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__init__.py 21KB

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  1. #
  2. # Copyright 2024 The InfiniFlow Authors. All Rights Reserved.
  3. #
  4. # Licensed under the Apache License, Version 2.0 (the "License");
  5. # you may not use this file except in compliance with the License.
  6. # You may obtain a copy of the License at
  7. #
  8. # http://www.apache.org/licenses/LICENSE-2.0
  9. #
  10. # Unless required by applicable law or agreed to in writing, software
  11. # distributed under the License is distributed on an "AS IS" BASIS,
  12. # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  13. # See the License for the specific language governing permissions and
  14. # limitations under the License.
  15. #
  16. import logging
  17. import random
  18. from collections import Counter
  19. from rag.utils import num_tokens_from_string
  20. from . import rag_tokenizer
  21. import re
  22. import copy
  23. import roman_numbers as r
  24. from word2number import w2n
  25. from cn2an import cn2an
  26. from PIL import Image
  27. import chardet
  28. all_codecs = [
  29. 'utf-8', 'gb2312', 'gbk', 'utf_16', 'ascii', 'big5', 'big5hkscs',
  30. 'cp037', 'cp273', 'cp424', 'cp437',
  31. 'cp500', 'cp720', 'cp737', 'cp775', 'cp850', 'cp852', 'cp855', 'cp856', 'cp857',
  32. 'cp858', 'cp860', 'cp861', 'cp862', 'cp863', 'cp864', 'cp865', 'cp866', 'cp869',
  33. 'cp874', 'cp875', 'cp932', 'cp949', 'cp950', 'cp1006', 'cp1026', 'cp1125',
  34. 'cp1140', 'cp1250', 'cp1251', 'cp1252', 'cp1253', 'cp1254', 'cp1255', 'cp1256',
  35. 'cp1257', 'cp1258', 'euc_jp', 'euc_jis_2004', 'euc_jisx0213', 'euc_kr',
  36. 'gb18030', 'hz', 'iso2022_jp', 'iso2022_jp_1', 'iso2022_jp_2',
  37. 'iso2022_jp_2004', 'iso2022_jp_3', 'iso2022_jp_ext', 'iso2022_kr', 'latin_1',
  38. 'iso8859_2', 'iso8859_3', 'iso8859_4', 'iso8859_5', 'iso8859_6', 'iso8859_7',
  39. 'iso8859_8', 'iso8859_9', 'iso8859_10', 'iso8859_11', 'iso8859_13',
  40. 'iso8859_14', 'iso8859_15', 'iso8859_16', 'johab', 'koi8_r', 'koi8_t', 'koi8_u',
  41. 'kz1048', 'mac_cyrillic', 'mac_greek', 'mac_iceland', 'mac_latin2', 'mac_roman',
  42. 'mac_turkish', 'ptcp154', 'shift_jis', 'shift_jis_2004', 'shift_jisx0213',
  43. 'utf_32', 'utf_32_be', 'utf_32_le', 'utf_16_be', 'utf_16_le', 'utf_7', 'windows-1250', 'windows-1251',
  44. 'windows-1252', 'windows-1253', 'windows-1254', 'windows-1255', 'windows-1256',
  45. 'windows-1257', 'windows-1258', 'latin-2'
  46. ]
  47. def find_codec(blob):
  48. detected = chardet.detect(blob[:1024])
  49. if detected['confidence'] > 0.5:
  50. if detected['encoding'] == "ascii":
  51. return "utf-8"
  52. for c in all_codecs:
  53. try:
  54. blob[:1024].decode(c)
  55. return c
  56. except Exception:
  57. pass
  58. try:
  59. blob.decode(c)
  60. return c
  61. except Exception:
  62. pass
  63. return "utf-8"
  64. QUESTION_PATTERN = [
  65. r"第([零一二三四五六七八九十百0-9]+)问",
  66. r"第([零一二三四五六七八九十百0-9]+)条",
  67. r"[\((]([零一二三四五六七八九十百]+)[\))]",
  68. r"第([0-9]+)问",
  69. r"第([0-9]+)条",
  70. r"([0-9]{1,2})[\. 、]",
  71. r"([零一二三四五六七八九十百]+)[ 、]",
  72. r"[\((]([0-9]{1,2})[\))]",
  73. r"QUESTION (ONE|TWO|THREE|FOUR|FIVE|SIX|SEVEN|EIGHT|NINE|TEN)",
  74. r"QUESTION (I+V?|VI*|XI|IX|X)",
  75. r"QUESTION ([0-9]+)",
  76. ]
  77. def has_qbullet(reg, box, last_box, last_index, last_bull, bull_x0_list):
  78. section, last_section = box['text'], last_box['text']
  79. q_reg = r'(\w|\W)*?(?:?|\?|\n|$)+'
  80. full_reg = reg + q_reg
  81. has_bull = re.match(full_reg, section)
  82. index_str = None
  83. if has_bull:
  84. if 'x0' not in last_box:
  85. last_box['x0'] = box['x0']
  86. if 'top' not in last_box:
  87. last_box['top'] = box['top']
  88. if last_bull and box['x0'] - last_box['x0'] > 10:
  89. return None, last_index
  90. if not last_bull and box['x0'] >= last_box['x0'] and box['top'] - last_box['top'] < 20:
  91. return None, last_index
  92. avg_bull_x0 = 0
  93. if bull_x0_list:
  94. avg_bull_x0 = sum(bull_x0_list) / len(bull_x0_list)
  95. else:
  96. avg_bull_x0 = box['x0']
  97. if box['x0'] - avg_bull_x0 > 10:
  98. return None, last_index
  99. index_str = has_bull.group(1)
  100. index = index_int(index_str)
  101. if last_section[-1] == ':' or last_section[-1] == ':':
  102. return None, last_index
  103. if not last_index or index >= last_index:
  104. bull_x0_list.append(box['x0'])
  105. return has_bull, index
  106. if section[-1] == '?' or section[-1] == '?':
  107. bull_x0_list.append(box['x0'])
  108. return has_bull, index
  109. if box['layout_type'] == 'title':
  110. bull_x0_list.append(box['x0'])
  111. return has_bull, index
  112. pure_section = section.lstrip(re.match(reg, section).group()).lower()
  113. ask_reg = r'(what|when|where|how|why|which|who|whose|为什么|为啥|哪)'
  114. if re.match(ask_reg, pure_section):
  115. bull_x0_list.append(box['x0'])
  116. return has_bull, index
  117. return None, last_index
  118. def index_int(index_str):
  119. res = -1
  120. try:
  121. res = int(index_str)
  122. except ValueError:
  123. try:
  124. res = w2n.word_to_num(index_str)
  125. except ValueError:
  126. try:
  127. res = cn2an(index_str)
  128. except ValueError:
  129. try:
  130. res = r.number(index_str)
  131. except ValueError:
  132. return -1
  133. return res
  134. def qbullets_category(sections):
  135. global QUESTION_PATTERN
  136. hits = [0] * len(QUESTION_PATTERN)
  137. for i, pro in enumerate(QUESTION_PATTERN):
  138. for sec in sections:
  139. if re.match(pro, sec) and not not_bullet(sec):
  140. hits[i] += 1
  141. break
  142. maxium = 0
  143. res = -1
  144. for i, h in enumerate(hits):
  145. if h <= maxium:
  146. continue
  147. res = i
  148. maxium = h
  149. return res, QUESTION_PATTERN[res]
  150. BULLET_PATTERN = [[
  151. r"第[零一二三四五六七八九十百0-9]+(分?编|部分)",
  152. r"第[零一二三四五六七八九十百0-9]+章",
  153. r"第[零一二三四五六七八九十百0-9]+节",
  154. r"第[零一二三四五六七八九十百0-9]+条",
  155. r"[\((][零一二三四五六七八九十百]+[\))]",
  156. ], [
  157. r"第[0-9]+章",
  158. r"第[0-9]+节",
  159. r"[0-9]{,2}[\. 、]",
  160. r"[0-9]{,2}\.[0-9]{,2}[^a-zA-Z/%~-]",
  161. r"[0-9]{,2}\.[0-9]{,2}\.[0-9]{,2}",
  162. r"[0-9]{,2}\.[0-9]{,2}\.[0-9]{,2}\.[0-9]{,2}",
  163. ], [
  164. r"第[零一二三四五六七八九十百0-9]+章",
  165. r"第[零一二三四五六七八九十百0-9]+节",
  166. r"[零一二三四五六七八九十百]+[ 、]",
  167. r"[\((][零一二三四五六七八九十百]+[\))]",
  168. r"[\((][0-9]{,2}[\))]",
  169. ], [
  170. r"PART (ONE|TWO|THREE|FOUR|FIVE|SIX|SEVEN|EIGHT|NINE|TEN)",
  171. r"Chapter (I+V?|VI*|XI|IX|X)",
  172. r"Section [0-9]+",
  173. r"Article [0-9]+"
  174. ]
  175. ]
  176. def random_choices(arr, k):
  177. k = min(len(arr), k)
  178. return random.choices(arr, k=k)
  179. def not_bullet(line):
  180. patt = [
  181. r"0", r"[0-9]+ +[0-9~个只-]", r"[0-9]+\.{2,}"
  182. ]
  183. return any([re.match(r, line) for r in patt])
  184. def bullets_category(sections):
  185. global BULLET_PATTERN
  186. hits = [0] * len(BULLET_PATTERN)
  187. for i, pro in enumerate(BULLET_PATTERN):
  188. for sec in sections:
  189. for p in pro:
  190. if re.match(p, sec) and not not_bullet(sec):
  191. hits[i] += 1
  192. break
  193. maxium = 0
  194. res = -1
  195. for i, h in enumerate(hits):
  196. if h <= maxium:
  197. continue
  198. res = i
  199. maxium = h
  200. return res
  201. def is_english(texts):
  202. if not texts:
  203. return False
  204. pattern = re.compile(r"[`a-zA-Z0-9\s.,':;/\"?<>!\(\)\-]")
  205. if isinstance(texts, str):
  206. texts = list(texts)
  207. elif isinstance(texts, list):
  208. texts = [t for t in texts if isinstance(t, str) and t.strip()]
  209. else:
  210. return False
  211. if not texts:
  212. return False
  213. eng = sum(1 for t in texts if pattern.fullmatch(t.strip()))
  214. return (eng / len(texts)) > 0.8
  215. def is_chinese(text):
  216. if not text:
  217. return False
  218. chinese = 0
  219. for ch in text:
  220. if '\u4e00' <= ch <= '\u9fff':
  221. chinese += 1
  222. if chinese / len(text) > 0.2:
  223. return True
  224. return False
  225. def tokenize(d, t, eng):
  226. d["content_with_weight"] = t
  227. t = re.sub(r"</?(table|td|caption|tr|th)( [^<>]{0,12})?>", " ", t)
  228. d["content_ltks"] = rag_tokenizer.tokenize(t)
  229. d["content_sm_ltks"] = rag_tokenizer.fine_grained_tokenize(d["content_ltks"])
  230. def tokenize_chunks(chunks, doc, eng, pdf_parser=None):
  231. res = []
  232. # wrap up as es documents
  233. for ii, ck in enumerate(chunks):
  234. if len(ck.strip()) == 0:
  235. continue
  236. logging.debug("-- {}".format(ck))
  237. d = copy.deepcopy(doc)
  238. if pdf_parser:
  239. try:
  240. d["image"], poss = pdf_parser.crop(ck, need_position=True)
  241. add_positions(d, poss)
  242. ck = pdf_parser.remove_tag(ck)
  243. except NotImplementedError:
  244. pass
  245. else:
  246. add_positions(d, [[ii]*5])
  247. tokenize(d, ck, eng)
  248. res.append(d)
  249. return res
  250. def tokenize_chunks_with_images(chunks, doc, eng, images):
  251. res = []
  252. # wrap up as es documents
  253. for ii, (ck, image) in enumerate(zip(chunks, images)):
  254. if len(ck.strip()) == 0:
  255. continue
  256. logging.debug("-- {}".format(ck))
  257. d = copy.deepcopy(doc)
  258. d["image"] = image
  259. add_positions(d, [[ii]*5])
  260. tokenize(d, ck, eng)
  261. res.append(d)
  262. return res
  263. def tokenize_table(tbls, doc, eng, batch_size=10):
  264. res = []
  265. # add tables
  266. for (img, rows), poss in tbls:
  267. if not rows:
  268. continue
  269. if isinstance(rows, str):
  270. d = copy.deepcopy(doc)
  271. tokenize(d, rows, eng)
  272. d["content_with_weight"] = rows
  273. if img:
  274. d["image"] = img
  275. d["doc_type_kwd"] = "image"
  276. if poss:
  277. add_positions(d, poss)
  278. res.append(d)
  279. continue
  280. de = "; " if eng else "; "
  281. for i in range(0, len(rows), batch_size):
  282. d = copy.deepcopy(doc)
  283. r = de.join(rows[i:i + batch_size])
  284. tokenize(d, r, eng)
  285. if img:
  286. d["image"] = img
  287. d["doc_type_kwd"] = "image"
  288. add_positions(d, poss)
  289. res.append(d)
  290. return res
  291. def add_positions(d, poss):
  292. if not poss:
  293. return
  294. page_num_int = []
  295. position_int = []
  296. top_int = []
  297. for pn, left, right, top, bottom in poss:
  298. page_num_int.append(int(pn + 1))
  299. top_int.append(int(top))
  300. position_int.append((int(pn + 1), int(left), int(right), int(top), int(bottom)))
  301. d["page_num_int"] = page_num_int
  302. d["position_int"] = position_int
  303. d["top_int"] = top_int
  304. def remove_contents_table(sections, eng=False):
  305. i = 0
  306. while i < len(sections):
  307. def get(i):
  308. nonlocal sections
  309. return (sections[i] if isinstance(sections[i],
  310. type("")) else sections[i][0]).strip()
  311. if not re.match(r"(contents|目录|目次|table of contents|致谢|acknowledge)$",
  312. re.sub(r"( | |\u3000)+", "", get(i).split("@@")[0], flags=re.IGNORECASE)):
  313. i += 1
  314. continue
  315. sections.pop(i)
  316. if i >= len(sections):
  317. break
  318. prefix = get(i)[:3] if not eng else " ".join(get(i).split()[:2])
  319. while not prefix:
  320. sections.pop(i)
  321. if i >= len(sections):
  322. break
  323. prefix = get(i)[:3] if not eng else " ".join(get(i).split()[:2])
  324. sections.pop(i)
  325. if i >= len(sections) or not prefix:
  326. break
  327. for j in range(i, min(i + 128, len(sections))):
  328. if not re.match(prefix, get(j)):
  329. continue
  330. for _ in range(i, j):
  331. sections.pop(i)
  332. break
  333. def make_colon_as_title(sections):
  334. if not sections:
  335. return []
  336. if isinstance(sections[0], type("")):
  337. return sections
  338. i = 0
  339. while i < len(sections):
  340. txt, layout = sections[i]
  341. i += 1
  342. txt = txt.split("@")[0].strip()
  343. if not txt:
  344. continue
  345. if txt[-1] not in "::":
  346. continue
  347. txt = txt[::-1]
  348. arr = re.split(r"([。?!!?;;]| \.)", txt)
  349. if len(arr) < 2 or len(arr[1]) < 32:
  350. continue
  351. sections.insert(i - 1, (arr[0][::-1], "title"))
  352. i += 1
  353. def title_frequency(bull, sections):
  354. bullets_size = len(BULLET_PATTERN[bull])
  355. levels = [bullets_size + 1 for _ in range(len(sections))]
  356. if not sections or bull < 0:
  357. return bullets_size + 1, levels
  358. for i, (txt, layout) in enumerate(sections):
  359. for j, p in enumerate(BULLET_PATTERN[bull]):
  360. if re.match(p, txt.strip()) and not not_bullet(txt):
  361. levels[i] = j
  362. break
  363. else:
  364. if re.search(r"(title|head)", layout) and not not_title(txt.split("@")[0]):
  365. levels[i] = bullets_size
  366. most_level = bullets_size + 1
  367. for level, c in sorted(Counter(levels).items(), key=lambda x: x[1] * -1):
  368. if level <= bullets_size:
  369. most_level = level
  370. break
  371. return most_level, levels
  372. def not_title(txt):
  373. if re.match(r"第[零一二三四五六七八九十百0-9]+条", txt):
  374. return False
  375. if len(txt.split()) > 12 or (txt.find(" ") < 0 and len(txt) >= 32):
  376. return True
  377. return re.search(r"[,;,。;!!]", txt)
  378. def hierarchical_merge(bull, sections, depth):
  379. if not sections or bull < 0:
  380. return []
  381. if isinstance(sections[0], type("")):
  382. sections = [(s, "") for s in sections]
  383. sections = [(t, o) for t, o in sections if
  384. t and len(t.split("@")[0].strip()) > 1 and not re.match(r"[0-9]+$", t.split("@")[0].strip())]
  385. bullets_size = len(BULLET_PATTERN[bull])
  386. levels = [[] for _ in range(bullets_size + 2)]
  387. for i, (txt, layout) in enumerate(sections):
  388. for j, p in enumerate(BULLET_PATTERN[bull]):
  389. if re.match(p, txt.strip()):
  390. levels[j].append(i)
  391. break
  392. else:
  393. if re.search(r"(title|head)", layout) and not not_title(txt):
  394. levels[bullets_size].append(i)
  395. else:
  396. levels[bullets_size + 1].append(i)
  397. sections = [t for t, _ in sections]
  398. # for s in sections: print("--", s)
  399. def binary_search(arr, target):
  400. if not arr:
  401. return -1
  402. if target > arr[-1]:
  403. return len(arr) - 1
  404. if target < arr[0]:
  405. return -1
  406. s, e = 0, len(arr)
  407. while e - s > 1:
  408. i = (e + s) // 2
  409. if target > arr[i]:
  410. s = i
  411. continue
  412. elif target < arr[i]:
  413. e = i
  414. continue
  415. else:
  416. assert False
  417. return s
  418. cks = []
  419. readed = [False] * len(sections)
  420. levels = levels[::-1]
  421. for i, arr in enumerate(levels[:depth]):
  422. for j in arr:
  423. if readed[j]:
  424. continue
  425. readed[j] = True
  426. cks.append([j])
  427. if i + 1 == len(levels) - 1:
  428. continue
  429. for ii in range(i + 1, len(levels)):
  430. jj = binary_search(levels[ii], j)
  431. if jj < 0:
  432. continue
  433. if levels[ii][jj] > cks[-1][-1]:
  434. cks[-1].pop(-1)
  435. cks[-1].append(levels[ii][jj])
  436. for ii in cks[-1]:
  437. readed[ii] = True
  438. if not cks:
  439. return cks
  440. for i in range(len(cks)):
  441. cks[i] = [sections[j] for j in cks[i][::-1]]
  442. logging.debug("\n* ".join(cks[i]))
  443. res = [[]]
  444. num = [0]
  445. for ck in cks:
  446. if len(ck) == 1:
  447. n = num_tokens_from_string(re.sub(r"@@[0-9]+.*", "", ck[0]))
  448. if n + num[-1] < 218:
  449. res[-1].append(ck[0])
  450. num[-1] += n
  451. continue
  452. res.append(ck)
  453. num.append(n)
  454. continue
  455. res.append(ck)
  456. num.append(218)
  457. return res
  458. def naive_merge(sections, chunk_token_num=128, delimiter="\n。;!?"):
  459. if not sections:
  460. return []
  461. if isinstance(sections[0], type("")):
  462. sections = [(s, "") for s in sections]
  463. cks = [""]
  464. tk_nums = [0]
  465. def add_chunk(t, pos):
  466. nonlocal cks, tk_nums, delimiter
  467. tnum = num_tokens_from_string(t)
  468. if not pos:
  469. pos = ""
  470. if tnum < 8:
  471. pos = ""
  472. # Ensure that the length of the merged chunk does not exceed chunk_token_num
  473. if cks[-1] == "" or tk_nums[-1] > chunk_token_num:
  474. if t.find(pos) < 0:
  475. t += pos
  476. cks.append(t)
  477. tk_nums.append(tnum)
  478. else:
  479. if cks[-1].find(pos) < 0:
  480. t += pos
  481. cks[-1] += t
  482. tk_nums[-1] += tnum
  483. dels = get_delimiters(delimiter)
  484. for sec, pos in sections:
  485. splited_sec = re.split(r"(%s)" % dels, sec)
  486. for sub_sec in splited_sec:
  487. if re.match(f"^{dels}$", sub_sec):
  488. continue
  489. add_chunk(sub_sec, pos)
  490. return cks
  491. def naive_merge_with_images(texts, images, chunk_token_num=128, delimiter="\n。;!?"):
  492. if not texts or len(texts) != len(images):
  493. return [], []
  494. # Enuser texts is str not tuple, if it is tuple, convert to str (get the first item)
  495. if isinstance(texts[0], tuple):
  496. texts = [t[0] for t in texts]
  497. cks = [""]
  498. result_images = [None]
  499. tk_nums = [0]
  500. def add_chunk(t, image, pos=""):
  501. nonlocal cks, result_images, tk_nums, delimiter
  502. tnum = num_tokens_from_string(t)
  503. if not pos:
  504. pos = ""
  505. if tnum < 8:
  506. pos = ""
  507. # Ensure that the length of the merged chunk does not exceed chunk_token_num
  508. if cks[-1] == "" or tk_nums[-1] > chunk_token_num:
  509. if t.find(pos) < 0:
  510. t += pos
  511. cks.append(t)
  512. result_images.append(image)
  513. tk_nums.append(tnum)
  514. else:
  515. if cks[-1].find(pos) < 0:
  516. t += pos
  517. cks[-1] += t
  518. if result_images[-1] is None:
  519. result_images[-1] = image
  520. else:
  521. result_images[-1] = concat_img(result_images[-1], image)
  522. tk_nums[-1] += tnum
  523. dels = get_delimiters(delimiter)
  524. for text, image in zip(texts, images):
  525. splited_sec = re.split(r"(%s)" % dels, text)
  526. for sub_sec in splited_sec:
  527. if re.match(f"^{dels}$", sub_sec):
  528. continue
  529. add_chunk(text, image)
  530. return cks, result_images
  531. def docx_question_level(p, bull=-1):
  532. txt = re.sub(r"\u3000", " ", p.text).strip()
  533. if p.style.name.startswith('Heading'):
  534. return int(p.style.name.split(' ')[-1]), txt
  535. else:
  536. if bull < 0:
  537. return 0, txt
  538. for j, title in enumerate(BULLET_PATTERN[bull]):
  539. if re.match(title, txt):
  540. return j + 1, txt
  541. return len(BULLET_PATTERN[bull]), txt
  542. def concat_img(img1, img2):
  543. if img1 and not img2:
  544. return img1
  545. if not img1 and img2:
  546. return img2
  547. if not img1 and not img2:
  548. return None
  549. width1, height1 = img1.size
  550. width2, height2 = img2.size
  551. new_width = max(width1, width2)
  552. new_height = height1 + height2
  553. new_image = Image.new('RGB', (new_width, new_height))
  554. new_image.paste(img1, (0, 0))
  555. new_image.paste(img2, (0, height1))
  556. return new_image
  557. def naive_merge_docx(sections, chunk_token_num=128, delimiter="\n。;!?"):
  558. if not sections:
  559. return [], []
  560. cks = [""]
  561. images = [None]
  562. tk_nums = [0]
  563. def add_chunk(t, image, pos=""):
  564. nonlocal cks, tk_nums, delimiter
  565. tnum = num_tokens_from_string(t)
  566. if tnum < 8:
  567. pos = ""
  568. if cks[-1] == "" or tk_nums[-1] > chunk_token_num:
  569. if t.find(pos) < 0:
  570. t += pos
  571. cks.append(t)
  572. images.append(image)
  573. tk_nums.append(tnum)
  574. else:
  575. if cks[-1].find(pos) < 0:
  576. t += pos
  577. cks[-1] += t
  578. images[-1] = concat_img(images[-1], image)
  579. tk_nums[-1] += tnum
  580. dels = get_delimiters(delimiter)
  581. for sec, image in sections:
  582. splited_sec = re.split(r"(%s)" % dels, sec)
  583. for sub_sec in splited_sec:
  584. if re.match(f"^{dels}$", sub_sec):
  585. continue
  586. add_chunk(sub_sec, image,"")
  587. return cks, images
  588. def extract_between(text: str, start_tag: str, end_tag: str) -> list[str]:
  589. pattern = re.escape(start_tag) + r"(.*?)" + re.escape(end_tag)
  590. return re.findall(pattern, text, flags=re.DOTALL)
  591. def get_delimiters(delimiters: str):
  592. dels = []
  593. s = 0
  594. for m in re.finditer(r"`([^`]+)`", delimiters, re.I):
  595. f, t = m.span()
  596. dels.append(m.group(1))
  597. dels.extend(list(delimiters[s: f]))
  598. s = t
  599. if s < len(delimiters):
  600. dels.extend(list(delimiters[s:]))
  601. dels.sort(key=lambda x: -len(x))
  602. dels = [re.escape(d) for d in dels if d]
  603. dels = [d for d in dels if d]
  604. dels_pattern = "|".join(dels)
  605. return dels_pattern