Open-Source Security Intelligence

Know every vulnerability
before it knows you.

DevGuard continuously monitors your dependencies and alerts you when CVEs like this one affect your stack — with real-time threat intelligence built for developers.

Search

PYSEC-2026-3871

LowCVSS 3.7 / 10
Published Sep 10, 2026·Last modified Sep 10, 2026
Affected Components(1)
PyPI logonltk
< 3.10.3
Description

Summary

XMLCorpusView._read_xml_fragment() reads a corpus file in 1 KiB blocks, appending each block to a growing fragment string, then calls _VALID_XML_RE.match(fragment) on the full accumulated buffer every iteration. Because each iteration rescans the entire accumulated fragment, the total amount of work grows quadratically with input size.

Commit c9c332284 (CWE-1333) made each match() call linear. The quadratic behavior is separate: the loop calls match() once per 1 KiB block, each time on a longer buffer.

On the test system, an 8 MiB malformed XML file consumed approximately 48 CPU-seconds through the public BNCCorpusReader.words() API with no source modification. Absolute timings vary by hardware. _read_xml_fragment() imposes no limit on fragment size or iteration count.

Details

File: nltk/corpus/reader/xmldocs.py
Function: XMLCorpusView._read_xml_fragment(), lines 261–308

The relevant loop:

fragment = ""
while True:
    fragment += stream.read(self._BLOCK_SIZE)      # grows by 1 KiB per iteration
    if self._VALID_XML_RE.match(fragment):         # rescans full buffer each time
        return fragment
    ...
    last_open_bracket = fragment.rfind("<")
    if last_open_bracket > 0:                      # False for single-'<' payload
        if self._VALID_XML_RE.match(fragment[:last_open_bracket]):
            return ...
    # loop continues

For a payload of b'<' + b'a' * (N-1):

  • For this malformed input, _VALID_XML_RE.match(fragment) does not succeed because the unterminated tag prevents the expression from matching before EOF.
  • fragment.rfind("<") returns 0; the guard last_open_bracket > 0 is False, so the backtrack branch is never taken.
  • The only exit is EOF, after all N bytes are consumed.

Affected readers -> readers that rely on XMLCorpusView, including BNCCorpusReader, NPSChatCorpusReader, SemcorCorpusReader, MTECorpusReader, NKJPCorpusReader, FrameNetCorpusReader, VerbNetCorpusReader, and direct XMLCorpusView instantiation. XMLCorpusReader.xml() is not affected -> it calls defusedxml.safe_parse().

PoC

Requires only pip install nltk. No corpus data needed.

from pathlib import Path
from tempfile import TemporaryDirectory
from time import perf_counter
from nltk.corpus.reader.bnc import BNCCorpusReader

SIZES_KIB = (256, 512, 1024, 2048, 4096, 8192)
results = []
with TemporaryDirectory() as directory:
    root = Path(directory)
    malformed = root / "unterminated.xml"
    for kib in SIZES_KIB:
        malformed.write_bytes(b"<" + b"a" * (kib * 1024 - 1))
        t = perf_counter()
        try:
            list(BNCCorpusReader(str(root), [malformed.name]).words())
        except ValueError as e:
            assert "tag not closed" in str(e)
        results.append(perf_counter() - t)

print("KiB      seconds   growth")
for i, (kib, elapsed) in enumerate(zip(SIZES_KIB, results)):
    ratio = "-" if i == 0 else f"{elapsed / results[i-1]:.2f}x"
    print(f"{kib:5d}  {elapsed:9.3f}  {ratio}")

Runtime should increase by approximately fourfold for each doubling of input size, although absolute timings vary by hardware.

During verification, _VALID_XML_RE.match() was instrumented to record the size of each input. For a 256 KiB malformed file it was invoked 257 times on monotonically increasing buffers (1024, 2048, …, 262144 bytes), with the final call occurring after EOF. This confirms that every iteration rescans the accumulated fragment.

Impact

Applications that process attacker-controlled XML corpus files through an affected reader are vulnerable. The attacker needs only write access to a path the reader will open. No NLTK credentials or special privileges required. Offline tools reading only trusted local corpora are not at risk.

Affected versions: Verified in NLTK 3.9.4, 3.10.0, and the current develop branch. Historical inspection indicates the same loop structure has existed since the introduction of XMLCorpusView (2007), but only the listed versions were experimentally verified. No patch exists in any published release.

This issue results in CPU exhaustion and may allow denial of service in applications that process attacker-controlled XML corpus files.

Suggested Fix

Avoid rescanning the accumulated fragment from the beginning after each 1 KiB read. Incremental parsing, bounded fragment accumulation, or another streaming approach would eliminate the quadratic behavior while preserving existing semantics.

A regression test should verify that BNCCorpusReader.words() raises ValueError within a fixed timeout (e.g. 5 seconds) against a 2 MiB malformed input. The existing test_xmldocs_security.py covers only the prior ReDoS payloads and does not exercise this path.

Upload your SBOM

Upload your own SBOM in CycloneDX 1.6 or higher (JSON) directly here to check your vulnerabilities.

Risk Scores
Base Score
3.7

The vulnerability can be exploited over the network without needing physical access. It is difficult for an attacker to exploit this vulnerability and may require special conditions. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability. The impact is confined to the system where the vulnerability exists. There is a low impact on the availability of the system.

Threat Intelligence
3.4

Limited exploitation activity has been observed. Close monitoring and planned remediation are recommended.

EPSS
0.22%

The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.

Exploit
Not available

We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.

Browse More

Scan your project

Continuously monitor your dependencies and get alerted when vulnerabilities like this one affect your stack.

Checkout DevGuard