BOM_UTF16_BE + s.encode("utf_16_be")
  14. PDFDocEncoding = {
  15. 0x16: "\u0017",
  16. 0x18: "\u02D8",
  17. 0x19: "\u02C7",
  18. 0x1A: "\u02C6",
  19. 0x1B: "\u02D9",
  20. 0x1C: "\u02DD",
  21. 0x1D: "\u02DB",
  22. 0x1E: "\u02DA",
  23. 0x1F: "\u02DC",
  24. 0x80: "\u2022",
  25. 0x81: "\u2020",
  26. 0x82: "\u2021",
  27. 0x83: "\u2026",
  28. 0x84: "\u2014",
  29. 0x85: "\u2013",
  30. 0x86: "\u0192",
  31. 0x87: "\u2044",
  32. 0x88: "\u2039",
  33. 0x89: "\u203A",
  34. 0x8A: "\u2212",
  35. 0x8B: "\u2030",
  36. 0x8C: "\u201E",
  37. 0x8D: "\u201C",
  38. 0x8E: "\u201D",
  39. 0x8F: "\u2018",
  40. 0x90: "\u2019",
  41. 0x91: "\u201A",
  42. 0x92: "\u2122",
  43. 0x93: "\uFB01",
  44. 0x94: "\uFB02",
  45. 0x95: "\u0141",
  46. 0x96: "\u0152",
  47. 0x97: "\u0160",
  48. 0x98: "\u0178",
  49. 0x99: "\u017D",
  50. 0x9A: "\u0131",
  51. 0x9B: "\u0142",
  52. 0x9C: "\u0153",
  53. 0x9D: "\u0161",
  54. 0x9E: "\u017E",
  55. 0xA0: "\u20AC",
  56. }
  57. def decode_text(b):
  58. if b[: len(codecs.BOM_UTF16_BE)] == codecs.BOM_UTF16_BE:
  59. return b[len(codecs.BOM_UTF16_BE) :].decode("utf_16_be")
  60. else:
  61. return "".join(PDFDocEncoding.get(byte, chr(byte)) for byte in b)
  62. class PdfFormatError(RuntimeError):
  63. """An error that probably indicates a syntactic or semantic error in the
  64. PDF file structure"""
  65. pass
  66. def check_format_condition(condition, error_message):
  67. if not condition:
  68. raise PdfFormatError(error_message)
  69. class IndirectReference(
  70. collections.namedtuple("IndirectReferenceTuple", ["object_id", "generation"])
  71. ):
  72. def __str__(self):
  73. return f"{self.object_id} {self.generation} R"
  74. def __bytes__(self):
  75. return self.__str__().encode("us-ascii")
  76. def __eq__(self, other):
  77. return (
  78. other.__class__ is self.__class__
  79. and other.object_id == self.object_id
  80. and other.generation == self.generation
  81. )
  82. def __ne__(self, other):
  83. return not (self == other)
  84. def __hash__(self):
  85. return hash((self.object_id, self.generation))
  86. class IndirectObjectDef(IndirectReference):
  87. def __str__(self):
  88. return f"{self.object_id} {self.generation} obj"
  89. class XrefTable:
  90. def __init__(self):
  91. self.existing_entries = {} # object ID => (offset, generation)
  92. self.new_entries = {} # object ID => (offset, generation)
  93. self.deleted_entries = {0: 65536} # object ID => generation
  94. self.reading_finished = False
  95. def __setitem__(self, key, value):
  96. if self.reading_finished:
  97. self.new_entries[key] = value
  98. else:
  99. self.existing_entries[key] = value
  100. if key in self.deleted_entries:
  101. del self.deleted_entries[key]
  102. def __getitem__(self, key):
  103. try:
  104. return self.new_entries[key]
  105. except KeyError:
  106. return self.existing_entries[key]
  107. def __delitem__(self, key):
  108. if key in self.new_entries:
  109. generation = self.new_entries[key][1] + 1
  110. del self.new_entries[key]
  111. self.deleted_entries[key] = generation
  112. elif key in self.existing_entries:
  113. generation = self.existing_entries[key][1] + 1
  114. self.deleted_entries[key] = generation
  115. elif key in self.deleted_entries:
  116. generation = self.deleted_entries[key]
  117. else:
  118. msg = (
  119. "object ID " + str(key) + " cannot be deleted because it doesn't exist"
  120. )
  121. raise IndexError(msg)
  122. def __contains__(self, key):
  123. return key in self.existing_entries or key in self.new_entries
  124. def __len__(self):
  125. return len(
  126. set(self.existing_entries.keys())
  127. | set(self.new_entries.keys())
  128. | set(self.deleted_entries.keys())
  129. )
  130. def keys(self):
  131. return (
  132. set(self.existing_entries.keys()) - set(self.deleted_entries.keys())
  133. ) | set(self.new_entries.keys())
  134. def write(self, f):
  135. keys = sorted(set(self.new_entries.keys()) | set(self.deleted_entries.keys()))
  136. deleted_keys = sorted(set(self.deleted_entries.keys()))
  137. startxref = f.tell()
  138. f.write(b"xref\n")
  139. while keys:
  140. # find a contiguous sequence of object IDs
  141. prev = None
  142. for index, key in enumerate(keys):
  143. if prev is None or prev + 1 == key:
  144. prev = key
  145. else:
  146. contiguous_keys = keys[:index]
  147. keys = keys[index:]
  148. break
  149. else:
  150. contiguous_keys = keys
  151. keys = None
  152. f.write(b"%d %d\n" % (contiguous_keys[0], len(contiguous_keys)))
  153. for object_id in contiguous_keys:
  154. if object_id in self.new_entries:
  155. f.write(b"%010d %05d n \n" % self.new_entries[object_id])
  156. else:
  157. this_deleted_object_id = deleted_keys.pop(0)
  158. check_format_condition(
  159. object_id == this_deleted_object_id,
  160. f"expected the next deleted object ID to be {object_id}, "
  161. f"instead found {this_deleted_object_id}",
  162. )
  163. try:
  164. next_in_linked_list = deleted_keys[0]
  165. except IndexError:
  166. next_in_linked_list = 0
  167. f.write(
  168. b"%010d %05d f \n"
  169. % (next_in_linked_list, self.deleted_entries[object_id])
  170. )
  171. return startxref
  172. class PdfName:
  173. def __init__(self, name):
  174. if isinstance(name, PdfName):
  175. self.name = name.name
  176. elif isinstance(name, bytes):
  177. self.name = name
  178. else:
  179. self.name = name.encode("us-ascii")
  180. def name_as_str(self):
  181. return self.name.decode("us-ascii")
  182. def __eq__(self, other):
  183. return (
  184. isinstance(other, PdfName) and other.name == self.name
  185. ) or other == self.name
  186. def __hash__(self):
  187. return hash(self.name)
  188. def __repr__(self):
  189. return f"PdfName({repr(self.name)})"
  190. @classmethod
  191. def from_pdf_stream(cls, data):
  192. return cls(PdfParser.interpret_name(data))
  193. allowed_chars = set(range(33, 127)) - {ord(c) for c in "#%/()<>[]{}"}
  194. def __bytes__(self):
  195. result = bytearray(b"/")
  196. for b in self.name:
  197. if b in self.allowed_chars:
  198. result.append(b)
  199. else:
  200. result.extend(b"#%02X" % b)
  201. return bytes(result)
  202. class PdfArray(list):
  203. def __bytes__(self):
  204. return b"[ " + b" ".join(pdf_repr(x) for x in self) + b" ]"
  205. class PdfDict(collections.UserDict):
  206. def __setattr__(self, key, value):
  207. if key == "data":
  208. collections.UserDict.__setattr__(self, key, value)
  209. else:
  210. self[key.encode("us-ascii")] = value
  211. def __getattr__(self, key):
  212. try:
  213. value = self[key.encode("us-ascii")]
  214. except KeyError as e:
  215. raise AttributeError(key) from e
  216. if isinstance(value, bytes):
  217. value = decode_text(value)
  218. if key.endswith("Date"):
  219. if value.startswith("D:"):
  220. value = value[2:]
  221. relationship = "Z"
  222. if len(value) > 17:
  223. relationship = value[14]
  224. offset = int(value[15:17]) * 60
  225. if len(value) > 20:
  226. offset += int(value[18:20])
  227. format = "%Y%m%d%H%M%S"[: len(value) - 2]
  228. value = time.strptime(value[: len(format) + 2], format)
  229. if relationship in ["+", "-"]:
  230. offset *= 60
  231. if relationship == "+":
  232. offset *= -1
  233. value = time.gmtime(calendar.timegm(value) + offset)
  234. return value
  235. def __bytes__(self):
  236. out = bytearray(b"<<")
  237. for key, value in self.items():
  238. if value is None:
  239. continue
  240. value = pdf_repr(value)
  241. out.extend(b"\n")
  242. out.extend(bytes(PdfName(key)))
  243. out.extend(b" ")
  244. out.extend(value)
  245. out.extend(b"\n>>")
  246. return bytes(out)
  247. class PdfBinary:
  248. def __init__(self, data):
  249. self.data = data
  250. def __bytes__(self):
  251. return b"<%s>" % b"".join(b"%02X" % b for b in self.data)
  252. class PdfStream:
  253. def __init__(self, dictionary, buf):
  254. self.dictionary = dictionary
  255. self.buf = buf
  256. def decode(self):
  257. try:
  258. filter = self.dictionary.Filter
  259. except AttributeError:
  260. return self.buf
  261. if filter == b"FlateDecode":
  262. try:
  263. expected_length = self.dictionary.DL
  264. except AttributeError:
  265. expected_length = self.dictionary.Length
  266. return zlib.decompress(self.buf, bufsize=int(expected_length))
  267. else:
  268. msg = f"stream filter {repr(self.dictionary.Filter)} unknown/unsupported"
  269. raise NotImplementedError(msg)
  270. def pdf_repr(x):
  271. if x is True:
  272. return b"true"
  273. elif x is False:
  274. return b"false"
  275. elif x is None:
  276. return b"null"
  277. elif isinstance(x, (PdfName, PdfDict, PdfArray, PdfBinary)):
  278. return bytes(x)
  279. elif isinstance(x, (int, float)):
  280. return str(x).encode("us-ascii")
  281. elif isinstance(x, time.struct_time):
  282. return b"(D:" + time.strftime("%Y%m%d%H%M%SZ", x).encode("us-ascii") + b")"
  283. elif isinstance(x, dict):
  284. return bytes(PdfDict(x))
  285. elif isinstance(x, list):
  286. return bytes(PdfArray(x))
  287. elif isinstance(x, str):
  288. return pdf_repr(encode_text(x))
  289. elif isinstance(x, bytes):
  290. # XXX escape more chars? handle binary garbage
  291. x = x.replace(b"\\", b"\\\\")
  292. x = x.replace(b"(", b"\\(")
  293. x = x.replace(b")", b"\\)")
  294. return b"(" + x + b")"
  295. else:
  296. return bytes(x)
  297. class PdfParser:
  298. """Based on
  299. https://www.adobe.com/content/dam/acom/en/devnet/acrobat/pdfs/PDF32000_2008.pdf
  300. Supports PDF up to 1.4
  301. """
  302. def __init__(self, filename=None, f=None, buf=None, start_offset=0, mode="rb"):
  303. if buf and f:
  304. msg = "specify buf or f or filename, but not both buf and f"
  305. raise RuntimeError(msg)
  306. self.filename = filename
  307. self.buf = buf
  308. self.f = f
  309. self.start_offset = start_offset
  310. self.should_close_buf = False
  311. self.should_close_file = False
  312. if filename is not None and f is None:
  313. self.f = f = open(filename, mode)
  314. self.should_close_file = True
  315. if f is not None:
  316. self.buf = buf = self.get_buf_from_file(f)
  317. self.should_close_buf = True
  318. if not filename and hasattr(f, "name"):
  319. self.filename = f.name
  320. self.cached_objects = {}
  321. if buf:
  322. self.read_pdf_info()
  323. else:
  324. self.file_size_total = self.file_size_this = 0
  325. self.root = PdfDict()
  326. self.root_ref = None
  327. self.info = PdfDict()
  328. self.info_ref = None
  329. self.page_tree_root = {}
  330. self.pages = []
  331. self.orig_pages = []
  332. self.pages_ref = None
  333. self.last_xref_section_offset = None
  334. self.trailer_dict = {}
  335. self.xref_table = XrefTable()
  336. self.xref_table.reading_finished = True
  337. if f:
  338. self.seek_end()
  339. def __enter__(self):
  340. return self
  341. def __exit__(self, exc_type, exc_value, traceback):
  342. self.close()
  343. return False # do not suppress exceptions
  344. def start_writing(self):
  345. self.close_buf()
  346. self.seek_end()
  347. def close_buf(self):
  348. try:
  349. self.buf.close()
  350. except AttributeError:
  351. pass
  352. self.buf = None
  353. def close(self):
  354. if self.should_close_buf:
  355. self.close_buf()
  356. if self.f is not None and self.should_close_file:
  357. self.f.close()
  358. self.f = None
  359. def seek_end(self):
  360. self.f.seek(0, os.SEEK_END)
  361. def write_header(self):
  362. self.f.write(b"%PDF-1.4\n")
  363. def write_comment(self, s):
  364. self.f.write(f"% {s}\n".encode())
  365. def write_catalog(self):
  366. self.del_root()
  367. self.root_ref = self.next_object_id(self.f.tell())
  368. self.pages_ref = self.next_object_id(0)
  369. self.rewrite_pages()
  370. self.write_obj(self.root_ref, Type=PdfName(b"Catalog"), Pages=self.pages_ref)
  371. self.write_obj(
  372. self.pages_ref,
  373. Type=PdfName(b"Pages"),
  374. Count=len(self.pages),
  375. Kids=self.pages,
  376. )
  377. return self.root_ref
  378. def rewrite_pages(self):
  379. pages_tree_nodes_to_delete = []
  380. for i, page_ref in enumerate(self.orig_pages):
  381. page_info = self.cached_objects[page_ref]
  382. del self.xref_table[page_ref.object_id]
  383. pages_tree_nodes_to_delete.append(page_info[PdfName(b"Parent")])
  384. if page_ref not in self.pages:
  385. # the page has been deleted
  386. continue
  387. # make dict keys into strings for passing to write_page
  388. stringified_page_info = {}
  389. for key, value in page_info.items():
  390. # key should be a PdfName
  391. stringified_page_info[key.name_as_str()] = value
  392. stringified_page_info["Parent"] = self.pages_ref
  393. new_page_ref = self.write_page(None, **stringified_page_info)
  394. for j, cur_page_ref in enumerate(self.pages):
  395. if cur_page_ref == page_ref:
  396. # replace the page reference with the new one
  397. self.pages[j] = new_page_ref
  398. # delete redundant Pages tree nodes from xref table
  399. for pages_tree_node_ref in pages_tree_nodes_to_delete:
  400. while pages_tree_node_ref:
  401. pages_tree_node = self.cached_objects[pages_tree_node_ref]
  402. if pages_tree_node_ref.object_id in self.xref_table:
  403. del self.xref_table[pages_tree_node_ref.object_id]
  404. pages_tree_node_ref = pages_tree_node.get(b"Parent", None)
  405. self.orig_pages = []
  406. def write_xref_and_trailer(self, new_root_ref=None):
  407. if new_root_ref:
  408. self.del_root()
  409. self.root_ref = new_root_ref
  410. if self.info:
  411. self.info_ref = self.write_obj(None, self.info)
  412. start_xref = self.xref_table.write(self.f)
  413. num_entries = len(self.xref_table)
  414. trailer_dict = {b"Root": self.root_ref, b"Size": num_entries}
  415. if self.last_xref_section_offset is not None:
  416. trailer_dict[b"Prev"] = self.last_xref_section_offset
  417. if self.info:
  418. trailer_dict[b"Info"] = self.info_ref
  419. self.last_xref_section_offset = start_xref
  420. self.f.write(
  421. b"trailer\n"
  422. + bytes(PdfDict(trailer_dict))
  423. + b"\nstartxref\n%d\n%%%%EOF" % start_xref
  424. )
  425. def write_page(self, ref, *objs, **dict_obj):
  426. if isinstance(ref, int):
  427. ref = self.pages[ref]
  428. if "Type" not in dict_obj:
  429. dict_obj["Type"] = PdfName(b"Page")
  430. if "Parent" not in dict_obj:
  431. dict_obj["Parent"] = self.pages_ref
  432. return self.write_obj(ref, *objs, **dict_obj)
  433. def write_obj(self, ref, *objs, **dict_obj):
  434. f = self.f
  435. if ref is None:
  436. ref = self.next_object_id(f.tell())
  437. else:
  438. self.xref_table[ref.object_id] = (f.tell(), ref.generation)
  439. f.write(bytes(IndirectObjectDef(*ref)))
  440. stream = dict_obj.pop("stream", None)
  441. if stream is not None:
  442. dict_obj["Length"] = len(stream)
  443. if dict_obj:
  444. f.write(pdf_repr(dict_obj))
  445. for obj in objs:
  446. f.write(pdf_repr(obj))
  447. if stream is not None:
  448. f.write(b"stream\n")
  449. f.write(stream)
  450. f.write(b"\nendstream\n")
  451. f.write(b"endobj\n")
  452. return ref
  453. def del_root(self):
  454. if self.root_ref is None:
  455. return
  456. del self.xref_table[self.root_ref.object_id]
  457. del self.xref_table[self.root[b"Pages"].object_id]
  458. @staticmethod
  459. def get_buf_from_file(f):
  460. if hasattr(f, "getbuffer"):
  461. return f.getbuffer()
  462. elif hasattr(f, "getvalue"):
  463. return f.getvalue()
  464. else:
  465. try:
  466. return mmap.mmap(f.fileno(), 0, access=mmap.ACCESS_READ)
  467. except ValueError: # cannot mmap an empty file
  468. return b""
  469. def read_pdf_info(self):
  470. self.file_size_total = len(self.buf)
  471. self.file_size_this = self.file_size_total - self.start_offset
  472. self.read_trailer()
  473. self.root_ref = self.trailer_dict[b"Root"]
  474. self.info_ref = self.trailer_dict.get(b"Info", None)
  475. self.root = PdfDict(self.read_indirect(self.root_ref))
  476. if self.info_ref is None:
  477. self.info = PdfDict()
  478. else:
  479. self.info = PdfDict(self.read_indirect(self.info_ref))
  480. check_format_condition(b"Type" in self.root, "/Type missing in Root")
  481. check_format_condition(
  482. self.root[b"Type"] == b"Catalog", "/Type in Root is not /Catalog"
  483. )
  484. check_format_condition(b"Pages" in self.root, "/Pages missing in Root")
  485. check_format_condition(
  486. isinstance(self.root[b"Pages"], IndirectReference),
  487. "/Pages in Root is not an indirect reference",
  488. )
  489. self.pages_ref = self.root[b"Pages"]
  490. self.page_tree_root = self.read_indirect(self.pages_ref)
  491. self.pages = self.linearize_page_tree(self.page_tree_root)
  492. # save the original list of page references
  493. # in case the user modifies, adds or deletes some pages
  494. # and we need to rewrite the pages and their list
  495. self.orig_pages = self.pages[:]
  496. def next_object_id(self, offset=None):
  497. try:
  498. # TODO: support reuse of deleted objects
  499. reference = IndirectReference(max(self.xref_table.keys()) + 1, 0)
  500. except ValueError:
  501. reference = IndirectReference(1, 0)
  502. if offset is not None:
  503. self.xref_table[reference.object_id] = (offset, 0)
  504. return reference
  505. delimiter = rb"[][()<>{}/%]"
  506. delimiter_or_ws = rb"[][()<>{}/%\000\011\012\014\015\040]"
  507. whitespace = rb"[\000\011\012\014\015\040]"
  508. whitespace_or_hex = rb"[\000\011\012\014\015\0400-9a-fA-F]"
  509. whitespace_optional = whitespace + b"*"
  510. whitespace_mandatory = whitespace + b"+"
  511. # No "\012" aka "\n" or "\015" aka "\r":
  512. whitespace_optional_no_nl = rb"[\000\011\014\040]*"
  513. newline_only = rb"[\r\n]+"
  514. newline = whitespace_optional_no_nl + newline_only + whitespace_optional_no_nl
  515. re_trailer_end = re.compile(
  516. whitespace_mandatory
  517. + rb"trailer"
  518. + whitespace_optional
  519. + rb"<<(.*>>)"
  520. + newline
  521. + rb"startxref"
  522. + newline
  523. + rb"([0-9]+)"
  524. + newline
  525. + rb"%%EOF"
  526. + whitespace_optional
  527. + rb"$",
  528. re.DOTALL,
  529. )
  530. re_trailer_prev = re.compile(
  531. whitespace_optional
  532. + rb"trailer"
  533. + whitespace_optional
  534. + rb"<<(.*?>>)"
  535. + newline
  536. + rb"startxref"
  537. + newline
  538. + rb"([0-9]+)"
  539. + newline
  540. + rb"%%EOF"
  541. + whitespace_optional,
  542. re.DOTALL,
  543. )
  544. def read_trailer(self):
  545. search_start_offset = len(self.buf) - 16384
  546. if search_start_offset < self.start_offset:
  547. search_start_offset = self.start_offset
  548. m = self.re_trailer_end.search(self.buf, search_start_offset)
  549. check_format_condition(m, "trailer end not found")
  550. # make sure we found the LAST trailer
  551. last_match = m
  552. while m:
  553. last_match = m
  554. m = self.re_trailer_end.search(self.buf, m.start() + 16)
  555. if not m:
  556. m = last_match
  557. trailer_data = m.group(1)
  558. self.last_xref_section_offset = int(m.group(2))
  559. self.trailer_dict = self.interpret_trailer(trailer_data)
  560. self.xref_table = XrefTable()
  561. self.read_xref_table(xref_section_offset=self.last_xref_section_offset)
  562. if b"Prev" in self.trailer_dict:
  563. self.read_prev_trailer(self.trailer_dict[b"Prev"])
  564. def read_prev_trailer(self, xref_section_offset):
  565. trailer_offset = self.read_xref_table(xref_section_offset=xref_section_offset)
  566. m = self.re_trailer_prev.search(
  567. self.buf[trailer_offset : trailer_offset + 16384]
  568. )
  569. check_format_condition(m, "previous trailer not found")
  570. trailer_data = m.group(1)
  571. check_format_condition(
  572. int(m.group(2)) == xref_section_offset,
  573. "xref section offset in previous trailer doesn't match what was expected",
  574. )
  575. trailer_dict = self.interpret_trailer(trailer_data)
  576. if b"Prev" in trailer_dict:
  577. self.read_prev_trailer(trailer_dict[b"Prev"])
  578. re_whitespace_optional = re.compile(whitespace_optional)
  579. re_name = re.compile(
  580. whitespace_optional
  581. + rb"/([!-$&'*-.0-;=?-Z\\^-z|~]+)(?="
  582. + delimiter_or_ws
  583. + rb")"
  584. )
  585. re_dict_start = re.compile(whitespace_optional + rb"<<")
  586. re_dict_end = re.compile(whitespace_optional + rb">>" + whitespace_optional)
  587. @classmethod
  588. def interpret_trailer(cls, trailer_data):
  589. trailer = {}
  590. offset = 0
  591. while True:
  592. m = cls.re_name.match(trailer_data, offset)
  593. if not m:
  594. m = cls.re_dict_end.match(trailer_data, offset)
  595. check_format_condition(
  596. m and m.end() == len(trailer_data),
  597. "name not found in trailer, remaining data: "
  598. + repr(trailer_data[offset:]),
  599. )
  600. break
  601. key = cls.interpret_name(m.group(1))
  602. value, offset = cls.get_value(trailer_data, m.end())
  603. trailer[key] = value
  604. check_format_condition(
  605. b"Size" in trailer and isinstance(trailer[b"Size"], int),
  606. "/Size not in trailer or not an integer",
  607. )
  608. check_format_condition(
  609. b"Root" in trailer and isinstance(trailer[b"Root"], IndirectReference),
  610. "/Root not in trailer or not an indirect reference",
  611. )
  612. return trailer
  613. re_hashes_in_name = re.compile(rb"([^#]*)(#([0-9a-fA-F]{2}))?")
  614. @classmethod
  615. def interpret_name(cls, raw, as_text=False):
  616. name = b""
  617. for m in cls.re_hashes_in_name.finditer(raw):
  618. if m.group(3):
  619. name += m.group(1) + bytearray.fromhex(m.group(3).decode("us-ascii"))
  620. else:
  621. name += m.group(1)
  622. if as_text:
  623. return name.decode("utf-8")
  624. else:
  625. return bytes(name)
  626. re_null = re.compile(whitespace_optional + rb"null(?=" + delimiter_or_ws + rb")")
  627. re_true = re.compile(whitespace_optional + rb"true(?=" + delimiter_or_ws + rb")")
  628. re_false = re.compile(whitespace_optional + rb"false(?=" + delimiter_or_ws + rb")")
  629. re_int = re.compile(
  630. whitespace_optional + rb"([-+]?[0-9]+)(?=" + delimiter_or_ws + rb")"
  631. )
  632. re_real = re.compile(
  633. whitespace_optional
  634. + rb"([-+]?([0-9]+\.[0-9]*|[0-9]*\.[0-9]+))(?="
  635. + delimiter_or_ws
  636. + rb")"
  637. )
  638. re_array_start = re.compile(whitespace_optional + rb"\[")
  639. re_array_end = re.compile(whitespace_optional + rb"]")
  640. re_string_hex = re.compile(
  641. whitespace_optional + rb"<(" + whitespace_or_hex + rb"*)>"
  642. )
  643. re_string_lit = re.compile(whitespace_optional + rb"\(")
  644. re_indirect_reference = re.compile(
  645. whitespace_optional
  646. + rb"([-+]?[0-9]+)"
  647. + whitespace_mandatory
  648. + rb"([-+]?[0-9]+)"
  649. + whitespace_mandatory
  650. + rb"R(?="
  651. + delimiter_or_ws
  652. + rb")"
  653. )
  654. re_indirect_def_start = re.compile(
  655. whitespace_optional
  656. + rb"([-+]?[0-9]+)"
  657. + whitespace_mandatory
  658. + rb"([-+]?[0-9]+)"
  659. + whitespace_mandatory
  660. + rb"obj(?="
  661. + delimiter_or_ws
  662. + rb")"
  663. )
  664. re_indirect_def_end = re.compile(
  665. whitespace_optional + rb"endobj(?=" + delimiter_or_ws + rb")"
  666. )
  667. re_comment = re.compile(
  668. rb"(" + whitespace_optional + rb"%[^\r\n]*" + newline + rb")*"
  669. )
  670. re_stream_start = re.compile(whitespace_optional + rb"stream\r?\n")
  671. re_stream_end = re.compile(
  672. whitespace_optional + rb"endstream(?=" + delimiter_or_ws + rb")"
  673. )
  674. @classmethod
  675. def get_value(cls, data, offset, expect_indirect=None, max_nesting=-1):
  676. if max_nesting == 0:
  677. return None, None
  678. m = cls.re_comment.match(data, offset)
  679. if m:
  680. offset = m.end()
  681. m = cls.re_indirect_def_start.match(data, offset)
  682. if m:
  683. check_format_condition(
  684. int(m.group(1)) > 0,
  685. "indirect object definition: object ID must be greater than 0",
  686. )
  687. check_format_condition(
  688. int(m.group(2)) >= 0,
  689. "indirect object definition: generation must be non-negative",
  690. )
  691. check_format_condition(
  692. expect_indirect is None
  693. or expect_indirect
  694. == IndirectReference(int(m.group(1)), int(m.group(2))),
  695. "indirect object definition different than expected",
  696. )
  697. object, offset = cls.get_value(data, m.end(), max_nesting=max_nesting - 1)
  698. if offset is None:
  699. return object, None
  700. m = cls.re_indirect_def_end.match(data, offset)
  701. check_format_condition(m, "indirect object definition end not found")
  702. return object, m.end()
  703. check_format_condition(
  704. not expect_indirect, "indirect object definition not found"
  705. )
  706. m = cls.re_indirect_reference.match(data, offset)
  707. if m:
  708. check_format_condition(
  709. int(m.group(1)) > 0,
  710. "indirect object reference: object ID must be greater than 0",
  711. )
  712. check_format_condition(
  713. int(m.group(2)) >= 0,
  714. "indirect object reference: generation must be non-negative",
  715. )
  716. return IndirectReference(int(m.group(1)), int(m.group(2))), m.end()
  717. m = cls.re_dict_start.match(data, offset)
  718. if m:
  719. offset = m.end()
  720. result = {}
  721. m = cls.re_dict_end.match(data, offset)
  722. while not m:
  723. key, offset = cls.get_value(data, offset, max_nesting=max_nesting - 1)
  724. if offset is None:
  725. return result, None
  726. value, offset = cls.get_value(data, offset, max_nesting=max_nesting - 1)
  727. result[key] = value
  728. if offset is None:
  729. return result, None
  730. m = cls.re_dict_end.match(data, offset)
  731. offset = m.end()
  732. m = cls.re_stream_start.match(data, offset)
  733. if m:
  734. try:
  735. stream_len = int(result[b"Length"])
  736. except (TypeError, KeyError, ValueError) as e:
  737. msg = "bad or missing Length in stream dict (%r)" % result.get(
  738. b"Length", None
  739. )
  740. raise PdfFormatError(msg) from e
  741. stream_data = data[m.end() : m.end() + stream_len]
  742. m = cls.re_stream_end.match(data, m.end() + stream_len)
  743. check_format_condition(m, "stream end not found")
  744. offset = m.end()
  745. result = PdfStream(PdfDict(result), stream_data)
  746. else:
  747. result = PdfDict(result)
  748. return result, offset
  749. m = cls.re_array_start.match(data, offset)
  750. if m:
  751. offset = m.end()
  752. result = []
  753. m = cls.re_array_end.match(data, offset)
  754. while not m:
  755. value, offset = cls.get_value(data, offset, max_nesting=max_nesting - 1)
  756. result.append(value)
  757. if offset is None:
  758. return result, None
  759. m = cls.re_array_end.match(data, offset)
  760. return result, m.end()
  761. m = cls.re_null.match(data, offset)
  762. if m:
  763. return None, m.end()
  764. m = cls.re_true.match(data, offset)
  765. if m:
  766. return True, m.end()
  767. m = cls.re_false.match(data, offset)
  768. if m:
  769. return False, m.end()
  770. m = cls.re_name.match(data, offset)
  771. if m:
  772. return PdfName(cls.interpret_name(m.group(1))), m.end()
  773. m = cls.re_int.match(data, offset)
  774. if m:
  775. return int(m.group(1)), m.end()
  776. m = cls.re_real.match(data, offset)
  777. if m:
  778. # XXX Decimal instead of float???
  779. return float(m.group(1)), m.end()
  780. m = cls.re_string_hex.match(data, offset)
  781. if m:
  782. # filter out whitespace
  783. hex_string = bytearray(
  784. b for b in m.group(1) if b in b"0123456789abcdefABCDEF"
  785. )
  786. if len(hex_string) % 2 == 1:
  787. # append a 0 if the length is not even - yes, at the end
  788. hex_string.append(ord(b"0"))
  789. return bytearray.fromhex(hex_string.decode("us-ascii")), m.end()
  790. m = cls.re_string_lit.match(data, offset)
  791. if m:
  792. return cls.get_literal_string(data, m.end())
  793. # return None, offset # fallback (only for debugging)
  794. msg = "unrecognized object: " + repr(data[offset : offset + 32])
  795. raise PdfFormatError(msg)
  796. re_lit_str_token = re.compile(
  797. rb"(\\[nrtbf()\\])|(\\[0-9]{1,3})|(\\(\r\n|\r|\n))|(\r\n|\r|\n)|(\()|(\))"
  798. )
  799. escaped_chars = {
  800. b"n": b"\n",
  801. b"r": b"\r",
  802. b"t": b"\t",
  803. b"b": b"\b",
  804. b"f": b"\f",
  805. b"(": b"(",
  806. b")": b")",
  807. b"\\": b"\\",
  808. ord(b"n"): b"\n",
  809. ord(b"r"): b"\r",
  810. ord(b"t"): b"\t",
  811. ord(b"b"): b"\b",
  812. ord(b"f"): b"\f",
  813. ord(b"("): b"(",
  814. ord(b")"): b")",
  815. ord(b"\\"): b"\\",
  816. }
  817. @classmethod
  818. def get_literal_string(cls, data, offset):
  819. nesting_depth = 0
  820. result = bytearray()
  821. for m in cls.re_lit_str_token.finditer(data, offset):
  822. result.extend(data[offset : m.start()])
  823. if m.group(1):
  824. result.extend(cls.escaped_chars[m.group(1)[1]])
  825. elif m.group(2):
  826. result.append(int(m.group(2)[1:], 8))
  827. elif m.group(3):
  828. pass
  829. elif m.group(5):
  830. result.extend(b"\n")
  831. elif m.group(6):
  832. result.extend(b"(")
  833. nesting_depth += 1
  834. elif m.group(7):
  835. if nesting_depth == 0:
  836. return bytes(result), m.end()
  837. result.extend(b")")
  838. nesting_depth -= 1
  839. offset = m.end()
  840. msg = "unfinished literal string"
  841. raise PdfFormatError(msg)
  842. re_xref_section_start = re.compile(whitespace_optional + rb"xref" + newline)
  843. re_xref_subsection_start = re.compile(
  844. whitespace_optional
  845. + rb"([0-9]+)"
  846. + whitespace_mandatory
  847. + rb"([0-9]+)"
  848. + whitespace_optional
  849. + newline_only
  850. )
  851. re_xref_entry = re.compile(rb"([0-9]{10}) ([0-9]{5}) ([fn])( \r| \n|\r\n)")
  852. def read_xref_table(self, xref_section_offset):
  853. subsection_found = False
  854. m = self.re_xref_section_start.match(
  855. self.buf, xref_section_offset + self.start_offset
  856. )
  857. check_format_condition(m, "xref section start not found")
  858. offset = m.end()
  859. while True:
  860. m = self.re_xref_subsection_start.match(self.buf, offset)
  861. if not m:
  862. check_format_condition(
  863. subsection_found, "xref subsection start not found"
  864. )
  865. break
  866. subsection_found = True
  867. offset = m.end()
  868. first_object = int(m.group(1))
  869. num_objects = int(m.group(2))
  870. for i in range(first_object, first_object + num_objects):
  871. m = self.re_xref_entry.match(self.buf, offset)
  872. check_format_condition(m, "xref entry not found")
  873. offset = m.end()
  874. is_free = m.group(3) == b"f"
  875. if not is_free:
  876. generation = int(m.group(2))
  877. new_entry = (int(m.group(1)), generation)
  878. if i not in self.xref_table:
  879. self.xref_table[i] = new_entry
  880. return offset
  881. def read_indirect(self, ref, max_nesting=-1):
  882. offset, generation = self.xref_table[ref[0]]
  883. check_format_condition(
  884. generation == ref[1],
  885. f"expected to find generation {ref[1]} for object ID {ref[0]} in xref "
  886. f"table, instead found generation {generation} at offset {offset}",
  887. )
  888. value = self.get_value(
  889. self.buf,
  890. offset + self.start_offset,
  891. expect_indirect=IndirectReference(*ref),
  892. max_nesting=max_nesting,
  893. )[0]
  894. self.cached_objects[ref] = value
  895. return value
  896. def linearize_page_tree(self, node=None):
  897. if node is None:
  898. node = self.page_tree_root
  899. check_format_condition(
  900. node[b"Type"] == b"Pages", "/Type of page tree node is not /Pages"
  901. )
  902. pages = []
  903. for kid in node[b"Kids"]:
  904. kid_object = self.read_indirect(kid)
  905. if kid_object[b"Type"] == b"Page":
  906. pages.append(kid)
  907. else:
  908. pages.extend(self.linearize_page_tree(node=kid_object))
  909. return pages