forked from MirrorHub/synapse
Merge pull request from GHSA-22p3-qrh9-cx32
* Make _iterate_over_text easier to read by using simple data structures * Prefer a set of tags to ignore In my tests, it's 4x faster to check for containment in a set of this size * Add a stack size limit to _iterate_over_text * Continue accepting the case where there is no body element * Use an early return instead for None Co-authored-by: Richard van der Hoff <richard@matrix.org>
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2 changed files with 56 additions and 24 deletions
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@ -12,10 +12,9 @@
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# See the License for the specific language governing permissions and
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# limitations under the License.
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import codecs
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import itertools
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import logging
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import re
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from typing import TYPE_CHECKING, Dict, Generator, Iterable, Optional, Set, Union
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from typing import TYPE_CHECKING, Dict, Generator, Iterable, List, Optional, Set, Union
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if TYPE_CHECKING:
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from lxml import etree
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@ -276,7 +275,7 @@ def parse_html_description(tree: "etree.Element") -> Optional[str]:
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from lxml import etree
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TAGS_TO_REMOVE = (
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TAGS_TO_REMOVE = {
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"header",
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"nav",
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"aside",
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@ -291,31 +290,42 @@ def parse_html_description(tree: "etree.Element") -> Optional[str]:
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"img",
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"picture",
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etree.Comment,
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)
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}
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# Split all the text nodes into paragraphs (by splitting on new
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# lines)
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text_nodes = (
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re.sub(r"\s+", "\n", el).strip()
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for el in _iterate_over_text(tree.find("body"), *TAGS_TO_REMOVE)
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for el in _iterate_over_text(tree.find("body"), TAGS_TO_REMOVE)
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)
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return summarize_paragraphs(text_nodes)
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def _iterate_over_text(
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tree: "etree.Element", *tags_to_ignore: Union[str, "etree.Comment"]
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tree: Optional["etree.Element"],
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tags_to_ignore: Set[Union[str, "etree.Comment"]],
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stack_limit: int = 1024,
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) -> Generator[str, None, None]:
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"""Iterate over the tree returning text nodes in a depth first fashion,
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skipping text nodes inside certain tags.
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Args:
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tree: The parent element to iterate. Can be None if there isn't one.
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tags_to_ignore: Set of tags to ignore
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stack_limit: Maximum stack size limit for depth-first traversal.
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Nodes will be dropped if this limit is hit, which may truncate the
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textual result.
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Intended to limit the maximum working memory when generating a preview.
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"""
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# This is basically a stack that we extend using itertools.chain.
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# This will either consist of an element to iterate over *or* a string
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if tree is None:
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return
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# This is a stack whose items are elements to iterate over *or* strings
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# to be returned.
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elements = iter([tree])
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while True:
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el = next(elements, None)
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if el is None:
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return
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elements: List[Union[str, "etree.Element"]] = [tree]
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while elements:
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el = elements.pop()
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if isinstance(el, str):
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yield el
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@ -329,17 +339,22 @@ def _iterate_over_text(
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if el.text:
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yield el.text
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# We add to the stack all the elements children, interspersed with
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# each child's tail text (if it exists). The tail text of a node
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# is text that comes *after* the node, so we always include it even
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# if we ignore the child node.
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elements = itertools.chain(
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itertools.chain.from_iterable( # Basically a flatmap
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[child, child.tail] if child.tail else [child]
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for child in el.iterchildren()
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),
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elements,
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)
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# We add to the stack all the element's children, interspersed with
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# each child's tail text (if it exists).
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#
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# We iterate in reverse order so that earlier pieces of text appear
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# closer to the top of the stack.
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for child in el.iterchildren(reversed=True):
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if len(elements) > stack_limit:
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# We've hit our limit for working memory
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break
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if child.tail:
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# The tail text of a node is text that comes *after* the node,
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# so we always include it even if we ignore the child node.
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elements.append(child.tail)
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elements.append(child)
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def summarize_paragraphs(
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@ -370,6 +370,23 @@ class OpenGraphFromHtmlTestCase(unittest.TestCase):
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og = parse_html_to_open_graph(tree)
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self.assertEqual(og, {"og:title": "ó", "og:description": "Some text."})
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def test_nested_nodes(self) -> None:
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"""A body with some nested nodes. Tests that we iterate over children
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in the right order (and don't reverse the order of the text)."""
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html = b"""
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<a href="somewhere">Welcome <b>the bold <u>and underlined text <svg>
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with a cheeky SVG</svg></u> and <strong>some</strong> tail text</b></a>
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"""
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tree = decode_body(html, "http://example.com/test.html")
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og = parse_html_to_open_graph(tree)
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self.assertEqual(
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og,
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{
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"og:title": None,
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"og:description": "Welcome\n\nthe bold\n\nand underlined text\n\nand\n\nsome\n\ntail text",
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},
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)
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class MediaEncodingTestCase(unittest.TestCase):
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def test_meta_charset(self) -> None:
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