web_reader_tool.py 12 KB

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  1. import hashlib
  2. import json
  3. import os
  4. import re
  5. import site
  6. import subprocess
  7. import tempfile
  8. import unicodedata
  9. from contextlib import contextmanager
  10. import requests
  11. from bs4 import BeautifulSoup, CData, Comment, NavigableString
  12. from newspaper import Article
  13. from regex import regex
  14. from core.rag.extractor import extract_processor
  15. from core.rag.extractor.extract_processor import ExtractProcessor
  16. FULL_TEMPLATE = """
  17. TITLE: {title}
  18. AUTHORS: {authors}
  19. PUBLISH DATE: {publish_date}
  20. TOP_IMAGE_URL: {top_image}
  21. TEXT:
  22. {text}
  23. """
  24. def page_result(text: str, cursor: int, max_length: int) -> str:
  25. """Page through `text` and return a substring of `max_length` characters starting from `cursor`."""
  26. return text[cursor: cursor + max_length]
  27. def get_url(url: str, user_agent: str = None) -> str:
  28. """Fetch URL and return the contents as a string."""
  29. headers = {
  30. "User-Agent": "Mozilla/5.0 (Windows NT 10.0; Win64; x64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/91.0.4472.124 Safari/537.36"
  31. }
  32. if user_agent:
  33. headers["User-Agent"] = user_agent
  34. supported_content_types = extract_processor.SUPPORT_URL_CONTENT_TYPES + ["text/html"]
  35. head_response = requests.head(url, headers=headers, allow_redirects=True, timeout=(5, 10))
  36. if head_response.status_code != 200:
  37. return "URL returned status code {}.".format(head_response.status_code)
  38. # check content-type
  39. main_content_type = head_response.headers.get('Content-Type').split(';')[0].strip()
  40. if main_content_type not in supported_content_types:
  41. return "Unsupported content-type [{}] of URL.".format(main_content_type)
  42. if main_content_type in extract_processor.SUPPORT_URL_CONTENT_TYPES:
  43. return ExtractProcessor.load_from_url(url, return_text=True)
  44. response = requests.get(url, headers=headers, allow_redirects=True, timeout=(5, 30))
  45. a = extract_using_readabilipy(response.text)
  46. if not a['plain_text'] or not a['plain_text'].strip():
  47. return get_url_from_newspaper3k(url)
  48. res = FULL_TEMPLATE.format(
  49. title=a['title'],
  50. authors=a['byline'],
  51. publish_date=a['date'],
  52. top_image="",
  53. text=a['plain_text'] if a['plain_text'] else "",
  54. )
  55. return res
  56. def get_url_from_newspaper3k(url: str) -> str:
  57. a = Article(url)
  58. a.download()
  59. a.parse()
  60. res = FULL_TEMPLATE.format(
  61. title=a.title,
  62. authors=a.authors,
  63. publish_date=a.publish_date,
  64. top_image=a.top_image,
  65. text=a.text,
  66. )
  67. return res
  68. def extract_using_readabilipy(html):
  69. with tempfile.NamedTemporaryFile(delete=False, mode='w+') as f_html:
  70. f_html.write(html)
  71. f_html.close()
  72. html_path = f_html.name
  73. # Call Mozilla's Readability.js Readability.parse() function via node, writing output to a temporary file
  74. article_json_path = html_path + ".json"
  75. jsdir = os.path.join(find_module_path('readabilipy'), 'javascript')
  76. with chdir(jsdir):
  77. subprocess.check_call(["node", "ExtractArticle.js", "-i", html_path, "-o", article_json_path])
  78. # Read output of call to Readability.parse() from JSON file and return as Python dictionary
  79. with open(article_json_path, encoding="utf-8") as json_file:
  80. input_json = json.loads(json_file.read())
  81. # Deleting files after processing
  82. os.unlink(article_json_path)
  83. os.unlink(html_path)
  84. article_json = {
  85. "title": None,
  86. "byline": None,
  87. "date": None,
  88. "content": None,
  89. "plain_content": None,
  90. "plain_text": None
  91. }
  92. # Populate article fields from readability fields where present
  93. if input_json:
  94. if "title" in input_json and input_json["title"]:
  95. article_json["title"] = input_json["title"]
  96. if "byline" in input_json and input_json["byline"]:
  97. article_json["byline"] = input_json["byline"]
  98. if "date" in input_json and input_json["date"]:
  99. article_json["date"] = input_json["date"]
  100. if "content" in input_json and input_json["content"]:
  101. article_json["content"] = input_json["content"]
  102. article_json["plain_content"] = plain_content(article_json["content"], False, False)
  103. article_json["plain_text"] = extract_text_blocks_as_plain_text(article_json["plain_content"])
  104. if "textContent" in input_json and input_json["textContent"]:
  105. article_json["plain_text"] = input_json["textContent"]
  106. article_json["plain_text"] = re.sub(r'\n\s*\n', '\n', article_json["plain_text"])
  107. return article_json
  108. def find_module_path(module_name):
  109. for package_path in site.getsitepackages():
  110. potential_path = os.path.join(package_path, module_name)
  111. if os.path.exists(potential_path):
  112. return potential_path
  113. return None
  114. @contextmanager
  115. def chdir(path):
  116. """Change directory in context and return to original on exit"""
  117. # From https://stackoverflow.com/a/37996581, couldn't find a built-in
  118. original_path = os.getcwd()
  119. os.chdir(path)
  120. try:
  121. yield
  122. finally:
  123. os.chdir(original_path)
  124. def extract_text_blocks_as_plain_text(paragraph_html):
  125. # Load article as DOM
  126. soup = BeautifulSoup(paragraph_html, 'html.parser')
  127. # Select all lists
  128. list_elements = soup.find_all(['ul', 'ol'])
  129. # Prefix text in all list items with "* " and make lists paragraphs
  130. for list_element in list_elements:
  131. plain_items = "".join(list(filter(None, [plain_text_leaf_node(li)["text"] for li in list_element.find_all('li')])))
  132. list_element.string = plain_items
  133. list_element.name = "p"
  134. # Select all text blocks
  135. text_blocks = [s.parent for s in soup.find_all(string=True)]
  136. text_blocks = [plain_text_leaf_node(block) for block in text_blocks]
  137. # Drop empty paragraphs
  138. text_blocks = list(filter(lambda p: p["text"] is not None, text_blocks))
  139. return text_blocks
  140. def plain_text_leaf_node(element):
  141. # Extract all text, stripped of any child HTML elements and normalise it
  142. plain_text = normalise_text(element.get_text())
  143. if plain_text != "" and element.name == "li":
  144. plain_text = "* {}, ".format(plain_text)
  145. if plain_text == "":
  146. plain_text = None
  147. if "data-node-index" in element.attrs:
  148. plain = {"node_index": element["data-node-index"], "text": plain_text}
  149. else:
  150. plain = {"text": plain_text}
  151. return plain
  152. def plain_content(readability_content, content_digests, node_indexes):
  153. # Load article as DOM
  154. soup = BeautifulSoup(readability_content, 'html.parser')
  155. # Make all elements plain
  156. elements = plain_elements(soup.contents, content_digests, node_indexes)
  157. if node_indexes:
  158. # Add node index attributes to nodes
  159. elements = [add_node_indexes(element) for element in elements]
  160. # Replace article contents with plain elements
  161. soup.contents = elements
  162. return str(soup)
  163. def plain_elements(elements, content_digests, node_indexes):
  164. # Get plain content versions of all elements
  165. elements = [plain_element(element, content_digests, node_indexes)
  166. for element in elements]
  167. if content_digests:
  168. # Add content digest attribute to nodes
  169. elements = [add_content_digest(element) for element in elements]
  170. return elements
  171. def plain_element(element, content_digests, node_indexes):
  172. # For lists, we make each item plain text
  173. if is_leaf(element):
  174. # For leaf node elements, extract the text content, discarding any HTML tags
  175. # 1. Get element contents as text
  176. plain_text = element.get_text()
  177. # 2. Normalise the extracted text string to a canonical representation
  178. plain_text = normalise_text(plain_text)
  179. # 3. Update element content to be plain text
  180. element.string = plain_text
  181. elif is_text(element):
  182. if is_non_printing(element):
  183. # The simplified HTML may have come from Readability.js so might
  184. # have non-printing text (e.g. Comment or CData). In this case, we
  185. # keep the structure, but ensure that the string is empty.
  186. element = type(element)("")
  187. else:
  188. plain_text = element.string
  189. plain_text = normalise_text(plain_text)
  190. element = type(element)(plain_text)
  191. else:
  192. # If not a leaf node or leaf type call recursively on child nodes, replacing
  193. element.contents = plain_elements(element.contents, content_digests, node_indexes)
  194. return element
  195. def add_node_indexes(element, node_index="0"):
  196. # Can't add attributes to string types
  197. if is_text(element):
  198. return element
  199. # Add index to current element
  200. element["data-node-index"] = node_index
  201. # Add index to child elements
  202. for local_idx, child in enumerate(
  203. [c for c in element.contents if not is_text(c)], start=1):
  204. # Can't add attributes to leaf string types
  205. child_index = "{stem}.{local}".format(
  206. stem=node_index, local=local_idx)
  207. add_node_indexes(child, node_index=child_index)
  208. return element
  209. def normalise_text(text):
  210. """Normalise unicode and whitespace."""
  211. # Normalise unicode first to try and standardise whitespace characters as much as possible before normalising them
  212. text = strip_control_characters(text)
  213. text = normalise_unicode(text)
  214. text = normalise_whitespace(text)
  215. return text
  216. def strip_control_characters(text):
  217. """Strip out unicode control characters which might break the parsing."""
  218. # Unicode control characters
  219. # [Cc]: Other, Control [includes new lines]
  220. # [Cf]: Other, Format
  221. # [Cn]: Other, Not Assigned
  222. # [Co]: Other, Private Use
  223. # [Cs]: Other, Surrogate
  224. control_chars = set(['Cc', 'Cf', 'Cn', 'Co', 'Cs'])
  225. retained_chars = ['\t', '\n', '\r', '\f']
  226. # Remove non-printing control characters
  227. return "".join(["" if (unicodedata.category(char) in control_chars) and (char not in retained_chars) else char for char in text])
  228. def normalise_unicode(text):
  229. """Normalise unicode such that things that are visually equivalent map to the same unicode string where possible."""
  230. normal_form = "NFKC"
  231. text = unicodedata.normalize(normal_form, text)
  232. return text
  233. def normalise_whitespace(text):
  234. """Replace runs of whitespace characters with a single space as this is what happens when HTML text is displayed."""
  235. text = regex.sub(r"\s+", " ", text)
  236. # Remove leading and trailing whitespace
  237. text = text.strip()
  238. return text
  239. def is_leaf(element):
  240. return (element.name in ['p', 'li'])
  241. def is_text(element):
  242. return isinstance(element, NavigableString)
  243. def is_non_printing(element):
  244. return any(isinstance(element, _e) for _e in [Comment, CData])
  245. def add_content_digest(element):
  246. if not is_text(element):
  247. element["data-content-digest"] = content_digest(element)
  248. return element
  249. def content_digest(element):
  250. if is_text(element):
  251. # Hash
  252. trimmed_string = element.string.strip()
  253. if trimmed_string == "":
  254. digest = ""
  255. else:
  256. digest = hashlib.sha256(trimmed_string.encode('utf-8')).hexdigest()
  257. else:
  258. contents = element.contents
  259. num_contents = len(contents)
  260. if num_contents == 0:
  261. # No hash when no child elements exist
  262. digest = ""
  263. elif num_contents == 1:
  264. # If single child, use digest of child
  265. digest = content_digest(contents[0])
  266. else:
  267. # Build content digest from the "non-empty" digests of child nodes
  268. digest = hashlib.sha256()
  269. child_digests = list(
  270. filter(lambda x: x != "", [content_digest(content) for content in contents]))
  271. for child in child_digests:
  272. digest.update(child.encode('utf-8'))
  273. digest = digest.hexdigest()
  274. return digest